
4 runtuyan MSO
MSO44, MSO46, MSO44B jeung MSO46B
Spésifikasi jeung Performance Verifikasi
MSO44 Series Campuran Signal Oscilloscope
Awas: Parentah ngalayanan kanggo dianggo ku tanaga anu mumpuni wungkul. Pikeun ngahindarkeun tatu pribadi, ulah ngalakukeun jasa naon waé kecuali anjeun mumpuni pikeun ngalakukeunana. Rujuk ka sadaya kasimpulan kaamanan sateuacan ngalaksanakeun jasa.
Révisi B
Hak Cipta © 2024, Tektronix. 2024 Sadaya hak ditangtayungan. Produk software anu dilisensikeun dipiboga ku Tektronix atanapi anak perusahaan atanapi supplierna, sareng ditangtayungan ku undang-undang hak cipta nasional sareng katangtuan perjangjian internasional. Produk Tektronix katutupan ku patén-patén AS sareng asing, dikaluarkeun sareng ditangguhkeun. Émbaran dina ieu publikasi supersedes nu dina sakabéh bahan diterbitkeun saméméhna. Spésifikasi sarta hak husus robah harga ditangtayungan. Sadaya ngaran dagang séjén anu dirujuk nyaéta merek jasa, mérek dagang, atanapi mérek dagang kadaptar ti perusahaan masing-masing.
TEKTRONIX sareng TEK mangrupikeun mérek dagang ti Tektronix, Inc.
Tektronix, Inc.
14150 SW Karl Braun Girang
Kotak POS 500
Beaverton, ATAWA 97077
US
Kanggo inpormasi produk, penjualan, jasa, sareng kunjungan dukungan téknis tek.com pikeun manggihan kontak di wewengkon Anjeun. Pikeun inpo jaminan mangga buka tek.com/warranty.
Inpo kaamanan penting
Buku manual ieu ngandung inpormasi sareng peringatan anu kedah dituturkeun ku pangguna pikeun operasi anu aman sareng ngajaga produk dina kaayaan anu aman.
Pikeun ngalaksanakeun layanan dina produk ieu, tingali ringkesan kaamanan Layanan anu nuturkeun kasimpulan kaamanan Umum.
Ringkesan kaamanan umum
Anggo produkna sapertos anu parantos ditangtoskeun. Review pancegahan kaamanan di handap ieu pikeun nyingkahan cilaka sareng nyegah karusakan dina produk ieu atanapi produk naon waé anu nyambung ka éta. Ati-ati maca sadaya pitunjuk. Tetep pitunjuk ieu pikeun rujukan ka hareup.
Produk ieu bakal dianggo saluyu sareng kode lokal sareng nasional.
Pikeun operasi anu leres sareng aman pikeun produk, penting pikeun anjeun nuturkeun prosedur kaamanan anu ditarima sacara umum salian ti pancegahan anu ditetepkeun dina manual ieu.
Produkna dirancang pikeun dianggo ku tanaga terlatih hungkul.
Ukur tanaga mumpuni anu sadar kana bahaya anu aya dina kedah ngaleungitkeun sampéan pikeun diropea, dipiara, atanapi disaluyukeun.
Sateuacan dianggo, teras parios produk kalayan sumber anu dipikaterang pikeun mastikeun yén éta leres operasi.
Produk ieu henteu dimaksudkeun pikeun ngadeteksi vol anu bahayatages.
Anggo alat pelindung pribadi pikeun nyegah kejutan sareng tatu ledakan arc dimana konduktor hirup anu bahaya dibahayakeun.
Nalika nganggo produk ieu, anjeun panginten kedah aksés kana bagian sanés sistem anu langkung ageung. Maca bagian kaamanan manual komponén anu sanés pikeun peringatan sareng perhatosan anu aya hubunganana sareng sistem operasi.
Nalika ngalebetkeun alat ieu kana sistem, kasalametan sistem éta tanggung jawab assembler sistem.
Pikeun nyingkahan seuneu atanapi cilaka pribadi
Anggo kabel listrik anu leres
Anggo ngan ukur kabel listrik anu dikhususkeun pikeun produk ieu sareng disertipikasi pikeun nagara pamakean. Entong nganggo kabel listrik anu disayogikeun pikeun produk sanés.
Taneuh produk
Produk ieu grounded ngaliwatan konduktor grounding tina kabel kakuatan. Pikeun nyingkahan kejutan listrik, konduktor grounding kedah dihubungkeun sareng ground ground. Sateuacan ngadamel konéksi kana terminal input atanapi kaluaran produk, pastikeun yén produkna leres diasarkeun. Entong mareuman sambungan grounding sambungan kabelna.
Pegatkeun daya
Kabel listrik ngaleupaskeun produk tina sumber listrik. Tingali pitunjuk kanggo lokasi. Entong posisina peralatan supados sesah pikeun ngajalankeun kabel listrikna; éta kedah tetep tiasa diaksés ku pangguna sepanjang waktos kanggo ngamungkinkeun sambungan gancang upami diperyogikeun.
Sambungkeun sareng pegatkeun sambungan leres
Ulah nyambungkeun atawa megatkeun panyilidikan atawa test ngawujud bari aranjeunna disambungkeun ka voltage sumber. Paké ngan insulated voltagpanyilidikan, lead test, sarta adaptor disadiakeun kalawan produk, atawa dituduhkeun ku Tektronix cocog pikeun produk.
Perhatoskeun sadaya rating terminal
Pikeun ngahindarkeun bahaya seuneu atanapi shock, perhatikeun sadaya rating sareng tanda dina produk. Taroskeun manual produk kanggo inpormasi rating langkung seueur sateuacan nyambungkeun ka produk.
Ulah ngaleuwihan kategori Measurement Category (CAT) rating jeung voltage atawa rating ayeuna tina komponén individu dipeunteun panghandapna tina hiji produk, usik, atawa aksésori. Paké caution lamun ngagunakeun 1: 1 test lead sabab ujung usik voltage langsung dikirimkeun ka produk.
Entong nerapkeun poténsial ka terminal mana waé, kalebet terminal umum, anu ngaleuwihan peringkat maksimum terminal éta.
Ulah ngambang terminal umum luhureun vol dipeunteuntage pikeun terminal éta.
Terminal pangukuran dina produk ieu henteu dipeunteun pikeun sambungan ka sirkuit Kategori III atanapi IV.
Entong beroperasi tanpa panutup
Entong beroperasi produk ieu ku tutup atanapi panél dihapus, atanapi bisi dibuka. Vol ngabahayakeuntage paparan mungkin.
Hindarkeun sirkuit anu kakeunaan
Entong noél koneksi sareng komponén anu kakeunaan nalika kakuatan aya.
Entong beroperasi kalayan disangka kagagalan
Upami anjeun curiga yén aya karusakan dina produk ieu, sina dipariksa ku tanaga jasa anu mumpuni.
Pareuman produk upami rusak. Entong anggo produkna upami rusak atanapi teu leres operasi. Upami anjeun ragu ngeunaan kaamanan produk, pareuman sareng pegatkeun sambungan kabel listrik. Jelas tandana produk pikeun nyegah operasi salajengna.
Sateuacan dianggo, pariksa voltagusik e, lead test, jeung asesoris pikeun karuksakan mékanis jeung ngaganti lamun ruksak. Entong nganggo panyilidikan atanapi uji lead upami aranjeunna ruksak, upami aya logam anu kakeunaan, atanapi upami aya indikator ngagem.
Nalungtik bagian luar produk sateuacan anjeun nganggo. Pilari retakan atanapi potongan leungit.
Anggo ukur bagian gaganti anu khusus.
Entong beroperasi dina baseuh / damp kaayaan
Waspada kondensasi tiasa lumangsung upami unit dipindahkeun tina hawa tiis ka lingkungan anu haneut.
Entong beroperasi dina suasana anu ngabeledug
Jaga permukaan produk beresih sareng garing
Cabut sinyal input sateuacan anjeun meresihan produk.
Nyadiakeun ventilasi ditangtoskeun
Tingali kana pitunjuk pamasangan dina manual pikeun detil tentang masang produk sahingga ngagaduhan ventilasi anu pas.
Slot sareng bukaan disayogikeun pikeun ventilasi sareng henteu kedah ditutupan atanapi kahalangan. Entong nyorong objék kana bukaan mana waé.
Nyayogikeun lingkungan kerja anu aman
Salawasna nempatkeun produk dina lokasi anu cocog pikeun viewing tampilan sareng indikator.
Hindarkeun pamakean anu teu leres atanapi berkepanjangan tina keyboard, pointer, sareng bantalan tombol. Pamakéan keyboard atanapi pointer anu henteu leres atanapi berkepanjangan tiasa janten cilaka serius.
Pastikeun daérah padamelan anjeun cocog sareng standar ergonomis anu berlaku. Konsultasi sareng ahli ergonomik pikeun nyingkahan cilaka setrés.
Waspada nalika ngangkat sareng mawa produk. Produk ieu disadiakeun ku cecekelan atawa handles pikeun ngangkat jeung mawa.
Paké ngan Tektronix rackmount hardware dieusian pikeun produk ieu.
Panyilidikan jeung tés lead
Saméméh nyambungkeun panyilidikan atawa lead test, sambungkeun kabel listrik ti konektor daya ka stop kontak listrik nu grounded bener.
Tetep ramo di tukangeun halangan pelindung, penjaga ramo pelindung, atanapi indikator taktil dina panyilidikan. Cabut sadaya panyilidikan, uji lead sareng asesoris anu henteu dianggo.
Anggo ukur ukur Ukur Kategori (CAT), voltage, suhu, jangkungna, sareng ampusik dipeunteun erage, lead test, sareng adaptor pikeun pangukuran naon waé.
Waspada vol tinggitages
Ngartos voltage ratings pikeun usik nu Anjeun pake tur ulah ngaleuwihan eta ratings. Dua rating anu penting pikeun terang sareng ngartos:
- Pangukuran maksimum voltage ti ujung usik ka kalungguhan rujukan usik.
- Vol ngambang maksimumtage ti rujukan usik nuju kana taneuh bumi.
Ieu dua voltage ratings gumantung kana usik jeung aplikasi Anjeun. Tingal bagian spésifikasi tina manual pikeun inpormasi lengkep.
PERHATOSAN: Pikeun nyegah shock listrik, ulah ngaleuwihan ukuran maksimum atawa maksimum floating voltage pikeun input oscilloscope konektor BNC, tip usik, atawa kalungguhan rujukan usik.
Sambungkeun sareng pegatkeun sambungan leres
Sambungkeun kaluaran usik ka produk pangukuran sateuacan nyambungkeun usik ka sirkuit anu diuji. Sambungkeun kalungguhan rujukan usik ka sirkuit anu diuji sateuacan nyambungkeun input usik. Pegatkeun sambungan input usik sareng timbel rujukan usik tina sirkuit anu diuji sateuacan pegatkeun sambungan usik tina produk pangukuran.
De-énergize sirkuit dina uji saméméh nyambungkeun atawa megatkeun sambungan usik ayeuna.
Sambungkeun kalungguhan rujukan usik ka taneuh bumi wungkul.
Entong nyambungkeun usik ayeuna kana kawat naon waé anu mawa voltages atawa frékuénsi luhur usik vol ayeunatage peunteun.
Pariksa usik jeung asesoris
Sateuacan unggal pamakean, pariksa usik sareng asesoris naha aya karusakan (potongan, cimata, atanapi cacad dina awak usik, asesoris, atanapi jaket kabel). Ulah make lamun ruksak.
Ringkesan kaamanan jasa
Bagian kasimpulan kaamanan Layanan ngandung inpormasi tambahan anu diperyogikeun pikeun ngajalankeun jasa dina produk. Ukur tanaga mumpuni anu kedah ngalaksanakeun prosedur palayanan. Baca ringkesan kaamanan Layanan ieu sareng ringkesan kaamanan Umum sateuacan ngalakukeun prosedur jasa naon waé.
Pikeun nyegah shock listrik
Ulah noél sambungan kakeunaan.
Entong jasa nyalira
Entong ngalakukeun jasa internal atanapi pangaluyuan produk ieu kecuali jalma sanés anu sanggup nyayogikeun pertolongan pertama sareng resusitasi aya.
Pegatkeun sambungan kakuatan
Pikeun nyingkahan kejutan listrik, pareuman kakuatan produk sareng pegatkeun sambungan kabel listrik tina kakuatan utama sateuacan ngaleupaskeun panutup atanapi panél, atanapi muka pasualan pikeun ngalayanan.
Anggo ati-ati nalika ngalayanan kalayan kakuatan hurung
Vol ngabahayakeuntagés atanapi arus tiasa aya dina produk ieu. Pegatkeun sambungan listrik, cabut batre (upami aya), sareng pegatkeun sambungan uji sateuacan dipiceun panél pelindung, solder, atanapi ngaganti komponén.
Pariksa kaamanan sanggeus perbaikan
Salawasna parios deui kontinuitas sareng kakuatan utama listrik diéléktrik saatos ngalereskeun.
Sarat dina manual ieu
Istilah ieu tiasa muncul dina manual ieu:
PERHATOSAN: Pernyataan peringatan ngaidentipikasi kaayaan atanapi prakték anu tiasa nyababkeun cilaka atanapi kaleungitan nyawa.
PERHATOSAN: Pernyataan Awas ngaidentipikasi kaayaan atanapi prakték anu tiasa nyababkeun karusakan kana produk ieu atanapi harta sanés.
Sarat dina produk
Istilah ieu tiasa muncul dina produk:
- Bahaya nunjukkeun bahaya cilaka langsung diaksés nalika anjeun maca panyirian.
- PERHATOSAN nunjukkeun bahaya cilaka henteu langsung diaksés nalika anjeun maca panyirian.
- PERHATIAN nunjukkeun bahaya kana harta kaasup produk.
Simbol dina produk
Nalika simbol ieu ditandaan dina produk, pastikeun konsultasi manual pikeun milarian terang alim tina poténsial bahaya sareng tindakan naon anu kedah dilakukeun pikeun nyingkahanana. (Simbol ieu ogé tiasa dianggo pikeun ngarujuk pangguna kana peringkat dina buku panduan.)
Simbol-simbol di handap ieu tiasa muncul dina produk.

spésifikasi
Bab ieu ngandung spésifikasi pikeun alat. Kabéh spésifikasi anu has iwal nyatet sakumaha dijamin. spésifikasi has disadiakeun pikeun genah Anjeun tapi teu dijamin. Spésifikasi anu ditandaan ku simbol ✔ dijamin sareng dipariksa di Verifikasi Kinerja.
Pikeun nyumponan spésifikasi, syarat-syarat ieu kedah dicumponan heula:
- Alatna kedah dikalibrasi dina suhu lingkungan antara 18 °C sareng 28 °C (64 °F sareng 82 °F).
- Alatna kedah beroperasi dina wates lingkungan anu dijelaskeun dina spésifikasi ieu.
- Alatna kedah didamel tina sumber anu nyumponan spésifikasi.
- Alatna kedah dioperasikeun terus-terusan sahenteuna sahenteuna 20 menit dina kisaran suhu operasi anu ditangtukeun.
- Anjeun kedah ngalakukeun prosedur kompensasi jalur sinyal saatos periode pemanasan. Tingali prosedur kompensasi jalur sinyal pikeun kumaha ngalakukeun kompensasi jalur sinyal. Lamun hawa ambient robah leuwih ti 5 °C (9 °F), malikan deui prosedur.
- Sistem pangukuran didamel tina osiloskop anu cocog sareng TekVPI
Spésifikasi anu dijamin ngajelaskeun kinerja anu dijamin kalayan wates kasabaran atanapi syarat anu diuji-tipe anu tangtu.
Input saluran analog sareng spésifikasi nangtung
Jumlah saluran input 4 model channel analog: 4 BNC 6 model channel analog: 6 BNC
Input gandeng DC, AC
Pilihan résistansi input 1 MΩ atanapi 50 Ω
✔ Input impedansi 1 MΩ DC gandeng
1 MΩ ± 1%
Input capacitance 1 MΩ DC gandeng, has
✔ Input impedansi 50 Ω, DC gandeng 13 pF ± 1.5 pF
MSO44, MSO46: 50 Ω ± 1% (VSWR ≤1.5:1, has)
MSO44B, MSO46B: 50 Ω ± 1% (VSWR ≤1.5:1, has pikeun frékuénsi <1GHz, ≤2.0:1 pikeun frékuénsi sarua atawa saluhureuna 1GHz
Input maksimal voltage, 1 MΩ 300 V di BNC
Derate dina 20 dB / dasawarsa antara 4.5 MHz jeung 45 MHz; derate 14 dB / dasawarsa antara 45 MHz jeung 450 RMS
MHz. Di luhur 450 MHz, 5.5 V RMS
Input puncak maksimum voltage di BNC: ± 425 V
Input maksimal voltage, 50 Ω 5 V RMS , kalawan puncak ≤ ± 20 V (DF ≤6.25%)
Jumlah Bit Digitized 8 bit dina 6.25 GS/s 12 bit dina 3.125 GS/s 13 bit dina 1.25 GS/s 14 bit dina 625 MS/s 15 bit dina 250 MS/s 16 bit dina 125 MS/s Ditémbongkeun vertikal kalawan 25 tingkat digitization (DL) pikeun 8-bit jeung 400 tingkat digitization pikeun 12-bit per division, 10.24 divisi rentang dinamis. DL nyaéta singketan pikeun tingkat digitalisasi. A DL nyaéta vol pangleutiknatage robah tingkat nu bisa direngsekeun ku 8-bit AD Parabot Parobah. nilai ieu ogé dipikawanoh salaku LSB (bit sahenteuna signifikan).
Kisaran sensitipitas, kasar
1 MΩ 500 µV/div ka 10 V/div dina urutan 1-2-5
50 Ω 500 µV/div ka 1 V/div dina runtuyan 1-2-5
500 μV/div nyaéta zum digital 2X tina 1 mV/div atawa zum digital 4x tina 2 mV/div, gumantung kana konfigurasi rubakpita instrumen
Kisaran sensitipitas, saé
1 MΩ Ngidinan adjustment kontinyu tina 500 µV/div ka 10 V/div
50 Ω Ngidinan adjustment kontinyu tina 500 µV/div ka 1 V/div
Resolusi sensitipitas, denda ≤1% tina setelan ayeuna
✔ DC gain akurasi
Lengkah Gain, 50 Ω ± 1.0%, (± 2.5% dina 1 mV/div jeung 500 µV/div setélan), de-rate dina 0.100%/ °C luhur 30 °C
Lengkah Gain, 1 MΩ ± 1.0%, (± 2.0% dina 1 mV/div jeung 500 µV/div setélan), de-rate dina 0.100%/ °C luhur 30 °C
gain variabel ± 1.5%, derated dina 0.100% / °C luhur 30 °C.
500 μV/div nyaéta zum digital 2X tina 1 mV/div atawa zum digital 4x tina 2 mV/div, gumantung kana konfigurasi rubakpita instrumen. Sapertos kitu, éta dijamin ku nguji setélan anu henteu dizum.
Rentang offset, sinyal Input maksimum teu bisa ngaleuwihan vol input maksimumtage pikeun jalur input 50 Ω.
| Volt/div setting | maksimal ngimbangan antara, 50 Ω asupan |
| 500 µV/div - 99 mV/div | ± 1 V |
| 100 mV/div – 1 V/div | ± 10 V |
| Volt/div setting | maksimal ngimbangan antara, 1 MΩ asupan |
| 500 µV/div - 63 mV/div | ± 1 V |
| 64 mV/div – 999 mV/div | ± 10 V |
| 1 V/div - 10 V/div | ± 100 V |
500 μV/div nyaéta zum digital 2X tina 1 mV/div atawa zum digital 4x tina 2 mV/div, gumantung kana konfigurasi rubakpita instrumen. Sapertos kitu, éta dijamin ku nguji setélan anu henteu dizum.
Rentang posisi ± 5 divisi
✔ akurasi offset DC ±(0.010 X | offset - posisi | + kasaimbangan DC)
Balance DC nyaéta 0.2 div (0.4 div dina 500 μV/div)
DC voltage akurasi pangukuran, Mode akuisisi rata
| Pangukuran Tipe | DC Akurasi (Dina Volt) |
| Rata-rata ≥ 16 bentuk gelombang | ±((DC Gain Akurasi) * |maca – (offset – posisi) + Akurasi Offset + 0.1 * Setélan V/div) |
| Delta volt antara dua rata-rata ≥ 16 bentuk gelombang anu dicandak ku setelan osiloskop sareng kaayaan lingkungan anu sami | ±(DC Gain Akurasi * |maca| + 0.05 div) |
Pilihan rubakpita 50 Ω: 20 MHz, 250 MHz, sareng nilai rubakpita lengkep model anjeun 1 MΩ: 20 MHz, 250 MHz, 350 MHz, 500 MHz 350 MHz model teu tiasa dikonpigurasikeun ka 500 MHz dina modeu 1 MΩ
✔ rubakpita analog 50 Ω DC gandeng
1.5 modél GHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 1 V/div | DC - 1.50 GHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
1 modél GHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 1 V/div | DC - 1.00 GHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
500 modél MHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 1 V/div | DC - 500 MHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
350 modél MHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 1 V/div | DC - 350 MHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
200 modél MHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 1 V/div | DC - 200 MHz |
| 500 µV/div - 995 µV/div | DC - 200 MHz |
Kabéh rubakpita modél iwal 350 MHz, 200 MHz
Watesan kanggo suhu lingkungan ≤30 °C sareng pilihan rubakpita disetel ka FULL. Ngurangan frékuénsi rubakpita luhur ku 1% pikeun tiap °C luhureun 30 °C.
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 10 V/div | DC - 500 MHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
350 modél MHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 10 V/div | DC - 350 MHz |
| 500 µV/div - 995 µV/div | DC - 250 MHz |
200 modél MHz
| Volt/Div Setélan | Bandwidth |
| 1 mV/div – 10 V/div | DC - 200 MHz |
| 500 µV/div - 995 µV/div | DC - 200 MHz |
Bandwidth analog sareng panyilidikan TPP0500, TPP1000 sareng TPP0250, khas
Watesan kanggo suhu lingkungan ≤30 °C sareng pilihan rubakpita disetel ka FULL. Ngurangan frékuénsi rubakpita luhur ku 1% pikeun tiap °C luhureun 30 °C.
| Instrumén | Volt/Div Setélan | Bandwidth |
| 1.5 GHz, 1 GHz | 5 mV/div – 100 V/div | DC - 1 GHz (TPP1000 Probe) |
| 500 MHz | 5 mV/div – 100 V/div | DC - 500 MHz (TPP0500 Probe) |
| 350 MHz | 5 mV/div – 100 V/div | DC - 350 MHz (TPP0500 Probe) |
| 200 MHz | 5 mV/div – 100 V/div | DC - 200 MHz (TPP0250 Probe) |
Wates frékuénsi handap, AC gandeng, has <10 Hz lamun AC 1 MΩ gandeng. The AC gandeng wates frékuénsi handap ngurangan ku faktor 10 (<1 Hz) lamun 10X panyilidikan pasip dipaké.
wates frékuénsi luhur, 250 MHz rubakpita kawates, has
Wates frékuénsi luhur, rubakpita 20 MHz kawates, has 250 MHz, ± 25% 20 MHz, ± 25 %
Waktu naékna diitung, khas
| Modél | 50 Ω | TP1000 usik | TPP0500 usik | TPP0250 usik |
| 500 µV-1 V | 5 mV-10 V | 5 mV-10 V | 5 mV-10 V | |
| 1.5 GHz | 333ps | 450ps | 900ps | 1.8ns |
| 1 GHz | 450ps | 450ps | 900ps | 1.8ns |
| 500 MHz | 900ps | 900ps | 900ps | 1.8ns |
| 350 MHz | 1.3ns | 1.3ns | 1.3ns | 1.8ns |
| 200 MHz | 2.3ns | 2.3ns | 2.3ns | 2.3ns |
Réspon pulsa modeu Deteksi Puncak atanapi Amplop, lebar pulsa Minimum khas nyaéta> 640 ps (6.25 GS / s)
Bit éféktif (ENOB), tipikal
Bit éféktif has pikeun input gelombang sinus 9-divisi pp, 50 mV/div, 50-Ω
Sampmodeu le, 50 Ω, 50 mV/div
| Bandwidth | Input frékuénsi | ENOB at 6.25 GS/s |
| 1.5 GHz | 10 MHz | 6.80 |
| 1.5 GHz | 300 MHz | 6.80 |
| 1 GHz | 10 MHz | 7.10 |
| 1 GHz | 300 MHz | 7.10 |
| 500 MHz | 10 MHz | 7.40 |
| 500 MHz | 150 MHz | 7.40 |
| 350 MHz | 10 MHz | 7.60 |
| 350 MHz | 100 MHz | 7.60 |
| 250 MHz | 10 MHz | 7.60 |
| 250 MHz | 100 MHz | 7.60 |
| 200 MHz | 10 MHz | 7.60 |
| 200 MHz | 100 MHz | 7.60 |
| 20 MHz | 10 MHz | 7.70 |
Modeu Rés luhur, 50 Ω, 50 mV/div
| Bandwidth | Input frékuénsi | ENOB at 6.25 GS/s |
| 1.5 GHz | 10 MHz | 7.10 |
| 1.5 GHz | 300 MHz | 7.10 |
| 1 GHz | 10 MHz | 7.60 |
| 1 GHz | 300 MHz | 7.60 |
| 500 MHz | 10 MHz | 7.90 |
| 500 MHz | 150 MHz | 7.90 |
| 350 MHz | 10 MHz | 8.20 |
| 350 MHz | 100 MHz | 8.20 |
| 250 MHz | 10 MHz | 8.20 |
| 250 MHz | 100 MHz | 8.20 |
| 200 MHz | 10 MHz | 8.20 |
| 200 MHz | 100 MHz | 8.20 |
| 20 MHz | 10 MHz | 8.90 |
Noise acak, Sampmodeu Akuisisi le jeung Resolusi Tinggi, 50 Ω jeung 1 MΩ, 6.25 Gs/s=
✔ modél 1.5 GHz,
Sampmodeu le (RMS), 50 Ω
| V/div | 1.5 GHz |
| 1 mV/div | 635 μv |
| 2 mV/div | 635 μv |
| 5 mV/div | 817 μv |
| 10 mV/div | 843 μv |
| 20 mV/div | 920 μv |
| 50 mV/div | 1.582 mV |
| 100 mV/div | 3.686 mV |
| 1 V/div | 23.753 mV |
MSO44 jeung MSO46, Sampmodeu le (RMS), 50 Ω, has
| V/div | 1.5 GHz | 1 GHz | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 490 μv | 300 μv | 220 μv | 145 μv | 120 μv | 80 μv |
| 2 mV/div | 490 μv | 350 μv | 220 μv | 150 μv | 130 μv | 80 μv |
| 5 mV/div | 630 μv | 380 μv | 230 μv | 175 μv | 160 μv | 110 μv |
| 10 mV/div | 650 μv | 400 μv | 280 μv | 220 μv | 215 μv | 155 μv |
| 20 mV/div | 710 μv | 510 μv | 410 μv | 340 μv | 340 μv | 260 μv |
| 50 mV/div | 1.220 mV | 980 μv | 890 μv | 760 μv | 760 μv | 630 μv |
| 100 mV/div | 2.84 mV | 2.23 mV | 1.93 mV | 1.61 mV | 1.61 mV | 1.25 mV |
| 1 V/div | 18.3 mV | 19.0 mV | 17.3 mV | 15.0 mV | 15.0 mV | 12.5 mV |
MSO44B jeung MSO46B, Sampmodeu le (RMS), 50 Ω, has
| V/div | 1.5 GHz | 1 GHz | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 520 μv | 320 μv | 210 μv | 150 μv | 120 μv | 80 μv |
| 2 mV/div | 520 μv | 350 μv | 220 μv | 150 μv | 120 μv | 80 μv |
| 5 mV/div | 620 μv | 380 μv | 230 μv | 175 μv | 160 μv | 110 μv |
| 10 mV/div | 620 μv | 400 μv | 270 μv | 220 μv | 215 μv | 180 μv |
| 20 mV/div | 720 μv | 510 μv | 410 μv | 360 μv | 370 μv | 320 μv |
| 50 mV/div | 1.30 mV | 1.05 mV | 930 μv | 880 μv | 900 μv | 700 μv |
| 100 mV/div | 3.00 mV | 2.23 mV | 1.93 mV | 1.74 mV | 1.78 mV | 1.45 mV |
| 1 V/div | 21.0 mV | 19.3 mV | 18.1 mV | 17.5 mV | 17.6 mV | 14.0 mV |
✔ Sadaya model iwal
1.5 GHz, modeu Rés luhur (RMS), 50 Ω
| V/div | 1 GHz | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 336 μv | 259 μv | 194 μv | 161 μv | 96 μv |
| 2 mV/div | 363 μv | 259 μv | 194 μv | 161 μv | 96 μv |
| 5 mV/div | 394 μv | 304 μv | 239 μv | 174 μv | 96 μv |
| 10 mV/div | 434 μv | 356 μv | 284 μv | 206 μv | 103 μv |
| 20 mV/div | 551 μv | 466 μv | 349 μv | 298 μv | 141 μv |
| 50 mV/div | 1.038 mV | 1.038 mV | 739 μv | 596 μv | 259 μv |
| 100 mV/div | 2.102 mV | 1.596 mV | 1.349 mV | 1.349 mV | 609 μv |
| 1 V/div | 16.874 mV | 12.850mV | 11.617 mV | 11.617 mV | 4.906 mV |
MSO44 jeung MSO46, iwal
1.5 GHz, modeu Rés luhur (RMS), 50 Ω, has
| V/div | 1 GHz | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 260 μv | 200 μv | 150 μv | 125 μv | 75 μv |
| 2 mV/div | 280 μv | 200 μv | 150 μv | 125 μv | 75 μv |
| 5 mV/div | 305 μv | 235 μv | 185 μv | 135 μv | 75 μv |
| 10 mV/div | 335 μv | 275 μv | 220 μv | 160 μv | 80 μv |
| 20 mV/div | 425 μv | 360 μv | 270 μv | 230 μv | 110 μv |
| 50 mV/div | 800 μv | 800 μv | 570 μv | 460 μv | 200 μv |
| 100 mV/div | 1.62 mV | 1.23 mV | 1.04 mV | 1.04 mV | 480 μv |
| 1 V/div | 13.0 mV | 9.90 mV | 8.95 mV | 8.95 mV | 3.78 mV |
MSO44B jeung MSO46B, iwal 1.5 GHz, modeu Rés luhur (RMS), 50 Ω, has
| V/div | 1 GHz | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 280 μv | 210 μv | 150 μv | 125 μv | 75 μv |
| 2 mV/div | 280 μv | 210 μv | 150 μv | 125 μv | 75 μv |
| 5 mV/div | 300 μv | 230 μv | 185 μv | 135 μv | 75 μv |
| 10 mV/div | 330 μv | 260 μv | 220 μv | 160 μv | 80 μv |
| 20 mV/div | 420 μv | 350 μv | 270 μv | 230 μv | 110 μv |
| 50 mV/div | 800 μv | 780 μv | 570 μv | 460 μv | 200 μv |
| 100 mV/div | 1.65 mV | 1.29 mV | 1.04 mV | 1.04 mV | 480 μv |
| 1 V/div | 13.0 mV | 10.0 mV | 8.95 mV | 8.95 mV | 3.78 mV |
MSO44 jeung MSO46, Sampmodeu le (RMS), 1 MΩ, has
| V/div | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 210 μv | 140 μv | 120 μv | 78 μv |
| 2 mV/div | 210 μv | 140 μv | 120 μv | 78 μv |
| 5 mV/div | 230 μv | 160 μv | 135 μv | 96 μv |
| 10 mV/div | 270 μv | 200 μv | 190 μv | 135 μv |
| 20 mV/div | 370 μv | 300 μv | 300 μv | 240 μv |
| 50 mV/div | 760 μv | 600 μv | 650 μv | 750 μv |
| 100 mV/div | 1.75 mV | 1.350 mV | 1.45 mV | 1.22 mV |
| 1 V/div | 19.00 mV | 15.25 mV | 15.70 mV | 11.20 mV |
MSO44B jeung MSO46B, Sampmodeu le (RMS), 1 MΩ, has
| V/div | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 220 μv | 150 μv | 120 μv | 75 μv |
| 2 mV/div | 220 μv | 150 μv | 120 μv | 75 μv |
| 5 mV/div | 230 μv | 170 μv | 135 μv | 100 μv |
| 10 mV/div | 270 μv | 210 μv | 200 μv | 170 μv |
| 20 mV/div | 370 μv | 300 μv | 300 μv | 240 μv |
| 50 mV/div | 760 μv | 600 μv | 650 μv | 750 μv |
| 100 mV/div | 1.75 mV | 1.350 mV | 1.45 mV | 1.22 mV |
| 1 V/div | 19.00 mV | 15.25 mV | 15.70 mV | 11.20 mV |
MSO44 sareng MSO46, modeu Res Tinggi (RMS), 1 MΩ, khas
| V/div | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 200 μv | 140 μv | 120 μv | 75 μv |
| 2 mV/div | 200 μv | 140 μv | 120 μv | 75 μv |
| 5 mV/div | 210 μv | 150 μv | 130 μv | 75 μv |
| 10 mV/div | 230 μv | 160 μv | 150 μv | 80 μv |
| 20 mV/div | 280 μv | 200 μv | 200 μv | 100 μv |
| 50 mV/div | 520 μv | 370 μv | 410 μv | 180 μv |
| 100 mV/div | 1.24 mV | 880 μv | 930 μv | 460 μv |
| 1 V/div | 14.3 mV | 10.20 mV | 10.30 mV | 5.45 mV |
MSO44B sareng MSO46B, Modeu Rés Tinggi (RMS), 1 MΩ, khas
| V/div | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 200 μv | 150 μv | 120 μv | 70 μv |
| 2 mV/div | 210 μv | 150 μv | 120 μv | 70 μv |
| 5 mV/div | 220 μv | 160 μv | 130 μv | 70 μv |
| 10 mV/div | 230 μv | 170 μv | 150 μv | 75 μv |
| 20 mV/div | 300 μv | 230 μv | 220 μv | 100 μv |
| 50 mV/div | 550 μv | 450 μv | 450 μv | 200 μv |
| 100 mV/div | 1.35 mV | 1.00 mV | 1.03 mV | 480 μv |
| 1 V/div | 15.0 mV | 11.5 mV | 11.5 mV | 5.80 mV |
✔ Sadaya model, mode Rés Tinggi (RMS), 1 MΩ
| V/div | 500 MHz | 350 MHz | 250/200 MHz | 20 MHz |
| 1 mV/div | 259 μv | 181 μv | 155 μv | 96 μv |
| 2 mV/div | 259 μv | 181 μv | 155 μv | 96 μv |
| 5 mV/div | 271 μv | 194 μv | 168 μv | 96 μv |
| 10 mV/div | 298 μv | 206 μv | 194 μv | 103 μv |
| 20 mV/div | 363 μv | 259 μv | 259 μv | 129 μv |
| 50 mV/div | 674 μv | 479 μv | 531 μv | 233 μv |
| 100 mV/div | 1.609 mV | 1.141 mV | 1.206 mV | 596 μv |
| 1 V/div | 18.561 mV | 13.239 mV | 13.369 mV | 7.074 mV |
Reureuh antara saluran analog, rubakpita pinuh, has ≤ 100 ps pikeun sagala dua saluran kalawan impedansi input disetel ka 50 Ω, DC gandeng kalawan sarua Volts/div atawa luhur 10 mV/div
Kisaran Deskew MSO44, MSO46: -125 ns dugi ka +125 ns kalayan resolusi 40 ps
MSO44B, MSO46B: -125 ns nepi ka +125 ns kalawan resolusi 40 ps (pikeun Puncak ngadeteksi na Amplop mode akuisisi). -125 ns ka +125 ns kalawan resolusi 1 ps (pikeun sakabéh modus akuisisi séjén).
Crosstalk (isolasi saluran), khas ≥ 200: 1 nepi ka rubakpita anu dipeunteun pikeun dua saluran anu gaduh setélan Volts/div anu sami
Total kakuatan usik TekVPI + panganteur usik patuh: (4 per MSO44, 6 per MSO46) jeung 1 panganteur TekVPI pikeun Aux Dina
MSO46: 80 W maksimum (40 W maksimum pikeun saluran 1-3, 40 W maksimum pikeun saluran 4-6 jeung Aux In)
MSO44: 80 W maksimum (40 W maksimum pikeun saluran 1-3, 40 W maksimum pikeun saluran 4 jeung Aux In)
kakuatan usik per channel
| Voltage | Max Ampumur | Voltage Toleransi |
| 5 V | 60 mA | ± 10% |
| 12 V | 1.67 A (20 W wates software maksimum) | ± 10% |
TekVPI interconnect Sadaya inputs channel analog dina panel hareup luyu jeung spésifikasi TEKVPI.
Sistim Timebase
Samplaju le
| Kamampuh HW Max | Jumlah Saluran |
| 6.25 GS/s | 1-6 |
Kisaran laju gelombang interpolasi 500 GS/detik, 250 GS/detik, 125 GS/detik, 62.5 GS/detik, 25 GS/detik, jeung 12.5 GS/detik
Rékam rentang panjangna
Baku 1 k titik mun 31.25 M titik dina s tunggalample increments
Pilihan 62.5 M titik
Detik / rentang division
| Modél | 1 K | 10 K | 100 K | 1 M | 10 M | 31.25 M | 62.5 M |
| MSO4X Standar 31.25 M | 200 ps – 64 s | 200 ps – 640 s | 200 ps – 1000 s | N/A | |||
| MSO4X Pilihan 62.5 M | 200 ps – 64 s | 200 ps – 640 s | 200 ps – 1000 s | ||||
| MSO4BX Standar 31.25 M | 20 ps – 64 s | 20 ps – 640 s | 400 ps – 1000 s | ||||
| MSO4BX Pilihan 62.5 M | 20 ps – 64 s | 20 ps – 640 s | 400 ps – 1000 s | ||||
Laju akuisisi anu dipicu maksimal, saluran analog atanapi digital khas: saluran tunggal [saluran 8-bit Analog atanapi Digital] dina layar, pangukuran sareng math dipareuman. > 20 wfm/detik
FastAcq Update Rate (analog wungkul):> 500 K/detik kalawan hiji channel aktip tur> 100 K/detik kalawan sakabeh saluran aktip.
Saluran digital: > 20/detik kalayan hiji saluran (8-bit) aktip. Henteu aya FastAcq pikeun saluran digital, tapi aranjeunna henteu ngalambatkeun FastAcq pikeun saluran analog aktip. Kateupastian aperture ≤ 0.450 fs + (10
✔ Akurasi Timebase ± 2.5 x 10 -6 -11 * Durasi Pangukuran) dina interval waktu ≥1 ms. RMS , pikeun pangukuran anu durasina ≤ 100 mdet
| Katerangan | Spésifikasi |
| Toleransi pabrik | ± 5.0 x10-7 ; dina calibration, 25 °C ambient, leuwih sagala ≥1 ms interval. |
| Stabilitas suhu, khas | ± 5.0 x10-7 ; diuji dina suhu operasi. |
| Kristal sepuh | ± 1.5 x 10-6 ; toléransi frékuénsi robah dina 25 °C salila periode 1 taun. |
Akurasi pangukuran Delta-waktos, nominal
Rumus pikeun ngitung akurasi pangukuran délta-time (DTA) nominal puncak-ka-puncak atanapi rms pikeun setélan instrumen sareng sinyal input sapertos kieu (nganggap eusi sinyal anu teu penting di luhur frékuénsi Nyquist):

dimana:
N = wates sora dijamin input-rujukan (V)
SR 1 = Slew Rate (1 st Edge) sabudeureun 1 st RMS point dina pangukuran SR 2 = Slew Rate (2nd
Tepi) sakitar titik ka-2 dina pangukuran t = durasi pangukuran-delta (detik)
TBA = akurasi timebase atanapi Kasalahan Frékuénsi Rujukan ± 0.5 ppm p
(Assumes insignificant error due to aliasing or over-drive.)
Istilah dina tanda akar kuadrat nyaéta stabilitas sarta alatan TIE (Kasalahan Interval Waktu). Kasalahan alatan istilah ieu lumangsung sapanjang ukur hiji-shot. Istilah kadua alatan akurasi mutlak puseur-frékuénsi jeung stabilitas puseur-frékuénsi basis waktu sarta beda-beda antara sababaraha ukuran hiji-shot dina interval observasi (jumlah waktu ti pangukuran single-shot kahiji nepi ka single ahir. -ukuran shot).
Catetan: Rumus nganggap kasalahan diabaikan alatan interpolasi pangukuran, sarta lumaku ngan lamun interpolasi s.amplaju le nyaeta 25 GS / s atawa saluhureuna.
Sistem pemicu
Micu bandwidth (tepi, pulsa, sareng logika)
1.5 modél GHz, Tepi = 1.5 GHz
1.5 modél GHz, Pulsa jeung Logika = 1 GHz
1 modél GHz = 1 GHz
500 modél MHz = 500 MHz
350 modél MHz = 350 MHz
200 modél MHz = 200 MHz
Sensitipitas pemicu tipe-tepi, DC gandeng, has
| jalur | Rentang | Spésifikasi |
| Jalur 1 MΩ (sadaya model) | 0.5 mV / div ka 0.99 mV / div | 4.5 div ti DC ka rubakpita instrumen |
| ≥ 1 mV/div | Nu leuwih gede 5 mV atawa 0.7 div | |
| 50 Ω jalur, sadaya model | Nu leuwih gede ti 5.6 mV atawa 0.7 div pikeun frékuénsi antara DC jeung 500 MHz atawa rubakpita instrumen (mana nu leuwih handap) | |
| Nu leuwih gede ti 7 mV atawa 0.8 div pikeun frékuénsi luhur 500 MHz (lamun lumaku) |
Jitter pemicu, has ≤ 7 ps RMS
Sensitipitas pemicu tipe-tepi, sanés DC gandeng, khas
| Pemicu Gandeng | has Sensitipitas |
| BIRU REJ | 2.5 kali wates DC Gandeng |
| HF REJ | 1.0 kali wates DC Gandeng ti DC ka 50 kHz. Attenuates sinyal luhur 50 kHz. |
| LF REJ | 1.5 kali wates DC Gandeng pikeun frékuénsi luhur 50 kHz. Attenuates sinyal handap 50 kHz. |
Logika-tipe triggering, logika minimum atanapi rearm waktos, t has naek waktu instrumen. naék
| Micu ngetik | Pulsa lebar | Panangan deui waktos | skew waktos diperlukeun pikeun 100% tur euweuh triggering |
| Logika | 160 ps + tnaék | 160 ps + tnaék | > 360 ps / <150 ps |
| Waktu logika mumpuni | 320 ps + tnaék | 320 ps + tnaék | > 360 ps / <150 ps |
Pikeun Logika, waktu antara saluran nujul kana lilana waktu kaayaan logika asalna tina leuwih ti hiji saluran kudu aya pikeun dipikawanoh. Pikeun Kajadian, waktosna mangrupikeun waktos minimum antara acara utama sareng katunda anu bakal dikenal upami langkung ti hiji saluran dianggo.
Lebar pulsa jam minimum pikeun setup / tahan waktos ngalanggar pemicu, trise has nyaéta waktos naékna alat.
| Minimal lebar pulsa, jam aktip | Minimal lebar pulsa, jam teu aktif |
| 320 ps + tnaék | 320 ps + tnaék |
Lebar pulsa aktif nyaéta lebar pulsa jam ti ujung aktif na (sakumaha didefinisikeun dina item menu Tepi Jam) ka ujung teu aktif na. Lebar pulsa teu aktif nyaeta lebar pulsa ti ujung teu aktif nepi ka ujung aktif.#
Setup / tahan pemicu pelanggaran, setelan jeung tahan rentang waktu, has
| Fitur | Min | Max |
| Waktu Setup | 0 ns | 20 s |
| Tahan Waktu | 0 ns | 20 s |
| Setup + Tahan Waktu | 320 ps | 22 s |
Gandeng input dina jam sareng saluran data kedah sami.
Pikeun Waktos Setup, angka positip hartosna transisi data sateuacan jam.
Pikeun Tahan Time, angka positif hartina transisi data sanggeus ujung jam.
Setup + Hold Time mangrupikeun jumlah aljabar tina Setup Time sareng Hold Time anu diprogram ku pangguna.
Jenis pulsa pemicu, pulsa minimum, waktos rearm, waktos transisi
| Pulsa kelas | Minimal pulsa lebar | Minimal panangan deui waktos |
| Runt | 160 ps + tnaék | 160 ps + tnaék |
| Runt Waktos-Kualifikasi | 160 ps + tnaék | 160 ps + tnaék |
| Lebar | 160 ps + tnaék | 160 ps + tnaék |
| Laju Slew (waktos transisi minimum) | 160 ps + tnaék | 160 ps + tnaék |
Pikeun lebar kelas pemicu, lebar pulsa nujul kana lebar pulsa keur diukur. waktos Rearm nujul kana waktu antara pulsa.
Pikeun runt kelas pemicu, lebar pulsa nujul kana lebar pulsa keur diukur. waktos Rearm nujul kana waktu antara pulsa.
Pikeun laju slew kelas pemicu, lebar pulsa nujul kana waktos délta keur diukur. waktos Rearm nujul kana waktu nu diperlukeun sinyal meuntas dua thresholds pemicu deui. tnaék waktos naékna alat.
Lebar pulsa aktif nyaéta lebar pulsa jam ti ujung aktipna (sakumaha didefinisikeun dina menu Tepi Jam t.naék item) ka ujung anu teu aktip
Pulsewidth teu aktif nyaéta lebar pulsa ti ujung inaktif na tepi aktif na.
Pemicu waktos transisi, rentang waktos délta 160 ps ka 20 s.
Rentang waktu keur glitch, lebar pulsa, timeout, runt time-mumpuni, atawa jandela time-mumpuni triggering 160 ps nepi ka 20 s.
Akurasi waktos pikeun pulsa, glitch, timeout, atanapi micu lebar
| Waktos Rentang | Akurasi |
| 320 ps nepi ka 500 ns | ±(160 ps + (Waktu-Base-Akurasi * Setélan)) |
| 520 ns nepi ka 10 s | ±(160 ps + (Waktu-Base-Akurasi * Setélan)) |
B pemicu sanggeus kajadian, lebar pulsa minimum jeung frékuénsi acara maksimum, has
rubak pulsa minimum: 160 ps + tnaék
Frékuénsi acara maksimum: rubakpita instrumen. tnaék waktos naékna alat.
B pemicu, waktos minimum antara panangan jeung pemicu, has 320 ps
Pikeun pemicu sanggeus waktu, ieu téh waktu antara ahir periode waktu jeung acara pemicu B.
Pikeun pemicu sanggeus kajadian, ieu waktos antara panungtungan A micu acara jeung B munggaran micu acara.
B micu sanggeus waktu, rentang waktu 160 ps nepi ka 20 detik
B pemicu sanggeus acara, rentang acara 1 ka 65,471
Rentang tingkat pemicu
| Sumber | Rentang |
| Saluran naon waé | ± 5 divs ti puseur layar |
| Aux Dina pemicu, has | ± 8 V |
| Jalur | Dibereskeun kira-kira 50% tina garis voltage |
Spésifikasi ieu manglaku ka logika sareng ambang pulsa.
Rentang tahan pemicu 0 ns dugi ka 20 detik
spésifikasi pemicu serial
Pilihan panganteur beus serial triggering
Mangga tingal Serial Triggering jeung Analisis Datasheet, ayana dina tek.com, Pikeun émbaran ngeunaan pilihan pemicu serial sadia tur kamampuhan triggering maranéhna.
Sistim akuisisi digital
| saluran digital maksimum samplaju le | 6.25 GS/s |
| Deteksi transisi (deteksi puncak digital) | Data ditampilkeun dina sample ongkos kirang ti 6.25 GS / s (data decimated), nu ngandung sababaraha transisi antara samptitik le bakal dipintonkeun ku ujung warna bodas caang. |
| Digital-To-Analog pemicu skew | 3 ns |
| Digital ka digital skew | 3 ns tina bit 0 tina saluran TekVPI dugi ka bit 0 tina saluran TekVPI. |
| skew digital dina a | MSO44, MSO46: <160 ps dina sagala saluran TekVPI |
| Saluran Flex | MSO44B, MSO46B: <200 ps dina sagala saluran TekVPI |
Méter volt digital (DVM)
| Jenis pangukuran | DC, AC RMS + DC, AC RMS |
| Voltage resolusi | 4 angka |
✔ Voltage akurasi
| DC: | ±((1.5% * |maca – offset – posisi|) + (0.5% * |(offset – posisi)|) + (0.1 * Volt/div)) De-peunteun dina 0.100%/°C tina |maca - offset - posisi| di luhur 30 °C Sinyal ± 5 bagean ti puseur layar |
| AC: | MSO44, MSO46: ± 2% (40 Hz nepi ka 1 kHz) tanpa eusi harmonik di luar rentang 40 Hz nepi ka 1 kHz MSO44B, MSO46B: ± 3% (40 Hz nepi ka 1 kHz) tanpa eusi harmonik di luar rentang 40 Hz nepi ka 1 kHz AC, has: ± 2% (20 Hz nepi ka 10 kHz) Pikeun pangukuran AC, setélan vertikal saluran input kedah ngamungkinkeun sinyal input Vpp nutupan antara 4 jeung 10 divisi sarta kudu pinuh katingali dina layar |
counter frékuénsi pemicu
| ✔ Akurasi | ± (1 count + akurasi basis waktu * frékuénsi input) Sinyal kudu sahanteuna 8 mV pp atawa 2 div, whichever leuwih gede. |
| ✔ frékuénsi input maksimum | 10 Hz ka rubakpita maksimum saluran analog MSO44, MSO46: Sinyal kudu sahanteuna 8 mV atawa 2 div, whichever leuwih gede. MSO44B, MSO46B: Sinyalna kedah sahenteuna 8 mV pp pp atanapi 3 div, mana anu langkung ageung. |
| Resolusi | 8-angka |
Sistim Generator Fungsi Sawenang
Jenis fungsi Sawenang, sinus, pasagi, pulsa, ramp, segitiga, tingkat DC, Gaussian, Lorentz, naékna / ragrag eksponensial, dosa (x) / x, noise acak, Haversine, Cardiac
Amprentang litude Nilai anu puncak-ka-puncak voltages
| Gelombang | 50 Ω | 1 MΩ |
| Sawenang-wenang | 10 mV ka 2.5 V | 20 mV ka 5 V |
| sinus | 10 mV ka 2.5 V | 20 mV ka 5 V |
| pasagi | 10 mV ka 2.5 V | 20 mV ka 5 V |
| Pulsa | 10 mV ka 2.5 V | 20 mV ka 5 V |
| Ramp | 10 mV ka 2.5 V | 20 mV ka 5 V |
| segitiga | 10 mV ka 2.5 V | 20 mV ka 5 V |
| Gaussian | 10 mV ka 1.25 V | 20 mV ka 2.5 V |
| Lorentz | 10 mV ka 1.2 V | 20 mV ka 2.4 V |
| Naékna éksponénsial | 10 mV ka 1.25 V | 20 mV ka 2.5 V |
| Ragrag éksponénsial | 10 mV ka 1.25 V | 20 mV ka 2.5 V |
| Sinus(x)/x | 10 mV ka 1.5 V | 20 mV ka 3.0 V |
| Acak Noise | 10 mV ka 2.5 V | 20 mV ka 5 V |
| Haversine | 10 mV ka 1.25 V | 20 mV ka 2.5 V |
| Jantung | 10 mV ka 2.5 V | 20 mV ka 5 V |
S maksimumample laju 250 MS / s
fungsi sawenang catetan panjangna 128 KSamples
Bentuk gelombang sinus
rentang frékuénsi 0.1 Hz nepi ka 50 MHz
Resolusi setelan frékuénsi 0.1 Hz
Amplitude flatness, has MSO44, MSO46: ± 0.5 dB dina 1 kHz
MSO44B, MSO46B: ± 1.0 dB dina 1 kHz
± 1.5 dB dina 1 kHz pikeun <20 mV amplitudes
Total distorsi harmonik, pp has
MSO44, MSO46: 1% keur amplitude ≥ 200 mV kana beban 50 Ω
MSO44B, MSO46B: 1.5% keur amplitude ≥ 200 mV pp kana beban 50 Ω
MSO44, MSO46: 2.5% keur amplitude > 50 mV AND < 200 mV pp kana beban 50 Ω
MSO44B, MSO46B: 3.5% keur amplitude > 50 mV AND < 200 mV pp kana beban 50 Ω
Ieu kanggo gelombang sinus wungkul.
Spurious rentang dinamis bébas, has
MSO44, MSO46: 40 dB (V pp ≥ 0.1 V); 30 dB (V ≥ 0.02 V), 50 Ω beban MSO44B, MSO46B: 35 dB (V pp pp ≥ 0.2 V), 50 Ω beban
Kuadrat sareng gelombang pulsa
| rentang frékuénsi | 0.1 Hz nepi ka 25 MHz |
| Resolusi setelan frékuénsi | 0.1 Hz |
| Rentang siklus tugas | 10% - 90% atawa 10 ns pulsa minimum, whichever nu leuwih badag. |
| Resolusi siklus tugas | 0.10% |
| Lebar pulsa minimum, khas | 10 ns. Ieu mangrupikeun waktos minimum pikeun waktos on atanapi mareuman. |
| Waktos naék / ragrag, khas | MSO44, MSO46: 5.5 ns, 10% - 90% MSO44B, MSO46B: 6 ns, 10% - 90% |
| Resolusi lebar pulsa | 100 ps |
| Overshoot, has | MSO44, MSO46: < 4 % pikeun léngkah sinyal leuwih gede ti 100 mV MSO44B, MSO46B: <6% pikeun léngkah sinyal leuwih gede ti 100 mV pp pp Ieu lumaku pikeun overshoot tina transisi positif-akang (+ overshoot) jeung tina négatif-akang (-overshoot) transisi |
| Asimétri, has | ± 1% ± 5 ns, dina siklus tugas 50%. |
| Jitter, khas | < 60 ps TIE RMS , ≥ 100 mV pp amplitude, 40% -60% siklus tugas |
| frékuénsi maksimum cardiac | MSO44, MSO46: 1 MHz MSO44B, MSO46B: 500 kHz |
Ramp jeung bentuk gelombang segitiga
| rentang frékuénsi | 0.1 Hz nepi ka 500 kHz |
| Resolusi setelan frékuénsi | 0.1 Hz |
| Simétri variabel | 0% – 100% |
| Resolusi simétri | 0.10% |
| rentang tingkat DC | ± 2.5 V kana Hi-Z ± 1.25 V kana 50 Ω |
pulsa Gaussian, Haversine, sarta Lorentz pulsa
| Frékuénsi maksimum | 5 MHz |
| Naékna éksponénsial ragrag frékuénsi maksimum Sin(x)/x | 5 MHz |
| Frékuénsi maksimum | 2 MHz |
| Sora acak-acakan amprentang litud | 20 mV pp nepi ka 5 V kana Hi-Z 10 mV pp pp nepi ka 2.5 V jadi 50 Ω Pikeun duanana sinyal noise terasing jeung sinyal noise aditif. |
| ✔ Sinus, ramp, kuadrat jeung akurasi frékuénsi pulsa | 1.3 x 10 -4 (frékuénsi ≤10 kHz) 5.0 x 10 -5 (frékuénsi >10 kHz) |
| Sinyal ampresolusi litude | 1 mV (Hi-Z) 500 μV (50 Ω) |
| ✔ Sinyal ampakurasi litude | ± [ (1.5% tina puncak-ka-puncak ampsetelan litude) + (1.5% tina setelan offset DC mutlak) + 1 mV ] (frékuénsi = 1 kHz) |
| rentang offset DC | ± 2.5 V kana Hi-Z ± 1.25 V kana 50 Ω |
| résolusi offset DC | 1 mV (Hi-Z) 500 μV (50 Ω) |
| ✔ akurasi offset DC | ± [ (1.5% tina total offset voltage setting) + 1 mV ] Tambahkeun 3 mV kateupastian per 10 °C robah tina 25 °C ambient. Tingali catetan tés Akurasi Offset DC dina kaca 42 |
Sistim tampilan
| Jenis tampilan | MSO44, MSO46: Wewengkon tampilan - 11.38 inci (289 mm) (H) x 6.51 inci (165 mm) (V), 13.3 inci (338 inci) mm) diagonal, 6-bit warna RGB, TFT tampilan kristal cair (LCD) kalawan kapasitif touch MSO44B, MSO46B: aréa tampilan - 11.57 inci (293.76 mm) (H) x 6.5 inci (165.24 mm) (V), 13.3 inci ( 338 mm) diagonal, warna RGB 6-bit, tampilan kristal cair (LCD) kabeungkeut optik sareng touch kapasitif |
| Resolusi | 1,920 horisontal × 1,080 piksel nangtung |
| Luminance, has | MSO44, MSO46: 400 cd/m 2, (Minimum: 320 cd/m ) MSO44B, MSO46B: 270 cd/m 2 2 Luminance tampilan dieusian pikeun set tampilan anyar dina kacaangan pinuh. |
Sistim prosésor
prosésor host
MSO44, MSO46: Texas Instrumén AM5728
MSO44B, MSO46B: Intel x6413E dina 1.5 GHz (HFM) / 3.0 GHz (Turbo). Elkhart Lake 4-inti.
Sistem operasi Ditutup Linux
Input / Kaluaran spésifikasi port
Antarbeungeut Ethernet Konektor RJ-8 45-pin anu ngadukung 10/100/1000 Mb/s kaluaran sinyal Video Konektor HDMI 29-pin
MSO44, MSO46: resolusi dianjurkeun: 1920 x 1080 @ 60 Hz. Video kaluar bisa jadi teu panas pluggable.
Kabel HDMI panginten kedah digantelkeun sateuacan diaktipkeun pikeun fungsi tampilan ganda gumantung kana révisi firmware alat
MSO44B, MSO46B: resolusi nu dirojong: 1920 x 1080 @ 60 Hz wungkul. Rojongan colokan panas.
Antarbeungeut USB (Host, palabuhan Alat)
Panel hareup palabuhan USB Host: Tilu port USB 2.0 Hi-Speed
MSO44, MSO46: Panel pungkur palabuhan USB Host: Dua port USB 2.0 Hi-Speed
MSO44B, MSO46B: Panel pungkur palabuhan USB Host: Dua palabuhan USB 3.1 SuperSpeed
Panel pungkur port Alat USB: Hiji port USB 2.0 Hi-Speed Alat nyadiakeun rojongan USBTMC
Sinyal kompensator kaluaran sinyal voltage jeung frékuénsi, has
Kaluaran voltage amplitude: 2.5 V ± 2% (nominalna 0-2.5V)
Frékuénsi kaluaran: 1 kHz ± 25%
Impedansi sumber kaluaran nominalna 1kΩ
Output bantu, AUX OUT, Trigger Out, Event, atanapi Reference Clock Out
Output Selectable akuisisi pemicu Out
Rujukan Jam Out
AFG pemicu Kaluar
Akuisisi Pemicu Kaluar Pamaké transisi anu tiasa dipilih ti HIGH ka LOW, atanapi LOW ka HIGH, nunjukkeun pemicu anu lumangsung. Sinyal balik deui ka kaayaan samemehna saatos sakitar 100 ns
Jitter pemicu akuisisi 380 ps (puncak-ka-puncak)
Reference Clock Out Output jam rujukan ngalacak sistem akuisisi sareng tiasa dirujuk tina referensi jam internal atanapi referensi jam éksternal.
AFG Trigger Out Frekuensi kaluaran gumantung kana frékuénsi sinyal AFG sapertos anu dipidangkeun dina tabel ieu:
| AFG sinyal frékuénsi | AFT pemicu frékuénsi |
| ≤ 4.9 MHz | Frékuénsi sinyal |
| > 4.9 MHz nepi ka 14.7 MHz | Frékuénsi sinyal / 3 |
| > 14.7 MHz nepi ka 24.5 MHz | Frékuénsi sinyal / 5 |
| > 24.5 MHz nepi ka 34.3 MHz | Frékuénsi sinyal / 7 |
| > 34.3 MHz nepi ka 44.1 MHz | Frékuénsi sinyal / 9 |
| > 44.1 MHz nepi ka 50 MHz | Frékuénsi sinyal / 11 |
AUX OUT Kaluaran Voltage
| Ciri | Watesan |
| Vout (HI) | ≥ 2.5 V sirkuit kabuka; ≥ 1.0 V kana beban 50 Ω ka taneuh |
| Vout (LO) | ≤ 0.7 V kana beban ≤ 4 mA; ≤0.25 V kana beban 50 Ω ka taneuh |
Input rujukan éksternal
Frékuénsi input nominal 10 MHz
Toleransi Variasi Frékuénsi 9.99996 MHz nepi ka 10.00004 MHz (± 4.0 x 10
Sensitipitas, V has dina 1.5 V ngagunakeun terminasi 50 Ω
Sinyal input maksimum 7 V pp pp -6 ) Impedansi MSO44, MSO46: 1.2 K Ohms ± 20% sajajar jeung 18 pf ± 5 pf dina 10 MHz MSO44B, MSO46B: 800 Ohms ± 20% kalawan 18 pf ± 20% ka taneuh 10 MHz
spésifikasi gudang data
waktos ingetan nonvolatile memori, has
Taya wates waktu pikeun setelan panel hareup, bentuk gelombang disimpen, setups, lisénsi produk, sarta konstanta calibration.
Jam real-time Jam anu tiasa diprogram anu nyayogikeun waktos dina taun, bulan, dinten, jam, menit, sareng detik.
MSO44 na MSO46 kapasitas memori Nonvolatile
32 GB MMC primér Nyimpen sistem operasi, software aplikasi sareng data pabrik. Taya data pamaké
32 GB Toko MMC sekundér disimpen setups na gelombang, setélan Ethernet, log files, data pamaké sarta setélan pamaké
Mémori EEPROM 2 Kbit dina papan utama anu nyimpen nomer séri instrumen, itungan ngamimitian alat, total data pabrik uptime, kecap akses pilihan kaamanan, sareng kecap akses pilihan kaamanan anu tiasa diatur ku pangguna.
1 Kbit EEPROM Mémori dina papan utama anu nyimpen data pabrik controller manajemén kakuatan
1 KB Flash Mémori Mémori dina papan utama nu nyimpen SODIMM data konfigurasi memori (SPD). Dua nepi ka opat lembar gumantung kana model
32 KB Flash Mémori Mémori dina dewan utama nu nyimpen firmware mikrokontroler. Dua lembar
64 KB Flash Mémori Mémori dina dewan utama nu nyimpen firmware mikrokontroler. Dua lembar
MSO44B na MSO46B kapasitas memori Nonvolatile
eMMC 64G Nyimpen sistem operasi Linux instrumen host, parangkat lunak aplikasi, sareng data pangguna kalebet bentuk gelombang sareng hasil pangukuran, sareng setélan instrumen.
Nyimpen data pamaké sareng setélan pamaké Ditulis ngaliwatan antarbeungeut pamaké (UI), operasi software aplikasi, operasi pabrik jeung paréntah programmatic Tempatna dina Processor Board Pamaké diaksés Pikeun mupus, nyabut jeung dispose dewan processor.
Pikeun ngabersihan, cabut sareng miceun papan prosesor NOR Flash 32 MB Toko bootloader host prosésor Henteu aya data pangguna
Métode aksés henteu langsung Ditulis ku operasi pabrik Tempatna dina Papan Prosesor Henteu tiasa diaksés ku pangguna Ngabersihan atanapi sanitasi: Teu lumaku, henteu ngandung data atanapi setélan pangguna 2 Kbit EEPROM Nyimpen data pabrik, data pangropéa Henteu aya data pangguna Métode aksés henteu langsung Ditulis ku operasi pabrik Tempatna di Papan Utama Pamaké diaksés Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
1 Kbit EEPROM Nyimpen data pabrik controller manajemén kakuatan, data pangropéa Taya data pamaké Métode aksés teu langsung Ditulis ku operasi software aplikasi Tempatna dina Board Akuisisi Teu bisa diakses pamaké Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
1 Kbit EEPROM Nyimpen data konfigurasi mémori prosésor host (SPD) Teu aya data pamaké Métode aksés teu langsung Ditulis ku operasi pabrik Tempatna dina Papan Prosesor Teu bisa diaksés ku pamaké Ngabersihan atawa sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan.
1 KB Flash Memory Dua nepi ka opat lembar gumantung model Nyimpen data konfigurasi memori SODIMM (SPD) Taya data pamaké Métode aksés teu langsung Ditulis ku operasi pabrik Tempatna dina Board Akuisisi Teu bisa diakses ku pamaké.
Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan 32 KB Flash Memory Stores power management micro-controller firmware Taya data pamaké Métode aksés teu langsung Ditulis ku operasi software aplikasi. diaksés Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
32 KB FRAM Mémori Nyimpen pangurutan kakuatan prosésor host firmware mikro-kontroler Taya data pamaké Métode aksés teu langsung Ditulis ku operasi software aplikasi.
64 KB Flash Mémori Toko analog hareup tungtung mikro-controller firmware Taya data pamaké
Métode aksés henteu langsung
Ditulis ku operasi software aplikasi
Internal kana KL14 mikro-kontroler dina Board akuisisi Teu pamaké diaksés
Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
256 KB Flash Mémori Nyimpen panel hareup mikro-controller firmware Taya data pamaké
Métode aksés henteu langsung
Ditulis ku operasi software aplikasi
Internal kana TIVA TM4C mikro-kontroler dina Board akuisisi Teu pamaké diaksés
Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
64 MB Flash Mémori Nyimpen konfigurasi FPGA
Taya data pamaké
Métode aksés henteu langsung
Ditulis ku operasi software aplikasi
Lokasina dina Board akuisisi
Henteu tiasa diaksés ku pangguna
Clearing atanapi sanitizing: Teu lumaku, teu ngandung data pamaké atawa setelan
64 MB Flash Mémori Nyimpen salinan cadangan konfigurasi FPGA
Taya data pamaké
Métode aksés henteu langsung
Ditulis ku operasi software aplikasi
Lokasina dina Board akuisisi
Teu bisa diaksés ku pamaké Ngabersihan atawa sanitasi: Teu lumaku, teu ngandung data pamaké atawa setelan
Sistim suplai kakuatan
Kakuatan
| Konsumsi kakuatan | 400 Watts maksimum |
| Sumber voltage | 100 – 240 V ± 10% (50 Hz nepi ka 60 Hz) |
| Frékuénsi sumber | 50 Hz nepi ka 60 Hz ± 10%, dina 100 – 240 V ± 10% |
| Peunteun sekering | 12.5 A, 250 Vac |
Ciri kaamanan
Sertifikasi Kasalametan AS NRTL Didaptarkeun - UL61010-1 sareng UL61010-2-030
Sertifikasi Kanada - CAN / CSA-C22.2 No 61010.1 sareng CAN / CSA-C22.2 No 61010.2.030
Patuh EU - Low Voltage Diréktif 2014-35-EU jeung EN61010-1.
Patuh Internasional - IEC 61010-1 sareng IEC61010-2-030
Gelar polusi Gelar polusi 2, di jero ruangan, panggunaan lokasi garing wungkul
Spésifikasi listrik Pangukuran CAT II (300V)
spésifikasi lingkungan
Suhu
Operasi +0 °C nepi ka +50 °C (32 °F nepi ka 122 °F)
MSO44 non-operasi, MSO46: -30 °C nepi ka +70 °C (-22 °F nepi ka 158 °F)
MSO44B, MSO46B: -20 °C nepi ka +60 °C (-4 °F nepi ka 140 °F)
Kalembaban
Operasi 5% nepi ka 90% kalembaban relatif (% RH) nepi ka +40 °C
5% nepi ka 50% RH di luhur +40 °C nepi ka +50 °C, noncondensing, sarta sakumaha diwatesan ku suhu baseuh-bohlam maksimum +39 °C
Non-operasi 5% nepi ka 90% kalembaban relatif (% RH) nepi ka +40 °C
5% nepi ka 50% RH di luhur +40 °C nepi ka +50 °C, noncondensing, sarta sakumaha diwatesan ku suhu baseuh-bohlam maksimum +39 °C
Luhurna
Operasi Nepi ka 3,000 méter (9,843 suku)
Non-operasi Nepi ka 12,000 méter (39,370 suku)
Operasi acak Geter MSO44B, MSO46B: 0.31 GRMS, 5-500 Hz, 10 menit per sumbu, 3 sumbu (total 30 menit)
Operasi guncangan mékanis MSO44B, MSO46B: Guncangan mékanis satengah sinus, puncak 40 g amplitude, durasi 11 msec, 3 tetes dina unggal arah unggal sumbu (18 total)
spésifikasi mékanis
Diménsi
Jangkungna 11.299 inci (286.99 mm) kalayan suku dilipat, gagang ka tukang 13.8 inci (351 mm) kalayan suku narilep, gagang ka luhur
lebar 15.9 di (405 mm) ti cecekelan hub pikeun cecekelan hub
Jerona 6.1 inci (155 mm) ti tukang suku ka hareup kenop, cecekelan nepi 10.4 inci (265 mm) suku narilep di, cekelan ka tukang
Beurat MSO44, MSO46: <16.8 lbs (7.6 kg)
MSO44B: <16.55 lbs (7.5 kg)
MSO46B: <16 lbs (7.3 kg)
Cooling Sarat clearance pikeun cooling nyukupan nyaéta 2.0 in (50.8 mm) di sisi katuhu alat (lamun viewed ti hareup) jeung di tukangeun instrumen
Unit Rackmount pas kana konfigurasi rackmount (7U)
MSO44B jeung MSO46B Noise karungu
Noise karungu (noise kipas) dihasilkeun ku alat dina suhu ambient (=28°C): = 47 dB
Alat konci Kensington kalebet konci Kensington
Prosedur verifikasi kinerja
Bab ieu ngandung prosedur verifikasi kinerja pikeun spésifikasi anu ditandaan ku simbol ✔. Alat-alat di handap ieu, atanapi sarimbag anu cocog, diperyogikeun pikeun ngalengkepan prosedur ieu. Prosedur verifikasi kinerja pariksa kinerja alat Anjeun. Aranjeunna teu nyaluyukeun alat Anjeun. Upami alat anjeun gagal tina salah sahiji tes verifikasi kinerja, malikan deui tes anu gagal, pariksa yén alat sareng setelan tés leres. Lamun instrumen terus gagal test a, kontak Tektronix Rojongan Palanggan pikeun pitulung.
Prosedur ieu nyertakeun sadaya instrumen MSO 4 Series. Parantosan prosedur verifikasi kinerja henteu ngamutahirkeun waktos sareng tanggal alat.
Nyitak catetan tés dina kaca di handap ieu sareng dianggo pikeun ngarékam hasil tés kinerja pikeun osiloskop anjeun. Teu malire cék sareng rékaman tés anu henteu dianggo pikeun modél khusus anu anjeun uji.
Tabel di handap daptar parabot diperlukeun. Anjeun panginten peryogi kabel sareng adaptor tambahan, gumantung kana alat uji anu anjeun anggo.
| Dibutuhkeun parabot | Minimal syarat | Examples |
| DC voltage sumber | 3 mV ka 4 V, akurasi ± 0.1%. | Fluke 9500B Oscilloscope Calibrator sareng 9530 Output Module |
| Generator gelombang sinus leveled | 50 kHz nepi ka 2 GHz, ± 4% ampakurasi litude | |
| Generator tanda waktos | Periode 80 ms, ± 1.0 x 10-6 akurasi, waktos naék <50 ns | |
| usik logika | Low capacitance digital usik, 8 saluran. | TLP058 usik |
| BNC-to-0.1 inci adaptor pin pikeun nyambungkeun usik logika ka sumber sinyal. | adaptor pin BNC-to-0.1 inci; bikang BNC ka 2 × 16 .01 headers pin inci. | Jumlah bagian adaptor Tektronix 878-1429-00; pikeun nyambungkeun Fluke 9500B ka usik TLP058. |
| Multimeter digital (DMM) | 0.1% akurasi atawa hadé | Tektronix DMM4020 |
| Hiji terminator 50 Ω | Impedansi 50 Ω; panyambungna: input BNC bikangna, kaluaran BNC jalu | Jumlah bagian Tektronix 011-0049-02 |
| Hiji kabel BNC 50 Ω | Panyambung jalu-ka-jalu | Jumlah bagian Tektronix 012-0057-01 |
| Beurit optik | USB, PS2 | Jumlah bagian Tektronix 119-7054-00 |
| generator sinyal vektor RF | Bandwidth maksimum alat | Tektronix TSG4100A |
catetan tés
Inpormasi instrumen, catetan tés diri
| Modél | Serial # | Prosedur anu dilakukeun ku | titimangsa |
| Tes | Lulus | Gagal |
| Uji Diri |
Input catetan tés impedansi
| Input Impedansi | ||||
| Performance cék | Nangtung skala | Lemah wates | Tes hasilna | Luhur wates |
| Sadayana modél | ||||
| Saluran 1 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 1 Input Impedansi, 50 Ω |
10 mV/div | 49.5 Ω | 50.5 Ω | |
| 100 mV/div | 49.5 Ω | 50.5 Ω | ||
| Saluran 2 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 2 Input Impedansi, 50 Ω |
10 mV/div | 49.5 Ω | 50.5 Ω | |
| 100 mV/div | 49.5 Ω | 50.5 Ω | ||
| Saluran 3 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 3 Input Impedansi, 50 Ω |
10 mV/div | 49.5 Ω | 50.5 Ω | |
| 100 mV/div | 49.5 Ω | 50.5 Ω | ||
| Saluran 4 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 4, Input Impedansi, 50 Ω |
10 mV/div | 49.5 Ω | 50.5 Ω | |
| 100 mV/div | 49.5 Ω | 50.5 Ω | ||
| Input Impedansi | ||||
| Performance cék | Nangtung skala | Lemah wates | Tes hasilna | Luhur wates |
| 6 Saluran Modél | ||||
| Saluran 5 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 5 Input Impedansi, 50 Ω |
10 mV/div | 49.5 Ω | 50.5 Ω | |
| 100 mV/div | 49.5 Ω | 50.5 Ω | ||
| Saluran 6 Input Impedansi, 1 MΩ |
100 mV/div | 990 kΩ | 1.01 MΩ | |
| Saluran 6 Input | 10 mV/div | 49.5 Ω | 50.5 Ω | |
| Impedansi, 50 Ω | 100 mV/div | 49.5 Ω | 50.5 Ω | |
DC Gain catetan tés akurasi
| DC Keuntungan Akurasi | |||||
| cék kinerja | Bandwidth | Skala nangtung | Wates handap | Hasil tés | Wates luhur |
| Sadaya model | |||||
| Saluran 1 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 50 0 | 20 MHz | 1 mV/div | -2.5% | 2.5% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| Saluran 1 DC gain akurasi, 0 V offset, 0 V posisi nangtung, 1 MO | 20 MHz | 1 mV/div | -2% | 2% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| DC Keuntungan Akurasi | |||||
| Performance cék | Bandwidth | Skala nangtung | Wates handap | Hasil tés | Wates luhur |
| Sadaya model | |||||
| Saluran 2 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 50 0 | 20 MHz | 1 mV/div | -2.5% | 2.5% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| Saluran 2 DC Gain akurasi, 0 V offset, 0 V posisi nangtung, 1 MO | 20 MHz | 1 mV/div | -2% | 2% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mVldiv | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
DC Keuntungan Akurasi
| cék kinerja | Bandwidth | Skala nangtung | Wates handap | Hasil tés | Wates luhur |
| Sadaya model | |||||
| Saluran 3 DC Gain | 20 MHz | 1 mV/div | _sakumaha | I% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mVldiv | -1% | 1% | |||
| 200 mVldiv, | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| Saluran 3 DC Keuntungan |
20 MHz | 1 mV/div | -2% | 2% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mVldiv, | -1% | 1% | |||
| 200 mVldiv | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| DC Keuntungan Akurasi | |||||
| Performance cék | Bandwidth | Skala nangtung | Wates handap | Hasil tés | Wates luhur |
| Sadaya model | |||||
| Saluran 4 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 50 0 | 20 MHz | 1 mV/div | -2.5% | 2.5% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| Saluran 4 DC Gain akurasi, 0 V offset, 0 V posisi nangtung, 1 MO | 20 MHz | 1 mV/div | -2% | 2% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| DC Keuntungan Akurasi | ||||||
| Performance cék | Bandwidth | Skala nangtung | Wates handap | Hasil tés | Wates luhur | |
| 6 modél saluran | ||||||
| Saluran 5 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 50 0 | 20 MHz | 1 mV/div | -2.5% | 2.5% | ||
| 2 mV/div | -1% | 1% | ||||
| 5 mV/div | -1% | 1% | ||||
| 10 mV/div | -1% | 1% | ||||
| 20 mVldiv | -1% | 1% | ||||
| 50 mVldiv | -1% | 1% | ||||
| 100 mV/div | -1% | 1% | ||||
| 200 mV/div | -1% | 1% | ||||
| 500 mV/div | -1% | 1% | ||||
| 1 V/div | -1% | 1% | ||||
| 250 MHz | 20 mV/div | -1% | 1% | |||
| FULL | 20 mVldiv | -1% | 1% | |||
| Saluran 5 DC gain akurasi, 0 V offset, 0 V posisi nangtung, 1 MO | 20 MHz | 1 mV/div | -2% | 2% | ||
| 2 mV/div | -1% | 1% | ||||
| 5 mV/div | -1% | 1% | ||||
| 10 mV/div | -1% | 1% | ||||
| 20 mVldiv | -1% | 1% | ||||
| 50 mV/div | -1% | 1% | ||||
| 100 mV/div | -1% | 1% | ||||
| 200 mV/div | -1% | 1% | ||||
| 500 mV/div | -1% | 1% | ||||
| 1 V/div | -1% | 1% | ||||
| 250 MHz | 20 mV/div | -1% | 1% | |||
| FULL | 20 mVldiv | -1% | 1% | |||
| DC Keuntungan Akurasi | |||||
| Performance cék | Bandwidth | Nangtung skala | Lemah wates | Tes hasilna | Luhur wates |
| 6 saluran modél | |||||
| Saluran 6 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 50 Ω | 20 MHz | 1 mV/div | -2.5% | 2.5% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
| Saluran 6 DC Gain Akurasi, 0 V offset, 0 V posisi nangtung, 1 MΩ | 20 MHz | 1 mV/div | -2% | 2% | |
| 2 mV/div | -1% | 1% | |||
| 5 mV/div | -1% | 1% | |||
| 10 mV/div | -1% | 1% | |||
| 20 mV/div | -1% | 1% | |||
| 50 mV/div | -1% | 1% | |||
| 100 mV/div | -1% | 1% | |||
| 200 mV/div | -1% | 1% | |||
| 500 mV/div | -1% | 1% | |||
| 1 V/div | -1% | 1% | |||
| 250 MHz | 20 mV/div | -1% | 1% | ||
| FULL | 20 mV/div | -1% | 1% | ||
DC offset catetan tés akurasi
Anggo nilai offset nangtung pikeun kaluaran calibrator sareng setting offset oscilloscope.
| Ngimbangan Akurasi | |||||
| Performance cék | Nangtung skala | Nangtung ngimbangan | Lemah wates | Tes hasilna | Luhur wates |
| Sadayana modél | |||||
| Saluran 1 DC akurasi offset, 20 MHz BW, 50 Ω | 1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Saluran 1 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
| Saluran 2 DC akurasi offset, 20 MHz BW, 50 Ω | 1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Saluran 2 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
| Saluran 3 DC akurasi offset, 20 MHz BW, 50 Ω | 1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Ngimbangan Akurasi | |||||
| Performance cék | Nangtung skala | Nangtung ngimbangan | Lemah wates | Tes hasilna | Luhur wates |
| Saluran 3 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
| Saluran 4 DC akurasi offset, 20 MHz BW, 50 Ω | 1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Saluran 4 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
| 6 saluran modél | |||||
| Saluran 5 DC akurasi offset, 20 MHz BW, 50 Ω |
1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Ngimbangan Akurasi | |||||
| Performance cék | Nangtung skala | Nangtung ngimbangan | Lemah wates | Tes hasilna | Luhur wates |
| Saluran 5 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
| Saluran 6 DC akurasi offset, 20 MHz BW, 50 Ω | 1 mV/div | 900 mV | 890.8 mV | 909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 5.0 V | 4.93 V | 5.07 V | ||
| 100 mV/div | -5.0 V | -5.07 V | -4.93 V | ||
| Saluran 6 DC akurasi offset, 20 MHz BW, 1 MΩ | 1 mV/div | 900 mV | 890.8 mV | -909.2 mV | |
| 1 mV/div | -900 mV | -909.2 mV | -890.8 mV | ||
| 100 mV/div | 9.0 V | 8.89 V | 9.11 V | ||
| 100 mV/div | -9.0 V | -9.11 V | -8.89 V | ||
| 500 mV/div | 9.0 V | 8.81 V | 9.19 V | ||
| 500 mV/div | -9.0 V | -9.19 V | -8.81 V | ||
| 1.01 mV/div | 99.5 V | 98.303 V | 100.697 V | ||
| 1.01 mV/div | -99.5 V | -100.697 V | -98.303 V | ||
| 5 mV/div | 99.5 V | 97.505 V | 101.495 V | ||
| 5 mV/div | -99.5 V | -101.495 V | -97.505 V | ||
Analog Bandwidth catetan test
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 1 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 1 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 2 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 2 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 3 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 3 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 4 | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 4 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 5 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 5 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| cék kinerja Bandwidth Analog | |||||||
| Bandwidth dina Saluran | Impedansi | Skala nangtung | Skala horisontal | Vin-pp | Vbw-pp | Wates | Hasil uji Gain = Vbw-pp/ Vin-pp |
| Saluran 6 | 50 Ω | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 6 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 modél GHz | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 1 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 1 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 2 | 50 Ω | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 2 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 3 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 3 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 4 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 4 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 GHz MSO46 | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 5 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 5 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 6 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 6 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 500 MHz modél | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 1 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 1 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 2 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 2 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 3 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 3 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 4 | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 4 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 500 MHz modél (MSO46) | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 5 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 5 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 6 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 6 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 350 MHz modél | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 1 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 1 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 2 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 2 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 3 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 3 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 4 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 4 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Genep saluran modél (MSO46) | |||||||
| Analog Bandwidth kinerja cék | ||||||
| Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp | |
| 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | ||||
| 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | ||||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | ||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | ||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | ||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | ||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | ||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | ||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 6 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 6 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 200 MHz | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 1 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 1 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 2 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 2 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 3 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 3 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 4 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 4 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Genep saluran modél (MSO46) | |||||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 5 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 5 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| Analog Bandwidth kinerja cék | |||||||
| Bandwidth di Saluran | Impedansi | Nangtung skala | Horizontal skala | Vdi-pp | Vbw-pp | Wates | Hasil tés Keuntungan = Vbw-pp/ Vdi-pp |
| Saluran 6 | 50 Ω | 1 mV/div | 5 ns/div (BW Pinuh) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (BW Pinuh) | ≥ 0.707 | |||||
| Saluran 6 | 1 MΩ, ilaharna | 1 mV/div | 5 ns/div (500 MHz) | ≥ 0.707 | |||
| 2 mV/div | 2.5 ns/div (500 MHz) | ≥ 0.707 | |||||
| 5 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 10 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 50 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 100 mV/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
| 1 V/div | 1 ns/div (500 MHz) | ≥ 0.707 | |||||
Acak Noise High Res catetan test mode akuisisi
MSO44 na MSO46 Random Noise High Res catetan test mode akuisisi
tabél catetan test handap ngarojong 4 model Series MSO (MSO44 na MSO46).
| Random Noise, Sampmodeu akuisisi le: MSO44 na MSO46 1.5 model GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| MSO44, MSO46 Saluran 1 | 1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44, MSO46 Saluran 2 | 1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| Random Noise, Sampmodeu akuisisi le: MSO44 na MSO46 1.5 model GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44, MSO46 Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| Random Noise, Sampmodeu akuisisi le: MSO44 na MSO46 1.5 model GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44, MSO46
Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO46 Saluran 5 | 1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| Random Noise, Sampmodeu akuisisi le: MSO44 na MSO46 1.5 model GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO46 Saluran 6 | 1 mV/div | Pinuh | 0.259 | 0.635 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.259 | 0.635 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.271 | 0.817 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.843 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.363 | 0.92 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.674 | 1.582 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.609 | 3.686 | |||
| wates 250 MHz | ||||||
| Acak bising, Sample akuisisi mode: MSO44 na MSO46 1.5 modél GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | ||||||
| 1 V/div | Pinuh | 18.561 | 23.753 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| Noise acak, mode akuisisi High Res: MSO44 jeung MSO46 model 1 GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| Modél 1 GHz (sadayana modél) | ||||||
| MSO44, MSO46 Saluran 1 | 1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 2 | 1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 1 GHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 1 GHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 1 GHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 1 GHz modél (6 saluran modél) | ||||||
| MSO46 Saluran 5 | 1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO46 Saluran 6 | 1 mV/div | Pinuh | 0.259 | 0.336 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.394 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.434 | |||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 1 GHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.551 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 2.102 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 16.874 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 500 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 500 MHz modél (sadayana modél) | ||||||
| MSO44, MSO46 Saluran 1 | 1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 500 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 2 |
1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 500 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46
Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 500 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| 500 MHz modél (6 saluran modél) | ||||||
| MSO46 Saluran 5 | 1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 500 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| MSO46 Saluran 6 | 1 mV/div | Pinuh | 0.259 | 0.259 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.259 | 0.259 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.271 | 0.304 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.356 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.363 | 0.466 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.674 | 1.038 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.609 | 1.596 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 18.561 | 12.85 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 350 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 350 MHz modél (sadayana modél) | ||||||
| MSO44, MSO46 Saluran 1 |
1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 350 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46
Saluran 2 |
1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 350 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46
Saluran 3 |
1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO44, MSO46 Saluran 4 |
1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 350 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| Modél 350 MHz (model 6 saluran) | ||||||
| Saluran MSO46 5 | 1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| Acak bising, Luhur Res akuisisi mode: MSO44 jeung MSO46 350 MHz modél | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
| MSO46 Saluran 6 | 1 mV/div | Pinuh | 0.181 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.181 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.194 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.096 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.206 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.103 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.259 | 0.349 | |||
| wates 250 MHz | 0.259 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.479 | 0.139 | |||
| wates 250 MHz | 0.531 | 0.596 | ||||
| 20 MHz | 0.233 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.141 | 1.349 | |||
| wates 250 MHz | 1.206 | 1.349 | ||||
| 20 MHz | 0.596 | 0.609 | ||||
| 1 V/div | Pinuh | 13.239 | 11.617 | |||
| wates 250 MHz | 13.369 | 11.617 | ||||
| 20 MHz | 7.074 | 4.906 | ||||
MSO44B na MSO46B Random Noise High Res catetan test mode akuisisi
tabél catetan test handap ngarojong 4 model Series B MSO (MSO44B na MSO46B).
| Acak Noise, Sampmodeu akuisisi le: MSO44B na MSO46B 1.5 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| MSO44B, MSO46B
Saluran 1 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44B, MSO46B
Saluran 2 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| Random Noise, Sampmodeu akuisisi le: MSO44B na MSO46B 1.5 model GHz | ||||||
| cék kinerja | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Hasil tés (mV) | Wates luhur (mV) | Hasil tés (mV) | Wates luhur (mV) |
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44B, MSO46B
Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| Acak Noise, Sampmodeu akuisisi le: MSO44B na MSO46B 1.5 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO44B, MSO46B Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO46B Saluran 5 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| Acak Noise, Sampmodeu akuisisi le: MSO44B na MSO46B 1.5 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| MSO46B Saluran 6 |
1 mV/div | Pinuh | 0.259 | 0.674 | ||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 2 mV/div | Pinuh | 0.271 | 0.674 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 5 mV/div | Pinuh | 0.284 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 10 mV/div | Pinuh | 0.298 | 0.804 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 20 mV/div | Pinuh | 0.389 | 0.933 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 50 mV/div | Pinuh | 0.713 | 1.687 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| Acak Noise, Sampmodeu akuisisi le: MSO44B na MSO46B 1.5 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 100 mV/div | Pinuh | 1.752 | 3.894 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| 1 V/div | Pinuh | 19.47 | 27.258 | |||
| wates 250 MHz | ||||||
| 20 MHz | ||||||
| Acak bising, modeu akuisisi High Res: MSO44B na MSO46B 1 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) | |
| 1 GHz modél (sadayana modél) | ||||||
| MSO44B, MSO46B
Saluran 1 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| Acak bising, modeu akuisisi High Res: MSO44B na MSO46B 1 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) | |
| MSO44B, MSO46B
Saluran 2 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| Acak bising, modeu akuisisi High Res: MSO44B na MSO46B 1 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) | |
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| Acak bising, modeu akuisisi High Res: MSO44B na MSO46B 1 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) | |
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| 1 GHz modél (6 saluran modél) | ||||||
| MSO46B
Saluran 5 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO46B
Saluran 6 |
1 mV/div | Pinuh | 0.259 | 0.363 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.363 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.389 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| Acak bising, modeu akuisisi High Res: MSO44B na MSO46B 1 model GHz | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) | |
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.427 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.544 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.038 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 2.141 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 16.874 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 500 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 500 MHz modél (sadayana modél) | ||||||
| MSO44B, MSO46B Saluran 1 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 500 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 2 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 500 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| MSO44B, MSO46B
Saluran 3 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 4 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 500 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| 500 MHz modél (6 saluran modél) | ||||||
| MSO46B Saluran 5 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 500 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO46B Saluran 6 |
1 mV/div | Pinuh | 0.259 | 0.271 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.271 | 0.271 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.284 | 0.298 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.298 | 0.336 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.389 | 0.454 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.713 | 1.012 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.752 | 1.674 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 19.47 | 12.98 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 350 MHz modél (sadayana modél) | ||||||
| MSO44B, MSO46B Saluran 1 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 2 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO44B, MSO46B Saluran 3 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| MSO44B, MSO46B
Saluran 4 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| 350 MHz modél (6 saluran modél) | ||||||
| MSO46B Saluran 5 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
| MSO46B Saluran 6 |
1 mV/div | Pinuh | 0.194 | 0.194 | ||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 2 mV/div | Pinuh | 0.194 | 0.194 | |||
| wates 250 MHz | 0.155 | 0.161 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 5 mV/div | Pinuh | 0.206 | 0.239 | |||
| wates 250 MHz | 0.168 | 0.174 | ||||
| 20 MHz | 0.090 | 0.096 | ||||
| 10 mV/div | Pinuh | 0.220 | 0.284 | |||
| wates 250 MHz | 0.194 | 0.206 | ||||
| 20 MHz | 0.096 | 0.103 | ||||
| 20 mV/div | Pinuh | 0.298 | 0.349 | |||
| wates 250 MHz | 0.284 | 0.298 | ||||
| 20 MHz | 0.129 | 0.141 | ||||
| 50 mV/div | Pinuh | 0.584 | 0.739 | |||
| wates 250 MHz | 0.584 | 0.596 | ||||
| 20 MHz | 0.259 | 0.259 | ||||
| 100 mV/div | Pinuh | 1.298 | 1.349 | |||
| wates 250 MHz | 1.336 | 1.349 | ||||
| 20 MHz | 0.622 | 0.609 | ||||
| Acak bising, Mode akuisisi High Res: MSO44B sareng MSO46B 350 MHz model | ||||||
| Performance Cék | 1 MΩ | 50 Ω | ||||
| Saluran | V/div | Bandwidth | Tes hasilna (mV) | Luhur wates (mV) | Tes hasilna (mV) | Luhur wates (mV) |
| 1 V/div | Pinuh | 14.927 | 11.617 | |||
| wates 250 MHz | 14.927 | 11.617 | ||||
| 20 MHz | 7.528 | 4.906 | ||||
jangka panjang sample laju ngaliwatan AFG DC offset catetan tés akurasi
| Panjang istilah Sample Ongkoh | |||
| Performance cék | Lemah wates | Tes hasilna | Luhur wates |
| Jangka Panjang Sample Laju | -2 divisi | +2 divisi | |
| Digital bangbarung Akurasi, has | ||||||
| Performance cék: | ||||||
| Digital saluran | bangbarung | Vs– | Vs+ | Lemah wates | Tes hasilna | Luhur wates |
| Sadayana modél | ||||||
| Saluran 1 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| Saluran 2 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| Saluran 3 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| Digital bangbarung Akurasi, has | ||||||
| Performance cék: | ||||||
| Digital saluran | bangbarung | Vs– | Vs+ | Lemah wates | Tes hasilna | Luhur wates |
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| Saluran 4 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| Sadayana 6 saluran modél | ||||||
| Saluran 5 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| Saluran 6 | ||||||
| D0 | 0 V | -0.1 V | 0.1 V | |||
| D1 | 0 V | -0.1 V | 0.1 V | |||
| D2 | 0 V | -0.1 V | 0.1 V | |||
| D3 | 0 V | -0.1 V | 0.1 V | |||
| D4 | 0 V | -0.1 V | 0.1 V | |||
| D5 | 0 V | -0.1 V | 0.1 V | |||
| D6 | 0 V | -0.1 V | 0.1 V | |||
| D7 | 0 V | -0.1 V | 0.1 V | |||
| AUX Kaluar kaluaran voltage tingkatan | ||||
| Performance cék | vout | Lemah wates | Tes hasilna | Luhur wates |
| Tingkat kaluaran, impedansi input 1 MΩ | Max | ≥ 2.5 V | n/a | |
| Min | n/a | ≤ 700 mV | ||
| Tingkat kaluaran, 50 Ω Input Impedansi, | Max | ≥ 1 V | n/a | |
| Min | n/a | ≤ 250 mV | ||
| DVM voltage akurasi (DC) | |||||
| Saluran 1 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | –5 | –5 | -5.125 | -4.875 | |
| 0.5 | –2 | –2 | -2.06 | -1.94 | |
| 0.5 | –1 | –0.5 | -1.06 | -0.94 | |
| 0.2 | –0.5 | –0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| 1 | 5 | 5 | 4.875 | 5.125 | |
| Saluran 2 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | –5 | –5 | -5.125 | -4.875 | |
| 0.5 | –2 | –2 | -2.06 | -1.94 | |
| 0.5 | –1 | –0.5 | -1.06 | -0.94 | |
| 0.2 | –0.5 | –0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| 1 | 5 | 5 | 4.875 | 5.125 | |
| Saluran 3 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | -5 | -5 | -5.125 | -4.875 | |
| 0.5 | -2 | -2 | -2.06 | -1.94 | |
| 0.5 | -1 | -0.5 | -1.06 | -0.94 | |
| 0.2 | -0.5 | -0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| DVM voltage akurasi (DC) | |||||
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| 1 | 5 | 5 | 4.875 | 5.125 | |
| Saluran 4 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | -5 | -5 | -5.125 | -4.875 | |
| 0.5 | -2 | -2 | -2.06 | -1.94 | |
| 0.5 | –1 | -0.5 | -1.06 | -0.94 | |
| 0.2 | -0.5 | -0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| 1 | 5 | 5 | 4.875 | 5.125 | |
| DVM voltage akurasi (DC) | |||||
| 6 saluran modél | |||||
| Saluran 5 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | -5 | -5 | -5.125 | -4.875 | |
| 0.5 | -2 | -2 | -2.06 | -1.94 | |
| 0.5 | -1 | -0.5 | -1.06 | -0.94 | |
| 0.2 | -0.5 | -0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| 1 | 5 | 5 | 4.875 | 5.125 | |
| Saluran 6 | |||||
| Skala nangtung | Masukan Voltage | Offset Voltage | Wates handap | Hasil tés | Wates luhur |
| 1 | -5 | -5 | -5.125 | -4.875 | |
| 0.5 | -2 | -2 | -2.06 | -1.94 | |
| 0.5 | -1 | -0.5 | -1.06 | -0.94 | |
| 0.2 | -0.5 | -0.5 | -0.5225 | -0.4775 | |
| 0.01 | 0.002 | 0 | 0.00097 | 0.00303 | |
| 0.2 | 0.5 | 0.5 | 0.4775 | 0.5225 | |
| 0.5 | 1 | 0.5 | 0.94 | 1.06 | |
| 0.5 | 2 | 2 | 1.94 | 2.06 | |
| DVM voltage akurasi (DC) | |||||
| 1 | 5 | 5 | 4.875 | 5.125 | |
| DVM voltage akurasi (B.C) | ||||
| Sadayana modél | ||||
| Saluran 1 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| Saluran 2 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| Saluran 3 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| Saluran 4 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| 6 saluran modél | ||||
| Saluran 5 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| DVM voltage akurasi (B.C) | ||||
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| Saluran 6 | ||||
| Skala nangtung | Sinyal Input | Wates handap | Hasil tés | Wates luhur |
| 5 mV | 20 mVpp dina 1 kHz | 9.800 mV | 10.200 mV | |
| 10 mV | 50 mVpp dina 1 kHz | 24.5 mV | 25.500 mV | |
| 100 mV | 0.5 Vpp dina 1 kHz | 245.000 mV | 255.000 mV | |
| 200 mV | 1 Vpp dina 1 kHz | 490.000 mV | 510.000 mV | |
| 1 V | 5 Vpp dina 1 kHz | 2450.0 mV | 2550.0 mV | |
| Pemicu frékuénsi akurasi jeung pemicu frékuénsi counter maksimal asupan frékuénsi | ||||
| Sadayana modél | ||||
| Saluran 1 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz | ||
| Saluran 2 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz | ||
| Saluran 3 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz | ||
| Saluran 4 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz |
| Pemicu frékuénsi akurasi jeung pemicu frékuénsi counter maksimal asupan frékuénsi |
| 6 saluran modél |
| Méja diteruskeun… |
| Pemicu frékuénsi akurasi jeung pemicu frékuénsi counter maksimal asupan frékuénsi | ||||
| Saluran 5 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz | ||
| Saluran 6 | Hz | Wates handap | Hasil tés | Wates luhur |
| 100 Hz | 99.99974 Hz | 100.00026 Hz | ||
| 1 kHz | 999.9974 Hz | 1.0000026 KHz | ||
| 10 kHz | 9.999974 KHz | 10.000026 kHz | ||
| 100 kHz | 99.99974 kHz | 100.00026 kHz | ||
| 1 MHz | 999.9974 kHz | 1.0000026 MHz | ||
| 10 MHz | 9.999974 MHz | 10.000026 MHz | ||
| 100 MHz | 99.99974 MHz | 100.00026 MHz | ||
| 1 GHz (1 model GHz wungkul) | 999.9974 MHz | 1.0000026 GHz | ||
| 1.5 GHz (1.5 model GHz wungkul) | 1.499994 GHz | 1.5000051 GHz | ||
| AFG sinus jeung ramp frékuénsi akurasi | ||||
| Performance cék | ||||
| Gelombang ngetik | Minimal | Tes hasilna | maksimal | |
| sinus | 0.999950 MHz | 1.000050 MHz | ||
| Ramp | 499.975 kHz | 500.025 kHz | ||
| AFG pasagi jeung pulsa frékuénsi akurasi | ||||
| Performance cék | ||||
| Gelombang ngetik | Minimal | Tes hasilna | maksimal | |
| sinus | 0.999950 MHz | 1.000050 MHz | ||
| Pulsa | 0.999950 MHz | 1.000050 MHz | ||
| AFG sinyal ampakurasi litude | ||||
| Performance cék | ||||
| Amplituit | Minimal | Tes hasilna | maksimal | |
| 30.0 mVPP | 28.55 mVPP | 31.45 mVPP | ||
| 300.0 mVPP | 294.5 mVPP | 305.5 mVPP | ||
| 800.0 mVPP | 787.0 mVPP | 813.0 mVPP | ||
| 1.500 VPP | 1.4765 VPP | 1.5235 VPP | ||
| 2.000 VPP | 1.9690 VPP | 2.0310 VPP | ||
| 2.500 VPP | 2.4615 VPP | 2.5385 VPP | ||
| AFG DC ngimbangan akurasi | ||||
| Performance cék | ||||
| Ngimbangan | Minimal | Tes hasilna | maksimal | |
| 1.25 V | 1.23025 Vdc | 1.26975 Vdc | ||
| 0 V | -0.001 Vdc | +0.001 Vdc | ||
| -1.25 V | -1.26975 | -1.23025 Vdc | ||
tés kinerja
Bagian ieu ngandung kumpulan prosedur manual pikeun mariksa yén alatna ngalaksanakeun sakumaha anu diperyogikeun. Aranjeunna pariksa sagala ciri anu ditunjuk sakumaha dipariksa dina spésifikasi. (Ciri-ciri anu dipariksa muncul ku ✔ dina spésifikasi).
Prasyarat
Tés dina bagian ieu ngandung konfirmasi éksténsif, valid ngeunaan kinerja sareng fungsionalitas nalika sarat di handap ieu kacumponan:
- Alat kedah aya dina konfigurasi operasi normalna (henteu aya panutup anu dicabut).
- Anjeun kedah parantos ngalaksanakeun sareng lulus prosedur dina Self Test. (Tingali Uji Mandiri dina kaca 167.)
- Kompensasi jalur sinyal kedah dilakukeun dina interval kalibrasi anu disarankeun sareng dina suhu dina ± 5 ºC (± 9 ºF) tina suhu operasi ayeuna. (Lamun hawa éta dina wates ngan nyatakeun dina waktu anjeun ngalakukeun Test Self prerequisite, mertimbangkeun prerequisite ieu patepung). Santunan jalur sinyal kedah dilakukeun dina kalembaban ambien dina 25% tina kalembaban ambien ayeuna sareng saatos kalembaban éta sahenteuna 4 jam.
- Alat kedah parantos terakhir disaluyukeun dina suhu lingkungan antara +18 ºC sareng + 28 ºC (+64 ºF sareng +82 ºF), kedah parantos dioperasikeun salami periode pemanasan sahenteuna 20 menit, sareng kedah beroperasi dina suhu ambient sakumaha didaptarkeun dina spésifikasi. Sarat pemanasan biasana dicumponan nalika nyumponan prasyarat Uji Diri anu didaptarkeun di luhur.
- Alatna kedah didamel tina sumber anu ngajaga voltage sareng frékuénsi dina wates anu dijelaskeun dina bagian Spésifikasi.
- Alatna kedah aya dina lingkungan anu suhu, luhurna, kalembaban, sareng geter dina wates operasi anu dijelaskeun dina bagian Spésifikasi.
Uji diri
Prosedur ieu marios yén alatna lulus diagnostik internal sareng ngalaksanakeun kompensasi jalur sinyal. Taya parabot tés atawa hookup diperlukeun.
| Parabot diperlukeun | Prasyarat |
| Euweuh | Hurungkeun alat sareng ngantepkeun waktos pemanasan 20 menit sateuacan ngalaksanakeun prosedur ieu. |
- Jalankeun System Diagnostics (bisa butuh sababaraha menit).
a. Pegatkeun sambungan sadaya panyilidikan jeung/atawa kabel tina inputs osiloskop.
b. Ketok Utiliti > Uji Mandiri. Ieu mintonkeun menu konfigurasi Self Test.
c. Ketok tombol Run Self Test.
d. Diagnostik internal ngalaksanakeun verifikasi lengkep ngeunaan fungsi alat anu leres. Verifikasi ieu tiasa nyandak sababaraha menit. Nalika verifikasi parantos réngsé, status unggal tés diri dipidangkeun dina ménu.
e. Pariksa yén status sadaya tés lulus.
f. Ketok di mana waé di luar ménu pikeun kaluar tina ménu. - Jalankeun rutin kompensasi jalur sinyal (bisa butuh 5 nepi ka 15 menit per saluran).
a. Ketok Utiliti > Kalibrasi. Ieu mintonkeun menu konfigurasi Calibration.
b. Ketok tombol Run SPC pikeun ngamimitian rutin.
c. Kompensasi jalur sinyal tiasa nyandak 5 dugi ka 15 menit pikeun ngajalankeun per saluran.
d. Pariksa yén Status SPC geus lulus. - Balik deui ka layanan biasa: Ketok di mana waé di luar ménu pikeun kaluar tina ménu Kalibrasi.
Prosedur tés diri parantos réngsé. Upami salah sahiji tés di luhur gagal, jalankeun tés deui. Upami aya kénéh gagal, ngahubungan Rojongan Palanggan Tektronix.
Catetan: Anjeun teu bisa ngajalankeun tés kinerja sésana dugi tés diri lulus tur SPC geus hasil ngajalankeun.
Pariksa impedansi input
Tés ieu mariksa impedansi input dina sadaya saluran.
- Sambungkeun kaluaran oscilloscope calibrator (pikeun example, Fluke 9500) kana saluran oscilloscope 1 input, ditémbongkeun saperti dina ilustrasi di handap ieu.
PERHATOSAN: Pastikeun pikeun ngeset generator ka Pareum atawa 0 volt samemeh nyambungkeun, megatkeun, jeung/atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages.
Catetan: Alat ukur impedansi anu ngahasilkeun voltage peuntas saluran anu ngaleuwihan rentang pangukuran alat tiasa ngalaporkeun hasil impedansi anu salah. Hiji pangukuran voltage ngaleuwihan rentang pangukuran alat lamun renik hasilna teu katempo dina graticule nu.
- Setel calibrator pikeun ngukur impedansi 1 MΩ.
- Ketok File > Setup Default.
- Uji impedansi input 1 MΩ.
a. Ketok tombol saluran 1 dina bar Setélan.
b. Ketok dua kali lencana Ch 1 pikeun muka ménu na.
c. Setel Terminasi ka 1 MΩ.
d. Setel Skala Vertikal kana nilai anu diuji dina catetan tés (nilai kahiji nyaéta 10 mV/div). - Anggo calibrator pikeun ngukur impedansi input oscilloscope sareng lebetkeun nilai dina catetan tés.
- Malikan deui léngkah 4.d dina kaca 119 jeung 5 dina kaca 119 pikeun sakabéh setélan skala vertikal dina catetan tés pikeun saluran.
- Uji impedansi input 50 Ω sapertos kieu:
a. Setel impedansi calibrator pikeun ngukur impedansi 50 Ω.
b. Ketok dua kali lencana Ch 1 tur setel Terminasi ka 50 Ω.
c. Malikan deui léngkah 4.d dina kaca 119 nepi ka 6 dina kaca 119 pikeun sakabéh setélan skala vertikal dina catetan tés pikeun saluran. - Ngulang prosedur pikeun sakabéh saluran sésana.
a. Hurungkeun kaluaran calibrator Pareum.
b. Mindahkeun sambungan calibrator ka saluran salajengna pikeun nguji.
c. Ketok dua kali badge saluran saluran anu tos rengse diuji sareng setel Pintonan ka Pareum.
d. Ketok tombol saluran dina bar Setélan saluran salajengna pikeun nguji.
e. Mimitian ti lengkah 2 dina kaca 119, malikan prosedur nepi ka sadaya saluran geus diuji.
Pariksa akurasi gain DC
Tés ieu mariksa akurasi gain DC.
- Sambungkeun oscilloscope ka vol DC calibratedtage sumber. Upami anjeun nganggo kalibrator Fluke 9500, sambungkeun sirah kalibrator ka saluran osiloskop pikeun nguji.
PERHATOSAN: Setel kaluaran generator ka Pareum atawa 0 volt samemeh nyambungkeun, megatkeun, jeung/atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Ketok File > Setup Default.
- Ketok dua kali lencana Akuisisi sareng setel Modeu Akuisisi ka Rata-rata.
- Setel Jumlah Waveforms ka 16.
- Ketok di luar ménu pikeun nutup ménu.
- Ketok dua kali lencana Pemicu tur setel Sumber pemicu ka garis AC.
- Ketok di luar ménu pikeun nutup éta.
- Tambahkeun ukuran Mean ka bar Hasil:
a. Ketok tombol Tambah Anyar… Ukur pikeun muka menu Tambah Ukuran.
b. Setel Sumber ka Ch 1.
c. Dina Amppanel Ukuran, ketok dua kali tombol Mean pikeun nambahkeun lencana ukuran Mean ka bar Hasil. - Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana hasil Mean.
- Ketok Tembongkeun Statistik dina Badge.
- Ketok FILTER/WATES HASIL pikeun muka panel.
- Ketok Wates Populasi Pangukuran pikeun ngagentos kana Hurung.
- Ketok di luar ménu pikeun nutup éta.
- Ketok tombol saluran saluran pikeun nguji, pikeun nambahkeun badge saluran ka bar Setélan.
- Ketok dua kali saluran pikeun nguji lencana pikeun muka ménu sareng nyetél setélan saluran:
a. Setel Skala Vertikal ka 1 mV/div.
b. Setel Terminasi ka 50 Ω.
c. Ketok Wates Bandwidth tur setel ka 20 MHz.
d. Ketok di luar ménu pikeun nutup éta. - Catet rata-rata bacaan anu diukur négatip sareng diukur positip dina lembar kerja hasil ekspektasi sapertos kieu:
a. Dina calibrator, setel DC Voltage Sumber ka Vvalue sakumaha didaptarkeun dina baris 1 mV tina LKS.
b. Ketok dua kali lencana Akuisisi sareng ketok Pupus pikeun ngareset statistik pangukuran.
c. Lebetkeun bacaan Mean dina lembar kerja salaku V.
d. Dina calibrator, setel DC Voltage Source to Vnegative nilai diukur négatip sakumaha didaptarkeun dina baris 1 mV tina LKS.
e. Ketok dua kali lencana Akuisisi (upami henteu dibuka) teras ketok Hapus.
f. Lebetkeun bacaan Mean dina lembar kerja salaku Vpositivepositive-measured.
Méja 1: Lembar kerja gain ekspektasiOscilloscope skala nangtung setting V diffexpected Vnégatip Vpositip Vnégatip-diukur Vpositip-
diukurVdiff Hasil tés (Kauntungan akurasi) 1 mV/div 7 mV -3.5 mV +3.5 mV 2 mV/div 14 mV -7 mV +7 mV 5 mV/div 35 mV -17.5 mV +17.5 mV 10 mV/div 70 mV -35 mV +35 mV 20 mV/div 140 mV -70 mV +70 mV 50 mV/div 350 mV -175 mV +175 mV 100 mV/div 700 mV -350 mV +350 mV 200 mV/div 1400 mV -700 mV +700 mV 500 mV/div 3500 mV -1750 mV +1750 mV 1.0 V/div 7000 mV -3500 mV +3500 mV 20 mV/div dina 250 MHz 140 mV -70 mV +70 mV 20 mV/div dina Full BW 140 mV -70 mV + 70 mV - Ngitung Akurasi Gain sapertos kieu:
a. Ngitung Vas kieu:
Vdiff= | Vdiffnegatip-diukur- V|
b. Lebetkeun Vin lembar kerja.
c. Ngitung Akurasi Gain saperti kieu:DiffGain Akurasi = ((Vdiff- Vpositive-measureddiffExpected)/VdiffExpected) × 100%
d. Lebetkeun nilai Gain Accuracy dina lembar kerja sareng dina catetan tés. - Malikan deui léngkah 16 dina kaca 120 nepi ka 18 dina kaca 121 pikeun sakabéh setélan skala vertikal dina lambar gawé jeung catetan tés.
- Ulang tés dina impedansi 1 MΩ saperti kieu:
a. Setel calibrator ka 0 volt sareng impedansi kaluaran 1 MΩ.
b. Ketok dua kali lencana saluran anu diuji.
c. Setel Terminasi ka 1 MΩ
d. Malikan deui léngkah 16 dina kaca 120 nepi ka 19 dina kaca 121 pikeun sakabéh setélan skala vertikal dina catetan tés. - Ulang prosedur pikeun sadaya saluran anu sésana:
a. Setel calibrator kana 0 volt sareng impedansi kaluaran 50 Ω.
b. Pindahkeun kaluaran calibrator ka input saluran salajengna pikeun diuji.
c. Ketok dua kali badge saluran saluran anu tos rengse diuji sareng setel Pintonan ka Pareum.
d. Ketok dua kali lencana ukuran Mean.
e. Ketok panel Konpigurasikeun.
f. Ketok widang Sumber 1 tur pilih saluran salajengna pikeun diuji.
g. Mimitian ti lengkah 16 dina kaca 120, setel niléy tina catetan tés pikeun saluran anu diuji, terus malikan léngkah di luhur nepi ka sadaya saluran diuji. - Toél di luar ménu pikeun nutup ménu.
Pariksa akurasi offset DC
Tés ieu mariksa akurasi offset dina impedansi input 50 Ω sareng 1 MΩ.
- Sambungkeun oscilloscope ka vol DC calibratedtage sumber. Upami anjeun nganggo kalibrator Fluke 9500B salaku DC voltage sumber, sambungkeun sirah calibrator kana saluran oscilloscope 1.

PERHATOSAN: Setel kaluaran generator ka Pareum atawa 0 volt saméméh nyambungkeun, megatkeun, atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Ketok File > Setup Default.
- Ketok dua kali lencana Akuisisi sareng setel Modeu Akuisisi ka Rata-rata.
- Setel Jumlah Waveforms ka 16.
- Ketok di luar ménu pikeun nutup ménu.
- Ketok dua kali lencana Pemicu tur setel Sumber pemicu ka garis AC.
- Tambahkeun ukuran Mean ka bar Hasil:
a. Ketok tombol Tambah Anyar… Ukur pikeun muka menu Tambah Ukuran.
b. Setel Sumber ka Ch 1.
c. Dina Amppanel Ukuran, ketok dua kali tombol Mean pikeun nambahkeun lencana ukuran Mean ka bar Hasil. - Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana hasil Mean.
- Ketok Tembongkeun Statistik dina Badge.
- Ketok FILTER/WATES HASIL pikeun muka panel.
- Ketok Wates Populasi Pangukuran pikeun ngagentos kana Hurung.
- Ketok di luar ménu pikeun nutup éta.
- Ketok tombol saluran dina bar Setélan pikeun nambahkeun saluran anu diuji kana bar Setélan.
- Ketok dua kali saluran dina lencana tés pikeun muka ménu konfigurasi sareng robih setélan vertikal:
a. Setel Skala Vertikal ka 1 mV/div.
b. Setel Offset ka 900 mV.
c. Setel Posisi ka 0 ku cara ngetok Setel ka 0.
d. Setel Terminasi ka 50 Ω.
e. Ketok Wates Bandwidth tur setel ka 20 MHz.
f. Ketok di luar ménu pikeun nutup éta. - Atur kaluaran calibrator ka +900 mV, ditémbongkeun saperti dina catetan test, jeung ngahurungkeun kaluaran calibrator Hurungkeun.
- Lebetkeun nilai pangukuran rata-rata dina catetan tés.
- Ketok dua kali saluran dina badge tés pikeun muka ménu konfigurasina sareng robih Offset ka -900 mV.
- Atur kaluaran calibrator ka -900 mV, ditémbongkeun saperti dina catetan test.
- Lebetkeun nilai pangukuran rata-rata dina catetan tés.
- Ulang deui lengkah 15 dina kaca 122 nepi ka 20 dina kaca 123, ngarobah setelan vertikal saluran jeung kaluaran calibrator sakumaha didaptarkeun dina catetan tés pikeun saluran nu diuji.
- Ngulang tés saluran dina impedansi 1 MΩ.
a. Setel kaluaran calibrator ka Pareum atawa 0 volt.
b. Ngarobah impedansi calibrator ka 1 MΩ jeung voltage ka +900 mV.
c. Hurungkeun kaluaran calibrator.
d. Malikan deui léngkah 15 dina kaca 122 nepi ka 20 dina kaca 123, ngarobah Terminasi saluran jadi 1 MΩ jeung nilai Offset nangtung jeung kaluaran calibrator sakumaha didaptarkeun dina catetan tés 1 MΩ pikeun saluran nu diuji. - Ngulang prosedur pikeun sakabéh saluran sésana.
a. Ketok dua kali lencana ukuran Mean.
b. Ketok panel Konpigurasikeun.
c. Ketok widang Sumber 1 tur pilih saluran salajengna pikeun diuji.
d. Setel calibrator kana 0 volt sareng impedansi kaluaran 50 Ω.
e. Pindahkeun kaluaran calibrator ka input saluran salajengna pikeun diuji.
f. Ketok dua kali badge saluran saluran anu tos rengse diuji sareng setel Pintonan ka Pareum.
g. Ketok tombol saluran dina bar Setélan osiloskop saluran salajengna pikeun diuji.
h. Mimitian ti lengkah 2 dina kaca 122 , malikan prosedur nepi ka sadaya saluran geus diuji.
Pariksa rubakpita analog
Tés ieu mariksa rubakpita dina tungtung 50 Ω sareng 1 MΩ pikeun unggal saluran. Bandwidth has dina terminasi 1 M Ω dipariksa dina produk salaku cek fungsional.
- Sambungkeun kaluaran generator gelombang sinus leveled calibrated ka saluran oscilloscope 1 input sakumaha ditémbongkeun di handap ieu ilustrasi.

PERHATOSAN: Setel generator ka pareum atawa 0 volt saméméh nyambungkeun, megatkeun, jeung/atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Ketok File > Setup Default pikeun ngareset alat tur nambahkeun badge channel 1 jeung sinyal ka tampilan.
- Tambahkeun pangukuran puncak-ka-puncak.
a. Ketok Tambihkeun Anyar. Tombol ukur.
b. Setel Sumber ka saluran anu diuji.
c. Dina Amppanel Pangukuran, ketok dua kali tombol pangukuran Puncak-ka-Puncak pikeun nambahkeun lencana pangukuran ka bar Hasil.
d. Ketok di luar ménu pikeun nutup éta.
e. Ketok dua kali lencana hasil Puncak-ka-Puncak.
f. Ketok Tembongkeun Statistik dina Badge.
g. Ketok FILTER/WATES HASIL pikeun muka panel.
h. Ketok Wates Populasi Pangukuran pikeun ngagentos kana Hurung.
abdi. Ketok di luar ménu pikeun nutup éta. - Setel saluran dina setélan tés:
a. Ketok dua kali lencana saluran anu diuji pikeun muka ménu konfigurasina.
b. Setel Skala Vertikal ka 1 mV/div.
c. Setel Terminasi ka 50 Ω.
d. Ketok di luar ménu pikeun nutup éta. - Saluyukeun sumber sinyal gelombang sinus anu diratakeun pikeun nembongkeun bentuk gelombang 8 divisi vertikal dina skala vertikal anu dipilih kalayan frékuénsi set 10 MHz. Pikeun example, dina 5 mV/div, make sinyal ≥40 mVp-p; dina 2 mV/div, make sinyal ≥16 mV.
Catetan: Dina sababaraha setélan V / div, generator bisa jadi teu nyadiakeun 8 divisi nangtung sinyal. Atur kaluaran generator pikeun ménta saloba division nangtung sinyal-gancang. - Ketok dua kali badge Horizontal dina bar Setelan.
- Setel Skala Horizontal ka 1 mdet/divisi.
- Ketok di luar ménu pikeun nutup éta.
- Catet pangukuran Puncak-ka-Puncak dina éntri V tina catetan tés.
- Ketok dua kali badge Horizontal dina bar Setelan. di-pp
- Setel Skala Horizontal ka 4 ns/divisi.
- Saluyukeun sumber sinyal ka frékuénsi rubakpita maksimum pikeun rubakpita jeung model keur diuji.
- Rékam pangukuran puncak-ka-puncak.
a. Rékam pangukuran Puncak-ka-Puncak dina frékuénsi anyar dina Vbw-ppp-pentry tina catetan tés. - Anggo nilai V bw-pp sareng V in-pp anu kacatet dina catetan uji, sareng persamaan di handap ieu, pikeun ngitung Gain dina rubakpita: Gain = Vbw-pp / Vin-pp.
Pikeun lulus tés pangukuran kinerja, Gain kedah ≥ 0.707. Lebetkeun Gain dina catetan tés. - Malikan deui léngkah 4 dina kaca 124 nepi ka 14 dina kaca 124 pikeun sakabéh kombinasi setelan Skala Vertikal nu didaptarkeun dina catetan tés.
- Ngulang tés dina impedansi 1 MΩ.
a. Setel kaluaran calibrator ka Pareum atawa 0 volt.
b. Robah impedansi calibrator ka 1 MΩ.
c. Ketok dua kali lencana saluran anu diuji pikeun muka ménu na.
d. Setel Terminasi ka 1 MΩ.
e. Malikan deui léngkah 4 dina kaca 124 nepi ka 16 dina kaca 124, tapi tinggalkeun terminasi disetel ka 1 MΩ. - Ngulang tés pikeun sakabéh saluran sésana.
a. Setel calibrator kana 0 volt sareng impedansi kaluaran 50 Ω.
b. Pindahkeun kaluaran calibrator ka input saluran salajengna pikeun diuji.
c. Ketok dua kali badge saluran saluran anu tos rengse diuji sareng setel Pintonan ka Pareum.
d. Ketok tombol saluran dina bar Setélan osiloskop saluran salajengna pikeun diuji.
e. Ketok dua kali lencana pangukuran Puncak-ka-Puncak.
f. Ketok panel Konpigurasikeun.
g. Ketok widang Sumber 1 tur pilih saluran salajengna pikeun diuji.
h. Mimitian ti lengkah 4 dina kaca 124, malikan prosedur nepi ka sadaya saluran geus diuji.
Pariksa noise acak
Tés ieu mariksa gangguan acak dina 1 M Ω sareng 50 Ω pikeun unggal saluran, dina mode akuisisi HiRes. Anjeun teu kedah nyambungkeun alat uji ka osiloskop pikeun tés ieu.
- Pegatkeun sambungan sagalana ti inputs oscilloscope.
- Ketok File > Setup Default.
- Hurungkeun Modeu HiRes iwal ti instrumen 1.5`GHz. Instrumén 1.5`GHz kudu diuji dina Sampmodeu le.
- Tambahkeun pangukuran AC RMS:
a. Ketok tombol Tambah Anyar… Ukur.
b. Setel Sumber ka saluran anu diuji.
c. Dina Amppanel Pangukuran, ketok dua kali tombol pangukuran RMS AC pikeun nambahkeun lencana pangukuran ka bar Hasil.
d. Ketok di luar ménu pikeun nutup éta.
e. Ketok dua kali lencana pangukuran RMS sareng ketok Tembongkeun Statistik dina Lencana pikeun mintonkeun statistik dina lencana ukuran.
f. Ketok panel Filter / Batasi Hasil.
g. Aktipkeun Batesan Pangukuran Populasi.
h. Setel wates ka 100.
abdi. Ketok di luar ménu pikeun nutup éta. - Nyetél mode Horizontal:
a. Ketok dua kali lencana setelan Horizontal.
b. Setel Modeu Horizontal ka Manual.
c. Nyetél Sample Laju ka 6.25 GS / s.
d. Atur Panjang Rékam ka 2 Mpts.
e. Ketok di luar ménu pikeun nutup éta. - Ketok dua kali lencana Saluran saluran anu diuji.
- Setel nilai Skala Vertikal ka 1 mV.
- Pariksa 1 M Ω terminasi.
a. Dina menu badge Channel, ketok 1 M Ω terminasi.
b. Ketok widang Wates Bandwidth tur pilih frékuénsi pangluhurna didaptarkeun.
c. Setel nilai Posisi saluran ka 340 mdivs.
d. Sakali jumlah ukur (N) dina lencana pangukuran RMS AC ngahontal 100, catet nilai Rata-rata AC RMS (nu µreadout).
e. Setel nilai Posisi vertikal channel ka 360 mdivs.
f. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
g. Rata-rata dua nilai sareng rekam hasilna dina 1 mV/div > Baris lengkep kolom 1 MΩ tina catetan Hasil Tés.
h. Dina menu badge channel, ketok widang Wates Bandwidth tur pilih 250 MHz.
abdi. Setel nilai Posisi vertikal channel ka 340 mdivs.
j. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
k. Setel nilai Posisi vertikal channel ka 360 mdivs.
l. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
m. Rata-rata dua nilai sareng rekam hasilna dina baris wates 1 mV/div > 250MHz kolom 1 MΩ tina catetan Hasil Uji.
n. Ketok widang Wates Bandwidth tur pilih 20 MHz.
o. Setel nilai Posisi vertikal channel ka 340 mdivs.
p. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
q. Setel nilai Posisi vertikal channel ka 360 mdivs.
r. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
s. Rata-rata dua nilai sareng rekam hasilna dina baris wates 1 mV/div > 20MHz tina kolom 1 MΩ tina catetan Hasil Uji. - Pariksa 50 Ω terminasi.
a. Dina badge Channel, setel Terminasi ka 50 Ω.
b. Ketok widang Wates Bandwidth tur pilih frékuénsi pangluhurna didaptarkeun.
c. Setel nilai Posisi vertikal channel ka 340 mdivs.
d. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
e. Setel nilai Posisi vertikal channel ka 360 mdivs.
f. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
g. Rata-rata dua nilai sareng rekam hasilna dina 1 mV/div > Baris lengkep kolom 50 Ω tina catetan Hasil Tés.
h. Ketok widang Wates Bandwidth tur pilih 250 MHz.
abdi. Setel nilai Posisi vertikal channel ka 340 mdivs.
j. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
k. Setel nilai Posisi vertikal channel ka 360 mdivs.
l. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
m. Rata-rata dua nilai sareng rekam hasilna dina barisan wates 1 mV/div > 250MHz tina kolom 50 Ω tina catetan Hasil Uji.
n. Ketok widang Wates Bandwidth tur pilih 20 MHz.
o. Setel nilai Posisi vertikal channel ka 340 mdivs.
p. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
q. Setel nilai Posisi vertikal channel ka 360 mdivs.
r. Sakali itungan ukur (N) dina lencana ukur ngahontal 100, catetan nilai AC RMS Mean (nu maca µ).
s. Rata-rata dua niléy sarta rekam hasilna dina baris wates 1 mV/div > 20MHz tina kolom 50 Ω tina catetan Hasil Tés. - Ulang 1 MΩ sareng 50 Ω tés dina sadaya setélan V/div pikeun saluran ayeuna.
a. Dina badge Channel, setel setelan Skala Vertikal ka nilai salajengna dina catetan tés (2 mV, 5 mV, jeung saterusna, nepi ka 1 V/div).
b. Malikan deui léngkah 8 dina kaca 125 nepi ka 9 dina kaca 126. - Ngulang sadaya tés pikeun saluran input sésana.
a. Ketok dua kali lencana pangukuran RMS AC.
b. Ketok panel Konpigurasikeun.
c. Ketok widang Sumber 1 tur pilih saluran salajengna pikeun diuji.
d. Ketok dua kali badge saluran saluran anu tos rengse diuji sareng setel Pintonan ka Pareum.
e. Ketok tombol saluran dina bar Setélan osiloskop saluran salajengna pikeun diuji.
f. Ketok dua kali lencana saluran pikeun saluran anu diuji.
g. Dimimitian dina lengkah 7 dina kaca 125, malikan prosedur ieu pikeun tiap saluran input.
Pariksa jangka panjang samplaju le
Tés ieu mariksa samplaju le jeung akurasi waktu reureuh (base waktu).
- Sambungkeun kaluaran generator tanda waktu ka input saluran osiloskop 1 nganggo kabel 50 Ω, sapertos dipidangkeun di handap ieu. ilustrasi.

PERHATOSAN: Setel kaluaran generator ka pareum atawa 0 volt saméméh nyambungkeun, megatkeun, jeung/atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Setel periode generator tanda waktos ka 80 mdet. Anggo bentuk gelombang tanda waktos sareng ujung naék gancang.
- Upami tiasa disaluyukeun, setel tanda waktos ampkurang leuwih 2 V.
- Ketok File > Setup Default.PP
- Ketok tombol saluran 1 dina bar Setélan.
- Ketok dua kali badge Channel 1 pikeun muka menu Konfigurasi na.
- Setel Terminasi ka 50 Ω.
- Setel Skala Vertikal ka 500 mV.
- Setel nilai Position pikeun puseur sinyal tanda waktu dina layar.
- Ketok di luar wewengkon ménu pikeun nutup éta.
- Ketok dua kali lencana setelan Horizontal.
- Setel Skala Horizontal ka 100 ns/div.
- Ketok di luar wewengkon ménu pikeun nutup éta.
- Ketok dua kali lencana setelan pemicu.
- Setel Sumber ka saluran anu diuji.
- Atur Level sakumaha diperlukeun pikeun tampilan dipicu.
- Ketok di luar wewengkon ménu pikeun nutup éta.
- Ketok dua kali lencana setelan Horizontal.
- Saluyukeun nilai Posisi pikeun mindahkeun titik pemicu ka tengah layar.
- Hurungkeun Tunda ka Hurung tur setel Posisi ka 80 mdet.
- Setel Skala Horizontal ka 100 ns/div.
- Titénan dimana ujung rising spidol crosses garis graticule horizontal puseur. Ujung rising kudu meuntas dina ± 2 divisi tina graticule puseur nangtung. Lebetkeun simpangan dina catetan tés.
Catetan: Kasalahan dasar 2.5 x 10-6time nyaéta 2 divisi kapindahan.
Pariksa akurasi ambang digital
Tés ieu mariksa katepatan ambang tina saluran digital usik logika TLP058 D0-D7 dina 0 V sareng 25 °C, pikeun sadaya saluran input osiloskop.
Catetan: Akurasi Ambang mangrupikeun fungsi tina usik logika wungkul. Ieu spésifikasi has. Uji Ketepatan Threshold mariksa kinerja usik logika has, sareng tiasa dianggap cek fungsional input digital oscilloscope.
- Sambungkeun usik digital TLP058 ka saluran 1.

- Sambungkeun DC voltage sumber ka saluran digital D0.
PERHATOSAN: Setel kaluaran generator ka Pareum atawa 0 volt saméméh nyambungkeun, megatkeun, atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages.
Upami Anjeun keur make Fluke 9500 calibrator salaku DC voltage sumber, nyambungkeun sirah calibrator ka D0 channel digital, ngagunakeun BNC-to-0.1 inci adaptor pin didaptarkeun dina tabel parabot diperlukeun. Pastikeun pikeun nyambungkeun saluran D0 kana pin sinyal anu saluyu sareng ka pin taneuh dina adaptor. - Ketok File > Setup Default. Ieu ngareset instrumen sareng nambihan badge saluran 1 sareng sinyal kana tampilan.
- Tampilkeun saluran digital sareng setel ambang.
a. Ketok dua kali lencana saluran anu diuji dina palang Setélan.
b. Ketok dua kali widang Ambang di handapeun ménu sareng setel nilaina ka 0 V.
c. Ketok Setel Sadaya Ambang. Sadaya ambang ayeuna disetel pikeun cek ambang 0 V.
d. Ketok di luar ménu pikeun nutup éta. - Ketok dua kali badge Horizontal dina bar Setelan.
- Setel Skala Horizontal ka 10 ns/div.
- Ketok di luar ménu pikeun nutup éta.
- Nyetél calibrator DC voltage kaluaran (Vs) ka -400 mV.
- Antosan 1 detik. Pariksa yén tingkat logika low on D0.
- Kanaékan Vs ku +10 mV. Antosan 1 detik sareng pariksa tingkat logika tina tampilan sinyal saluran D0.
Lamun tingkat sinyal mangrupa logika low atawa alik antara luhur jeung low, terus increment Vs ku +10 mV, antosan 1 detik, jeung pariksa tingkat logika nepi ka kaayaan logika nyaéta luhur ajeg. - Catet nilai Vs ieu salaku Vs- pikeun D0 tina catetan tés.
- Ketok dua kali lencana Pemicu sareng setel Slope ka Tepi ragrag.
- Nyetél DC voltage sumber (Vs) ka +400 mV.
- Antosan 1 detik. Pariksa yén tingkat logika luhur.
- Ngurangan Vs ku -10 mV. Antosan 1 detik sareng pariksa tingkat logika tina tampilan sinyal saluran D0.
Lamun tingkat sinyal mangrupakeun logika luhur atawa alik antara luhur jeung handap, teruskeun turun Vs ku -10 mV, antosan 1 detik, sarta pariksa tingkat logika nepi ka kaayaan logika mangrupakeun low ajeg. - Catet nilai Vs ieu salaku Vs + pikeun D0 tina catetan tés.
- Panggihan rata-rata ngagunakeun rumus ieu: VsAvg= (Vs-+ V)/2.
- Catet rata-rata salaku hasil tés pikeun D0 dina catetan tés. Hasil tés kudu antara wates handap jeung luhur.s+
- Malikan deui prosedur pikeun sadaya saluran digital anu sésana.
a. Sambungkeun saluran digital salajengna pikeun diuji (D1, D2, jeung saterusna) ka DC voltage sumber.
b. Malikan deui léngkah 8 dina kaca 128 nepi ka 19 dina kaca 129, nepi ka sadaya saluran digital geus diuji pikeun saluran input ieu. - Malikan deui prosedur pikeun sadaya saluran input anu sésana.
a. Pindahkeun usik digital TLP058 tina saluran 1 ka saluran 2.
b. Atur kaluaran generator ka 0 volt jeung Pareum.
c. Ulang léngkah dimimitian ti 2 dina kaca 128 pikeun saluran anu diuji (saluran 2, saluran 3, jeung saterusna).
Pariksa kaluaran AUX Out voltage tingkat
Tés ieu pariksa kaluaran voltage tingkat ti konektor AUX Out.
- Anggo kabel 50 Ω pikeun nyambungkeun sinyal AUX Out ti tukangeun alat ka saluran 1 input alat anu sami, sapertos anu dipidangkeun dina ilustrasi ieu.

- Ketok File > Setup Default. Ieu ngareset instrumen sareng nambihan badge saluran 1 sareng sinyal kana tampilan.
- Ketok dua kali lencana tina lencana saluran 1 pikeun muka menu konfigurasina.
- Setel Skala Vertikal ka 1 V/div.
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali badge Horizontal dina bar Setelan.
- Setel Skala Horizontal ka 400 ns/div.
- Ketok di luar ménu pikeun nutup éta.
- Catet pangukuran Maksimum sareng Minimum dina terminasi 1 MΩ.
a. Ketok tombol Tambah Anyar… Ukur.
b. Dina Amppanel Pangukuran litude, setel Sumber ka Ch 1.
c. Ketok dua kali tombol Maksimum pikeun nambahkeun lencana pangukuran ka bar Hasil.
d. Ketok dua kali tombol Minimum pikeun nambahkeun lencana pangukuran ka bar Hasil.
e. Ketok di luar ménu pikeun nutup éta.
f. Ketok dua kali lencana Hasil maksimum.
g. Ketok Tembongkeun Statistik dina Badge.
h. Ketok FILTER/WATES HASIL pikeun muka panel.
abdi. Ketok Wates Populasi Pangukuran pikeun ngagentos kana Hurung.
j. Ketok di luar ménu pikeun nutup éta.
k. Ketok dua kali lencana hasil Minimum.
l. Ketok Tembongkeun Statistik dina Badge.
m. Ketok FILTER/WATES HASIL pikeun muka panel.
n. Ketok Wates Populasi Pangukuran pikeun ngagentos kana Hurung.
o. Ketok di luar ménu pikeun nutup éta.
p. Lebetkeun bacaan pangukuran Maksimum sareng Minimum dina baris 1 MΩ tina catetan tés. - Catet pangukuran Maksimum sareng Minimum dina terminasi 50 Ω.
a. Ketok dua kali lencana Ch 1 pikeun muka ménu konfigurasina.
b. Setel Terminasi ka 50 Ω.
c. Ketok di luar ménu pikeun nutup éta.
d. Lebetkeun bacaan pangukuran Maksimum sareng Minimum dina baris 50 Ω tina catetan tés.
Pariksa DVM voltagakurasi (DC)
Tés ieu mariksa vol DCtage akurasi pilihan Digital Volt Méter (DVM). Pilihan DVM sayogi gratis nalika anjeun ngadaptarkeun alat di tek.com.
Prosedur
- Sambungkeun oscilloscope ka vol DCtage sumber pikeun ngajalankeun test ieu. Upami nganggo kalibrator Fluke 9500 salaku vol DCtage sumber, nyambungkeun sirah calibrator kana saluran oscilloscope ka nguji.

PERHATOSAN: Setel kaluaran generator ka Pareum atawa 0 volt saméméh nyambungkeun, megatkeun, atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Setel impedansi calibrator ka 1 MΩ.
- Ketok File > Setup Default. Ieu ngareset instrumen sareng nambihan badge saluran 1 sareng sinyal kana tampilan.
- Setel setélan saluran.
a) Ketok dua kali lencana saluran anu diuji pikeun muka ménu na.
b) Pariksa yén Posisi disetel ka 0 divs. Upami henteu, setel posisi ka 0 divisi.
c) Pastikeun yén Terminasi disetel ka 1 MΩ.
d) Setel Wates Bandwidth ka 20 MHz. - Setel impedansi calibrator ka 1 MΩ.
- Ketok dua kali badge Horizontal tur setel Skala Horizontal ka 1 mdet/div.
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana Akuisisi tur setel Mode Akuisisi ka Rata-rata.
- Pariksa atanapi setel Jumlah Waveforms ka 16.
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana Pemicu tur setel Sumber ka AC Line.
- Ketok di luar ménu pikeun nutup éta.
- Ketok tombol DVM pikeun nambahkeun badge DVM kana bar Hasil.
- Dina ménu DVM, setel Sumber kana saluran anu bakal diuji.
- Setel Modeu ka DC.
- Ketok di luar ménu pikeun nutup éta.
- Atur calibrator ka vol inputtage ditémbongkeun dina catetan tés (pikeun example, -5 V pikeun setelan 1V / div).
- Dina saluran dina menu tés, setel nilai Offset ka anu dipidangkeun dina catetan tés (kanggo example, -5 V pikeun input -5 V jeung 1 V / div setting).
- Setel widang Skala Vertikal pikeun cocog sareng nilai dina catetan tés (pikeun example, 1 V/div).
- Lebetkeun nilai diukur dina badge DVM kana DVM Voltage Rékam Tés Akurasi.
- Malikan deui prosedurna (lengkah 17 dina kaca 131, 18 dina kaca 131, 19 dina kaca 131 jeung 20 dina kaca 131) pikeun tiap setelan volt/divisi ditémbongkeun dina catetan tés.
- Ngulang sagala léngkah, dimimitian ku lengkah 4 dina kaca 131, pikeun tiap channel oscilloscope dipariksa. Pikeun nyetel saluran salajengna pikeun nguji:
a) Ketok dua kali lencana saluran anu diuji pikeun muka ménu na.
b) Setel Pintonan ka Pareum.
c) Ketok tombol saluran dina bar Setélan saluran salajengna pikeun nguji pikeun nambahkeun éta badge saluran jeung sinyal ka tampilan.
Pariksa DVM voltage akurasi (AC)
Tés ieu mariksa vol ACtage akurasi pilihan Digital Volt Méter (DVM). Pilihan DVM sayogi gratis nalika anjeun ngadaptarkeun alat di tek.com.
Prosedur
- Sambungkeun kaluaran generator gelombang pasagi leveled (pikeun example, Fluke 9500) kana saluran oscilloscope 1 input.
PERHATOSAN: Setel kaluaran generator ka Pareum atawa 0 volt saméméh nyambungkeun, megatkeun, atawa mindahkeun hookup test salila kinerja prosedur ieu. generator nu sanggup nyadiakeun vol bahayatages. - Atur generator ka 50 Ω impedansi kaluaran (50 Ω impedansi sumber).
- Atur generator pikeun ngahasilkeun gelombang kuadrat tina amplitude sareng frékuénsi didaptarkeun dina catetan tés (pikeun example, 20 mV dina 1 kHz).
- Ketok File > Setup Default pikeun ngareset alat tur nambahkeun badge channel 1 jeung sinyal ka tampilan.
- Ketok tombol DVM pikeun nambahkeun badge DVM kana bar Hasil.
- Setel Modeu DVM kana AC RMS.pp
- Dina ménu DVM, setel Sumber kana saluran anu bakal diuji.
- Ketok dua kali lencana saluran saluran anu diuji pikeun muka menu konfigurasina.
- Setel Terminasi ka 50 Ω.
- Anggo kadali Skala nangtung pikeun nyetél jangkungna sinyal supados sinyal nyertakeun antara 4 sareng 8 bagean nangtung dina layar.
- Lebetkeun nilai diukur DVM dina catetan tés.
- Ulang léngkah 10 dina kaca 132 jeung 11 dina kaca 132 pikeun tiap voltage jeung kombinasi frékuénsi ditémbongkeun dina catetan.
- Malikan sadaya léngkah pikeun nguji sadaya saluran osiloskop anu sésana. Pikeun nyetel saluran salajengna pikeun nguji:
a) Ketok dua kali lencana saluran anu diuji pikeun muka ménu na.
b) Setel Pintonan ka Pareum.
c) Ketok tombol saluran dina bar Setélan saluran salajengna pikeun nguji pikeun nambahkeun éta badge saluran jeung sinyal ka tampilan.
Pariksa akurasi frékuénsi pemicu jeung frékuénsi input maksimum
Tés ieu pariksa akurasi counter frékuénsi pemicu. counter frékuénsi pemicu mangrupa bagian tina DVM bebas sarta pilihan frékuénsi pemicu nu sadia sawaktos Anjeun ngadaptarkeun instrumen dina tek.com.
Prosedur
- Ketok File > Setup Default pikeun ngareset alat tur nambahkeun badge channel 1 jeung sinyal ka tampilan.
- Sambungkeun 10 MHz Rujukan kaluar ti generator tanda waktu ka konektor Ref Dina dina tonggong oscilloscope nu.
- Sambungkeun kaluaran generator tanda waktos ka input saluran osiloskop anu diuji nganggo kabel 50 Ω.
Setel generator tanda waktos ka sumber 50 Ω sareng bentuk gelombang ujung gancang (≥ 3 mV/ns). - Setel frékuénsi generator tanda waktu ka nilai munggaran ditémbongkeun dina catetan test, dimimitian dina 100 Hz.
- Nyetél tanda amplitude ka 1 V, nu ngajadikeun 2 divisi gelombang tinggi.
- Ketok dua kali lencana saluran anu diuji (dimimitian ku saluran 1) sareng setel Terminasi ka 50 Ω.pp
- Setel saluran Skala Vertikal ka 500 mV/div.
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali badge Acquisition tur setel Sumber Rujukan Timebase ka External (10 MHz).
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana Horizontal sareng nganggo kadali Skala Horizontal pikeun mintonkeun sahenteuna 2 siklus bentuk gelombang.
- Ketok di luar ménu pikeun nutup éta.
- Ketok dua kali lencana Pemicu pikeun muka ménu na.
a) Setel widang Sumber kana saluran input anu diuji.
b) Ketok tombol Set to 50% pikeun kéngingkeun tampilan anu stabil.
c) Ketok panel Mode & Holdoff pikeun muka menu konfigurasi Mode & Holdoff.
d) Dina menu Mode & Tahan Pareum, setel Pemicu Frékuénsi Counter ka Hurung. Pembacaan frékuénsi pemicu aya di handapeun badge pemicu.
e) Ketok di luar ménu pikeun nutup éta. - Ketok dua kali lencana saluran anu diuji (dimimitian ku saluran 1) sareng nganggo kadali Posisi pikeun vertikal tengah waktos nandaan graticule bentuk gelombang.
- Lebetkeun nilai frékuénsi pemicu (F readout dina badge pemicu) dina catetan test pikeun frékuénsi éta.
- Malikan deui prosedur ieu pikeun unggal setélan frékuénsi anu dipidangkeun dina catetan. Pastikeun pikeun nyaluyukeun skala Horizontal sanggeus unggal robah frékuénsi calibrator pikeun nembongkeun sahenteuna dua siklus bentuk gelombang dina layar.
- Ngulang sagala léngkah ieu pikeun nguji unggal saluran oscilloscope.
Pariksa AFG sinus jeung ramp akurasi frékuénsi
Tés ieu marios katepatan frékuénsi generator fungsi sawenang-wenang. Sadaya frékuénsi kaluaran diturunkeun tina hiji frékuénsi anu dihasilkeun sacara internal. Ngan hiji titik frékuénsi channel 1 diperlukeun pikeun dipariksa.
- Sambungkeun kabel 50 Ω ti konektor AFG Out ka input counter frékuénsi sakumaha ditémbongkeun dina gambar di handap ieu.

- Ketok File > Setup Default pikeun nyetel alat ka setelan standar pabrik.
- Ketok tombol AFG pikeun muka menu AFG.
- Setel kaluaran generator fungsi sawenang-wenang sapertos kieu:
Pilih ménu Setélan Kaluaran On Jenis Gelombang sinus Frékuénsi 1.000000 MHz Amplituit 1.00 VPP - Hurungkeun counter frékuénsi:
a. Ketok dua kali lencana Pemicu pikeun muka ménu na.
b. Setel widang Sumber ka saluran input anu diuji.
c. Ketok tombol Set to 50% pikeun kéngingkeun tampilan anu stabil.
d. Ketok panel Mode & Holdoff pikeun muka menu konfigurasi Mode & Holdoff
e. Dina menu Mode & Holdoff, setel Pemicu Frékuénsi Counter ka Hurung. Pembacaan frékuénsi pemicu aya di handapeun
Lencana pemicu.
f. Ketok di luar ménu pikeun nutup éta. - Pariksa yén bacaan tina counter frékuénsi antara 0.999950 MHz jeung 1.000050 MHz. Lebetkeun nilai dina catetan Test.
- Setel kaluaran generator fungsi sawenang-wenang sapertos kieu:
Pilih ménu Setélan Jenis Gelombang Ramp Frékuénsi 500 kHz - Pariksa yén bacaan tina counter frékuénsi antara 975 kHz jeung 500.025 kHz. Lebetkeun nilai dina catetan Test.
Pariksa AFG kuadrat jeung akurasi frékuénsi pulsa
Tés ieu marios katepatan frékuénsi generator fungsi sawenang-wenang. Sadaya frékuénsi kaluaran diturunkeun tina hiji frékuénsi anu dihasilkeun sacara internal. Ngan hiji titik frékuénsi channel 1 diperlukeun pikeun dipariksa.
- Sambungkeun generator fungsi sawenang ka counter frékuénsi ditémbongkeun saperti dina gambar di handap ieu.

- Ketok File > Setup Default pikeun nyetel alat ka setelan standar pabrik.
- Ketok tombol AFG pikeun muka menu AFG.
- Setel generator fungsi sawenang-wenang sapertos kieu:
Pilih ménu Setélan Jenis Gelombang pasagi Frékuénsi 1.000000 MHz Amplituit 1.00 VPP Kaluaran On - Hurungkeun counter frékuénsi:
a. Ketok dua kali lencana Pemicu pikeun muka ménu na.
b. Setel widang Sumber ka saluran input anu diuji.
c. Ketok tombol Set to 50% pikeun kéngingkeun tampilan anu stabil.
d. Ketok panel Mode & Holdoff pikeun muka menu konfigurasi Mode & Holdoff
e. Dina menu Mode & Holdoff, setel Pemicu Frékuénsi Counter ka Hurung. Pembacaan frékuénsi pemicu aya di handapeun badge pemicu.
f. Ketok di luar ménu pikeun nutup éta. - Pariksa yén frékuénsi counter readout antara 0.999950 MHz jeung 1.00005 MHz. Lebetkeun nilai dina catetan Test.
- Nyetél generator fungsi sawenang-wenang sapertos kieu:
Pilih ménu Setélan Jenis Gelombang Pulsa - Pariksa yén bacaan tina counter frékuénsi antara 0.999950 MHz jeung 1.000050 MHz. Lebetkeun nilai dina catetan Test.
Pariksa sinyal AFG ampakurasi litude
Tés ieu marios éta ampakurasi litude tina generator fungsi sawenang. Sadaya kaluaran amplitudes diturunkeun tina kombinasi attenuators na 3 dB gain variabel. Sababaraha amptitik litude dipariksa. Tés ieu ngagunakeun terminator 50 Ω. Perlu terang katepatan tina terminator 50 Ω sateuacanna amptés litude. akurasi ieu dipaké salaku faktor calibration.
- Sambungkeun terminator 50 Ω ka DMM sakumaha ditémbongkeun dina gambar di handap ieu sarta ngukur nilai lalawanan.

- Itung faktor kalibrasi 50 Ω (CF) tina nilai bacaan sareng catetan sapertos kieu:
Tabél 2: CF (Faktor Kalibrasi) = 1.414 × ((50 / Pangukuran Ω) + 1)Pangukuran (bacaan tina DMM) Diitung CF Examples:
• Pikeun pangukuran 50.50 Ω, CF = 1.414 ( 50 / 50.50 + 1) = 2.814.
• Pikeun pangukuran 49.62 Ω, CF = 1.414 ( 50 / 49.62 + 1) = 2.839. - Sambungkeun kaluaran generator fungsi sawenang ka DMM ditémbongkeun saperti dina gambar di handap ieu. Pastikeun pikeun nyambungkeun terminator 50 Ω ka konektor AFG Out.

- Ketok tombol AFG tur nyetel kaluaran generator fungsi sawenang-wenang saperti kieu:
Pilih ménu Setélan Jenis Gelombang sinus Frékuénsi 1.000000 kHz Amplituit 30 mVPP Impedansi beban 50 Ω Kaluaran On - Ukur AC RMS voltage readout dina DMM.
- Kalikeun DMM voltage ku CF diitung pikeun meunangkeun puncak dilereskeun ka puncak voltage. Lebetkeun nilai hasilna dina widang Measurement dina tabel di handap ieu.
- Ngarobah kaluaran AFG amplitude kana nilai salajengna dina tabél.
- Malikan deui léngkah 5 dina kaca 136 nepi ka 7 dina kaca 136 pikeun tiap ampnilai litude. Pariksa yén puncak ka puncak voltages aya dina wates dina tabel di handap ieu. Lebetkeun nilai dina catetan tés.
Gelombang Tipe Frékuénsi Amplituit Pangukuran Rentang sinus 1.000 kHz 30.0 mVPP 28.55 mVPP – 31.45 mVPP sinus 1.000 kHz 300.0 mVPP 294.5 mVPP – 305.5 mVPP sinus 1.000 kHz 800.0 mVPP 787.0 mVPP – 813.0 mVPP sinus 1.000 kHz 1.500 VPP 1.4765 VPP - 1.5235 VPP sinus 1.000 kHz 2.000 VPP 1.969 VPP - 2.031 VPP sinus 1.000 kHz 2.500 VPP 2.4615 VPP - 2.5385 VPP
Pariksa akurasi offset AFG DC
Tés ieu pariksa akurasi offset DC tina generator fungsi sawenang. Tés ieu ngagunakeun terminator 50 Ω. Perlu terang katepatan terminator 50 Ω sateuacan tés ieu. akurasi ieu dipaké salaku faktor calibration.
- Sambungkeun terminator 50 Ω ka DMM sakumaha ditémbongkeun dina gambar di handap ieu sarta ngukur nilai lalawanan.

- Itung faktor kalibrasi 50 Ω (CF) tina nilai bacaan sareng catetan sapertos kieu:
Tabél 3: CF (Faktor Kalibrasi) = 0.5 × (( 50 / Pangukuran Ω) + 1)Pangukuran (bacaan tina DMM) CF diitung Examples:
• Pikeun pangukuran 50.50 Ω, CF = 0.5 ( 50 / 50.50 + 1) = 0.9951.
• Pikeun pangukuran 49.62 Ω, CF = 0.5 ( 50 / 49.62 + 1) = 1.0038. - Sambungkeun kaluaran generator fungsi sawenang ka DMM ditémbongkeun saperti dina gambar di handap ieu. Pastikeun pikeun nyambungkeun terminator 50 Ω ka konektor AFG output generator sawenang-wenang.

- Ketok tombol AFG sareng setel generator fungsi sawenang-wenang sapertos kieu:
Pilih ménu Setélan Jenis Gelombang DC Ngimbangan + 1.25 V Kaluaran On - Ukur voltage readout dina DMM.
- Kalikeun DMM voltage ku cf diitung pikeun meunangkeun dilereskeun offset voltage. Lebetkeun nilai hasilna dina widang Measurement dina tabel di handap ieu.
Fungsi Ngimbangan Pangukuran Rentang DC + 1.25 Vdc Vdc 1.23025 Vdc dugi ka 1.26975 Vdc DC 0.000 Vdc Vdc - 0.001 Vdc nepi ka + 0.001 Vdc DC - 1.25 Vdc Vdc -1.26975 Vdc ka -1.23025 Vdc - Ngarobah kaluaran AFG amplitude kana nilai salajengna dina tabél, ngukur voltage readout dina DMM, kalikeun DMM readout ku CF diitung pikeun meunangkeun offset vol dilereskeuntage, sarta asupkeun nilai hasilna dina widang Pangukuran dina tabél.
- Pastikeun yén pangukuran offset anu dilereskeun aya dina kisaran.
Ngadaptar ayeuna!
Pencét tautan ieu pikeun ngajagi produk anjeun.
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