WINGONEER 4r

WINGONEER 50Kg Body Load Cell Weighing Sensor Instruction Manual

Model: 4r

1. Bubuka

This manual provides essential information for the proper installation, operation, and maintenance of the WINGONEER 50Kg Body Load Cell Weighing Sensor. This half-bridge strain gauge sensor is designed for various weighing applications, particularly suitable for DIY projects involving microcontrollers like Arduino. Please read this manual thoroughly before use to ensure safe and effective operation.

2. Produk Langkungview

The WINGONEER 50Kg Body Load Cell is a compact and robust weighing sensor. It operates on the principle of resistance strain, where the electrical resistance changes in proportion to the applied mechanical stress. This sensor is configured as a half-bridge, requiring an external full-bridge circuit or two such sensors to form a full bridge for accurate measurement.

Ti luhur ka handap view of the WINGONEER 50Kg Body Load Cell with attached wires.

Gambar 1: Top-handap view of the WINGONEER 50Kg Body Load Cell with attached wires. The sensor features a central load-bearing element and four color-coded wires for connection.

Handapeun view of the WINGONEER 50Kg Body Load Cell, showing the mounting points.

Gambar 2: Handap view of the WINGONEER 50Kg Body Load Cell, illustrating the structural design and mounting points for secure installation.

Angled view of the WINGONEER 50Kg Body Load Cell, highlighting its compact design.

Gambar 3: Angled view of the WINGONEER 50Kg Body Load Cell, showcasing its overall form factor and wire connections.

3. Spésifikasi

ParameterNilai
Kapasitas50 kg
TipeHalf-Bridge Strain Gauge
Sensitipitas kaluaran1.0 ± 0.1 mV/V
Non-linieritas0.05% FS
Histeresis0.05% FS
Repeatability0.05% FS
Creep (30 min)0.05% FS
Temperature Effect on Zero0.05% F.S./10°C
Temperature Effect on Span0.05% F.S./10°C
Résistansi Input1000 ± 10 Ohm
Résistansi kaluaran1000 ± 10 Ohm
Résistansi insulasi≥ 2000 MΩ (100VDC)
Suhu Operasi-10°C nepi ka +50°C
Recommended Excitation Voltage5-10 VDC
Vol éksitasi maksimumtage15 VDC
BahanAluminium Alloy
WiringRed (E+), Black (E-), White (O-), Green (O+)

4. Setélan

4.1 Mounting the Load Cell

Securely mount the load cell to a stable, rigid surface using appropriate fasteners. Ensure that the load is applied directly to the designated sensing area of the load cell. Avoid applying off-center or twisting forces, as this can lead to inaccurate readings and potential damage.

4.2 Parentah Wiring

The 50Kg Body Load Cell is a half-bridge sensor. To form a complete Wheatstone bridge for measurement, you will typically need two such half-bridge sensors or one half-bridge sensor combined with two fixed resistors. An HX711 ADC (Analog-to-Digital Converter) module is commonly used with these sensors for signal amplification and digital conversion.

The sensor has four color-coded wires:

  • Beureum: Excitation+ (E+)
  • Hideung: Excitation- (E-)
  • bodas: Output- (O-)
  • héjo: Output+ (O+)

When connecting to an HX711 module:

  • Nyambung Beureum wire to E+ on HX711.
  • Nyambung Hideung wire to E- on HX711.
  • Nyambung Bodas wire to A- on HX711.
  • Nyambung Héjo wire to A+ on HX711.

For a full-bridge configuration using two half-bridge sensors:

  1. Connect Red wires of both sensors together to the positive excitation voltage.
  2. Connect Black wires of both sensors together to the negative excitation voltage (ground).
  3. Connect the Green wire of the first sensor to the White wire of the second sensor. This connection point will be one of your differential outputs (e.g., A+ on HX711).
  4. Connect the White wire of the first sensor to the Green wire of the second sensor. This connection point will be your other differential output (e.g., A- on HX711).

Catetan: Always refer to the specific documentation of your ADC module (e.g., HX711) for precise wiring diagrams and calibration procedures.

5. Parentah Operasi

5.1 Kalibrasi

After wiring, calibration is crucial for accurate measurements. This typically involves:

  1. Nol Kalibrasi: With no load on the sensor, take a reading. This establishes the baseline or 'tare' value.
  2. Kalibrasi bentang: Apply a known weight (calibration weight) to the sensor and take a reading. Use this reading and the known weight to calculate the sensor's conversion factor (e.g., grams per ADC unit).

Most microcontroller libraries for HX711 or similar ADCs provide functions for these calibration steps.

5.2 Nyokot Pangukuran

Once calibrated, the sensor will output a raw analog signal proportional to the applied load. The ADC module converts this into a digital value. Your microcontroller code will then apply the calibration factor to convert this digital value into a meaningful unit of weight (e.g., grams, kilograms).

Ensure the load is applied smoothly and centrally to the load cell for consistent readings. Avoid sudden impacts or vibrations during measurement.

6. Pangropéa

The WINGONEER 50Kg Body Load Cell is designed for durability and requires minimal maintenance. Follow these guidelines:

  • Tetep Bersih: Regularly clean the sensor surface to prevent accumulation of dust or debris that could interfere with its operation. Use a soft, dry cloth.
  • Hindarkeun Overload: Do not exceed the rated capacity of 50 kg. Overloading can permanently damage the strain gauges.
  • Ngajaga tina Lingkungan: While robust, protect the sensor from excessive moisture, extreme temperatures, and corrosive substances unless specifically designed for such environments.
  • Pariksa Wiring: Periodically check the wiring for any signs of wear, fraying, or loose connections.

7. Cara ngungkulan

  • Bacaan teu akurat:
    • Alesan anu mungkin: calibration teu bener. Solusi: Re-calibrate the sensor following the steps in Section 5.1.
    • Alesan anu mungkin: Unstable mounting or off-center load. Solusi: Ensure the load cell is securely mounted and the load is applied centrally.
    • Alesan anu mungkin: Electrical noise. Solusi: Use shielded cables, keep signal wires away from power lines, and ensure stable power supply to the ADC and microcontroller.
  • No Readings/Sensor Not Responding:
    • Alesan anu mungkin: Kabel salah. Solusi: Double-check all wire connections against the diagram in Section 4.2.
    • Alesan anu mungkin: Faulty ADC module or microcontroller. Solusi: Test the ADC module and microcontroller with a known working setup if possible.
    • Alesan anu mungkin: sél beban ruksak. Solusi: Inspect the load cell for physical damage. If damaged, replacement may be necessary.
  • Readings Drift Over Time:
    • Alesan anu mungkin: Fluktuasi suhu. Solusi: Ensure the operating environment is stable. Some drift is inherent in strain gauges, but significant drift may indicate an issue.
    • Alesan anu mungkin: Creep. Solusi: For long-term measurements, allow the sensor to stabilize under load before taking final readings.

8. Garansi jeung Rojongan

No specific warranty information is provided for this product. For technical support or inquiries, please refer to the vendor or manufacturer's contact information available at the point of purchase.

© 2023 WINGONEER. All rights reserved. This manual is for informational purposes only.

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