Sharp Electronics
Thergaon, Pune, Maharashtra
GST No. 27AAXFS0180Q1Z9
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Call 0804516898891% Response Rate

Torque Measurement Machine

Providing you the best range of 5/10 nm rotary torque transducer with effective & timely delivery.

5/10 NM Rotary Torque Transducer

5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
  • 5/10 NM Rotary Torque Transducer
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Approx. Price: Rs 55,000 / UnitGet Latest Price
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Product Details:

BrandSharp Electronics
Model Name/Numberna
Mounting Typena
Excitation Voltage10 VDC (Max. 15 VDC)
Nominal Output2 mV/V
Cable Length5 mtr
Input Resistance390 Ohms

A rotary torque sensor is a device designed to measure the torque or rotational force applied to a rotating system. It is essential in many applications where precise measurement of rotational force is critical, such as in automotive testing, industrial machinery, and robotics. Here is a detailed explanation of how rotary torque sensors work, their types, applications, and benefits.

  • Principle of Operation:

    • Strain Gauge Technology: Most rotary torque sensors use strain gauges to measure the deformation (strain) of a shaft when torque is applied. Strain gauges are attached to the rotating shaft, and as torque is applied, the shaft deforms slightly. This deformation changes the electrical resistance of the strain gauges, which can be measured and correlated to the amount of torque.
    • Magnetoelastic and Piezoelectric Sensors: Some sensors use magnetoelastic or piezoelectric materials that generate a signal when subjected to torque. These materials produce a measurable change in magnetic properties or generate an electrical charge in response to mechanical stress.
  • Signal Transmission:

    • Slip Rings and Brushes: In traditional rotary torque sensors, slip rings and brushes are used to transmit the electrical signal from the rotating shaft to the stationary measurement system. This method can introduce noise and wear over time.
    • Wireless Transmission: Modern sensors often use wireless transmission to send data from the rotating shaft to the measurement system, reducing wear and improving signal quality.

  • Calibration:

    • Calibration ensures the accuracy of the sensor. The sensor is subjected to known torque values, and the corresponding output is recorded. This calibration data is used to create a relationship between the sensor output and the actual torque.
    • Applications of Rotary Torque Sensors
      1. Automotive Industry:

        • Testing and development of engines, transmissions, and drivetrain components.
        • Monitoring torque in electric and hybrid vehicle motors.
      2. Industrial Machinery:

        • Monitoring and controlling torque in pumps, compressors, and motors.
        • Ensuring proper functioning and efficiency of rotating machinery.
      3. Aerospace:

        • Testing and monitoring of aircraft engines and components.
        • Ensuring the reliability and safety of aerospace systems.
      4. Robotics:

        • Measuring torque in robotic arms and joints to ensure precise control and operation.
        • Enhancing the performance and safety of robotic systems.
      5. Medical Devices:

        • Measuring torque in surgical instruments and medical machinery.
        • Ensuring the accuracy and reliability of medical devices.
        • Benefits of Rotary Torque Sensors
          1. Accuracy and Precision: Provide highly accurate and precise measurements of torque, essential for performance testing and quality control.
          2. Durability and Reliability: Modern non-contact and wireless sensors offer long-term durability and reliability with minimal maintenance.
          3. Versatility: Can be used in a wide range of applications across different industries.
          4. Real-Time Monitoring: Enable real-time monitoring and control of torque, improving the efficiency and safety of various systems.
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    Kailas Shitole (CEO)
    Sharp Electronics
    S. No. 18/1, Wakad Road
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