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Product Matrix
JOINT TORQUE SENSOR

Rotary-joint torque feedback

JTorq Motus™ Robot Joint Torque Sensor

A torque sensor that measures the output torque of robot motor joint modules, providing real-time data for closed-loop torque control, overload protection and condition monitoring. It offers a multi-range design, low drift, good repeatability and standardized interfaces, and suits integrated joints, servo drives and test platforms.

JTorq Motus™ Robot Joint Torque Sensor
Force / torque axes
1 DOF
Sensor diameter
Ø45–135 mm
Model range
5–800 Nm
Official models
12
Simulation data

Dynamic Force / Torque Data Demonstration

A single simulated torque channel shows how joint-loading data can be organized. The values below are software-generated for demonstration, not readings from connected hardware.

Demonstration model
Data pattern
Current simulated values
Mz
0.00 Nm
PK
0.00 Nm
RMS
0.00 Nm
Torque gaugeM-D45-005 · Mz within ±model rangeThe needle tracks the simulated torque inside the selected model’s documented range.
Rotary-joint viewM-D45-005 · Direction & magnitudeA joint disc turns with the simulated torque to illustrate forward and reverse loading.
Torque time waveformM-D45-005 · Continuous simulated historyThe waveform tracks the Mz channel over time between the range limits.
Load-cycle polar viewM-D45-005 · Periodic loading traceA polar trail shows the phase distribution of the simulated load cycle.
FFT spectrumM-D45-005 · Illustrative Mz spectrumPseudo-3D bars illustrate how periodic torque changes may be inspected.

This dashboard uses slowly changing simulated values. No physical sensor is connected.

Core Capabilities

The capability points below are taken from the official product material for this family.

  • Real-time output torque measurement for closed-loop torque control, overload protection and condition monitoring

  • Multi-range design

  • Low drift and good repeatability

  • Standardized interfaces

Quick Start

A practical integration sequence; final mechanical and electrical details follow the official technical file.

  1. Select the model

    Match the expected load to one of the official variants in this family.

  2. Mount at the measurement point

    Confirm the mechanical interface and protect the sensing body from unintended loads.

  3. Connect data acquisition

    Connect the specified power and communication interface according to the official technical file.

  4. Zero, verify and acquire

    Zero the unloaded sensor, verify channel directions, then use the measured data in the control workflow.

Technical Specifications

ParameterSpecification
Sensor materialStainless steel
Sensor typeResistive strain gauge
Mz range (Nm)10~200 (multiple ranges per model: M-D045:10/20/50; M-D065:10/20/50/100/150; M-D085/105/155:50/100/150/200)
Overload capacity (%)200
Non-linearity (%F.S)<0.1
Repeatability (%F.S)<0.2
Hysteresis (%F.S)<0.5
Temperature drift (%F.S/10°C)<0.2
Zero drift (%F.S/30min)<0.1
Input/output impedance700±5Ω
Insulation resistance≥500MΩ (100V DC)
Supply voltage3.3–15V
Operating temperature range-20–80°C

Application Scenarios

Current product content and selection relationships support the following customer tasks.

For torque feedback at dexterous, collaborative and industrial joints.

  • APPLICATION 01

    Integrated joints

    Rotary-joint torque feedback
  • APPLICATION 02

    Servo drives

    Rotary-joint torque feedback
  • APPLICATION 03

    Test platforms

    Rotary-joint torque feedback

Applicable Robots and Mounting Locations

Robot types and locations below are generated from the current selection relationships rather than page-specific marketing copy.

Current selection: Humanoid Robots · Rotary-joint torque feedback

  • Humanoid Robots
  • Collaborative Robots
  • Industrial Robots
  • Rotary-joint actuator

Select a model

Downloads

Data note

Some parameter information continues to be verified. Refer to the official technical documentation.

Ready to Drive?

Give every robot joint an exact sense of how hard it is working.

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