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Expanding the scope of "measuring" and measuring the torque of various products.

Ono Sokki, a torque measurement company, releases a detector with the industry's highest accuracy and rigidity

Our company has developed a new torque sensor that contributes to creating automobiles with superior quietness.
Improving quietness requires the development of motors that minimize cogging torque and torque ripple, which are causes of vibration and noise, and thus requires detectors that can capture torque movements with unprecedented accuracy.
The compact, high-rigidity torque detector RH series contributes to the development of high-quality motors by increasing rigidity and enabling higher rotational speeds.
Going forward, we will further expand our "measuring" capabilities by increasing the lineup of the RH series.

  • Compact, high-rigidity torque detector RH-1105/RH-1205
    Compact, high-rigidity torque detector RH-1105/RH-1205

RH Series Features

  • By increasing rigidity by approximately 4.5 times (compared to our previous model), we have achieved improved responsiveness and accurate measurement that captures torque fluctuations.
  • Stable measurement is possible from low-speed to high-speed rotation.
  • Counterless design, ideal for integration into equipment. Achieves cost reduction.
  • Miniaturization reduces mass and volume to approximately 1/3 (compared to our previous model).

RH Series Main Specifications

Rated Torque RH-1105(10 N・m) / RH-1205(20 N・m)
Limit Torque 200% of rated torque
linearity ±0.05 %/FS (including hysteresis)
Rated rotational speed 20,000 r/min (10 N・m / 20 N・m)
Torsional rigidity RH-1105 (3.6 kN・m/rad) / RH-1205(6.9 kN・m/rad)
Power supply voltage DC24V (18-30V)
Operating temperature range 0 ~ +50 ℃
Weight 約2 kg

The information on this page is based on the information available at the time of publication.
Please note that if product sales are discontinued, organizational changes are made, or specifications are changed after publication, the information may differ from the latest information.

This page is created by an automatic translation system based on the information in the Japanese version. Details