Skip to content

Select your region & language

Global

Region

It can measure minute torques at high rotational speeds of 25,000 r/min.

TH-3000 Series Phase Difference Method Micro Torque Detector

  • TH-3000 Micro Torque Detector
    TH-3000 Micro Torque Detector

"High-speed response"

Torque ripple can be measured at actual operating rotational speeds.

"Suitable for high rotational speeds"

Supports high-speed rotation up to 25,000 r/min.

“High precision”

Measurement accuracy of ±0.2%/F.S. is possible.

“Overload resistance mechanism”

It won't break even if a torque of 3 N·m is applied temporarily.

"Line driver output with excellent noise immunity"

Designed for easy use on the production line.

The TH-3000 series micro-torque detector is a torque detector that can detect the input and output torque of small precision motors, actuators, bearings, and other rotating parts and various rotating mechanisms with high resolution and accuracy.


In recent years, small motors have come into widespread use not only in portable devices and PCs, but also in automotive components. Consequently, in order to improve the quality and efficiency of products using these motors, it has become important not only to improve the basic performance of the motors but also to reduce torque ripple.


The TH-3000 series micro-torque detectors are designed to meet these needs. While conventional micro-torque detectors were extremely delicate to handle, this product addresses this issue with its unique overload protection mechanism. Even models with a rated torque of 50 mN·m can withstand a temporary torque of 3 N·m (6000% of the rated torque). Therefore, damage due to accidental overtightening during installation or removal is significantly reduced.

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