The TTS-F-SQ-M Static Torque Transducer is a high-precision reaction torque sensor designed for accurate measurement of torque in industrial and research applications. It features a flange mounting design with a male square drive, allowing easy integration into torque testing setups such as actuators, tools, motors, and drive shafts.
Constructed from electroless nickel plated tool steel or stainless steel, the transducer provides excellent durability for harsh industrial environments. The strain-gauge based sensing technology ensures high accuracy, low hysteresis, and reliable long-term performance.
With temperature compensation from 10C to 50C, compact design, and IP65 protection for the gauge area, the sensor delivers stable and consistent measurements across a wide range of applications. It is available in capacities from 100 Nm up to 50,000 Nm, making it suitable for both laboratory testing and heavy-duty industrial torque measurement.
A static torque transducer measures reaction torque without continuous rotation, commonly used in torque testing systems where the load is applied but the sensor itself remains stationary.
This model uses a flange mounting configuration with a male square drive, allowing easy connection to torque tools and mechanical assemblies.
The sensor is available in torque capacities ranging from 100 Nm to 50,000 Nm, covering a wide range of industrial applications.
The transducer uses strain gauge technology, which converts mechanical deformation caused by torque into an electrical signal.
It provides a 2.0 mV/V analog output, which can be connected to compatible signal conditioners, indicators, or data acquisition systems.
The transducer is made from electroless nickel plated tool steel or stainless steel, ensuring durability and resistance to shock and overload.
Yes, the gage area is sealed with IP65 environmental protection, making it suitable for industrial testing environments.
Yes, the sensor can be customized according to required dimensions, mounting styles, and torque capacities.
Common applications include actuator testing, valve testing, shaft torsion tests, motor testing, automotive drivetrain testing, and aerospace or R&D test rigs.
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