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Development of a capacitive-type 6-axis force-torque sensor

Sophon Somlor, Alexander Schmitz, H. Jinsun, Tito Pradhono Tomo, Shigeki Sugano

Year
2017
Citations
7

Abstract

Force sensing is a crucial task for robots, especially when end effectors such as fingers and hands need to interact with unknown environments; to sense such forces, a force-torque (F/T) sensor is an essential component. In this paper, we propose a small-sized 6-axis F/T sensor with a novel arrangement of 12 transducers using the force transducer we have previously developed. The copper beryllium used in our sensor reduces hysteresis in each transducer. Additionally, the sensor provides digital output via I2C bus to reduce the susceptibility to noise, and reduce the number of required wires. Sensor characteristics such as its sensitivity, signal-to-noise ratio, linearity, and hysteresis are determined. More importantly, we showed that our sensor can detect and measure the 6-axis F/T.

Keywords

Capacitive sensingTransducerHysteresisTorqueLinearityNoise (video)Electro-optical sensorSensitivity (control systems)Electrical engineeringPressure sensor

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