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3D omnidiectional contollable elastic IPMC tweezer with self-sensing and adjustable clamping force abilities for biomedical applications
Conference paper

3D omnidiectional contollable elastic IPMC tweezer with self-sensing and adjustable clamping force abilities for biomedical applications

Guo-Hua Feng and Jen-Wei Tsai
2011 16th International Solid-State Sensors, Actuators and Microsystems Conference, TRANSDUCERS'11, pp.1725-1728
2011

Abstract

biomedical application clumping force IPMC tweezer omnidirectional Hardware and Architecture Electrical and Electronic Engineering
This paper presents state-of-the-art three-dimensional (3D) omnidirectional accessible elastic tweezers, which are fabricated with flexible ionic polymer metal composites (IPMCs) using an innovative micromachining process. The tweezer is consisted of two major parts: motion element and clamping head (Fig. 1). With novel multiple electrodes design, the clamping head not only can move multi-directionally, but can provide an adjustable clasping force via electrical voltage control. Meanwhile, the capability of self-sensing its grasping force through the feedback current is the uniqueness of the transducer. The tweezer could be useful in microendoscopic surgery. © 2011 IEEE.

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