JOURNAL ARTICLE

An integrated MEMS tactile tri-axial micro-force probe sensor for Minimally Invasive Surgery

Abstract

In this paper, we describes an integrated MEMS tactile tri-axial micro-force probe sensor based on piezoresistive for Minimally Invasive Surgery (MIS) as it's micro-structure, three-dimensional measurement and high resolution up to be micronewton (μN) scale. The sensor is 4 × 4 × 20.9 mm 3 . The sensing element of the sensor is fabricated on Silicon on Insulator (SOI) wafer by surface and bulk micromachining technology. It uses four cantilever beams supporting the suspended mass. Twelve relief pieoresisters formed by iron implant and Inductive Couple Plasmas (ICP) etching technology are placed on the beams to detect the applied force. The pyrex glass bonded on the bottom of the SOI wafer by anodic bonding technology is the overload protection element. The tactile element is the quartz fiber probe which is no-pollution, low cost, small size and easy to process. It is glued on suspended mass of the sensing element by epoxy resin. After fabrication, the sensor is packaged and tested by precision test bench and analytical balance. The experimental results illustrate that the sensor has excellent characteristics especially with resolution better than 3μN.

Keywords:
Materials science Microelectromechanical systems Silicon on insulator Piezoresistive effect Cantilever Tactile sensor Wafer Fabrication Etching (microfabrication) Adapter (computing) Surface micromachining Wheatstone bridge Optoelectronics Nanotechnology Silicon Electrical engineering Composite material Computer science Engineering Robot

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0.75
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Citation History

Topics

Force Microscopy Techniques and Applications
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Advanced MEMS and NEMS Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Mechanical and Optical Resonators
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
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