2009Electronics & PackagingRequires access

MEMS-based Micro-silicon Piezoresistive Accelerometer Design

Zhang Jian-bi

Open publisher page 4 citations

Abstract

Silicon Micro Devices MEMS accelerometer is an important branch, with a wide range of applications. As the silicon micro-accelerometer has a fast response, high sensitivity, high precision, easy-to-small size, etc., and the kind of strong radiation sensors able to work under, it developed rapidly in recent years. The article first sensor structure and working principle was simple, given based on MEMS technology produced by the piezoresistive silicon micro-accelerometer on the structure and process, and produced by the acceleration sensor dynamic test samples, test results show that And basically consistent with the theory of the design value.

About this research paper

What this paper is about

Silicon Micro Devices MEMS accelerometer is an important branch, with a wide range of applications. As the silicon micro-accelerometer has a fast response, high sensitivity, high precision, easy-to-small size, etc., and the kind of strong radiation sensors able to work under, it developed rapidly in recent years. The article first sensor structure and working principle was simple, given based on MEMS technology produced by the piezoresistive silicon micro-accelerometer on the structure and process, and produced by the acceleration sensor dynamic test samples, test results show that And basically consistent with the theory of the design value.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Silicon Micro Devices MEMS accelerometer is an important branch, with a wide range of applications. As the silicon micro-accelerometer has a fast response, high sensitivity, high precision, easy-to-small size, etc., and the kind of strong radiation sensors able to work under, it developed rapidly in recent years. The article first sensor structure and working principle was simple, given based on MEMS technology produced by the piezoresistive silicon micro-accelerometer on the structure and process, and produced by the acceleration sensor dynamic test samples, test results show that And basically consistent with the theory of the design value.

Key concepts: Accelerometer, Piezoresistive effect, Microelectromechanical systems, Acceleration, Silicon, Sensitivity (control systems), Materials science, Electronic engineering

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