Design And Fabrication of Condenser Microphone Using Wafer Transfer And Micro-electroplating Technique
Abstract
A novel fabrication process, which uses wafer transfer and micro-electroplating technique, has been proposed and tested. In this paper, the effects of the diaphragm thickness and stress, the air-gap thickness, and the area ratio of acoustic holes to backplate on the sensitivity of the condenser microphone have been demonstrated since the performance of the microphone depends on these parameters. The microphone diaphragm has been designed with a diameter and thickness of 1.9 mm and 0.6 m, respectively, an air-gap thickness of 10 m, and a 24% area ratio of acoustic holes to backplate. To obtain a lower initial stress, the material used for the diaphragm is polyimide. The measured sensitivities of the microphone at the bias voltages of 24 V and 12 V are -45.3 and -50.2 dB/Pa (at 1 kHz), respectively. The fabricated microphone shows a flat frequency response extending to 20 kHz.
Keywords
Cite
@article{arxiv.0805.0856,
title = {Design And Fabrication of Condenser Microphone Using Wafer Transfer And Micro-electroplating Technique},
author = {Zhen-Zhun Shu and Ming-Li Ke and Guan-Wei Chen and Ray Hua Horng and Chao-Chih Chang and Jean-Yih Tsai and Chung-Ching Lai and Ji-Liang Chen},
journal= {arXiv preprint arXiv:0805.0856},
year = {2008}
}
Comments
Submitted on behalf of EDA Publishing Association (http://irevues.inist.fr/handle/2042/16838)