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An analytical-numerical method for determining the mechanical response of a condenser microphone

机译:确定电容式麦克风机械响应的解析数值方法

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摘要

The paper is based on determining the reaction pressure on the diaphragm of a condenser microphone by integrating numerically the frequency domain Stokes system describing the velocity and the pressure in the air domain beneath the diaphragm. Afterwards, the membrane displacement can be obtained analytically or numerically. The method is general and can be applied to any geometry of the backplate holes, slits, and backchamber. As examples, the method is applied to the Bruel & Kjaer (B&K) 4134 1/2-inch microphone determining the mechanical sensitivity and the mechano-thermal noise for a domain of frequencies and also the displacement field of the membrane for two specified frequencies. These elements compare well with the measured values published in the literature. Also a new design, completely micromachined (including the backvolume) of the B&K micro-electro-mechanical systems (MEM) 1/4-inch measurement microphone is proposed. It is shown that its mechanical performances are very similar to those of the B&K MEMS measurement microphone.
机译:本文是通过对频域Stokes系统进行数值积分来确定电容传声器的膜片上的反应压力的基础,该系统描述了膜片下方空气域中的速度和压力。之后,可以通过分析或数值方式获得膜位移。该方法是通用的,可以应用于背板孔,狭缝和后腔的任何几何形状。例如,该方法应用于Bruel&Kjaer(B&K)4134 1/2英寸传声器,确定频率范围内的机械灵敏度和机械热噪声,以及确定两个指定频率下膜的位移场。这些元素可以与文献中公布的测量值相比较。还提出了一种新的设计,即对B&K微机电系统(MEM)的1/4英寸测量麦克风进行完全微加工(包括后体积)。结果表明,其机械性能与B&K MEMS测量麦克风的机械性能非常相似。

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