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A Novel All Silicon Bone Conduction Microphone With Broad Bandwidth (100hz~10khz)
Conference paper

A Novel All Silicon Bone Conduction Microphone With Broad Bandwidth (100hz~10khz)

Sung-Cheng Lo, Hsi-Wen Tung, Hung-Yu Lin, Feng-Chieh Su, Chung-Chieh Chen and Weileun Fang
Proceedings of the IEEE International Conference on Micro Electro Mechanical Systems (MEMS), pp.97-100
2024

Abstract

Bone conduction microphone broad bandwidth Electronic Optical and Magnetic Materials Condensed Matter Physics Mechanical Engineering Electrical and Electronic Engineering
This study designs and realizes a MEMS spring-mass system to detect vocal cord vibration transmitted through skull and muscle that can be applied for bone conduction microphone (BCM) application. The BCM with no sound-port has the advantage to receive only own voice and could remove the environmental/wind noise. The proposed BCM design has three merits: (1) the spring-mass structure design could achieve 10kHz bandwidth to captures broad frequency responses; (2) the dimple stopper design is exploited to limit the upper and lower displacement of the moving diaphragm for reliability enhancement, (3) compared with existing BCM, the presented one is implemented using only wafer processes with no assembly required. The device after metal-can packaging has the dimensions of 4×3×0.9 mm3. Measurements indicate the device has a sensitivity of -34.5dBFS/g at 1kHz, and flat bandwidth(±3dB) for 100Hz~10kHz. The proposed BCM assembled on earphone demonstrates that the recording quality is excellent for voice call communication, and it records user's own voice only without any audio algorithm processing.

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