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基于丁腈橡胶帽封装的MEMS仿生水听器的设计
引用本文:刘梦然,简泽明,张国军,张文栋.基于丁腈橡胶帽封装的MEMS仿生水听器的设计[J].传感技术学报,2014,27(1).
作者姓名:刘梦然  简泽明  张国军  张文栋
作者单位:中北大学仪器科学与动态测试教育部重点实验室;中北大学电子测试技术重点实验室;
基金项目:国家“863”计划项目(2011AA040404);国家自然科学基金项目(61127008,51205374);山西省青年科技研究基金项目(2012021013-3)
摘    要:针对现有封装结构会对灵敏度造成一定程度的损失,使现有水听器的灵敏度小于水听器芯片裸测灵敏度的问题,改用了透声性能好、耐腐蚀的丁腈橡胶(NBR)制作的透声帽,并对现有的矢量水听器的封装外壳进行相应的优化设计。该封装结构的水听器的共振频率降低到50 Hz以下,水听器所感兴趣的频段(50 Hz~4 kHz)不会受到封装谐振的干扰,拓宽了水听器的工作频段。该封装的灵敏度提高到几乎与裸片的灵敏度一致,达到(-170±2)dB,并优化金属管壳的圆盘的尺寸,即水听器最大径,由36 mm缩小至28 mm,使水听器的封装进一步小型化。

关 键 词:MEMS仿生水听器  丁腈橡胶帽封装  频率  灵敏度  小型化

Design of MEMS Bionic Vector Hydrophone Based on NBR Encapsulation
Abstract:This paper introduces the material nitrile butadiene rubber (NBR), with good performance in sound transmission and anti-corrosion, in making the sound-transparent cap, and puts forward an optimal design of the encapsulation shell of the MEMS bionic vector hydrophone, resolving the problem that current encapsulation structure causes loss to sensitivity, making the hydrophone less sensitive to the bare chip. With the new encapsulation structure, the resonance frequency of the hydrophone has been dropped below 50 Hz, which ensures the frequency spectrum (50-4kHz) the hydrophone interested in free from the interference of the encapsulation resonance, broadening the working frequency band. The sensitivity of the optimal encapsulation has been improved to -170 dB (±2 dB), almost the same with the bare chip, and the maximum diameter of the hydrophone has been reduced from 36mm to 28mm, miniaturizing the hydrophone further.
Keywords:MEMS bionic hydrophone  encapsulation  frequency  sensitivity  miniaturization
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