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文章摘要
电容式微机械超声换能器的信号调理电路设计
Design of a signal processing circuit ofCapacitive Micromachined Ultrasonic Transducer
Received:October 08, 2016  Revised:October 26, 2016
DOI:
中文关键词: 电容式微机械超声换能器  高频微弱信号  信号调理电路  收发一体  
英文关键词: Capacitive Micromachined Ultrasonic Transducer  high frequency weak signal  signal processing circuit  transceiver integrated
基金项目:国家杰出青年科学(61525107);国家重点研发项目(2016YFC0101900);
Author NameAffiliationE-mail
Zhao Lei Science and Technology on Electronic Test and Measurement Laboratory,North University of China 850592490@qq.com 
Zhang Wendong Science and Technology on Electronic Test and Measurement Laboratory,North University of China 850592490@qq.com 
He Changde* Science and Technology on Electronic Test and Measurement Laboratory,North University of China 850592490@qq.com 
Zhang Guojun Science and Technology on Electronic Test and Measurement Laboratory,North University of China 850592490@qq.com 
Jiao Xinquan Science and Technology on Electronic Test and Measurement Laboratory,North University of China 850592490@qq.com 
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中文摘要:
      针对电容式微机械超声换能器(cMUT)的工作原理和检测要求,分析了换能器高频微弱回波信号的处理方法,设计了性能良好的信号调理电路,有效的解决了在实际应用中换能器模式转换和高频微弱信号调理的关键问题和首要难题。通过对电路系统的测试,实验结果表明该电路具有良好的线性和稳定性,且其带宽为 ,灵敏度为 ,分辨率为 ;其不仅实现了换能器收发一体及高频微弱信号调理的功能,而且还为换能器水下超声成像系统的建立奠定了基础。
英文摘要:
      Aimed at working principle and detecting demand of the Capacitive Micromachined Ultrasonic Transducer (cMUT), a good performance signal processing circuit was designed through analyzing processing methods of transducer’s high frequency weak echo signal, and solved the key problem and primary difficulty which were transducer model transformation and high frequency weak signal conditioning in practical application. Through the testing circuit system, the results showed that the circuit had great linearity and stability, and its bandwidth was , sensitivity was , and resolution was . In the paper, the circuit not only implemented the function of transmission-receiving and high frequency weak signal processing of the cMUT, but also set base for building underwater ultrasonic imaging system of the cMUT.
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