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A low-power integrated circuit for interfacing a capacitive micromachined ultrasonic transducer (CMUT) based resonant gas sensor

机译:用于接口电容式微机械超声换能器(CMUT)的谐振气体传感器的低功率集成电路

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In this work we present a complete end-to-end interface for a capacitive micromachined ultrasonic transducer (CMUT) intended for low-power gas sensing applications. A prototype chip was designed in a 0.18-μm BiCMOS process. Different blocks (a BJT-based Colpitts oscillator, an inverter-based oscillator, a sine-to-square wave converter, a digital frequency counter, and a parallel-to-serial converter) required for the complete system are discussed, designed, and tested for their standalone performance. Consequently, a complete system interfaced with a 3.6-MHz CMUT and providing a digital frequency output is presented. With duty cycling for one measurement per minute the system consumed 10 μW power.
机译:在这项工作中,我们为电容微机械超声波换能器(CMUT)提供了一种用于低功耗气体传感应用的完整端到端接口。原型芯片设计在0.18-μm的BICMOS工艺中。讨论了完整系统所需的不同块(基于BJT的Colpitts振荡器,逆变器的振荡器,正弦振荡器,数字频率计数器,数字频率计数器,数字频率计数器和并行串行转换器)测试了独立的性能。因此,提出了一种与3.6MHz CMUT接口并提供数字频率输出的完整系统。每分钟循环一次测量的循环系统消耗了10μW的电源。

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