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Integrated reconfigurable high-voltage transmitting circuit for CMUTs

机译:集成可配置的CMUT高压传输电路

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In this paper a high-voltage transmitting circuit aimed for capacitive micromachined ultrasonic transducers (CMUTs) used in scanners for medical applications is designed and implemented in a 0.35 (upmu)m high-voltage CMOS process. The transmitting circuit is reconfigurable externally making it able to drive a wide variety of CMUTs. The transmitting circuit can generate several pulse shapes with voltages up to 100 V, maximum pulse range of 50 V, frequencies up to 5 MHz and different driving slew rates. Measurements are performed on the circuit in order to assess its functionality and power consumption performance. The design occupies an on-chip area of 0.938 mm(^{2}) and the power consumption of a 128-element transmitting circuit array that would be used in an portable ultrasound scanner is found to be a maximum of 181 mW.
机译:本文针对0.35μm高压CMOS工艺设计并实现了一种高压传输电路,该电路针对医疗扫描仪中使用的电容式微机械超声换能器(CMUT)。发送电路可在外部进行重新配置,从而能够驱动各种CMUT。发射电路可以产生几种脉冲形状,其电压高达100V,最大脉冲范围为50V,频率高达5MHz,并且具有不同的驱动压摆率。为了评估其功能和功耗性能,会对电路进行测量。该设计占用0.938毫米(^ {2})的片上面积,并且发现用于便携式超声扫描仪的128元素发射电路阵列的功耗最大为181 mW。

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