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FEA modeling of CMUT with membrane stand-off structures to enable selectable frequency-mode operation

机译:带有膜片支架结构的CMUT的FEA建模,可实现可选的频率模式操作

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摘要

A selectable, dual-frequency, capacitive micro- machined ultrasonic transducer (CMUT) designed for both high-frequency imaging and low-frequency therapeutic effect is presented. A validated finite element analysis (FEA) CMUT model was used to examine the performance of the proposed dual-frequency transducer. CMUT device simulations were used to design a hybrid device incorporating stand-off structures that divide a large, low-frequency membrane into smaller, high-frequency sub-membranes when the membrane is partially collapsed so that the stand-offs contact the substrate. In low-frequency operation, simulations indicated that the peak negative pressure achieved by the hybrid device, when biased by 30.0 VDC and excited by a 2-MHz signal with 30.0 V amplitude, exceeded 190 kPa, which is sufficient for microbubble rupture. Low-frequency mode bandwidth was 93% at a center frequency of 2.1 MHz. In the high-frequency mode of operation, the device was excited by 175 Vdc and 87.5 Vac, which generated a peak negative pressure of 247 kPa. Device center frequency was 44.1 MHz with a - 6-dB fractional bandwidth of 42%.
机译:提出了一种针对高频成像和低频治疗效果而设计的可选双频电容性微机械超声换能器(CMUT)。经过验证的有限元分析(FEA)CMUT模型用于检查所提出的双频换能器的性能。 CMUT设备模拟用于设计一种混合式设备,该设备结合了支座结构,当膜部分塌陷时,该支座结构将大的低频膜片分成较小的高频子膜,从而使支座与基板接触。在低频操作中,仿真表明,当通过30.0 VDC偏置并由振幅为30.0 V的2 MHz信号激励时,混合设备获得的峰值负压超过190 kPa,足以使微泡破裂。中心频率为2.1 MHz时,低频模式带宽为93%。在高频操作模式下,该器件被175 Vdc和87.5 Vac激励,产生了247 kPa的峰值负压。设备中心频率为44.1 MHz,其6 dB的分数带宽为42%。

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