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Inverter-based 1 V analog front-end amplifiers in 90 nm CMOS for medical ultrasound imaging

机译:基于反相器的1 V模拟前端放大器,采用90 nm CMOS进行医学超声成像

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In this paper, we present the design and experimental evaluation of 1 V analog front-end amplifiers designed in 90 nm CMOS technology for capacitive micro-machined ultrasound transducers (CMUTs) for medical ultrasound imaging systems. We propose two front-end amplifier topologies based on an inverter-based cascode amplifier; the first is a continuous time amplifier and the second is a charge sampling amplifier (CSA). The proposed front-end amplifiers are designed to amplify the signals from CMUTs in the frequency bandwidth from 15 to 45 MHz with a centre frequency of 30 MHz. From the measurements, the continuous time single-ended transimpedance amplifier achieves a voltage gain of 19 dB, an output noise power spectral density of 0.042 (μV)/SQRT(Hz) at a centre-frequency of 30 MHz, and a total harmonic distortion of −23 dB at 450 mV p–p output voltage at 30 MHz input signal frequency. It draws only 598 μA per amplifier from a 1 V power supply. Its area measured only about 32 μm × 32 μm per amplifier. On the other hand, a sampling based front-end amplifier [CSA] achieves a transfer gain of 17.4 dB at an input signal frequency of 30 MHz and an upper 3 dB cut-off frequency of 46 MHz at a sampling clock frequency of 100 MHz. It consumes 586 μA per amplifier from a 1 V power supply and achieves a signal-to-noise (SNR) ratio of 45.7 dB with a peak-to-peak output signal amplitude of 500 mV at a sampling frequency of 100 MHz. It occupies an area of 1470.2 μm2 (which is equivalent to 38 μm × 38 μm), which also includes the area of the switches for the CSA that will be used for the single CMUT element.
机译:在本文中,我们介绍了用于医学超声成像系统的电容式微加工超声换能器(CMUT),采用90 nm CMOS技术设计的1 V模拟前端放大器的设计和实验评估。我们提出了两种基于基于反相器的共源共栅放大器的前端放大器拓扑;第一个是连续时间放大器,第二个是电荷采样放大器(CSA)。提出的前端放大器旨在将CMUT的信号在15 MHz至45 MHz的带宽内以30 MHz的中心频率放大。根据测量结果,连续时间单端跨阻放大器的电压增益为19 dB,中心频率为30 MHz时输出噪声功率频谱密度为0.042(μV)/ SQRT(Hz),总谐波失真在30 MHz输入信号频率下450 mV p–p输出电压下−23 dB的误差。每个放大器从1 V电源仅消耗598μA的电流。每个放大器的面积仅为约32μm×32μm。另一方面,基于采样的前端放大器[CSA]在30 MHz的输入信号频率下实现17.4 dB的传输增益,在100 MHz的采样时钟频率下实现46 MHz的高3 dB截止频率。它在1 V电源下每个放大器消耗586μA的电流,在100 MHz的采样频率下,峰峰值输出信号幅度为500 mV,信噪比(SNR)为45.7 dB。它的面积为1470.2μm 2 (相当于38μm×38μm),其中还包括将用于单个CMUT元件的CSA开关的面积。

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