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Feedback Biasing Based Adjustable Gain Ultrasound Preamplifier for CMUTs in 45nm CMOS

机译:适用于45nm CMOS CMUT的基于反馈偏置的可调增益超声前置放大器

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As CMOS technology is scaled down, supply voltages are decreasing and intrinsic gain of the nanoscale CMOS transistors is dropping while the threshold voltages of transistors are remaining relatively constant. In such scaled down nanoscale CMOS technologies, conventional vertical stacking architectures (for example. cascode architectures) for high-gain becomes no more attractive. In this paper we present the analysis and design of a feedback biasing based adjustable gain ultrasound preamplifier which is capable of amplifying signals from 15 MHz to 45 MHz from Capacitive Micromachined Ultrasound Transducers (CMUTs) in 45nm CMOS technology for medical ultrasound imaging applications. From the simulations, the proposed preamplifier achieves a voltage gain 27.47 dB at 30 MHz from the CMUT signal source to the output and this transfer gain can easily be varied from 27.47 dB to 3.21 dB by varying the control voltage without altering the power consumption. It exhibits an output noise power spectral density of 4.8 muV/SQR (Hz) at frequency of 30 MHz at maximum transfer gain. It consumes only 107 muA from a 900 mV power supply excluding bias currents.
机译:随着CMOS技术的按比例缩小,电源电压减小,并且纳米级CMOS晶体管的固有增益下降,而晶体管的阈值电压保持相对恒定。在这种按比例缩小的纳米级CMOS技术中,用于高增益的常规垂直堆叠架构(例如,共源共栅架构)变得不再有吸引力。在本文中,我们介绍了一种基于反馈偏置的可调增益超声前置放大器的分析和设计,该放大器能够在医学超声成像应用中以45nm CMOS技术从电容式微加工超声换能器(CMUT)放大15 MHz至45 MHz的信号。通过仿真,拟议的前置放大器在从CMUT信号源到输出的30 MHz处实现了27.47 dB的电压增益,并且在不改变功耗的情况下,通过改变控制电压,可以轻松地将传输增益从27.47 dB改变为3.21 dB。在最大传输增益下,其在30 MHz频率下的输出噪声功率谱密度为4.8μV/ SQR(Hz)。它在900 mV电源中仅消耗107μA的电流,不包括偏置电流。

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