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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Low-Power Low-Noise Amplifier Using Attenuation-Adaptive Noise Control for Ultrasound Imaging Systems
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Low-Power Low-Noise Amplifier Using Attenuation-Adaptive Noise Control for Ultrasound Imaging Systems

机译:使用衰减自适应噪声控制的超声成像系统低功率低噪声放大器

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摘要

This paper presents a low-noise amplifier (LNA) using attenuation-adaptive noise control (AANC) for ultrasound imaging systems. The proposed AANC reduces unnecessary power consumption of the LNA, which arises from useless noise floor, by controlling the noise floor of the LNA with respect to the attenuation of the ultrasound. In addition, a current feedback amplifier with a source-degenerated input stage reduces variations of the bandwidth and the closed loop gain, which are caused by the AANC. The proposed LNA was fabricated using a 0.18-μm CMOS process. The input-referred voltage noise density of the fabricated LNA is 1.01 nV/√Hz at the frequency of 5 MHz. The second harmonic distortion is −53.5 dB when the input signal frequency is 5 MHz and the output voltage swing is 2 Vpp. The power consumption of the LNA using the AANC is 16.2 mW at the supply voltage of 1.8 V, which is reduced to 64% of that without using the AANC. The noise efficiency factor (NEF) of the proposed LNA is 3.69, to our knowledge, which is the lowest NEF compared with previous LNAs for ultrasound imaging.
机译:本文提出了一种用于超声成像系统的使用衰减自适应噪声控制(AANC)的低噪声放大器(LNA)。所提出的AANC通过相对于超声波的衰减来控制LNA的噪声基底,从而减少了由无用的噪声基底引起的LNA的不必要的功耗。此外,具有源极退化的输入级的电流反馈放大器可减少由AANC引起的带宽和闭环增益变化。拟议的LNA使用0.18μmCMOS工艺制造。制成的LNA在5 MHz的频率下的输入参考电压噪声密度为1.01 nV /√Hz。当输入信号频率为5 MHz,输出电压摆幅为2 Vpp时,二次谐波失真为-53.5 dB。使用AANC的LNA的功耗在1.8 V的电源电压下为16.2 mW,降至不使用AANC时的功耗的64%。据我们所知,拟议的LNA的噪声效率因子(NEF)为3.69,与先前用于超声成像的LNA相比,NEF最低。

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