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一种用于探针内三维超声成像的低功耗高动态范围接收系统。

A Low-Power High-Dynamic-Range Receiver System for In-Probe 3-D Ultrasonic Imaging.

作者信息

Attarzadeh Hourieh, Xu Ye, Ytterdal Trond

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Oct;11(5):1053-1064. doi: 10.1109/TBCAS.2017.2716836. Epub 2017 Jul 18.

Abstract

In this paper, a dual-mode low-power, high dynamic-range receiver circuit is designed for the interface with a capacitive micromachined ultrasonic transducer. The proposed ultrasound receiver chip enables the development of an in-probe digital beamforming imaging system. The flexibility of having two operation modes offers a high dynamic range with minimum power sacrifice. A prototype of the chip containing one receive channel, with one variable transimpedance amplifier (TIA) and one analog to digital converter (ADC) circuit is implemented. Combining variable gain TIA functionality with ADC gain settings achieves an enhanced overall high dynamic range, while low power dissipation is maintained. The chip is designed and fabricated in a 65 nm standard CMOS process technology. The test chip occupies an area of 76[Formula: see text] 170 [Formula: see text]. A total average power range of 60-240 [Formula: see text] for a sampling frequency of 30 MHz, and a center frequency of 5 MHz is measured. An instantaneous dynamic range of 50.5 dB with an overall dynamic range of 72 dB is obtained from the receiver circuit.

摘要

本文设计了一种双模式低功耗、高动态范围的接收器电路,用于与电容式微机械超声换能器接口。所提出的超声接收器芯片能够开发一种探头内数字波束形成成像系统。具有两种操作模式的灵活性在最小功耗的情况下提供了高动态范围。实现了包含一个接收通道、一个可变跨阻放大器(TIA)和一个模数转换器(ADC)电路的芯片原型。将可变增益TIA功能与ADC增益设置相结合,在保持低功耗的同时实现了增强的整体高动态范围。该芯片采用65纳米标准CMOS工艺技术进行设计和制造。测试芯片面积为76[公式:见原文]×170[公式:见原文]。在采样频率为30兆赫兹、中心频率为5兆赫兹时,测得的总平均功率范围为60 - 240[公式:见原文]。接收器电路获得了50.5分贝的瞬时动态范围和72分贝的整体动态范围。

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