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用于微创手术中夹持手指触觉力反馈的 ASIC。

An ASIC for Gripper Finger Haptic Force Feedback in Minimally Invasive Surgery.

出版信息

IEEE Trans Biomed Circuits Syst. 2023 Apr;17(2):336-348. doi: 10.1109/TBCAS.2023.3252026. Epub 2023 May 10.

Abstract

In this article, we present an application specific integrated circuit (ASIC) for gripper finger haptic force feedback in minimally invasive surgery (MIS). It consists of a driving current source, a sensing channel, a digital to analog converter (DAC), a power management unit (PMU), a clock generator and a digital control unit (DCU). The driving current source features a 6-bit DAC to provide a temperature-insensitive current from 0.27 mA to 1.15 mA for the sensor array. The sensing channel contains a programmable instrumentation amplifier (PIA), a low-pass filter (LPF), an incremental analog-to-digital converter (ADC) with its input buffer (BUF). The gain of the sensing channel ranges from 2.76 to 140. The DAC generates a tunable reference voltage to compensate possible sensor array offset. The input referred noise of the sensing channel is around 3.6 μVrms at a sampling rate of 850S/s. A custom 2-wire communication protocol is implemented to support two chips on gripper fingers operating in parallel with low latency, ensuring real-time surgical condition estimation for surgeons. Manufactured in the TSMC 180nm CMOS technology, this chip occupies only 1.37 mm core area, and the entire system requires only 4 wires (including power / ground) to operate. Combined with its high accuracy, low latency, and high integration level, this work allows real-time, high-performance haptic force feedback with compact system size, particularly suitable for MIS applications.

摘要

本文提出了一种用于微创手术(MIS)中夹手指触觉力反馈的专用集成电路(ASIC)。它由驱动电流源、传感通道、数模转换器(DAC)、电源管理单元(PMU)、时钟发生器和数字控制单元(DCU)组成。驱动电流源采用 6 位 DAC,为传感器阵列提供 0.27 mA 至 1.15 mA 的温度不敏感电流。传感通道包含可编程仪表放大器(PIA)、低通滤波器(LPF)、带有输入缓冲器(BUF)的增量模数转换器(ADC)。传感通道的增益范围从 2.76 到 140。DAC 产生可调参考电压以补偿传感器阵列的可能偏移。在 850S/s 的采样率下,传感通道的输入参考噪声约为 3.6 μVrms。实现了定制的 2 线通信协议,以支持夹手指上的两个芯片并行运行,具有低延迟,确保为外科医生提供实时手术条件估计。该芯片采用 TSMC 180nm CMOS 技术制造,仅占用 1.37mm 的核心面积,整个系统仅需 4 根线(包括电源/地)即可运行。结合其高精度、低延迟和高集成度,这项工作允许具有紧凑系统尺寸的实时、高性能触觉力反馈,特别适用于 MIS 应用。

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