A low-power area efficient voltage reference and data generation unit for inductively powered implant system

M. Roknsharifi, Mohammad Rafiqul Haider, S. K. Islam
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引用次数: 3

Abstract

This paper reports a low-power sensor signal processing and load shift keying (LSK) telemetry scheme for an inductively powered implant system. The entire system manifests a voltage reference (VR), a potentiostat, and a current controlled oscillator (CCO). All of the functional blocks are designed using subthreshold MOSFETs to achieve ultra-low-power consumption. Relatively simpler architecture of the VGR saves area and power. The CCO generates frequency modulated digital pulses depending upon sensor current. The proposed system has been designed and simulated in 65 nm standard CMOS process and the entire system consumes less than 20 µW.
一种用于感应供电植入系统的低功率区域高效电压基准和数据生成单元
本文报道了一种用于感应供电植入系统的低功耗传感器信号处理和负载移位键控(LSK)遥测方案。整个系统包含一个基准电压(VR)、一个恒电位器和一个电流控制振荡器(CCO)。所有功能模块均采用亚阈值mosfet设计,以实现超低功耗。VGR结构相对简单,节省了面积和功耗。CCO根据传感器电流产生调频数字脉冲。该系统已在65 nm标准CMOS工艺下进行了设计和仿真,整个系统功耗小于20µW。
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