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JSSC 2020第3期RF & Wireless

A Wearable Real-Time CMOS Dosimeter With Integrated Zero-Bias Floating Gate Sensor and an 861-nW 18-Bit Energy-Resolution Scalable Time-Based Radiation to Digital Converter Baibhab Chatterjee , Student Member , IEEE

首款单片集成CMOS可穿戴实时辐射剂量计,具有高灵敏度和低功耗特性。
14Ω/rad灵敏度, 18-bit分辨率, 861nW@1S/s, 3.29pJ/转换步
可穿戴剂量计CMOS浮栅传感器时间域ADC低功耗
采用零偏置浮栅电阻传感器,灵敏度达14Ω/rad
基于时间域的电阻-数字转换器(RDC),实现18位分辨率
可编程能量-分辨率扩展性,通过控制测量时间优化性能
Abstract
Radiation, being invisible and odorless, has become a major concern in modern-day healthcare, mining, security, and nuclear applications that require professionals to work in environments involving radioactive materials, often with only elementary training. Furthermore, the scenario is worsened by the absence of a real-time, accumulative radiation dosimeter of small/wearable form factor that can provide direct digital output for long-term continuous monitoring. In this article, we present the first monolithically integrated CMOS wearable radiation dosimeter, consisting a floating-gate (FG) resistive sensor with a sensitivity of 14  /rad, and a time-domain resistance-to-digital- converter (RDC) that functions as an 18-bit voltage-controlled oscillator (VCO)-based ADC, consuming 861 nJ for 10-ms active read time (which translates to 861-nW at 1 S/s), with 3.29-pJ/conversion step energy efficiency. The proposed time-based RDC exhibits programmable energy-resolution scalability by controlling the measurement time (unlike traditional voltage/current-mode ADCs) and achieves 6-bit better resolution than the state-of-the-art VCO-based ADCs at low frequency (conversion time ≈10 ms). The implemented integrated dosimeter achieve s 8-bit better resolution, 7.5 × lower power, and 40× better sensitivity (up to 10-mrad dose) than the current CMOS FG dosimeters.