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An Offset Compensated Sampled-Data CMOS Comparator Circuit for Low-Power Implantable Biosensor Applications

机译:用于低功耗植入式生物传感器应用的失调补偿采样数据CMOS比较器电路

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This paper proposes a new low-voltage high resolution complementary metal oxide semiconductor (CMOS) comparator circuit suitable for biosensor applications. The comparator compensates for differential input offset through single-ended sampled-data preamplification. Simulations were carried out using a 130 nm IBM CMOS (CMRF8SF) process technology. Monte Carlo simulations incorporating mismatch between devices (based on width and length of devices) indicate that the design is quite robust. The comparator has a differential input overdrive resolution of under 1 mV and a response time which is scalable. The capacity for offset compensation trades with the bandwidth of the comparator through the size of the device channel areas (Width × Length) of the transistors. The static micropower consumed by the comparator from a 0.5 V supply voltage is under 10 μW, making it extremely suitable for miniaturized implantable biosensor devices. In addition, the comparator uses a single clock scheme for the sampled-data operations, which eliminates the need for special clock generation circuitry.
机译:本文提出了一种适用于生物传感器应用的新型低压高分辨率互补金属氧化物半导体(CMOS)比较器电路。比较器通过单端采样数据前置放大来补偿差分输入失调。使用130 nm IBM CMOS(CMRF8SF)工艺技术进行了仿真。蒙特卡罗模拟结合了器件之间的不匹配(基于器件的宽度和长度)表明该设计非常可靠。比较器的差分输入过驱动分辨率低于1 mV,响应时间可扩展。偏移补偿的能力通过晶体管的器件沟道面积(宽度×长度)与比较器的带宽进行权衡。比较器从0.5 V电源电压消耗的静态微功率低于10μW,因此非常适合于微型植入式生物传感器设备。此外,比较器对采样数据操作使用单一时钟方案,从而无需特殊的时钟生成电路。

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