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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >Low-Power Low-Voltage Current Readout Circuit for Inductively Powered Implant System
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Low-Power Low-Voltage Current Readout Circuit for Inductively Powered Implant System

机译:用于感应式植入系统的低功率低压电流读取电路

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Low voltage and low power are two key requirements for on-chip realization of wireless power and data telemetry for applications in biomedical sensor instrumentation. Batteryless operation and wireless telemetry facilitate robust, reliable, and longer lifetime of the implant unit. As an ongoing research work, this paper demonstrates a low-power low-voltage sensor readout circuit which could be easily powered up with an inductive link. This paper presents two versions of readout circuits that have been designed and fabricated in bulk complementary metal–oxide semiconductor (CMOS) processes. Either version can detect a sensor current in the range of 0.2 $mu$A to 2 $mu$A and generate square-wave data signal whose frequency is proportional to the sensor current. The first version of the circuit is fabricated in a 0.35-$mu$ m CMOS process and it can generate an amplitude-shift-keying (ASK) signal while consuming 400 $mu$ W of power with a 1.5-V power supply. Measurement results indicate that the ASK chip generates 76 Hz to 500 Hz frequency of a square-wave data signal for the specified sensor current range. The second version of the readout circuit is fabricated in a 0.5-$mu$ m CMOS process and produces a frequency-shift-keying (FSK) signal while consuming 1.675 mW of power with a 2.5-V power supply. The generated data frequency from the FSK chip is 1 kHz and 9 kHz for the lowest and the highest sensor currents, respectively. Measurement results confirm the functionalities of both prototype schemes. The prototype circuit has potential applications in the monitoring of blood glucose level, lactate in the bloodstream, and pH or oxygen-n-n in a physiological system/environment.
机译:低压和低功耗是生物医学传感器仪器应用中片上实现无线电源和数据遥测的两个关键要求。无电池操作和无线遥测有助于植入单元的坚固,可靠和更长的使用寿命。作为一项正在进行的研究工作,本文演示了一种低功耗低压传感器读出电路,该电路可通过感应链路轻松上电。本文介绍了两种版本的读出电路,它们是在体互补金属氧化物半导体(CMOS)工艺中设计和制造的。两种版本都可以检测到0.2μA至2μA范围内的传感器电流,并生成频率与传感器电流成比例的方波数据信号。该电路的第一个版本采用0.35μmCMOS工艺制造,它可以产生一个幅移键控(ASK)信号,同时使用1.5 V电源消耗400μW的功率。测量结果表明,在指定的传感器电流范围内,ASK芯片会产生76 Hz至500 Hz的方波数据信号频率。读出电路的第二种版本采用0.5μmCMOS工艺制造,并产生频移键控(FSK)信号,而2.5V电源消耗1.675 mW的功率。对于最低和最高传感器电流,从FSK芯片生成的数据频率分别为1 kHz和9 kHz。测量结果证实了两种原型方案的功能。原型电路在监测血糖水平,血液中的乳酸以及生理系统/环境中的pH或氧-n-n方面具有潜在的应用。

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