首页> 外文会议>Networked Sensing Systems (INSS 2009), 2009 >An adaptively RF-powered wireless batteryless in vivo EKG and core body temperature sensing microsystem for untethered genetically engineered mice real-time monitoring
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An adaptively RF-powered wireless batteryless in vivo EKG and core body temperature sensing microsystem for untethered genetically engineered mice real-time monitoring

机译:自适应射频供电的无线无电池体内心电图和核心体温感应微系统,用于不受束缚的基因工程小鼠实时监测

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摘要

An adaptively RF-powered, wireless, batteryless, and implantable electrocardiogram (EKG) and core body temperature sensing microsystem for untethered genetically engineered mice real-time monitoring is designed, implemented, and in vivo characterized. A packaged microsystem exhibits a total size of 9 mm × 7 mm × 3 mm and a weight of 400 mg including a pair of stainless steel EKG electrodes. A low power 2 mm × 2 mm ASIC consisting of an EKG amplifier, a proportional-to-absolute temperature (PTAT) temperature sensor, an RF power sensing circuit, an RF-DC power converter, an 8-bit analog-to-digital converter (ADC), digital control circuitry, and a wireless data transmitter is powered by an adaptively controlled external RF energy source at 4 MHz to ensure a stable on-chip 2 V supply with 156 ¿A DC current for the overall microsystem operation.
机译:设计,实施和体内表征了一种自适应射频供电的无线,无电池,可植入式心电图(EKG)和核心体温感测微系统,用于不受束缚的基因工程小鼠实时监测。一个包装好的微系统的总尺寸为9毫米×7毫米×3毫米,重量为400毫克,包括一对不锈钢EKG电极。低功耗2 mm×2mm ASIC,由一个EKG放大器,一个比例至绝对温度(PTAT)温度传感器,一个RF功率检测电路,一个RF-DC电源转换器,一个8位自适应模数转换器(ADC),数字控制电路和无线数据发送器均由自适应控制的外部RF能量为4 MHz供电,以确保以156ƒ的频率稳定提供片上2 V电源?整个微系统运行的直流电流。

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