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A frequency synthesizer with a discrete-time sample-hold-reset loop filter dedicated to implantable medical microsystems

机译:频率合成器,带有用于植入式医疗微系统的离散时间采样保持复位环路滤波器

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摘要

A 2.4 GHz integer-N frequency synthesizer is implemented in tsmc 0.18-μm CMOS process. This paper proposes a new supply regulated LC-VCO that reduces the impact of process variations and temperature on current consumption and phase noise is proposed, as well as a new single-ended charge pump architecture that offers very high output impedance over a wide output voltage range. This frequency synthesizer dedicated to implantable smart medical devices, optimized for ultra-low power operation, is being integrated in the transceiver of an implantable wireless sensing microsystem (IWSM), which is dedicated to in vivo monitoring of biological parameters such as PPG, ECG (Electrocardiography) and EMG. At 1.8 V supply voltage, measured results of the proposed prototype achieves a wide tuning range from 2.24 to 2.42 GHz, corresponding to 7.7%, a phase noise of-114.76 dBc/Hz at 1 MHz offset frequency from 2.4 GHz, a power consumption of 13.6 mW and an output power of-8.43 dBm for microsystem application.
机译:在tsmc0.18-μmCMOS工艺中实现了2.4 GHz整数N频率合成器。本文提出了一种新的电源调节型LC-VCO,以减少工艺变化和温度对电流消耗和相位噪声的影响,并提出了一种新的单端电荷泵架构,该架构在宽输出电压范围内提供了很高的输出阻抗。范围。该专用于可植入智能医疗设备的频率合成器已针对超低功耗操作进行了优化,已被集成到可植入无线传感微系统(IWSM)的收发器中,该系统专门用于体内监测PPG,ECG等生物学参数(心电图)和肌电图。在电源电压为1.8 V时,拟议原型的测量结果实现了从2.24至2.42 GHz的宽调谐范围,相当于7.7%,在2.4 GHz的1 MHz偏移频率下的相位噪声为-114.76 dBc / Hz。在微系统应用中为13.6 mW,输出功率为-8.43 dBm。

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