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Performance evaluation of CCOs for the optimization of low-power pressure-based implantable wireless systems

机译:基于低功耗压力的可植入无线系统优化CCO的性能评估

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Implantable biomedical devices intended for remote follow-up of Cardiovascular Diseases (CVD) are often based on MEMS pressure sensors and the corresponding CMOS electronics, which are responsible for powering, signal conditioning and data transmission. This kind of heterogeneous systems achieves reduced dimensions and consumption by monolithic integration on the same silicon substrate. The objective of this work is to analyze and fully characterize several Capacitor-Controlled Oscillator (CCO) topologies that can be used for the aforementioned implantable applications, by comparison of their most relevant performance parameters. The results will allow the design optimization of low-power wireless implants, aimed at a future development of embedded systems with real-time data acquisition. Five topologies have been chosen for the evaluation: a standard ring oscillator; a current-starved ring oscillator; a Lee-Kim fully-differential oscillator; a coupled Sawtooth oscillator, and a modified Sawtooth oscillator designed for CCOs biased by a ramped voltage signal. Comprehensive simulations allowed the estimation of the output frequency, percentage tuning range, maximum linearity error, phase noise and power consumption for each design, as well as a Figure of Merit, for every CCO. For the calculation of these performance metrics, the impact of biasing circuits and different tuning strategies has also been considered.
机译:用于远程心血管疾病(CVD)的植入生物医学装置通常基于MEMS压力传感器和相应的CMOS电子设备,其负责供电,信号调理和数据传输。这种异构系统通过在同一硅衬底上单片集成来实现减小的尺寸和消耗。这项工作的目的是通过比较其最相关的性能参数,分析和完全表征可用于上述植入应用的多个电容器控制的振荡器(CCO)拓扑。结果将允许低功耗无线植入物的设计优化,旨在将嵌入式系统的未来发展进行实时数据采集。选择了五个拓扑,用于评估:标准环形振荡器;电流饥饿的环形振荡器;一个lee-kim全差分振荡器;耦合的锯齿振荡器和用于由斜坡电压信号偏置的CCOS设计的改进的锯齿振荡器。综合模拟允许估计输出频率,调谐范围百分比,每个设计的最大线性误差,相位噪声和功耗,以及每个CCO的优点。为了计算这些性能指标,还考虑了偏置电路和不同调谐策略的影响。

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