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Integrated ultra-low power precision rectifiers for implantable medical devices

机译:用于可植入医疗设备的集成超低功耗精密整流器

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Two ultra-low power CMOS full-wave precision rectifiers are presented. The rectifiers require no diodes and utilize a single or two transconductors (OTA) as the active element, reducing power consumption to a minimum. Firstly, a voltage to current rectifier consuming 120nA is presented, and used to estimate the amplitude of a piezoelectric accelerometer output in an adaptive pacemaker. Then, a new voltage rectifier consuming less than 10nA is presented, and later utilized in a cardiac sensing channel circuit also for pacemakers, incorporating the rectifier to detect positive and negative voltage signal spikes. Both rectifiers were designed in a 0.6μm CMOS technology, fabricated, tested. Measurement results closely fit the expected performance.
机译:提出了两个超低功耗CMOS全波精密整流器。整流器不需要二极管并利用单个或两个经膜(OTA)作为有源元件,将功耗降低到最小值。首先,提出了对电流整流器的电压耗尽120na,并用于估计自适应起搏器中的压电加速度计输出的幅度。然后,呈现小于10NA的新电压整流器,并且后来在心脏传感通道电路中用于起搏器,包括整流器以检测正电压信号尖峰。两个整流器都设计成0.6μmCMOS技术,制造,测试。测量结果非常适合预期的性能。

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