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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A 6.78 MHz, 95.0% Peak Efficiency Monolithic Two-Dimensional Calibrated Active Rectifier for Wirelessly Powered Implantable Biomedical Devices
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A 6.78 MHz, 95.0% Peak Efficiency Monolithic Two-Dimensional Calibrated Active Rectifier for Wirelessly Powered Implantable Biomedical Devices

机译:6.78MHz,95.0%峰值效率单片二维校准有源整流器,用于无线动力植入生物医学设备

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摘要

In this paper, a fully integrated active rectifier with triple feedback loops is proposed to enhance power conversion efficiency (PCE) over a wide loading range by calibrating both the gate transition timing and power switch size. The on- and off-transitions of the power switches are calibrated using a hybrid delay-based gate control circuit (HDGCC) with hybrid feedback loops. Conventional active rectifiers that only focused on calibrating the gate transition timing of a NMOS power switch with a fixed power switch size exhibit a low PCE when the loading condition deviates from the predetermined range. Thus, an automatic size selector based on a third feedback loop is proposed, which changes the power switch size based on the loading condition and ensures a stable operation of the hybrid loops by maintaining the voltage drop across the NMOS switches. An active rectifier was fabricated using the standard 0.18 mu m CMOS process. The effectiveness and robustness of the two-dimensional calibration were verified through measurements under an AC input voltage ranging from 2.5 to 5.0 V and an output power ranging from 1.25 to 125 mW. The peak voltage conversion ratio and peak PCE were 97.6% and 95.0%, respectively, at R-L = 500 omega.
机译:在本文中,提出了一种具有三重反馈环路的完全集成的有源整流器,通过校准栅极转换正时和电源开关尺寸来提高宽加载范围内的功率转换效率(PCE)。使用具有混合反馈回路的混合延迟栅极控制电路(HDGCC)进行校准电源开关的接通和截止转换。当加载条件偏离预定范围时,仅聚焦在校准NMOS电源开关的栅极转换正时的常规有源整流器在具有固定电源开关尺寸的情况下表现出低PCE。因此,提出了一种基于第三反馈回路的自动尺寸选择器,其基于负载状态改变电源开关尺寸,并通过将跨越NMOS开关的电压降来确保混合环的稳定操作。使用标准的0.18μmCMOS工艺制造活性整流器。通过从2.5到5.0 V的AC输入电压下测量验证了二维校准的有效性和稳健性,输出功率范围为1.25至125 mW。峰值电压转换比和峰PCE分别为97.6%和95.0%,在R-L = 500Ω。

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