← 返回 JSSC 论文列表JSSC 2020第5期RF & Wireless0.18μm CMOS
A Time-Interleaved Resonant V oltage Mode Wireless Power Receiver With Delay-Based Tracking Loops for Implantable
提出一种基于谐振电压模式的无线充电接收器,采用延迟控制策略实现高效能量转换
13.56MHz工作频率,67.8%接收效率,7mm×7mm接收线圈
无线功率接收谐振电压模式延迟控制电池充电高频谐振
▸谐振电容交错配置技术
▸基于二极管的电压峰值时间检测(VPTD)
▸最小二极管时间跟踪环路(MDTL)和最优占空比跟踪环路(ODTL)的延迟控制方案
Abstract
This article proposes a resonant voltage mode receiver (RVM-Rx) as a new topology of a wireless power receiver for battery charging. With a resonant capacitor interleaving scheme, an LC tank in the receiver can always be configured and isolated from the output, leading to optimal power transfer regardless of the operation phase. Thus, the power transfer efficiency is not sensitive to load conditions, such as battery voltage variation. In the RVM-Rx, a diode-based voltage peak time detection (VPTD) technique enables the system operation at a high resonant frequency. Also, a delay-based control scheme with a minimum diode time tracking loop (MDTL) and an optimum duty tracking loop (ODTL) leads to efficient power conversion by adaptively adjusting the operation state. The RVM-Rx prototype in a 0.18- µm CMOS process can operate at a high resonant frequency of 13.56 MHz with a small R X coil (7 mm × 7 mm), while achieving a maximum receiver power efficiency of 67.8% for battery charging.