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An Inductive Voltage-/Current-Mode Integrated Power Management With Seamless Mode Transition and Energy Recycling

机译:具有无缝模式转换和能量回收的电感式电压/电流模式集成电源管理

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An integrated power management (IPM) with the unique capabilities of seamless-voltage-/current-mode (SVCM) operation and energy recycling is presented for robust inductive power delivery. Utilizing parasitic bulk diodes with lower voltage drop, this IPM seamlessly transitions between voltage mode (VM) and current mode (CM) in a safe and robust fashion, extending the input-voltage range (removing dead zone) and significantly improving power-conversion efficiency (PCE) in CM operation. The IPM first provides the required load power (PL) by one-step rectification/regulation, and then stores the surplus energy into a storage capacitor to extend the receiver (Rx) operation time via energy recycling when the input power is insufficient. The theory behind the energy recycling is presented. A proof-of-concept chip was fabricated in a 0. 35-mu m CMOS process. In measurements, the chip safely achieved a regulated voltage of 3 V for a wide input-voltage range (without dead zone) by switching the Rx LC-tank at 142 kHz. With zero input power, the chip extended the Rx operation time by 250% thanks to the energy recycling.
机译:提出了具有无缝电压/电流模式(SVCM)操作和能量回收的独特功能的集成电源管理(IPM),以实现可靠的感应式电源传输。该IPM使用具有较低压降的寄生体二极管,以安全可靠的方式在电压模式(VM)和电流模式(CM)之间无缝过渡,从而扩展了输入电压范围(消除了死区)并显着提高了电源转换效率(PCE)在CM操作中。 IPM首先通过一步整流/调节来提供所需的负载功率(PL),然后在输入功率不足时通过能量回收将多余的能量存储到存储电容器中,以延长接收器(Rx)的工作时间。提出了能源回收背后的理论。概念验证芯片是在0. 35微米CMOS工艺中制造的。在测量中,通过以142 kHz的频率切换Rx LC储能器,该芯片可在较宽的输入电压范围(无死区)内安全地获得3 V的稳压电压。输入能量为零时,由于能量回收,该芯片将Rx操作时间延长了250%。

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