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A Fully Integrated Multimode Wireless Power Charger IC With Adaptive Supply Control and Built-In Resistance Compensation

机译:具有自适应电源控制和内置电阻补偿功能的全集成多模无线充电器IC

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摘要

We present a fully integrated multimode lithium-ion battery charger integrated circuit (IC) for wireless power charging applications. The proposed charger IC integrates an analog block for battery charging, a digital control block, an analog-to-digital converter, and memory on a single chip. To improve the charging efficiency, the supply voltage of the charger IC is controlled by an adaptive low-dropout (LDO) regulator. A series-voltage feedback path is formed along the LDO regulator and multimode level shifter, which regulates the supply voltage to closely follow the battery voltage. For a smooth transition during multimode charging, we propose a new approach for built-in resistance compensation. The digital control block of the charger IC is designed in accordance with the Qi standard. The battery charger IC is fabricated in a one-poly six-metal 0.18- CMOS process. Integrated with the digital control block and memory, the core area of the multimode charger IC is . The input voltage ranges from 4.8 to 5 V. The output voltage is 4.2 V in constant-voltage mode. The charging current in constant-current mode is 450 mA. The maximum and average charging efficiencies are 83% and 79%, respectively.
机译:我们提出了一种用于无线电源充电应用的完全集成的多模式锂离子电池充电器集成电路(IC)。拟议中的充电器IC在单个芯片上集成了一个用于电池充电的模拟模块,一个数字控制模块,一个模数转换器和一个存储器。为了提高充电效率,充电器IC的电源电压由自适应低压降(LDO)调节器控制。沿LDO稳压器和多模电平转换器形成了串联电压反馈路径,该路径调节电源电压以紧跟电池电压。为了在多模充电过程中平稳过渡,我们提出了一种内置电阻补偿的新方法。充电器IC的数字控制模块是根据Qi标准设计的。电池充电器IC采用单层六金属0.18- CMOS工艺制造。与数字控制模块和存储器集成在一起,多模式充电器IC的核心区域是。输入电压范围为4.8至5V。在恒压模式下,输出电压为4.2V。恒流模式下的充电电流为450 mA。最大和平均充电效率分别为83%和79%。

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