首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Pseudo-Ramp Current Balance (PRCB) Technique With Offset Cancellation Control (OCC) in Dual-Phase DC-DC Buck Converter
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Pseudo-Ramp Current Balance (PRCB) Technique With Offset Cancellation Control (OCC) in Dual-Phase DC-DC Buck Converter

机译:双相DC-DC Buck转换器中具有偏移抵消控制(OCC)的伪斜坡电流平衡(PRCB)技术

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摘要

To cope with monolithic controller replicas and the current unbalance situation in multiphase converters, a pseudo-ramp current balance technique is proposed to achieve time-multiplexing current balance in voltage-mode multiphase DC–DC buck converter. With only one modulation controller, silicon area and power consumption caused by the replicas of controller can be reduced significantly. Current balance accuracy can be further enhanced since the mismatches between different controllers caused by process, voltage, and temperature variations are removed. Moreover, the offset cancellation control embedded in the current matching unit is used to eliminate intrinsic offset voltage existing at the operational transconductance amplifier for improved current balance. An explicit model, which contains both voltage and current balance loops with non-ideal effects, is derived for analyzing system stability. Experimental results show that current difference between each phase can be decreased by over 83% under both heavy and light load conditions.
机译:为了应对单片控制器复制品和多相转换器中的电流不平衡情况,提出了一种伪斜坡电流平衡技术,以实现电压模式多相DC-DC buck转换器中的时分多路电流平衡。仅使用一个调制控制器,就可以显着减少控制器副本造成的硅面积和功耗。由于消除了由过程,电压和温度变化引起的不同控制器之间的不匹配,因此可以进一步提高电流平衡精度。此外,嵌入在电流匹配单元中的失调消除控制用于消除存在于运算跨导放大器中的固有失调电压,从而改善电流平衡。导出了一个包含非理想效应的电压和电流平衡回路的显式模型,用于分析系统稳定性。实验结果表明,在重载和轻载条件下,各相之间的电流差都可以减小83%以上。

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