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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A Compact One-Pin Mode Transition Circuit for Clock Synchronization in Current-Mode- Controlled Switching Regulators
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A Compact One-Pin Mode Transition Circuit for Clock Synchronization in Current-Mode- Controlled Switching Regulators

机译:紧凑的单引脚模式转换电路,用于电流模式控制的开关稳压器中的时钟同步

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摘要

This paper describes a one-pin mode transition circuit that addresses the issues related to clock synchronization in switching regulators during the mode transitions between external timing resistor and external clock. The proposed circuit reduces the circuit complexity needed to achieve mode transition during synchronization by utilizing switched-capacitor and sampling design techniques. It linearly converts the input clock frequency to a current to maintain constant amount of slope compensation for current-mode switching regulators across their switching frequency range of operation. This circuit is designed to operate from 100 KHz to 2.5 MHz and fabricated in a 0.35-μm BiCMOS-DMOS process. The total solution occupies 0.082 mm2 die area. Experimental results are presented from peak-current-mode buck regulators with one-pin synchronization circuit to show the performance improvement of using the proposed design approach over a phase-locked-loop-based design.
机译:本文介绍了一种单引脚模式转换电路,该电路解决了外部定时电阻器和外部时钟之间的模式转换期间与开关稳压器中的时钟同步相关的问题。所提出的电路通过利用开关电容器和采样设计技术降低了同步期间实现模式转换所需的电路复杂性。它将输入时钟频率线性转换为电流,以在电流模式开关稳压器的整个开关频率范围内维持恒定的斜率补偿量。该电路的设计工作频率为100 KHz至2.5 MHz,并以0.35μm的BiCMOS-DMOS工艺制造。整个解决方案占据了0.082 mm2的芯片面积。从具有单引脚同步电路的峰值电流模式降压稳压器中给出了实验结果,以表明与基于锁相环的设计相比,使用拟议的设计方法可改善性能。

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