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JSSC 2007第11期Power Management0.35μm CMOSBuck Converter

A Monolithic Buck Converter With Near-Optimum Reference Tracking Response Using Adaptive-Output-Feedback

提出一种具有自适应输出和超快参考跟踪的单片降压转换器,采用端点预测和自适应输出反馈方案实现近最优参考跟踪响应。
3V输入,0.7-2.4V输出范围,10μs跟踪速度,96%峰值效率(260mA),800mA最大输出电流
单片降压转换器参考跟踪自适应输出输出纹波控制高效率
创新点1:端点预测技术(方法创新) - 通过预测输出电压变化的终点,动态调整开关控制策略,消除了传统固定开关频率控制的速度限制,实现了10微秒内的快速参考电压跟踪。
创新点2:时钟保持功能的新型振荡器(电路创新) - 设计了一种具有时钟保持功能的振荡器,在参考电压跟踪期间暂停时钟信号,确保单次ON/OFF切换操作,降低了开关损耗和导通损耗。
创新点3:自适应输出反馈(AOFB)方案(系统创新) - 基于对输出纹波控制器动态特性的分析,提出了一种自适应反馈电压生成方法,优化了开关控制准则,使跟踪速度接近理论最优值,同时实现96%的峰值效率。
创新点4:混合控制架构(系统创新) - 结合固定开关频率的VCO控制和动态AOFB机制,在稳态和瞬态工况下分别实现高精度调节和超快响应,支持0.7-2.4V宽输出电压范围与800mA最大负载能力。
Abstract
A monolithic output-ripple-based buck converter with adaptive output and ultra-fast reference tracking is presented. Fixed-switching-frequency /86/50-control is used in steady-state operation; while its speed limitation during reference tracking is eliminated by employing end-point prediction, a novel oscillator with clock-holding function, and the proposed adaptive-output- feedback (AOFB)-scheme. The AOFB-scheme is obtained from a detailed analysis of the dynamics of general output-ripple-based controller during reference tracking. Then, an adaptive feedback voltage which satisfies the switching criterion for optimum switch control in reference tracking is formulated, and is incorporated into the controller design. The resultant single ON/OFF-switching during reference tracking is very close to the optimal solution for fast reference tracking. Moreover, it also leads to the lowest switching loss and minimized conduction loss at the fastest tracking speed, making the converter very suitable for adaptive- output applications. Fabricated in a 0.35 m CMOS process, the 3-V input proto- type chip exhibits stable operation across a wide output range of 0.7–2.4 V. High tracking speed within 10 s /86is measured with different output voltages and output voltage steps. Maximum effi- ciency of 96% is obtained at 260 mA output current, while max- imum output current is 800 mA.