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Small-Signal Analysis and Optimal Design of External Ramp for Constant On-Time V $^{bf 2}$ Control With Multilayer Ceramic Caps

机译:具有多层陶瓷电容的恒定导通时间V $ ^ {bf 2} $控制的外部斜坡小信号分析和优化设计

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摘要

Recently, constant on-time V$^{bf 2}$ control, and its variety named constant on-time control, or constant on-time ripple-based control is more and more popular in industry products due to features of high light-load efficiency, simple implementation, and fast transient response. However, subharmonic oscillation occurs when using multilayer ceramic caps due to the lagging phase of the capacitor voltage relative to the inductor current. External ramp compensation is one simple solution to solve the instability issue. However, the characteristics of constant on-time V$^{bf 2}$ control with external ramp are not fully understood and no explicit design guidelines for the external ramp are provided. This paper investigates the small-signal characteristics of constant on-time V $^{bf 2}$ control with external ramp compensation by providing a factorized, easy-to-use small-signal model. The external ramp is a critical parameter because it directly affects the position and damping of two pairs of double poles. Based on this fact, design guidelines of the external ramp for optimal dynamic performance are provided. Moreover, the effect of duty cycle is investigated. Finally, the small-signal experimental results and load transient performance are presented to verify the small-signal analysis and proposed design guideline.
机译:近年来,由于高亮度特性,恒定导通时间V $ ^ {bf 2} $控制及其变种,即恒定导通时间控制或基于恒定导通时间的基于脉动的控制在工业产品中越来越受欢迎。负载效率高,实现简单,瞬态响应快。但是,由于电容器电压相对于电感器电流的滞后相位,在使用多层陶瓷盖时会发生次谐波振荡。外部斜坡补偿是解决不稳定问题的一种简单解决方案。但是,尚不完全了解带有外部斜坡的恒定导通时间V $ ^ {bf 2} $控制的特性,也没有提供明确的外部斜坡设计准则。本文通过提供一个因式分解,易于使用的小信号模型,研究了具有外部斜坡补偿的恒定导通时间V $ ^ {bf 2} $控制的小信号特性。外部斜坡是一个关键参数,因为它直接影响两对双极的位置和阻尼。基于这一事实,提供了用于最佳动态性能的外部斜坡的设计指南。此外,研究了占空比的影响。最后,给出了小信号实验结果和负载瞬态性能,以验证小信号分析和提出的设计准则。

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