Title :
A Fast-Transient Quasi-V
Switching Buck Regulator Using AOT Control With a Load Current Correction (LCC) Technique
Author :
Chien-Hung Tsai ; Shih-Mei Lin ; Chun-Sheng Huang
Author_Institution :
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Abstract :
A switching regulator with quasi-V2 adaptive on-time (AOT) control that provides a fast load transient response is proposed in this paper. The feed-forward path network allows the proposed switching regulator to achieve a fast transient response and stable operation without requiring an output capacitor with large equivalent series resistance. The proposed adaptive on-time controller makes the switching frequency pseudofixed in the continuous conduction mode and works in the pulse-frequency modulation mode under ultralight-load conditions to maintain the conversion efficiency. The AOT controller adjusts the on-time according to the supply voltage and load current conditions. The measurement results verify that the switching regulator can operate under load current between 5 and 800 mA for the supply voltage of 3.3-4.2 V and an output voltage of 1.2 V. The recovery time is 3.6 μs and the voltage drop is 75 mV when the load current is increased from 5 to 750 mA.
Keywords :
adaptive control; feedforward; switching convertors; transient response; AOT control; LCC technique; adaptive on-time controller; constant on-time buck converter; continuous conduction mode; current 5 mA to 800 mA; fast load transient response; fast-transient quasiV2 switching buck regulator; feedforward path network; large equivalent series resistance; load current correction technique; pulse-frequency modulation mode; time 3.6 mus; voltage 1.2 V; voltage 3.3 V to 4.2 V; voltage 75 mV; Adaptive control; Switching converters; Transient response; Adaptive on-time (AOT) control; fast transient response; switching regulator;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2012.2230649