학술논문

A 4-MHz Ultra-Fast Transient Response Capacitor Current Adaptive On-Time (CCAOT) Controlled Buck Converter With Passive Ramp Compensation
Document Type
Periodical
Source
IEEE Transactions on Industry Applications IEEE Trans. on Ind. Applicat. Industry Applications, IEEE Transactions on. 60(2):3397-3410 Apr, 2024
Subject
Power, Energy and Industry Applications
Signal Processing and Analysis
Fields, Waves and Electromagnetics
Components, Circuits, Devices and Systems
Capacitors
Transient response
Inductors
Modulation
Sensors
Buck converters
Oscillators
Capacitor current adaptive on-time (CCAOT) control
capacitor current-controlled modulation
dynamic on-time generator
fast load transient response
++%24%5Crm{V}^2%24<%2Ftex-math>+<%2Finline-formula>+<%2Fnamed-content>+constant+on-time+control%22"> $\rm{V}^2$ constant on-time control
voltage regulator module (VRM)
Language
ISSN
0093-9994
1939-9367
Abstract
This paper proposes a monolithic capacitor current mode adaptive on-time (CCAOT) controlled buck converter. A capacitor current-controlled modulation scheme ensures an ultra-fast load transient response. However, this scheme suffers from sensing circuit mismatch-induced instability, hence a concise passive ramp is proposed to mitigate the problem. The small signal model of the scheme is established to demonstrate the design standard of the system parameters. Moreover, a V 2 -loop eliminates the circuit delay caused on-time pulse error and achieves a pseudo constant frequency. Implemented in a 0.18 μm CMOS process with a 4-MHz high switching frequency, this circuit occupies a total area of 1189 μm by 1199 μm in width and length including the pad ring. Finally, the experiment results show a fast load transient response, which is 42 mV voltage drop and 1 μs response time under the conditions of 1.1 V output voltage and 1 A load step-up with 1 A/500 ns slew rate. In addition, the frequency variation is 2% for a 1 A load step and there is no instability issue in this work.