DocumentCode :
2575376
Title :
VRM transient analysis at fast load change and fast-transient response with LILC
Author :
Senanayake, T. ; Kusumoto, Manabu ; Ninomiya, Taotsu ; Tohya, Hirokazu
Author_Institution :
Dept. of Electr. & Electron. Syst. Eng., Kyushu Univ., Japan
Volume :
2
fYear :
2003
fDate :
9-11 June 2003
Firstpage :
826
Abstract :
The power supplies with lower output voltage, higher output current and extremely fast load current transients impose severe issues to the design of voltage regulation modules (VRMs). In this paper analyze the effect of the parasitic elements of the output filter capacitor, to the output voltage and the load current slew rate of the switching power supply at the fast load transient. We found that the under-shoot of the output voltage in the sudden load change is not varied with the types of output filter capacitor (not depends of ESR, ESL and C). The output voltage drop in recovery is varied remarkably with the ESR of the capacitor and the load current slew rate is greatly varied with the ESL of the capacitor. The comparing three kinds of output filter capacitors; electrolytic, OS-CON and LILC (low-impedance line component), it realized that newly developed LILC significantly improved the transient response of voltage regulator module. The LILC is a newly developed capacitive component with very low impedance even at high frequencies. Simulation and experimental results are presented to verify the analysis.
Keywords :
electric potential; electrolytic capacitors; switched mode power supplies; transient response; transients; voltage regulators; LILC; OS-CON capacitors; VRM transient analysis; electrolytic capacitors; fast-transient response; load current slew rate; load current transients; low-impedance line component; output filter capacitor; output voltage; parasitic elements; power supplies; switching power supply; voltage regulator module; voltage undershoot; Capacitors; Filters; Frequency; Impedance; Paramagnetic resonance; Power supplies; Regulators; Transient analysis; Transient response; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics, 2003. ISIE '03. 2003 IEEE International Symposium on
Print_ISBN :
0-7803-7912-8
Type :
conf
DOI :
10.1109/ISIE.2003.1267927
Filename :
1267927
Link To Document :
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