Design of power stage and controller for DC-DC converter systems using PSPICE

4 complete set of SPICEcompatible design equations for design buck converter system is developed in this paper. In this approach, the power stage and controller design equations are programmed in PSPICE. For this purpose, an option available in PSPICE called Analog Behavioral Modeling (ABM)is used....

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Main Authors: Muhamad, N. D., Sahid, M. R., Yatim, A. H. M., Idris, N. R., Ayob, M. S.
Format: Book Section
Language:English
Published: Institute of Electrical and Electronics Engineers 2005
Subjects:
Online Access:http://eprints.utm.my/1594/1/paper61.pdf
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author Muhamad, N. D.
Sahid, M. R.
Yatim, A. H. M.
Idris, N. R.
Ayob, M. S.
author_facet Muhamad, N. D.
Sahid, M. R.
Yatim, A. H. M.
Idris, N. R.
Ayob, M. S.
author_sort Muhamad, N. D.
collection ePrints
description 4 complete set of SPICEcompatible design equations for design buck converter system is developed in this paper. In this approach, the power stage and controller design equations are programmed in PSPICE. For this purpose, an option available in PSPICE called Analog Behavioral Modeling (ABM)is used. In this manner, the parameter of power stage and the component values of the error amplifier can be easily obtained by means of PSPICE bias point analysis. The obtained parameters can be passed to other circuit models to perform frequency response and transient analysis. The methodology of development is presented in details. A design example is included to demonstrate the effectiveness of the proposed approach in designing DC-DC converter systems.
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spelling utm.eprints-15942011-08-03T01:31:28Z http://eprints.utm.my/1594/ Design of power stage and controller for DC-DC converter systems using PSPICE Muhamad, N. D. Sahid, M. R. Yatim, A. H. M. Idris, N. R. Ayob, M. S. TK Electrical engineering. Electronics Nuclear engineering 4 complete set of SPICEcompatible design equations for design buck converter system is developed in this paper. In this approach, the power stage and controller design equations are programmed in PSPICE. For this purpose, an option available in PSPICE called Analog Behavioral Modeling (ABM)is used. In this manner, the parameter of power stage and the component values of the error amplifier can be easily obtained by means of PSPICE bias point analysis. The obtained parameters can be passed to other circuit models to perform frequency response and transient analysis. The methodology of development is presented in details. A design example is included to demonstrate the effectiveness of the proposed approach in designing DC-DC converter systems. Institute of Electrical and Electronics Engineers 2005 Book Section PeerReviewed application/pdf en http://eprints.utm.my/1594/1/paper61.pdf Muhamad, N. D. and Sahid, M. R. and Yatim, A. H. M. and Idris, N. R. and Ayob, M. S. (2005) Design of power stage and controller for DC-DC converter systems using PSPICE. In: International Conference on Power Electronics and Drives Systems, 2005. PEDS 2005. Institute of Electrical and Electronics Engineers, New York, pp. 903-908. ISBN 0-7803-9296-5 http://dx.doi.org/10.1109/PEDS.2005.1619816 doi:10.1109/PEDS.2005.1619816
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Muhamad, N. D.
Sahid, M. R.
Yatim, A. H. M.
Idris, N. R.
Ayob, M. S.
Design of power stage and controller for DC-DC converter systems using PSPICE
title Design of power stage and controller for DC-DC converter systems using PSPICE
title_full Design of power stage and controller for DC-DC converter systems using PSPICE
title_fullStr Design of power stage and controller for DC-DC converter systems using PSPICE
title_full_unstemmed Design of power stage and controller for DC-DC converter systems using PSPICE
title_short Design of power stage and controller for DC-DC converter systems using PSPICE
title_sort design of power stage and controller for dc dc converter systems using pspice
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/1594/1/paper61.pdf
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