Design and implementation of voltage regulator for a power supply
The conventional use of voltage regulator has been widely introduced in the electronic appliances. With the advancement of technology and complexity of circuit designs, the implementation of voltage regulator has become necessary to maintain a constant desired output voltage and regulate the unregul...
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sg-ntu-dr.10356-705652023-07-07T17:21:11Z Design and implementation of voltage regulator for a power supply Thee, Wai Ken Zhang Yue Ping School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Electronic circuits The conventional use of voltage regulator has been widely introduced in the electronic appliances. With the advancement of technology and complexity of circuit designs, the implementation of voltage regulator has become necessary to maintain a constant desired output voltage and regulate the unregulated input voltage from the power supply. This report displays the objective to design and implementation of several types of voltage regulators for a power supply. The two most commonly used voltage regulator types, namely linear regulator and switching regulator has been researched, simulated, designed and recorded in this report. The types of linear regulator designed in this project are simple series voltage regulator, simple shunt voltage regulator, fixed regulator and variable regulator. This project also includes the implementation of switching regulators such as buck converter, boost converter and inverting converter through the utilization of MC33063A microchip. These voltage regulators have been simulated by using MULTISIM and PSIM. The results of simulation, calculation and measurements are included in the report and actual circuits have been designed to display the results in contrast to simulation results. Bachelor of Engineering 2017-04-28T08:36:38Z 2017-04-28T08:36:38Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/70565 en Nanyang Technological University 86 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Electronic circuits Thee, Wai Ken Design and implementation of voltage regulator for a power supply |
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The conventional use of voltage regulator has been widely introduced in the electronic appliances. With the advancement of technology and complexity of circuit designs, the implementation of voltage regulator has become necessary to maintain a constant desired output voltage and regulate the unregulated input voltage from the power supply.
This report displays the objective to design and implementation of several types of voltage regulators for a power supply. The two most commonly used voltage regulator types, namely linear regulator and switching regulator has been researched, simulated, designed and recorded in this report.
The types of linear regulator designed in this project are simple series voltage regulator, simple shunt voltage regulator, fixed regulator and variable regulator. This project also includes the implementation of switching regulators such as buck converter, boost converter and inverting converter through the utilization of MC33063A microchip.
These voltage regulators have been simulated by using MULTISIM and PSIM. The results of simulation, calculation and measurements are included in the report and actual circuits have been designed to display the results in contrast to simulation results. |
author2 |
Zhang Yue Ping |
author_facet |
Zhang Yue Ping Thee, Wai Ken |
format |
Final Year Project |
author |
Thee, Wai Ken |
author_sort |
Thee, Wai Ken |
title |
Design and implementation of voltage regulator for a power supply |
title_short |
Design and implementation of voltage regulator for a power supply |
title_full |
Design and implementation of voltage regulator for a power supply |
title_fullStr |
Design and implementation of voltage regulator for a power supply |
title_full_unstemmed |
Design and implementation of voltage regulator for a power supply |
title_sort |
design and implementation of voltage regulator for a power supply |
publishDate |
2017 |
url |
http://hdl.handle.net/10356/70565 |
_version_ |
1772828071520370688 |