Switch mode power supply
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Transcript of Switch mode power supply
![Page 1: Switch mode power supply](https://reader034.fdocuments.us/reader034/viewer/2022052509/55ab36b21a28ab1c3e8b458f/html5/thumbnails/1.jpg)
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SWITCHING DC POWER SUPPLIES
INTRODUCTIONLINEAR POWER SUPPLYOVERVIEW OF SWITCHING POWER SUPPLIESDC – DC CONVERTER WITH ELECTRICAL
ISOLATIONCONTROL OF SMPSPOWER SUPPLY PROTECTIONAPPLICATION
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IntroductionLike a linear power supply, the SMPS too converts
unregulated ac or dc input voltage to a regulated dc output voltage
The input voltage is first rectified and filtered using a capacitor at the rectifier output
unregulated dc voltage across the capacitor is then fed to a high frequency dc-to-dc converter
The high frequency transformer used in a SMPS
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Linear Power Supplies
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Disadvantages of LPS
The output fluctuates with input which is not desirable
Isolation is not possibleEfficiency is very lowBulky and noisy
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SMPS Block Diagram
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Switching DC Power Supply: Multiple Outputs
In most applications, several dc voltages are required, possibly electrically isolated from each other
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Transformer Analysis
Transformer Analysis
Needed for high-frequency isolated supplies
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PWM to Regulate Output
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PWM OUTPUT WAVEFORM
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Flyback Converter
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FLYBACK CONVERTER WAVEFORM’S
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Other flyback converters are:~ 1. Two transistor flyback converter 2. Parallelled flyback converter
But these are not commonly used
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Forward ConverterDerived from Buck; idealized to assume that the transformer is ideal (not possible in practice)
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Half-Bridge Converter Derived from Buck converter
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Full-Bridge ConverterUsed at higher power levels (> 0.5 kW )
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Input Filter Needed to comply with the EMI and harmonic limits
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ConclusionOne of the most important applications of power
electronics is SMPSHigh efficiency and small weight and sizeIn SMPS multiple outputs are possibleLosses is minimum and only switching losses are
presentCurrent rating is mediumThe high frequency transformer used in a SMPS
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Switched Mode Power Supply
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