Design a CT-FWR to supply a load of (50) with a waveform of the following specifications: -  Vdc = 12 V  Ripple factor = 0.1 %  the main power supply is (220 Vrms, 50 Hz). Determine the following values: - 1- The value of capacitor filter. 2- The maximum load voltage (VmR) 3- The transformer turns ratio (a).

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Design a CT-FWR to supply a load of (50) with a waveform of the following specifications: -  Vdc = 12 V  Ripple factor = 0.1 %  the main power supply is (220 Vrms, 50 Hz). Determine the following values: - 1- The value of capacitor filter. 2- The maximum load voltage (VmR) 3- The transformer turns ratio (a). 4- The RMS value of the load voltage. 5- Draw the output waveform. (assume ideal diodes)
Design a CT-FWR to supply a load of (502) with a waveform of the following
specifications: -
Vdc = 12 V
• Ripple factor = 0.1 %
• the main power supply is (220 Vrms, 50 Hz).
Determine the following values: -
1- The value of capacitor filter.
2- The maximum load voltage (VmR)
3- The transformer turns ratio (a).
4- The RMS value of the load voltage.
5- Draw the output waveform.
(assume ideal diodes)
Transcribed Image Text:Design a CT-FWR to supply a load of (502) with a waveform of the following specifications: - Vdc = 12 V • Ripple factor = 0.1 % • the main power supply is (220 Vrms, 50 Hz). Determine the following values: - 1- The value of capacitor filter. 2- The maximum load voltage (VmR) 3- The transformer turns ratio (a). 4- The RMS value of the load voltage. 5- Draw the output waveform. (assume ideal diodes)
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Step 1

Design a CT-FWR to supply a load =50 ohm

with a waveform of the following specifications: - Vdc = 12 V 

Ripple factor = 0.1 %

the main power supply is (220 Vrms, 50 Hz). Determine the following values: -

1- The value of capacitor filter.

2- The maximum load voltage (VmR)

3- The transformer turns ratio (a). 

 

 

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