For the circuit below a filter capacitor is connected in parallel with R1 = 100 Q. Assume Vy= 0.7 V. The peak output is to be 15 V and the ripple voltage is to be no nore than 0.2 V. The input frequency is 60 Hz., Find the required rms value of Vs, he turns ratio, the required filter capacitance value and the diode PIV rating.

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Publisher:Robert L. Boylestad
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Semiconductor Constants
Eg (eV)
1.1
B (cm³ K³2)
В (сm
Material
-3
Silicon (Si)
Gallium Arsenide (GaAs)
Germanium (Ge)
5.23 х 1015
2.10 x 1014
1.4
0.66
1.66 x 1015
Boltzmann's constant – 86 x 10-6 eV/K
Thermal Voltage at room temperature (300 K) – VT = 0.026 V
Transcribed Image Text:Semiconductor Constants Eg (eV) 1.1 B (cm³ K³2) В (сm Material -3 Silicon (Si) Gallium Arsenide (GaAs) Germanium (Ge) 5.23 х 1015 2.10 x 1014 1.4 0.66 1.66 x 1015 Boltzmann's constant – 86 x 10-6 eV/K Thermal Voltage at room temperature (300 K) – VT = 0.026 V
For the circuit below a filter capacitor is connected in parallel with R1 = 100 Q.
Assume Vy = 0.7 V. The peak output is to be 15 V and the ripple voltage is to be no
more than 0.2 V. The input frequency is 60 Hz., Find the required rms value of Vs,
the turns ratio, the required filter capacitance value and the diode PIV rating.
T1
120 V
60 Hz
ODeg
R1
두
Transcribed Image Text:For the circuit below a filter capacitor is connected in parallel with R1 = 100 Q. Assume Vy = 0.7 V. The peak output is to be 15 V and the ripple voltage is to be no more than 0.2 V. The input frequency is 60 Hz., Find the required rms value of Vs, the turns ratio, the required filter capacitance value and the diode PIV rating. T1 120 V 60 Hz ODeg R1 두
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