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Half Wave Rectifier
1-Objectives:
 To calculate and draw the DC output voltages of half-
wave rectifiers.
 Without smoothing capacitor and with smoothing
capacitor.
2-Circuit elements:
Instruments
AC power supply or Function Generator
2 Voltmeters
Function Generator
Oscilloscope
Components
Diode: Silicon D1N4007
Resistors: 10 kΩ,
Capacitor :( 0.47 F)
Capacitor :( 4.7 F)
Electrolytic Capacitor 100 F
3-Circuit Diagram:
Fig.1 Fig.2
Exp.4: Half Wave Rectifier
Half Wave Rectifier
4-Procedure:
1. Connect the circuit as shown in Fig.1, adjust the power
supply at 10 V.
2. Measure the input voltage V1 and the output voltage V2 using
both the voltmeter and the oscilloscope.
3. Draw the input waveform, Vi , and the output waveform, Vo
4. Calculate: 1) Maximum voltage of the input signal
2
p
p
m
V
V


2) the effective value of the input voltage
2
m
V
V 
3) the average value of the output voltage
5. Comment on the results you obtained.
Smoothing and filtering
6. Connect the circuit as shown in Fig.2.
7. Measure Vout with voltmeter as a function of the capacitance
value of the smoothing capacitor CL=0.47F, 4.7 F, 100 F
and at the same time measure the ripple voltage VP-P using
C.R.O.
V (input) (Volt) V (output) (Volt)
With voltmeter 10 Va.c Vd.c
With oscilloscope Vp-p VP-P
0.318V
V m
dc 

av
V
Half Wave Rectifier
8. Draw the output signal voltage each time of CL values with
true scale.
9.Calculate the ripple factor r using the following equation
Comment on the results you obtained.
CL
F)
Vo (voltmeter)
( Volts )
Vp-p (CRO)
(Volts )
T
(m sec)
F = l/T
(Hz)
0.47
4.7

)
R
F
1
(
3
2
1
L L
C
r 

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999.pdf

  • 1. Half Wave Rectifier 1-Objectives:  To calculate and draw the DC output voltages of half- wave rectifiers.  Without smoothing capacitor and with smoothing capacitor. 2-Circuit elements: Instruments AC power supply or Function Generator 2 Voltmeters Function Generator Oscilloscope Components Diode: Silicon D1N4007 Resistors: 10 kΩ, Capacitor :( 0.47 F) Capacitor :( 4.7 F) Electrolytic Capacitor 100 F 3-Circuit Diagram: Fig.1 Fig.2 Exp.4: Half Wave Rectifier
  • 2. Half Wave Rectifier 4-Procedure: 1. Connect the circuit as shown in Fig.1, adjust the power supply at 10 V. 2. Measure the input voltage V1 and the output voltage V2 using both the voltmeter and the oscilloscope. 3. Draw the input waveform, Vi , and the output waveform, Vo 4. Calculate: 1) Maximum voltage of the input signal 2 p p m V V   2) the effective value of the input voltage 2 m V V  3) the average value of the output voltage 5. Comment on the results you obtained. Smoothing and filtering 6. Connect the circuit as shown in Fig.2. 7. Measure Vout with voltmeter as a function of the capacitance value of the smoothing capacitor CL=0.47F, 4.7 F, 100 F and at the same time measure the ripple voltage VP-P using C.R.O. V (input) (Volt) V (output) (Volt) With voltmeter 10 Va.c Vd.c With oscilloscope Vp-p VP-P 0.318V V m dc   av V
  • 3. Half Wave Rectifier 8. Draw the output signal voltage each time of CL values with true scale. 9.Calculate the ripple factor r using the following equation Comment on the results you obtained. CL F) Vo (voltmeter) ( Volts ) Vp-p (CRO) (Volts ) T (m sec) F = l/T (Hz) 0.47 4.7  ) R F 1 ( 3 2 1 L L C r 