2.2 For the half-wave uncontrolled rectifier circuit supplying a series resistive- inductive load shown in Fig.2.35. The supply voltage is v =v2x220 sinøt and the supply frequency is 50 Hz and the load parameter values are: R =10 N, and X = 20 Q . The current i for the conduction interval ot = 0 to wt =B is given by: Vm Tz (sin(wt – 0) + sin0e-cot0 .wt i(wt) %3D where Iz|=/R² + (wL)² and tan 0 = L/R (a) Sketch the load voltage and current waveforms. (b) Calculate the current extinction angle ß. (c) Calculate the average d.c. load voltage Vdc

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2.2
For the half-wave uncontrolled rectifier circuit supplying a series resistive-
inductive load shown in Fig.2.35. The supply voltage is v =v2x220 sinot
and the supply frequency is 50 Hz and the load parameter values are:
R =10 Q, and X1 = 20 Q . The current i for the conduction interval ot = 0
to ot = B is given by:
Vm
Iz sin(wt – 0) + sin@e-cot .wt]
i(wt)
where Iz|=/R² + (@L)? and tan 0 = mL/R
(a) Sketch the load voltage and current waveforms.
(b) Calculate the current extinction angle ß.
(c) Calculate the average d.c. load voltage dc-
R
Fig.2.35.
vs= Vmsinot
[Ans: B=249.25° , Vác= 64.69 V ]
Transcribed Image Text:2.2 For the half-wave uncontrolled rectifier circuit supplying a series resistive- inductive load shown in Fig.2.35. The supply voltage is v =v2x220 sinot and the supply frequency is 50 Hz and the load parameter values are: R =10 Q, and X1 = 20 Q . The current i for the conduction interval ot = 0 to ot = B is given by: Vm Iz sin(wt – 0) + sin@e-cot .wt] i(wt) where Iz|=/R² + (@L)? and tan 0 = mL/R (a) Sketch the load voltage and current waveforms. (b) Calculate the current extinction angle ß. (c) Calculate the average d.c. load voltage dc- R Fig.2.35. vs= Vmsinot [Ans: B=249.25° , Vác= 64.69 V ]
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