Determine VP(sec), VP (out), PIV, Vp(rect), Vr(p-p), VDC and the ripple factor, r
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- Reduce to its simplest form using msopElectromechanical Engineering Dept. First Class lecture 4 it Dr. Ekbal H. Example/ The FWR cct. shown in Fig.below draw output wave form. Then find i. DC voltage and current ii. the ripple voltage iii. ripple factor. iv. Change in DC voltage if capacitor increased to 100 uF Vintmsj=220 v F 50 Hz V. Ns/Np=1/5 R=10K2 C=50 uF TLC = 93 | F = 14 | G = 39 | S = 85 For the sinewave, give the following six values. Must give the UNITS after each number. a. Vp (the peak voltage) b. Vpp (the peak-to-peak voltage) c. B (the DC bias or DC offset) d. T (the period) e. f (note that f will be a number of Hertz between 0 and 1 and your answer might have to be rounded OR you can choose to write it as a fraction), and f. θ, which is the phase shift in degrees in the expression Vpsin(ωt - θ) + B Vp = Vpp = B = T = f = θ =
- 2_53528980697... -> For the circuit shown below, detemine the voltage of the -j10 2 capacitive reactance. -j5 0 ILOA(T) ==j102 jlon is Q 102 O 0.5L-90 52 A.If the input voltage for the given circuit below is 220 V at 60 Hz, the load resistance (RL) is 3302 and the average output voltage is 20 V. Assume the diodes to be silicon diodes. Determine the turns ratio of the transformer used. If a capacitor of 100 µF is connected parallel to the load resistor (RL), Determine the ripple factor. D3 D1 V + RL D2 D4 a. The turns ratio of transformer (Npri/Nsec) is b. The Ripple factor is illlA certain impedance is given by 1012° N. Does the current lead or lag the voltage, and by how many degrees? Fill in the blanks. The current the voltage by
- A generator rated at 30MVA, 11kV has a reactance of 40%. Calculate its p.u. reactances for a base of 50MVA and 10kV. O 0.606 p.u. O 0.506 p.u. O 0.806 p.u. O 0.706 p.u.An ac current is given by 100sin100t. It will achieve a value of 62A for the first time when it reached the time (in msec) ofThe rms value of v(t)=Vmaxcos(t+) is given by a. Vmax b. Vmax/2 c. 2Vmax d. 2Vmax
- Example/ The FWR cct. shown in Fig.below draw output wave form Then find i. DC voltage and current ii. the ripple voltage ripple factor. 111. iv. Change in DC voltage if capacitor increased to 100 uF Vintmsj=220 v f= 50 Hz V. Ns/Np=1/5 R=10K2 C=50 uFChoose the % derating factor of the string which is having 8 number of SCR connected in series to withstand a DC voltage of 1864 V and steady state voltage rating of 803 V. O a. 5.38 Ob. 14.51 Oc 70.98 O d. 29.02Given the following find: The reactive power dissipated by the source is (in Vars) The apparent power dissipated by the source is (in VA)