1500 20V RQ Vut -20V aptop charger is connected with a load resistance R=44920 and practical PN junction diode is used as shown in Figure. Find the value of the output voltage in the negative half cycle |(in volts) if the input applied voltage is v(t)=20sin314t.
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- p3. A biased parallel clipper is connected to a squarewave 20VAC input.The biasing voltage of 5V has the same polarity with the Vo while the Si diode is connected in reverse and will conduct only during negative half cycle. In P3, what is the output voltage (Vo) during the positive half cycle? a. -4.3V b. 20V c. 4.3V d. -12.15VPower supply circuit is delivering 0.5 A and an average voltage 20 V to the load as shown in the circuit below. The ripple voltage of the half wave rectifier is 0.5 V and the diode is represented using constant voltage model. The smoothing capacitor value is equal to 220V ams 5OHZ İL-DC =05A RL VL-DC =20VThe cut-in voltage for each diode in the circuits shown in Figure Pl.30 is V, = 0.6 V. For each circuit, determine the diode current I, and the voltage Vo (mea- sured with respect to ground potential). Q7 R= 10 k2 Vo oVo Ip R= 10 k2 5 V 5V 5 V 5 V (a) (b) R= 10 k2 Vo 5V E 5 V (c)
- Q2/ Determine the minimum input voltage required for regulation to be established in the figure. Assume an ideal zener diode with Izk = 1.5 mA and Vz = 14 V. R 560 0 VINV, is a 60Hz source with a peak voltage VP-120V is feeding a rectifier, assume ideal diode. The load resistance has a value of R= 10 k0. If ripple voltage Vr = 2V, the Diode average current Ipavg is VI Select one: a. + e. None Ob. 580mA Oc. 850mA Od 245mA 425mA D C: www tu Vo Q6Vps = 10 V R = 0.1k02 ww -ovo R₁. Consider the Zener diode circuit shown in figure. The Zener diode voltage is Vz= 5.8V at Iz= 10mA and the Zener resistance is rz = 200. a) Find the output voltage for RL = 1k0 b) Find the change in the output voltage when the load resistance varies +ARL.
- In the clamping circuit below, assume the diode has Von-0.7V and V₁ is a sinusoidal wave with a peak-to-peak amplitude of 10V. How much is the maximum value of the output voltage signal (Vmax)? And how much will it be if we set V₂=2V? Input V1 C1 0.1e-6 9.3 V and 7.3 V 9.3 V and 11.3 V 11.3 V and 7.3 V O 7.3 V and 12.0 V O 12.0 V and 7.3 V Output D1 1N4148 .tran 30-3 V2 0 Vmax V(output) 0.0ms putput MAN Input 0.6ms 1.2ms V(input) 1.8ms 2.4ms 3.0msThe positive peak value of output waveform for the given circuit diagram is.. . (VPP of input is 14 V, Bias voltage is 4 V, Diode is silicon) R1 I D, VIN VOut VELAS EThe following figure shows a Zener diode regulator designed to hold 5.0 V at the output. Assume the Zener resistance is zero and the Zener current ranges from 2 mA minimum (2x) to 30 mA maximum (IZM). What are the minimum and maximum input source voltages for these currents? Vs = ? R₁ W 560 02 Vz +5.0 V
- 5-For single phase half-wave controlled rectifier with a freewheeling diode connected across the inductive load, the supply voltage is 220V (RMS). The mean value of the output voltage for a=45 is: 100.7V 70.9V 84.5V 6-For fully controlled single phase bridge rectifier with inductive load (R=102, L=50mH), F=50HZ and a=45', the load current is: Continuous discontinuous verge continuous 7-Fully controlled three phase bridge rectifier circuit is supplied through delta-star transformer. For highly inductive load, the waveform of the line supply current (primary line current of the transformer) is: Square quasi-square six- stepQ2) For the circuit shown in Figure 2, sketch the output voltage (across the load 2.2 KO resistor) and the load current (through the load 2.2 KN resistor). Sketch the diode voltage (across the diode D1) and the diode current (through the diode D1). The input Vi is sinusoidal with maximum amplitude (peak) of 14.1422 V and frequency of 60 Hz. The diode D1 is a Silicon diode. The sketches have to be at least for two cycles of the input. D1 2.2 K2 ViDetermine the ripple factor for the filtered rectifier circuit below when RL= 4KN. Then explain briefly the effect of changing in the RL value on the output waveform. for all diodes Vina "100 V 1- 60Hz