A transfomer takes a current of 0-6 A and absorbs 64 W when the primary is connected to its normal supply of 200 V, 50 Hz ; the secondary being on open circuit.
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- Find: The Current across Series Resistance in Ampere, The Power Dissipated across Zener Diode, The Vout, The Current across Zener Diode in mA, The Current across Load Resistance in mA100nF Input Voltage AC Voltage 1MQ capacitor 5V diode 1N4001 -5 3V At which voltage value will the axis of the output voltage settle? а) Ov b) -8V c) +8V d) -3V What is the peak to peak value of the output voltage? a) -13V b) -8V c) +3V d) 10v What is the appropriate name for this circuit? a) biased positive clamper b) biased negative clamper c) positive clamper d) negative clamper If the diode is positioned in the opposite direction, what type of circuit will the result be? a) biased positive clamper b) biased negative clamper c) positive clamper d) negative clamperSketch i, and v, for the network below for the input shown (Both diodes are Si. VD= 0.7 V). Explain your drawings, briefly 1kQ Vi -o Vo1 20 V Vi 5.3V 7.3V -20 V
- A circuit consist of a single diode and resistor which are connected to AC source. The resistance voltage is: O AC voltage with V=Vm/ O DC voltage with V=Vm/√2 O AC voltage + DC offset O only DC voltage with V=2Vm/For the ideal-diode clipper circuit given below, VS = 12.sinωt V. Determine the output voltage Vout and sketch this function. Remove the short circuit between points x and y, and replace it with a 2kΩ Resistor. Find the range of values of VS for; D1 and D2 are OFF D1 is ON and D2 is OFF D1 is OFF and D2 is ON Is it possible for both D1 and D2 to be ON?Determine VL, IL, IZ and IR considering that RL = 180 Ω. Check if the zener drives with such an arrangement. In the case of not driving, what arrangement do you have to perform to regulate the zener diode.
- Sketch i0and v01 for the network below for the input shown (Both diodes are Si. VD=0.7 V). Explain your drawings, briefly.Sketch V0 for the network as practical diodeExercises: For the given circuit, determine Si Ge 3. Vp and In More illustrations... Ip + E 10V 2.4KQ (a) 4. Vo and Ip Si Ge IR +12 V o Ip 5.6KQ 5. Vo and Ip Series Diode 1.2KQ Si IR +12 V oMM " Configuration Ip 2.4KQ -5V