*41. Design a clamper to perform the function indicated in Fig. 2.185.
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- How is a solid-state diode tested? Explain.In the circuit shown below. Determine the following a. Vs (at the secondary) b. Vout (across RL) c. Vrip (ripple votage) d. VDC e. PIV (Peak Inverse Voltage) 10:1 Output 115 V mis 60 Hz RL 2.2 k) D, 50μF- All diodes are IN4001. Tund AlMannai EENG261 Page 5/11Q13. Calculate the current through 48 Q resistor in the circuit shown below. Assume the diodes to be of silicon and forward resistance of each diode is 1 0. D 48 Q A 01 D, ID, ()
- Q1/Consider the circuit in Figure with a transformer of 10:1 transformation ratio and the diodes are silicon. a) What type of circuit is this? (b) What is the total peak secondary voltage? (c) Find the voltage value across the resistor (d) Sketch the voltage waveform across RL (e) What is the PIV for each diode? D3 D 120 V Pisez) Vpouo D D 10 kn lleeeConsider the circuit shown in Figure 2. The cut-in voltage of each diode is . Let and assume both diodes are conducting. Determine if this is a valid assumption and explain your answer. And calculate the values of IR, ID, Ip2, and V.. Rj =1.7 kQ ww VB =1 V D1 Dz R2D 4 kQ Figure 2Given the following circuit with VDD = 9.5 V, R = 3.2 k2, then the current Iis: Use the CVD model for the diode, with VD = 0.65 V. VDD I a. 0 A O b. 0.002766 A c. 0.002969 A d. 2.968750 A e. 2.765625 A R N V₂
- 3 Given the bridge-type full-wave rectifier circuit shown 220V 60Hz 220V:Es Es D1 D2 D3 D4 The load resistor is 220 and the transformer average current is 300mA. Determine: (a) Average value, RMS value, and frequency of load voltage VRL. (b) Average current and PIV of each diode. RLAll pn diodes shown below have a voltage drop of 0.3 V when they are "ON". +4V DIA 5k2 D2 VOUT VA 5k2 V8 D1B -2V Indicate in the table whether the diodes D1A, D1B and D2 are ON/OFF with the given VA and VB values. Also give the corresponding VOUT numerical values. DIA (ON/OFF) DiB(ON/OFF) Dz(ON/OFF) VoUT (sign and numerical value) VA |V8 OV +4V OV +3V ov +4V4. The circuits parameters for an uncontrolled full-wave rectifier are as follows: Vin rms = 20V w= 314,159 rad/s Rload = 1KQ All diodes are Silisium and the equivalent circuit given below will be used. VFT = 0.7V, Ron = 0.01Q VET Ron + a) Find the value of DC voltage of the RL load resistance. b) Find the required rated PIV values for each diodes. c) Find the maximum conduction current of the diodes. d) Plot waveforms of the output current and voltage values.
- In a full wave bridge rectifier, the transformer secondary voltage is 10sinwt. Theforward resistance of each diode is 25Ω and load resistance is 1KΩ.Calculate,i. Imii. Idciii. Pdciv. Pacv. η(a): Determine the ripple factor for the filtered bridge rectifier with a load as indicated in the following circuit diagram: (b): Sketch the voltage across R. in two cases ( when C is connected and when C is removed). Note that all diodes are of Silicon. 3:1 Dy D 390 Vpp Outpar 60 Hz R 380 Ohm D 1900FFor the circuit shown in the Figure, if the diodes are silicon diodes with VD(on)=0.7 V, and VIn=50 sin wt V, V1 =7 V and V2 =13 V, then the value of VOUT (p-p) is: R1 D, D2 VIN VOUT vi E v2= Ca. 19.4 V Ob. 17.4 V Cc. 15.4 V Cd. 21.4 V