3.- For the given circuit and conditions find n FPL ~ D nil 102 102 POR = 10 W.
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- Question 1: In the circuit shown below, the output (Vo = 10V Max.) Unipolar. The frequency of Primary is 60 Hz. The diodes are Silicon with VD = 0.7V. a. Sketch the output without a Capacitor. b. Determine Voc without a Capacitor. c. Sketch Vs (at the Secondary). d. Determine Voc with a Capacitor of 10 uF across RL. e. Determine the RMS Value of Vp (at the Primary). f. PIV (Peak Inverse Voltage). 10:1 Output C. 22 k1 All diodes are IN4001. | 00000A 1N4738A zener diode has a ZZ of 4.5 Ω. Taking the data from the datasheet we have VZ = 8.2 V with a test current, IZ, of 31 mA. What is the voltage across the zener terminals when the current is 15 mA? When the current is 55 mA? Make the representation of the values by means of their curve characteristic.Vin = 10 mV Sin (wt) HH inf 1. For the Diode Circuits shown below, Vd-0.7v a. Draw the small signal eq. circuit find Vo (AC+DC) b. C. Sketch the output waveform Vo (AC+DC) V1 vin D Find the cascaded voltage gain Yout/Vin of the follo I'C 5 R2 25 11 1m D1 dio R1 300 Vo
- The question is attached to jpeg picture of the circuit:Find the values of Vin, VD and ID for the cases where the diode is ideal andSilisium (VT = 0,7V). Frequency value of the input voltage is 50Hz.Please show calculations of operating currents and voltages. Values are located in table. Please verify that BJT and Diode are within its operating limits.
- Can you explain and show all the details ???For the diode circuit to the right 8002 a V' V 40mA (T 1002 0.001V' a) To the left of points a and b, find the load-line relation by expressing the current, I with voltage, V. HINT: Write KCL equation for the circuit diagram and write I in terms of V from that KCL equation. This will be your load-line equation.For the diode circuit to the right 8002 a V 1002 b 40mA 0.001V' a) To the left of points a and b, find the load-line relation by expressing the current, I with voltage, V. HINT: Write KCL equation for the circuit diagram and write I in terms of V from that KCL equation. This will be your load-line equation. b) Assume the diode has the following characteristic, using the load-line relation you found in (a), determine the operating voltage, V and current, I for the circuit. ip (mA) 20 15 10 5 Vp (V) 3.0 0.5 '1.0 1.5 2.0 2.5
- A silicon diode has a forward voltage drop of 1.2V for a forward DC current of 100mA. It has a reverse current of 1μA for a reverse voltage of 10V. Calculate the: a. Bulk resistance b. Reverse resistance c. AC resistance at forward DC current of 2.5mAIn the circuit shown below. Let V-33 V and i,-28 mA and Voo -0.7 V: iD Vcos(at)V For t = 0s, the current in the diode equals: Ca. 0 mA Cb. 2 mA Cc. 4 mA Od. 2 mA Ift = T/4, then the current in the diode equals: Ca. 8.92 mA Ob. 5.71 mA Oc 7.14 mA Od. 4.57 ma Ift- T/2, then the current in the diode equals: Ca. 10.39 mA Cb. 16.39 mA Oc 14.39 mA Od. 12.39 mAQ5) a) Calculate the minimum and the maximum input voltages that can be made by the given diode. The data sheet gives: Izmin = 2mA,Izmax=30mA, and Vz = 5 V. b) In which region of I-V characteristic does the diode operate ? Why? c) What is the main function for the given circuit? V1 =OV R1 10052 2 D1 1N5247B