Assume the simple diode model with Von = 0.7V, find the voltage V1. 50 Ω 9 V 25 Ω 100 ΩΣ
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- Diodes and rectifiers allow current to _________. flow in one direction only flow in both directions divide paths of flow none of the above1. Consider the following circuit, and assume all diodes are ideal. Draw the output to for a triangular input that is given below. ~ Vin R 5 KQ www V1 5V ww D1 R1 5 ΚΩ Vin 10 f -10 D2 ww V2 5V R2 5 KQ VoWhat could happen if the diode's type would be changed from silicon to germanium? in Clipping circuts experiment
- In the circuit below, Vi = 6sin (wt) and diodes are considered ideal diodes. Describe the working principle in detail by drawing the output signal. 10KO D2 10KO V. VaC D1 4V 2VThe input voltage V, is a sinusoidal voltage with maximum value of 6 V If the threshold voltage of the diodes is 0.1 V, plot V. versus V. +10 V 10 k2 v o o vo 10 k2 10 k2 -10 VIn the Figure as shown below the current (I) will be equal to: ---- Assume that all diodes are silicon -practical diode model 4 KUZ lovt 32 KSL 2.2 mA O 2.3 mA O 2.4 mA O 1.1 mA O
- All of the diodes in the following circuit are Silicon w/ forward voltage 0.6V. Determine the value of the current I in amperes if R1 = 100 and R2 = 150 R1 I 10 V R2 KtTwo germanium diodes are connected in series and have a load resistance of 10 kQ and a forward supply voltage of 5 V. Calculate the voltage across the load resistor. * O 4.7 V O 4.4 V O 0.3 V 0.6 VThe current through the diode in the circuit given in the Figure below when Vy = 0.7 V is? ww 8092 12V Select one a. 24.26 mA b. 13.09 mA c. 58.23 mA d. 40.13 mA 40-52 ww 3092 ID
- //sketch the output wave form of the below. The input voltage circuit shown varies from "0" to "150V" linearly, Assame the diodes are ideal. D₂ Vi gül DI * + 300 - look 3200K. I+ I 10ου + vo.Determine if the diode (ideal) in Figure is forward biased or reverse biased And find Vp + 10V 2 k2 4 kn V2 8 kn 6 k2 wwDetermine the voltage across the diode in Figure below, assuming silicon diode + SV 1 www 10 8V O 7V O 4V O -3V O