The forward-bias voltage (V) required to maintain a PN diode current (I) is a function of the temperature (T). (a) Derive an expression for SV/ST. (b) What is a typical value for a silicon diode? (c) Compare the result of (b) with a numerical value extracted from Fig. 4-21.
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- How is a solid-state diode tested? Explain.Solve the question 4 and 5 onlyFor the subsequent questions, please refer to the circuit below. Assume that the diode is ideal (e.g. the voltage across it is zero volts when it is ON) IK VIN=7V = J Syt + Jo Vo Suppose we assume the diode is ON, this is a wrong assumption because when we solve for lo with the diode as a short-circuit the condition ID>=0 will NOT hold as lp will be (in mA) ... Suppose we assume the diode is OFF, what is the resistor current I in mA? Suppose we assume the diode is OFF, what is Vo in volts? Suppose we assume the diode is OFF, our assumption is correct because the condition VD<=0 will hold as Vp will be (in volts) ...
- Help me please with the waveforms for example 5. Thank you. And a bit of explanation will be much appreciated. <3From the diode circuit shown below. If E=40 V and RL=400, determine the current supplied from the battery. the voltage across the load resistance. and the voltage across diode D2 if all the diodes are silicon with an internal resistance of 2 0. RL E= a. The Current supplied by battery is b. The Voltage across Load resistance RL is c. The Voltage across diode D2 isA Si pn junction diode is operating under forward bias conduction. If the forward current is 4 mA and the reverse saturation current is 1 nA, then what will be the voltage across the diode? Assume the diode is kept at 400 K temperature.
- In this Zener diode regulator, the source voltage varies from 8 V to 13 V. Assume that the load current varies between 1 mA and 39 mA, and that the diode is an ideal 3 V Zener diode. What is the largest allowable resistance that will ensure the load voltage remains constant with variations in load current and source voltage? Please enter your answer to 3 significant figures.Complete steps and solution. Find the current and voltage in the diode in the 1st, 2nd, and 3rd approximations.For the circuit shown below, both diodes are identical with and the input voltage is . To analyze the circuit, we assume that both diodes are conducting (on). Is this correct? If yes, what is the value of ID1? If no, what are the correct diode states?
- Solve for the given unknowns.Question 1 (a) (i) (ii) (iii) Plot the current-voltage characteristic of a p-n diode. In your plot include the forward bias region, reverse bias region and any other important features. Explain what is the major difference between a Zener diode and a p-n diode. Provide one electronic application where a Zener diode is used.I need the answer as soon as possible