describe output Vout of the circuit given below?
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Q: 2- Design with drawing an octal-to-binary Encoder ?
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A: The explanation is as follows.
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Q: Following the steps discussed, sketch the output waveform of the circuits shown below:
A: The solution can be achieved as follows.
Q: Q3. What is a Unity Gain Buffer and why is it useful? What is another name for a Unity Gain Buffer?
A: We need to tell about unity gain buffer .
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A: We need to draw small signal model of different amplifier .
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A: We have to write rhe advantages of sampling analog signals
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A: Brief description : In the above given question there want to have a discussion on MOSFET…
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A: MOSFET full form is Metal oxide semiconductor field-effect transistor.
Q: How the transistor can be used as an amplifier in CE configuration?
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Q: For the circuit shown in Figure B19a, Ve 20V Rc 3kQ RB = 10k 2 VCE VBB=3V Figure B19a i) Sketch the…
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Q: Design with drawing an octal-to-binary Encoder ?
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Q: a.Describe in your words why IG is effectively 0A for a JFET transistor?
A: We are authorized to answer one question at a time, since you have not mentioned which one you are…
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Q: Sketch a simple-and-hold circuit with current input signal using CMOS transistors
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Q: 2. Implement the following circuit using Verilog gate-level modeling: module q1( );
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Q: small
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Q: 1. What are the two ways of generating DSB_SC. 2. What are the applications of balanced modulator?…
A: Since you have asked multiple questions, we will solve the first question for you. If you want any…
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Q: B. Sketch the output waveform of a Schmitt Triger circuit for input signal of V tn = 5sin10nt, Rp =…
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A: The explanation is as follows.
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Q: Draw the equivalent circuit model and switching characteristics of the device which is having high…
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Q: Make circuit diagram for 5-bit Gray-to-Binary Converter.
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Q: What is large signal amplifier and small signal amplifier?
A: Small signal amplifier: In this kind of the amplifier, the change in the variation of the base…
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- What is the difference between a diode and rectifier?Calculate the current flowing through the given circuit and the voltage value at the V0 ends. (Threshold voltage = 0.3V for Germanium diodes, Threshold voltage for silicon diodes = 0.6V)Consider 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 2
- Draw the input waveform and output waveform for the circuit given below with proper values marked in the figure. Assume D1 as germanium and D2 as silicon diodes. Input Vpp%3D20V, V1=3 V and V2=10 V. R D2 D1 Vin Vout V1 V2 Maximum voltage of output waveform Minimum voltage of output waveform PsDetermine the state of diode for the circuit shown and find ID, VD. Assume simplified model for the diode. 4k02 2V 1k02. Off, 0.00mA, 0.4V O Off, -0.005mA, 0.0v On, 0.48mA, 0.6v On, 0.55mA, 0.7v Option 5Determine the current I in the circuit (i). Assume the diodes to be of silicon and forward resistance of diodes to be zero.
- For the diodes used , at what Voltage (VD) does condection stars .A silicon diode has 1 ampere DC of current in biasd mode. What is voltage drop across the diode?For the circuit shown below, compute the maximum current through each resistor when terminal A is a) positive and, b) negative. Assume the diodes are ideal.
- What will be the value of the reverse saturation current for a Si diode operating in forward bias mode. The following information is given: Diode current 3 A Voltage across diode 0.25 V. Temperature is 300 K.Find the values of I and V for the circuits of Figure below, assuming that the diodes are ideal.(1-a) Explain the operation of the Zener diode in forward and in reverse bias. (1-b) Analyze the circuit thoroughly assuming many source values that lead to all possible cases of diode states. For each case (Hint: 3 cases), re-plot the circuit and develop the relation between the output voltage and the source. (1-c) Draw input and output waveforms accurately over 0.5-ms period. Identify the diode states on the graph based on the categorization of cases from part (1-b).