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(b) A single stage amplifier has a gain of 60. The collector load RC = 500 and the input impedance is 1 K , calculate the overall voltage gain
when two stages are cascaded through RC coupling,
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(c) How many types of biasing are done on a BJT to work properly as an amplifier? Which one is the best and why?
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(a) Show that an ideal low pass filter is non-causal system.
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(b) The frequency response of a causal LTI discrete time system is given by Find group delay and . Discuss the
type of system.
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(b) Show that 
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(a) Show that if 
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(b) Consider the sequence x(n)= (i) Sketch x(n).
(ii) Find the Fourier coefficient ck of x(n).
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(a) Draw the cascade of a common cmitter stage and common collector stage and give the expression for input resistance and current gain of
the circuit.
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(b) What is Darlington pair? Derive an expression for current gain in Darlington pair.
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(a) Derive expression for voltage gain, current gain, input resistance and output resistance of a common base Si transistor circuit using h
parameters.
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(b) Explain how phase reversal of the signal takes place when it is amplified by a single stage CE voltage amplifier?
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(a) A Si transistor has a potential divider biasing. If it operates at lc =3mA and VCE =10V. find VOC, RBI, VB and RE for =100. Assume
VBE = 0.7 V, RB2 = 20 and RC = 5
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(b) Discuss IC voltage regulators.
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(a) Discuss Butter worth and Chebyshev filters.
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(b) Write a short note on HPFs and LPFS.
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(a) Discuss wide band pass filter along with its frequency response curve.Also, discuss its frequency.
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(b) Discuss the working of a log-amplifier with a suitable diagram, which provides saturation current and temperature compensation.
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(a) Explain the working of a complementary symmetry class-B push pull amplifier. Show that its maximum conversion efficiency is 78.5%. What
will be the conversion efficiency when power dissipation is maximum.
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Attempt the question (b) What is the significance of stability factor? Define and 
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Attempt the question (j) What are the drawbacks of complementary symmetry push pull class B power amplifier.
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Attempt the question (i) What advantages does the transformer provide in a transformer coupled power amplifier?
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Attempt the question (h) How does negative feedback increases bandwidth of an amplifier?
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Attempt the question (g) What is negative resistance region in UJT? Explain its physical significance.
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Attempt the question (f) Why FET is called a voltage controlled device?
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Attempt the question (e) Define "current controlled device" and voltage controlled device".
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Attempt the question (d) Why the channel of a JFET is never completely closed at the drain end?
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Attempt the question (c) Explain the function of coupling capacitor and bypass capacitor.
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(b) Explain Clipping and Clamping circuit with suitable examples.
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Q1 Attempt all the questions:
(a) What is emitter follower? Explain.
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(b) When the input to an LTI system is and system response is . Find the impulse
response h(n) of the system and check its stability.
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(a) is the system function of the LTI system. Specify
the ROC of H(z) & unit impulse response of h(n) for the following
condition:-
(i) Stable system (ii) Casual system (iii) Anti-causal system.
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(b) The output y(t) of a continuous-time LTI system is found to 2e-3tu(t) when the input x(t) is u(t). (i) Find the impulse response h(t) of the system.
(ii) Find the output y(t) when the input x(t) is e-tu(t)
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(a) Find the inverse Laplace transform 
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(b) Consider the analog signal x(t) = 3 cos 100 
(i) Determine the minimum sampling rate required to avoid aliasing.
(ii) If the signal is sampled at the rate fs=200Hz. What is the discrete
time signal obtained after sampling?
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(a) Discuss sampling and reconstruction of a continuous time domain signal x(t).
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What are Precision Diodes? How do you obtain full wave rectification using Op-Amp with diodes?
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Write short notes on Schmitt Trigger.
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Write short notes on OTA.
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Draw the circuit of Integrator and explain the operation.
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What is ideal Op-Amp? Discuss the characteristics of ideal Op-Amp.
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By finding its transfer function, prove that the circuit below is a LPF .Determine its bandwidth.
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What is VCO? How it works in a PLL?
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Explain block diagram of a 555 Timer.
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Explain Butterworth and Chebyshev approximate filter functions.
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(a) Design an OPAMP as a buffer amplifier and voltage multiplier.
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How do you achieve Monostable Multivibration using Op-Amp?Determine it's time period.
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Explain input Bias current and how it is compensated using Rcomp.
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Using comparator, how do you achieve Zero Crossing Detector?
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Explain the working of a basic integrator using Op-Amp and the problems Associated with it using bode plot. How it is resolved using a
Lossy Integrator.
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Draw and explain the transfer characteristics of OTA.
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Explain working of a Colpitts Oscillator and find its frequency in Oscillation.
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Explain with a diagram how a band pass filter be realized.
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Discuss Push-Pull power Amplifier.
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(b) Explain the following: (i) Active Loads
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(a) Discuss power dissipations in transistors.
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(b) Calculate the frequency of oscillations of a Colpitts oscillator with C1 - C2 = 400 pF and L= 2 mH.
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(a) Discuss principle and working of Sawtooth Waveforms Generators.
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(b) Explain the working of an op-amp square wave generator. Derive an expression for the frequency of oscillation. What is the maximum
amplitude of the square wave and how can it be varied?
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(a) Draw the circuit of crystal oscillator and explain its operation.
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(b) Explain the following: (iv) Voltage to Current converters
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(b) Explain the following: (iii) Current Mirrors
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(b) Explain the following: (ii) Virtual'Ground
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Explain Op-Amp as Voltage Follower.
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(a) A differential amplifier has an open circuit gain of 100. The input signals are 3.25 V and 3.15 V. Determine the output voltage. What conclusion
do you draw from this calculation?
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(b) The input to the differential OPAMP is a sinusoidal voltage of peak value 5 mV and frequency 2 kHz. Find the output if R = 100 ks and C=1 .
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(a) Discuss op-amp as an integrator giving its applications. A 5 mV, 1 kHz sinusoidal signal is applied to the input of an op-amp integrator for
which R=100 , and C =11 . Find the output voltage.
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(e) Explain second order low pass filter with a suitable diagram.
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(d) Discuss Class C and AB amplifiers.
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(c) Calculate the period of oscillations of Hertley oscillator having L1 = 1mH, L2 = 2 mH and C =0.1 
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(b) Explain circuit diagram and working of Colpitt's oscillator. Also mention the frequency of oscillations.
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