List the characteristics of an ideal OP-AMP. Write the expression for the output voltage in terms of input voltages and resistance values.
Explain the switching action of a FET. Two JFETs are connected in parallel with \gamma_{d1} (drain resistance) = 20\text{ k}\Omega, \gamma_{d2} = 30\text{ k}\Omega and g_{m1} (transconductance) = 2\text{ m-mho} and g_{m2} = 4\text{ m-mho}. Find the efffective \gamma_d and g_m.
Draw the circuit diagram of a two-stage RC coupled common emitter transistor amplifier. Show how the magnitude and phase of voltage gain vary with frequency. Define bandwidth of this amplifier. An amplifier with open loop voltage gain, A_v = 1000 \pm 100 is available. It is necessary to have an amplifier whose voltage gain varies by no more than \pm 0.1\%. Find the reverse transmission factor \beta of the feedback network used and the gain with feedback.
Show the volt-ampere characteristics of a solar cell under illumination. Explain the characteristics.
A certain colpits oscillator uses a tank circuit with L = 20\text{ mH}; C_1 = 200\text{ pf} and C_2 = 300\text{ pf}. What is the frequency of oscillation ?
Show that FCC-crystals are more closely packed than BCC-crystals,
How can the NAND-gates be combined to perform the OR-operation ?
Distinguish between 'soft' and 'hard' super-conductors. Explain how penetration depth varies with magnetic field strength and temperature.
(i) Transistors are current operated devices, while vacuum tubes are voltage operated." — Explain. (ii) Why are junction transistors called bipolar devices ?
Explain the working of a phase-shift oscillator. Draw the circuit diagram of a phase-shift oscillator using either a transistor or an op-amp. What are the conditions which must be satisfied to achieve stable oscillations ? Calculate the frequency of oscillations for R = 10\ \Omega and C = 0.01\ \mu\text{F}.
Draw the device structure of a p-n junction solar cell and explain how the light energy is converted into electrical energy. Define the 'short-circuit current', open-circuit voltage' and 'efficiency' of a solar cell.
What is Josephson effect? Discuss briefly DC and AC effects. Give some practical applications of Josephson junctions.
Discuss briefly the concept of effective mass in semiconductors and explain the significance of negative effective mass.
Show that a lattice cannot have a five-fold rotational symmetry. However, some solids appear to exhibit this rotational symmetry. Explain briefly how this can be done.
Explain the difference between n-p-n and p-n-p transistors. Give their device structure and biasing circuits. Draw a circuit for a single-stage common-emitter amplifier.
Simplify the equation: Y = [A \bar{B} (C + BD) + \bar{A} B C] using Boolean algebra. Give the logic circuit for the equation before and after the simplification.
Give the Boolean expression and the truth table for an XOR gate. Why are NAND gates called universal gates ? Realise OR and XOR gates employing only NAND gates.
What is a microprocessor ? Explain the internal architecture of an 8085 \mu\text{P}.
The following common-emitter amplifier is required to have a signal voltage gain V_{\text{out}} / V_S of at least 100. The transistor has \beta = 63, early voltage V_A = 100\text{ V} and I_{SE} = 1.5 \times 10^{-14}\text{ A} :
Assuming that the operating collector voltage is supposed to be + 6\text{ V}, perform related calculations to check whether the circuit satisfies the operating point and voltage gain criteria. The reactance of the capacitors can be neglected at all frequencies.
Explain the working and applications of a FET.