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Note: You can appear in only 5 more tests today.
APPEAR IN FIXED LENGTH PAPERS DEISGNED BY FACULTIES
Basic Electonics and Comunnication tests1 by J. P. Aggarwal
(Basic tests on Electronics Device and Circuits, Digital Electronics, Microprocessors, Integated Circuits and Comunication Engineering by Prof J.P. Agarwal, GIT, Jaipur)
Basic Electronics & Communication Test2 by Prof J.P. Aggarwal
(Basic Tests on OP AMP, Oscilattors, Waveguide, Circuits and Systems, Basic Electronics, Transmission Lines by Prof J.P. Agarwal, GIT, Jaipur)
DESIGN YOUR PRACTICE TEST BY SELECTING DURATION AND TOPICS
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Electronic Devices
(Electrons and holes in semiconductors, Carrier Statistics, Mechanics of current flow in a semiconductor, Hall effect; Junction theory; Different types of diodes and their characteristics; Bipolar Junction transistor; Field effect transistors; Power switching devices like SCRs, CTOs, power MOSFETs; Basics of ICsbipolar, MOS and CMOS types; Basics of Opto Electronics.)
Electronic Measurements and instrumentation
(Basic concepts, standards and error analysis; Measurements of basic electrical quantities and parameters; Electronic measuring instruments and their principles of working: analog and digital, comparison, characteristics, applications. Transducers; Electronic measurements of nonelectrical quantities like temperature, pressure, humidity etc. Basics of telemetry for industrial use.)
Analog Electronic Circuits
(Transistor biasing and stabilization, Small Signal analysis. Power amplifiers. Frequency response, Wide band techniques, Feedback amplifiers. Tuned amplifiers. Oscillators. Rectifiers and power supplies. Operational Amplifier, other linear integrated circuits and applications. Pulse shaping circuits and waveform generators.)
Digital Electronic Circuits
(Transistor as a switching element; Boolean algebra, simplification of Boolean functions, Karnaugh Map and applications; IC Logic gates and their characteristics; IC logic families: DTL, TTL, ECL, NMOS, PMOS and CMOS gates and their comparison; Combinational logic circuits; Half adder, full adder; Digital Compartor; Multiplexer Demultiplexer; ROM and their applications. Flipflops, RS, JK, D and T flipflops; Different types of counters and registers; waveform generators. A/D and D/A convertors. Semiconductor memories.)
Control Systems
(Transient and steady state response of control systems; Effect of feedback on stability and sensitivity, Root locus techniques; Frequency response analysis. Concepts of gain and phase margins; ConstantM and ConstantN Nichol’s Chart; Approximation of transient response from ConstantN Nichol’s Chart; Approximation of transient response from closed loop frequency response; Design of Control Systems, Compensators; Industrial controllers.)
Communication systems
(Basic information theory: Modulation and detection in analogue and digital systems; Sampling and data reconstruction. Quantization & Coding; Time division and frequency division multiplexing; Equalisation; Optical Communication: in free space & fibre optic; Propagation of signals at HF, VHF, UHF and microwave frequency; Satellite communication.)
Network theory
(Network analysis techniques: Network theorem, transcient and steady state sinusoidal response, Transmission criteria: delay and rise time Elmore’s and other definition, effect of cascading. Elements of network synthesis.)
Electromagnetic Theory
(Transmission lines: basic theory, standing waves, matching applications, microstrip lines; Basics of waveguides and resonators; Elements of antenna theory.)
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