GATE 2021 Instrumentation Engineering Syllabus (Released) – Get (IN) PDF Here


Latest Applications Open 2020:

     

GATE 2019 Instrumentation Engineering SyllabusThe exam leading authority, IIT Bombay will make the publication of the GATE Syllabus 2021 of Instrumentation Engineering for all the contenders. With the assistance of the Instrumentation Engineering (IN) syllabus which is intended for GATE 2021 candidates can do well in the entrance exam in improved and planned methods.

The GATE 2021 Syllabus for Instrumentation Engineering will consist of 9 sections with subjects that have to be encompassed. GATE 2021 will be directed in February in the online method. GATE 2021 Exam is Conducted by IIT Bombay (IITB).

GATE is the national level postgraduate engineering entrance exam proposed for admission to M.E./M.Tech and Ph.D. programs at IITs, IISc, NITs, GFTIs, and other Universities in India. The Application form of GATE 2021 will be available from September 2020.

GATE 2021 Instrumentation Engineering Syllabus – PDF Released

New GATE 2021 Instrumentation Engineering Syllabus has been Released. Click Here to Download Pdf.

GATE Exam Pattern for Instrumentation Engineering

Latest Applications For Various UG & PG Courses Open 2021:

    1. UPES UG, Dehradun | Admissions Open for All Courses 2021. Apply Now
    2. UPES PG, Dehradun | Admissions Open for All Courses 2021. Apply Now
    3. Chandigarh University, Punjab | Admissions Open for All Courses 2021. Apply Now

Candidates appearing for the entrance exam must be aware of the Exam Pattern Instrumentation Engineering. It will benefit entrants prepare in a better way. GATE 2021 Instrumentation Engineering exam will be held in the online method. Contenders seeming in GATE Instrumentation Engineering will have to attempt two types of questions – Multiple Choice Questions (MCQ’s) and Numerical Answer Types (NAT’s). MCQ’s section will have negative marking if answered incorrectly. Despite the fact, NTA does not have negative marking.

GATE 2021 Syllabus for Instrumentation Engineering (IN)

 Looking through the specified below the table, candidates can confirm the Syllabus of Instrumentation Engineering. The table consists of sections and subjects that need to be analyzed to prepare for the Instrumentation Engineering program.

 GATE Syllabus for Instrumentation Engineering

Latest Applications For Various UG & PG Courses Open 2021:

    1. UPES UG, Dehradun | Admissions Open for All Courses 2021. Apply Now
    2. UPES PG, Dehradun | Admissions Open for All Courses 2021. Apply Now
    3. Chandigarh University, Punjab | Admissions Open for All Courses 2021. Apply Now
S.No Sections Topics  to be covered
1 Engineering Mathematics
  • Linear Algebra
  • Calculus
  • Differential Equations
  • Analysis of Complex Variables
  • Probability and Statistics
  • Numerical Methods
2 Electrical Circuits
  • Voltage and Current Sources
  • Kirchoff’s laws, mesh and nodal analysis, superposition, etc
  • Peak-, average- and RMS values of ac quantities, etc
  • One-port and two-port networks etc.
3 Signals and Systems
  • Periodic, aperiodic and impulse signals
  • Laplace, Fourier, and z-transforms
  • The transfer function, the frequency response of first and second-order linear time-invariant systems, the impulse response of systems
  • Convolution, correlation
  • Discrete-time system: impulse response, frequency response, pulse transfer function
  • DFT and FFT
  • Basics of IIR and FIR filters
4 Control Systems
  • Feedback principles, signal flow graphs, transient response, steady-state-errors, Bode plot, phase and gain margins, Routh and Nyquist criteria, root loci, the design of lead, lag and lead-lag compensators, state-space representation of systems; time-delay systems;
  • Mechanical, hydraulic and pneumatic system components, synchro pair, servo, and stepper motors, servo valves;
  • On-off, P, P-I, P-I-D, cascade, feedforward, and ratio controllers
5 Analog Electronics
  • Characteristics and applications of the diode, Zener diode, BJT and MOSFET;
  • Small signal analysis of transistor circuits, feedback amplifiers. Characteristics of operational amplifiers
  • Applications of opamps: difference amplifier, adder, subtractor, integrator, differentiator, instrumentation amplifier, precision rectifier, active filters, and other circuits. Oscillators, signal generators, voltage-controlled oscillators, and phase-locked loop.
6 Digital Electronics
  • Combinational logic circuits, minimization of Boolean functions. IC families: TTL and CMOS. Arithmetic circuits, comparators, Schmitt trigger, multi-vibrators, sequential circuits, flipflops, shift registers, timers, and counters
  • Sample-and-hold circuit, multiplexer, analog-to-digital (successive approximation, integrating, flash and sigma-delta) and digital-to-analog converters (weighted R, R-2R ladder, and current steering logic). Characteristics of ADC and DAC (resolution, quantization, significant bits, conversion/settling time);
  • Basics of number systems, 8-bit microprocessor, and microcontroller: applications, memory, and input-output interfacing
  • Basics of data acquisition systems
7 Measurements
  • SI units, systematic and random errors in measurement, expression of uncertainty – accuracy and precision index, propagation of errors. PMMC, MI and dynamometer type instruments; dc potentiometer;
  • Bridges for measurement of R, L, and C, Q-meter. Measurement of voltage, current and power in single and three-phase circuits
  • AC and DC probes
  • True RMS meters, voltage and current scaling, instrument transformers, timer/counter, time, phase and frequency measurements, digital voltmeter, digital multimeter
  • Oscilloscope, shielding, and grounding
8 Sensors and Industrial Instrumentation
  • Resistive-, capacitive-, inductive-, piezoelectric-, Hall effect sensors and associated signal conditioning circuits;
  • Transducers for industrial instrumentation: displacement (linear and angular), velocity, acceleration, force, torque, vibration, shock, pressure (including low-pressure), flow (differential pressure, variable area, electromagnetic, ultrasonic, turbine, and open channel flow, etc
9 Communication and Optical Instrumentation
  • Amplitude- and frequency modulation and demodulation
  • Shannon’s sampling theorem, pulse code modulation
  • Frequency and time division multiplexing, amplitude-, phase-, frequency-, pulse shift keying for digital modulation
  • Optical sources and detectors: LED, laser, photo-diode, light-dependent resistor, and their characteristics
  • Interferometer: applications in metrology
  • Basics of fiber optic sensing

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