Circuit Analysis Laboratory

Characterization of basic and advanced electrical circuits

  • Equipment: Multimeters, function generators, dual-channel oscilloscopes, DC power supplies, electronic loads
  • Applications: Experimental verification of Ohm’s and Kirchhoff’s laws, transient-steady-state measurements of RC/RL/RLC circuits, determination of Thevenin-Norton equivalents, power-factor analysis
  • Outcomes: Measurement-error analysis, data acquisition-reporting, comparison of SPICE-based simulation results with real circuits

Analog Electronics Laboratory

Semiconductor devices and analog signal processing

  • Equipment: High-bandwidth oscilloscopes, spectrum analyzers, signal generators, PCB prototyping stations
  • Applications: Diode-transistor characteristics, multi-stage amplifier design, active-passive filters, op-amp-based integrator-differentiator, oscillators
  • Outcomes: Biasing techniques, frequency-response optimization, feedback-stability assessment

Digital Electronics Laboratory

Logic circuits and FPGA-based systems

  • Equipment: FPGA development kits (Xilinx/Intel), logic analyzers, programmable power supplies, high-speed prototyping boards
  • Applications: Boolean optimization, sequential circuit design, module development with VHDL/Verilog, digital-analog interfacing
  • Outcomes: Hardware description languages, timing analysis, collaboration with embedded processors

Embedded Systems Laboratory

Microcontrollers, real-time control, IoT

  • Equipment: Arduino training kits
  • Outcomes: Hardware-software co-design, industrial communication standards

Telecommunications Laboratory

Analog-digital communications and RF systems

  • Equipment: Vector network analyzers, software-defined radio (SDR) kits, microwave training sets, antenna-measurement chambers
  • Applications: AM/FM/PM modulation-demodulation, digital modulation techniques (QAM, OFDM), channel coding-decoding, antenna characterization
  • Outcomes: Spectrum management, communication-chain design, RF safety-compliance testing

Electrical Machines Laboratory

Rotating machines, transformers and electric energy conversion

  • Equipment: Three-phase synchronous and asynchronous motor-generator sets, DC machine stations, variac-assisted power panels, transformer test units, torque-speed sensors
  • Applications: No-load and short-circuit transformer tests, extraction of torque-speed characteristics, efficiency-loss analysis, motor-drive parameter tuning, regenerative braking experiments
  • Outcomes: Principles of electromechanical energy conversion, determination of machine equivalent-circuit parameters, industrial motor-control strategies

Control Laboratory

Feedback systems and industrial automation

  • Equipment: PID training sets, servo/DC motor platforms, PLC-SCADA stations, MATLAB/Simulink real-time HIL units
  • Applications: Position-speed control, process control (temperature-pressure-flow), robotic-arm kinematics, drone oscillation damping
  • Outcomes: Model-simulation conformity, controller tuning methods (Z-N, IMC), Industry 4.0 integration