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Electronics Engineering (VLS Design & Technology)


About VLSI Design & Technology

The VLSI group performs cutting-edge research on the emerging challenges in VLSI design. Very large-scale integration (VLSI) is the process of creating an integrated circuit (IC) by combining millions or billions of MOS transistors onto a single chip. The objective of the course is to provide understanding of the entire logic design process with the analysis from combinational and sequential digital circuit design. The primary responsibility of a VLSI Design Engineer is to design and develop high-performance, low-power, and cost-effective integrated circuits. Before the introduction of VLSI technology, most ICs had a limited set of functions they could perform. An electronic circuit might consist of a CPU, ROM, RAM and other glue logic. VLSI enables IC designers to add all of these into one chip.



Vision of the Department

To create skilled workforce of Electronics engineering graduate by disseminating quality of education in order to meet the industry demand and serve the growing need of society.

Mission of the Department

  1. To fertilize learning process by adopting modern pedagogy.
  2. To mould students into competent and ethical technocrats.
  3. To train students on cutting edge technologies for working in a future ready industry.

Current Research Areas

  1. Physical Design CAD
  2. Design for Manufacturability
  3. Microwave VLSI circuits
  4. Integrated antennas
  5. High speed testing
  6. Automated testing
  7. Trusted and secure processor and hardware
  8. Reconfigurable embedded systems
  9. A/D and D/A Converters
  10. Op Amp design
  11. High-Speed Communication Circuits
  12. Built-in Self Test (BIST) of Analog and Mixed-Signal Circuits
  13. Layout techniques for Analog and Mixed-Signal Circuits
  14. Power management design for Mixed-Signal SoCs
  15. Wireless power transfer systems for bioimplants and mobile electronics
  16. High-frequency, fast-response, small-form-factor and low-cost voltage regulators for SoCs
  17. GaN-based high-ratio power converters for data center
  18. Isolated DC-DC converters for medical, industrial and automotive applications

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