Bridging the gap between academia and the VLSI industry. Empowering 3rd & 4th year students and recent graduates to launch a successful career in VLSI design.
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Program Duration
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Selection was rigorous — each candidate underwent both a technical and a behavioural interview before being admitted to the program, ensuring a cohort of motivated and capable participants.
curriculum — 4 core streams
26 lectures take students from foundational concepts to advanced industry-level knowledge across four streams.
This is the heading
Full physical design
flow from synthesis
to tape-out
This is the heading
Full physical design
flow from synthesis
to tape-out
This is the heading
Full physical design
flow from synthesis
to tape-out
This is the heading
Full physical design
flow from synthesis
to tape-out
Hands-On Projects
Students are grouped into specialised sub-teams based on their interests and strengths, each tacking real projects to build portfolio-ready work:
RTL Design — Designing and implementing digital logic modules at the RTL level
Architecture Research — Exploring and presenting state-of-the-art research papers in chip architecture
Design Verification — Building taskmasters and verifying correctness against specifications
Artificial Intelligence — Developing AI-based projects with relevance to semiconductor and EDA domains
Plans for Next Batch
Students are grouped into specialised sub-teams based on their interests and strengths, each tacking real projects to build portfolio-ready work:
RTL Design — Designing and implementing digital logic modules at the RTL level
Architecture Research — Exploring and presenting state-of-the-art research papers in chip architecture
Design Verification — Building taskmasters and verifying correctness against specifications
Artificial Intelligence — Developing AI-based projects with relevance to semiconductor and EDA domains