Indian Institute of Technology Delhi

Executive Programme in Semiconductors, AI and Deep-Tech Entrepreneurship (SAIDT Batch 2))

Indian Institute of Technology Delhi

eVIDYA

Application Deadline Approaching

Last date to apply: September 30, 2026 · Program starts on January 9, 2027

About Programme

The semiconductor and photonics revolution is at the core of modern AI and high-performance computing (HPC), high-performance systems, and next-generation data centers. CEP IIT Delhi’s Executive Programme in Semiconductors, AI, and Deep-Tech Entrepreneurship is designed for professionals aiming to innovate at the intersection of advanced hardware technologies and entrepreneurship. Through 80 hours of live online learning, participants gain a strong understanding of semiconductor and photonic devices for AI and HPC, along with insights into commercialization, IP strategy, funding, and startup scaling—preparing them to build and lead deep-tech ventures.

Programme Content

1. Semiconductor and Photonics Fundamentals for Deep-Tech (12 hours)

Objective:Build a foundational understanding of semiconductor physics and photonics, focusing on the technologies that drive modern computing and communication.

Semiconductor physics fundamentals, semiconductor diodes, BJTs, MOSFETs, and FinFETs

Current status and future perspectives of electronic integrated circuits

Electronics versus photonics: limitations and opportunities

Motivation for photonic integrated circuits (PICs)

PIC components: waveguides, resonators, couplers, optical modulators, and photodetectors

Current status and future trends of PIC technologies

2. Advanced Semiconductor Electronic Devices for AI, HPC, and Data Centers (12 hours)

Objective:Understand the key semiconductor electronic devices used in AI accelerators, data centers, and high-performance computing systems.

Advanced CMOS, SOI, and FinFET Technologies

AI and Machine Learning Hardware: TPUs and GPUs

Neuromorphic and Memristor-based Devices: Brain-inspired computing for AI.

3. Advanced Semiconductor Photonic Devices for AI, HPC, and Data Centers (18 hours)

Objective:Focus on the real-world applications of semiconductor photonic devices and photonics in modern AI, data centers, and computing.

Data Center Infrastructure: Photonic interconnects, co-packaged optics, optical switching, energy-efficient hardware, and scalable architectures.

Hardware Accelerators for AI Workloads: Machine learning models, photonic matrix processor, different neural network architectures (CNN, RNN, DNN, etc.), real-world applications of neural networks for signal processing and image processing.

4. Deep-Tech Entrepreneurship in Semiconductors & Photonics (18 hours)

Objective:Bridge the gap between technical innovations and commercialization, with a focus on launching semiconductor or photonics-based startups. Learn how to transform your technical innovation into a market-ready product and scale it successfully.

From Lab to Market: Prototyping, manufacturing partnerships, and productization.

Overview of Deep-Tech Entrepreneurship: Ecosystem, challenges, and opportunities in hardware startups.

Technology Readiness Levels (TRL): Moving from basic research to product development.

Commercialization Models for Hardware: Fabless, semiconductor foundry partnerships, system-level integration.

Intellectual Property (IP) Strategy: Patents, licensing, and tech transfer in semiconductor and photonics.

Funding Deep-Tech Startups: Sources of funding (VC, government grants, angel investors, corporate R&D partnerships).

Scaling Semiconductor Startups: Production scaling, supply chain management, and cost optimization.

Go-to-Market Strategies: Market fit, pricing, distribution, and competitive differentiation.

Building and Leading Teams: Effective leadership and talent acquisition for deep-tech companies.

5. Case Studies & Industry Interactions (12 hours)

Objective:Analyze real-world examples and engage with industry experts to understand how semiconductor innovations are commercialized.

Case Study 1: TPU and AI hardware development

Case Study 2: Photonic AI accelerators

Case Study 3: Optical interconnects for data centers

Case Study 4: Global semiconductor ecosystem

Guest Lectures and Panel Discussions: Startup founders, VCs, and industry experts

All case studies are based on publicly available information and independent academic analysis.

6. Pitching and Fundraising for Deep-Tech Startups (6 hours)

Objective:Equip participants with the skills to pitch their ideas to investors, raise funds, and grow their deep-tech ventures.

Pitch Deck Creation: Building a compelling pitch for investors

Investor Expectations: What VCs and angel investors look for in semiconductor/photonics startups

Funding Strategy: Choosing the right funding path for your startup (VC, angel investors, government grants)

Mock Pitch Sessions: Practice pitching ideas to mock investors for feedback.

Programme Audience

Eligibility Criteria

Any Graduate

Programme Benefits

E-Certificate Of Successful Completion From CEP, IIT Delhi

Interdisciplinary Learning At The Cutting Edge

Deep-Tech Entrepreneurship Focus

Industry-Relevant Case Studies

Reputation & Recognition

2 -Day Campus Immersion

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Prashansa Uttam

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+91 9403890085[email protected]Mon – Fri, 9am – 5pm IST

Indian Institute of Technology Delhi

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Executive Programme in Semiconductors, AI and Deep-Tech Entrepreneurship) | IIT Delhi