Research & Innovation

Pioneering the Future of Computing

Our cutting-edge research drives breakthrough innovations in semiconductor technology, pushing the boundaries of what's possible in computing and electronics.

Research Focus Areas

Our research spans multiple domains, from fundamental materials science to advanced computing architectures and emerging technologies.

Quantum Computing

Developing quantum processors and error correction algorithms for next-generation computing systems.

Key Projects:
  • • Superconducting qubit fabrication
  • • Quantum error correction codes
  • • Hybrid quantum-classical systems
15 Active Projects
Neuromorphic Computing

Brain-inspired computing architectures that mimic neural networks for ultra-efficient AI processing.

Key Projects:
  • • Spiking neural network chips
  • • Memristive devices
  • • Edge AI acceleration
12 Active Projects
Advanced Materials

Novel semiconductor materials and nanostructures for enhanced performance and new functionalities.

Key Projects:
  • • 2D material integration
  • • Wide bandgap semiconductors
  • • Perovskite electronics
18 Active Projects
Photonic Computing

Light-based computing systems for ultra-fast data processing and communication applications.

Key Projects:
  • • Silicon photonic processors
  • • Optical neural networks
  • • Integrated photonic circuits
10 Active Projects
Sustainable Electronics

Environmentally friendly semiconductor technologies and circular economy approaches.

Key Projects:
  • • Biodegradable electronics
  • • Energy harvesting systems
  • • Recycling technologies
8 Active Projects
Edge AI & IoT

Ultra-low power AI processors and intelligent sensor systems for IoT applications.

Key Projects:
  • • Always-on AI chips
  • • Sensor fusion algorithms
  • • Federated learning hardware
20 Active Projects

Research Partnerships

We collaborate with leading universities, research institutions, and industry partners to accelerate innovation and knowledge sharing.

Academic Collaborations

Indian Institute of Science (IISc)

Joint research on quantum computing and advanced materials

MIT - Massachusetts Institute of Technology

Collaborative program on neuromorphic computing architectures

Stanford University

Research partnership on photonic computing systems

Industry Partnerships

Global Foundries Alliance

Advanced process development and manufacturing optimization

Automotive OEM Consortium

Next-generation automotive semiconductor development

Cloud Computing Partners

AI accelerator development for data center applications

Recent Publications

Our research contributions to the global semiconductor community through peer-reviewed publications and conference presentations.

Nature Electronics2024

"Quantum-Classical Hybrid Computing Architecture for Optimization Problems"

Dr. Priya Sharma, Dr. Rajesh Kumar, et al. - A novel approach to combining quantum and classical processing units for enhanced computational efficiency.

Citations: 127 | Impact Factor: 33.7
IEEE JSSC2024

"Ultra-Low Power Neuromorphic Processor for Edge AI Applications"

Arjun Patel, Dr. Meera Reddy, et al. - Design and implementation of a brain-inspired processor achieving 1000x power efficiency improvement.

Citations: 89 | Impact Factor: 4.9
Science2023

"2D Material Integration in Advanced CMOS Technology Nodes"

Research Team - Breakthrough integration of graphene and transition metal dichalcogenides in sub-5nm semiconductor processes.

Citations: 245 | Impact Factor: 47.7

State-of-the-Art Research Facilities

Our research centers are equipped with cutting-edge instrumentation and cleanroom facilities to support breakthrough discoveries.

50,000
sq ft Research Space
Class 10
Cleanroom Standards
$50M
Equipment Investment
24/7
Research Operations
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Advanced research and development laboratory

Join Our Research Mission

Be part of groundbreaking research that shapes the future of semiconductor technology. Explore collaboration opportunities and research positions.