The Future of Smart Sensors in Connected Systems
See how edge computing, AI, low-power connectivity and intelligent sensing are shaping the next generation of connected devices and infrastructure.
Read Article →Explore practical news, technical blogs, videos, guides and resources across sensors, edge AI, robotics, connectivity and industrial intelligence.
Discover official initiatives in AI, robotics, IoT, chip design and electronics manufacturing.
MeitY / C-DAC / India Semiconductor Mission
Ministry of Electronics & Information Technology
Ministry of Electronics & Information Technology / IndiaAI
Department of Science & Technology, Government of India
India Semiconductor Mission / MeitY
Find programmes, market developments and routes to global buyers for AI, IoT and electronics.
Australian Department of Industry, Science and Resources
European Commission, DG CONNECT
European Commission, DG CONNECT
National University of Singapore and STMicroelectronics; hosted by Singapore EDB
UK Department for Science, Innovation and Technology
Browse current RFPs in AI, IoT and electronics. Open an image to read the full opportunity.
Practical intellectual property guides for electronics, IoT and Physical AI innovators in India.
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A guide to copyright considerations for firmware, source code, technical manuals and original graphics used in electronics products.
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02
An introduction to protecting the visual appearance of a sensor enclosure, gateway or electronics product under India's design system.
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03
A practical starting point for protecting a new sensor, circuit, connected device or technical process through the Indian patent system.
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04
A starting guide to India's dedicated registration route for original integrated-circuit layout designs and chip topographies.
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05
How to approach registration of a product name or logo for connected devices, AI software and related services in India.
Explore guideSee how edge computing, AI, low-power connectivity and intelligent sensing are shaping the next generation of connected devices and infrastructure.
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Explore common IoT sensor types, from temperature and motion to pressure and air-quality sensors, and understand where each technology fits.
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A practical introduction to how IoT sensors detect real-world conditions, transmit data and turn it into useful insights and automated actions.
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IoT sensors connect the physical and digital worlds, enabling real-time monitoring, automation and smarter decision-making across homes, industry, ...
Read Article →Understand model optimisation, hardware selection and deployment considerations for running AI close to the physical process.
Watch Video →A practical introduction to how sensors, edge compute, AI models and actuators work together in Physical AI systems.
Watch Video →Financial incentives and shared design infrastructure for eligible Indian semiconductor design companies, startups and MSMEs.
View official information →An incentive programme for domestic electronics components, sub-assemblies and materials, with the 2026–27 outlay raised to ₹40,000 crore.
View official information →India's ₹10,371.92 crore AI mission covers shared compute, indigenous models, datasets, application development and startup support.
View official information →A national network of 25 Technology Innovation Hubs developing cyber-physical technologies, including robotics, AI and IoT.
View official information →A structured learning guide covering embedded systems, sensors, connectivity, edge computing and robotics fundamentals.
Read Guide →Approved in July 2026 with a ₹1,27,500 crore outlay, the second phase expands India's chip ecosystem across design, materials, fabrication, packaging, research and talent.
View official information →Start with embedded fundamentals, understand connectivity, then move into edge AI and robotics. The strongest Physical AI engineers understand how the full stack works together.
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