Many New Chips Released in Semicon
Exhibition
Ř Exhibition Brought Together Industry,
Academia, Start-ups and Policymakers, Showcasing India’s Expanding Capabilities
Across the Semiconductor Value Chain
·
Event Overview:
The fifth edition of SEMICON India took place from September 17–19, 2026, at Yashobhoomi in New Delhi under the theme “Silicon to Systems: Building the Ecosystem”,
drawing over 600 global exhibitors, start-ups, policymakers, and researchers.
·
Indigenous Processor & HPC
Innovations:
o
C-DAC showcased advanced
high-performance computing capabilities, including the AUM HPC-AI Processor,
the RUDRA-AUM compute node, and a 64-bit indigenous RISC-V processor.
o
InCore
Semiconductors highlighted its RISC-V processor IPs and SoC design automation
tools ranging from 180 nm to 16 nm nodes.
·
Application-Specific & Connectivity
Breakthroughs:
o
Companies like Vervesemi
Microelectronics presented chips for motor control, EV, and smart appliances.
o
Aheesa
Technology introduced an indigenous 1 Gbps internet connectivity device powered
by C-DAC’s RISC-V processor and the Indian software platform Vihan.
·
AI and Smart Surveillance Solutions:
Start-ups like Netrasemi displayed indigenously
designed AI-capable System-on-Chips (SoCs) on a 12 nm process node, integrating
machine learning accelerators and vision processing for secure surveillance and
robotics.
·
Talent & Policy Momentum (Semicon
2.0):
o
The exhibition highlighted progress
under Semicon 2.0 (approved in July 2026 with a ₹1,27,500 crore outlay)
and the Design Linked Incentive (DLI) and Chips to Startup (C2S) programmes.
o
Over 100,000 engineers across 500+
organizations have utilized the ChipIN Centre, producing more than 300 chip
designs.
·
Commercial Production Milestone:
Across six states, 12 semiconductor projects exceeding ₹1.64 lakh crore
in investments have been approved, with three facilities already having
commenced commercial production.
[ABS News Service/22.09.2026]
For three days, Yashobhoomi
in New Delhi served as a showcase of India’s growing semiconductor
capabilities. From chip design and advanced packaging to materials, equipment,
artificial intelligence and high-performance computing, SEMICON India 2026
brought together different parts of the semiconductor ecosystem under one roof.
Held from 17 to 19 September 2026,
the fifth edition of SEMICON India was organised around the theme “Silicon
to Systems: Building the Ecosystem”. The event brought together the global
semiconductor ecosystem, including industry leaders, policymakers, investors,
academia and start-ups. The 2026 edition featured more than 600 exhibiting
companies from various countries, along with a Start-up Pavilion, Workforce
Development Pavilion, country and state pavilions, and a hackathon.
The exhibition provided a glimpse
into how India’s semiconductor journey is expanding beyond chip design towards
a broader ecosystem covering manufacturing, packaging, research, materials,
talent and system-level applications.
From Chip Design to Advanced
Computing
One of the key features of the
exhibition was the range of indigenous semiconductor and computing capabilities
on display.
C-DAC showcased its work in
high-performance computing and AI, including the AUM HPC-AI Processor
and the RUDRA-AUM compute node. These efforts reflect the growing focus
on developing indigenous capabilities not only at the chip level but also
across computing systems.
The exhibition also highlighted the
broader movement towards indigenous processor design. India’s semiconductor
ecosystem has increasingly seen domestic start-ups and institutions develop
processor technologies, application-specific chips and system solutions for
sectors ranging from telecommunications and automotive applications to
artificial intelligence and surveillance.
Chips for Everyday Applications
The exhibition also offered visitors
a look at how semiconductor technologies can move from laboratories and design
centres into everyday products.
Indian semiconductor companies and
start-ups showcased solutions for applications such as smart appliances,
connectivity, surveillance, industrial systems, energy management and
automotive technologies.
Among the companies highlighted in
the Indian chip-design ecosystem is Vervesemi
Microelectronics, which is developing semiconductor solutions for motor
control, energy meters and data acquisition applications. Its work includes
chips for applications such as consumer appliances, electric mobility and
drones.
Such application-specific
semiconductor products demonstrate the importance of indigenous chip design in
building a wider electronics manufacturing ecosystem.
RISC-V: Building Indigenous Processor
Capabilities
C-DAC’s indigenous 64-bit RISC-V
processor strengthens India’s capabilities in homegrown processor design and
semiconductor technologies. Based on the open RISC-V architecture, it supports
high-performance computing and emerging digital applications. Its adoption in
indigenous solutions demonstrates India’s growing expertise in developing
advanced processor technologies for next-generation computing, connectivity and
digital infrastructure.
InCore Semiconductors showcased its work around indigenous
RISC-V processor IPs and SoC design automation tools.
Its portfolio includes processor
platforms designed for different levels of computing requirements, with
applications spanning embedded systems and edge-AI use cases. InCore's processor IP has been silicon-proven across
multiple customer chips and across technology nodes ranging from 180 nm to 16
nm.
The development of such processor
technologies is an important component of the broader semiconductor design
ecosystem, enabling Indian companies to develop products around domestically
developed intellectual property.
Aheesa Technology has developed an
indigenous internet connectivity device capable of delivering speeds of up to 1
Gbps, enabling Internet Service Providers (ISPs) to connect approximately 64
homes through a single Optical Line Terminal (OLT). The device runs on Vihan, a
software platform developed entirely in India, and is powered by C-DAC’s 64-bit
RISC-V processor. The solution represents a significant step towards
strengthening India’s indigenous technology capabilities and advancing
high-speed broadband connectivity through a fully Indian technology stack.
AI, Vision and Smart Surveillance
The growing convergence of
semiconductors and artificial intelligence was another prominent feature of the
exhibition.
Netrasemi, an Indian semiconductor start-up,
showcased its work in AI-capable System-on-Chips (SoCs) for applications
including secure surveillance, smart sensors, robotics, drones and mobility.
The company has taped out an
indigenously designed AI SoC for CCTV Surveillance in the 12 nm process node,
integrating AI/ML accelerators, vision processing and video engines. Its
technologies are aimed at applications requiring intelligent vision and edge
processing.
The exhibition demonstrated how
advances in semiconductor design are increasingly enabling applications in
areas such as machine vision, smart infrastructure, autonomous systems and
surveillance.
Semiconductor Innovation Across the
Value Chain
The exhibition was not limited to
chips alone. It reflected the larger ecosystem required to develop and
manufacture semiconductor products.
From materials and equipment to
testing, packaging and system integration, the displays highlighted the
interconnected nature of the semiconductor value chain.
This broader approach is central to Semicon 2.0, approved by the Union Cabinet in
July 2026 with an outlay of ₹1,27,500 crore. The programme builds
on the foundation laid by Semicon 1.0 and focuses on
six strategic pillars - design;
machines and materials; more fabs; advanced packaging; research and
development; and talent development.
From Start-ups to Research
Institutions
The Start-up Pavilion provided
another window into India's emerging semiconductor design ecosystem.
The Government's Design Linked
Incentive (DLI) Scheme has supported domestic chip-design projects across areas
including video surveillance, drone detection, energy meters, microprocessors,
satellite communications, broadband and IoT SoCs.
The Chips to Startup (C2S)
Programme is also supporting the development of semiconductor design
capabilities among students, researchers, institutions and start-ups. The
programme is aimed at creating a larger pool of skilled chip designers and
strengthening the country's electronic system design capabilities.
More than one lakh engineers
from over 500 organisations across the country, including 400
academic institutions and 100 start-ups, have been onboarded by the ChipIN Centre under the C2S Programme and DLI Scheme. They
have been provided access to advanced chip-design tools, chip-design and
fabrication services, and specialised training. Together, these institutions
and start-ups have developed more than 300 chip designs for fabrication
at foundries in India and abroad and have recorded over four crore hours
of chip-design tool usage. This unprecedented scale has helped create the
largest centralised chip-design user base at the ChipIN
Centre.
From Policy to Production
The exhibition was held at a time
when India's semiconductor ecosystem was moving from foundational policy
support towards manufacturing and commercial production.
Under the Semicon
India Programme, 12 semiconductor projects have been approved across six
states, with investment commitments exceeding ₹1.64 lakh crore.
Three facilities have already commenced commercial production.
At SEMICON India 2026, the emphasis
was therefore not only on what India aims to build, but also on capabilities
that are already being developed across design, manufacturing, packaging and
related technologies.
Building the Complete Ecosystem
The theme “Silicon to Systems:
Building the Ecosystem” captures the changing scope of India's
semiconductor ambitions.
The semiconductor ecosystem requires
much more than the fabrication of individual chips. It brings together chip
designers, fabs, packaging and testing facilities, equipment and materials
suppliers, research institutions, start-ups, system companies and a skilled
workforce.
SEMICON India 2026 brought these
different elements together, offering a view of an ecosystem developing
across the value chain and connecting indigenous innovation with global
semiconductor opportunities.
From processor design and RISC-V
technologies to AI-enabled SoCs, motor-control chips, advanced computing and
semiconductor manufacturing, the exhibition showcased the many layers of
India's semiconductor journey.
The story on display at Yashobhoomi was therefore not just about the chip. It was
about everything that surrounds it: the silicon, systems, people, research,
manufacturing capabilities and partnerships needed to build a complete
semiconductor ecosystem.