Precision Manufacturing to the Fore in Semicon
Ř India Targeting 200 Chip Design
Companies as 400 Engineering Colleges and 105 Start-ups Gain Access to
Industry-Grade EDA Tools
Ř Five semiconductor manufacturing
plants have commenced commercial production
Ř Around 70,000 design engineers
trained in four years; focus now to expand to system design and precision
manufacturing
Key
Highlights
·
Transition to ISM 2.0:
Union Minister Ashwini Vaishnaw announced at SEMICON India 2026 that India
Semiconductor Mission (ISM) 1.0 achieved its foundational goals in just four
years. ISM 2.0 will focus on six pillars: Design, Materials & Machines,
More Fabs, More ATMP units, R&D, and Talent.
·
Commercial Production:
Five semiconductor manufacturing plants in India have commenced commercial
production, exporting chips globally alongside meeting domestic demands (with
ATMP units exporting to Japan, and chips going to the USA, Switzerland, and
Germany).
·
Design Ecosystem & Start-ups:
o
Over 105 chip design start-ups
and 400 engineering colleges have gained access to advanced Electronic
Design Automation (EDA) tools.
o
The government is targeting at least 200
chip design companies under ISM 2.0 to foster homegrown semiconductor IP.
·
Skilling Milestones:
o
India trained approximately 70,000
design engineers in four years (outpacing the original 10-year target of
85,000).
o
Future skilling will expand into system
design, applied R&D, and cleanroom technical training to meet surging
demand.
·
Precision Manufacturing &
Infrastructure: MSMEs are rapidly advancing precision
manufacturing capabilities to support electronics, aerospace, defense, and
semiconductors. Furthermore, electronics, AI servers, and semiconductor
ecosystems are scaling concurrently to position India as a trusted global
product nation.
[ABS News Service/19.09.2026]
Union Minister for Electronics and
Information Technology, Ashwini Vaishnaw, said at
SEMICON India 2026 that India’s semiconductor mission has moved from
establishing the foundation to building the industry at scale on 18 September,
2026. The next phase under India Semiconductor Mission (ISM) 2.0 will focus on
developing a complete semiconductor ecosystem. Speaking at a fireside chat
during SEMICON India 2026, Mr. Vaishnaw said that ISM
1.0 focused on creating the foundational ecosystem, while ISM 2.0 will take the
semiconductor industry forward across six key pillars - Design; Materials and
Machines; More Fabs; More ATMP units; R&D; and Talent.
The Minister said that ISM 1.0,
originally envisaged as a six-year programme, achieved its objectives in just
four years, and expressed confidence that ISM 2.0 would similarly progress
ahead of schedule, supported by strong and growing investor interest.
Five semiconductor manufacturing
plants have commenced commercial production
Mr. Vaishnaw
said that five plants manufacturing chips in India have commenced commercial
production and the chips are being exported in addition to the domestic needs.
He said this demonstrates the ability of Indian semiconductor manufacturing to
compete on cost and quality, which are essential for competing in the global
market.
The Minister said demand for
semiconductor products is currently high and several companies are rapidly
expanding production. He also noted that a fab scheduled to be commissioned
in 2028 already has a large part of its capacity booked.
He said semiconductors and
electronics are highly globalized industries, with components and products
moving across international boundaries as part of global supply chains.
Design capability to drive
semiconductor ecosystem
Highlighting design as one of India’s
major strengths, Mr. Vaishnaw said the country’s
design capability rooted in the IT industry and global capability centres, is
now extending into the semiconductor sector. The Minister estimated at least
200 chip design companies emerging under ISM 2.0, calling it “a game changer”
for building homegrown semiconductor IP.
The Minister said the first phase of
support for chip-design startups in ISM 1.0 focused on addressing the high cost
of Electronic Design Automation (EDA) tools. More than 105 chip design
startups gained access to state-of-the-art EDA tools through the initiative,
while 20 startups received venture capital funding.
He acknowledged the progress of
startups in the sector, including chips being developed for products, has
encouraged the expansion of the programme and greater participation from larger
companies and Indian-origin engineers working globally.
Precision manufacturing and applied
R&D
Mr. Vaishnaw
said the electronics manufacturing ecosystem has helped develop precision
manufacturing capabilities, particularly among MSMEs, which are now supporting
multiple sectors including electronics, mobile manufacturing, aerospace,
aviation, defence and semiconductors.
He said the next focus should be on
applied R&D within manufacturing plants, aimed at improving product quality
and manufacturing processes.
The Minister also highlighted the
need to develop skills for precision manufacturing. He said a multi-level
training model is being developed, to meet the requirement of skilled personnel
for the precision manufacturing ecosystem.
70,000 design engineers trained in
four years
On semiconductor skilling, Mr. Vaishnaw said India had initially set a target of training
85,000 design engineers in 10 years and has already trained around 70,000
design engineers within four years.
He said students from around 400
engineering colleges, including institutions in smaller cities, have
received access to industry-grade EDA tools. Students are also getting
opportunities to take their designs through tape-out and see their ideas
developed into products.
Under ISM 2.0, the focus on skilling
will move beyond chip design towards system design, with the objective
of creating talent that is highly sought after by the industry.
The Minister also said the demand for
cleanroom technicians and maintenance personnel is increasing, and that the
target of training one lakh technicians under ISM 2.0 may need to be
increased in view of industry demand.
Electronics, AI and semiconductor
ecosystem growing together
Mr. Vaishnaw
said electronics, semiconductors and AI applications are closely
interconnected. He highlighted the growing manufacturing ecosystem for AI
servers and said major server manufacturers are showing interest in setting up
manufacturing in India.
He said the ecosystem covering
components, finished products, laptops, servers and accessories is gradually
taking shape, and once the ecosystem is established, growth can become more
consistent.
India’s design capability and trusted
ecosystem
The Minister said India’s design
capability is an important advantage in building a stronger semiconductor
ecosystem and enabling greater localisation.
He also highlighted India’s position
as a trusted country and the importance of trust and IP protection in
attracting global semiconductor and electronics companies.
Mr. Vaishnaw
said companies which had previously not established operations outside their
parent country are now coming to India, describing this as an important
indication of the confidence being placed in India’s capabilities.
Towards Made-in-India and
designed-in-India chips
Mr. Vaishnaw
said India is progressing systematically towards becoming a product nation. He
noted that some of the chips being developed in India are already being used in
strategic sectors, while chips are also being exported.
He said many more Made-in-India
and designed-in-India chips are expected to emerge over the course of the
semiconductor programme.
The Minister said ATMP units are
already exporting to Japan, while chips are also being incorporated into
products exported to USA and EU countries such as Switzerland and Germany.