{"id":29082,"date":"2026-09-26T15:01:39","date_gmt":"2026-09-26T15:01:39","guid":{"rendered":"https:\/\/koshalsambada.in\/?p=29082"},"modified":"2026-09-26T15:01:39","modified_gmt":"2026-09-26T15:01:39","slug":"how-taiwans-silicon-shield-has-kept-it-safe-from-china-indispensable-to-us-in-age-of-ai","status":"publish","type":"post","link":"https:\/\/koshalsambada.in\/?p=29082","title":{"rendered":"How Taiwan\u2019s \u2018silicon shield\u2019 has kept it safe from China, indispensable to US in age of AI"},"content":{"rendered":"<p><br \/>\n<\/p>\n<div>\n<div class=\"e9jwa\">\n<div class=\"vdo_embedd\">\n<div class=\"GfdvZ\">\n<section class=\"_bIDB  clearfix id-r-component leadmedia undefined undefined  E9tg9 \" style=\"top:0px\">\n<div class=\"_bIDB\" data-ua-type=\"1\" onclick=\"stpPgtnAndPrvntDefault(event)\">\n<div class=\"ypVvZ\">\n<div class=\"WGttI\"><img src=\"https:\/\/static.toiimg.com\/thumb\/msid-134506333,imgsize-183144,width-400,height-225,resizemode-4\/trump-xi.jpg\" alt=\"How Taiwan\u2019s \u2018silicon shield\u2019 has kept it safe from China, indispensable to US in age of AI\" title=\"Trump, Xi and Taiwan sit at the centre of a global semiconductor race, with the island producing most of the world\u2019s advanced chips\" decoding=\"async\" fetchpriority=\"high\"\/><\/div>\n<\/div>\n<\/div>\n<div class=\"Ta7d_ img_cptn\"><span title=\"Trump, Xi and Taiwan sit at the centre of a global semiconductor race, with the island producing most of the world\u2019s advanced chips\">Trump, Xi and Taiwan sit at the centre of a global semiconductor race, with the island producing most of the world\u2019s advanced chips<\/span><\/div>\n<\/section>\n<\/div><\/div>\n<\/div>\n<p>The latest meeting between US President Donald Trump and Chinese President Xi Jinping has once again put Taiwan at the centre of the world&#8217;s most consequential geopolitical and technology rivalry.<span class=\"id-r-component br\" data-pos=\"2\"\/>Xi pressed Trump during their Washington talks to adopt what Beijing calls the &#8220;correct position&#8221; of opposing Taiwan independence, according to a Chinese readout. Taiwan rejected the demand, saying Beijing had no right to determine the island&#8217;s future. The exchange came as Washington continues to balance its longstanding support for Taiwan with its broader effort to manage relations with Beijing.<span class=\"id-r-component br\" data-pos=\"4\"\/>The Taiwan question, however, is about more than territory, military power or competing political claims. <!-- -->It is also about one of the most important foundations of the modern global economy: semiconductors.<span class=\"id-r-component br\" data-pos=\"9\"\/>Taiwan produces the overwhelming majority of the world&#8217;s most advanced chips, with Taiwan Semiconductor Manufacturing Company, or TSMC, at the centre of that ecosystem. These chips power smartphones, artificial intelligence systems, high-performance computers, data centres, automobiles and increasingly sophisticated military technologies.<span class=\"id-r-component br\" data-pos=\"12\"\/>As Stanford University Hoover fellow Eyck Freymann told Rest of World, \u201cThe economic shock from a serious Taiwan disruption would dwarf anything we\u2019ve seen in the postwar period.\u201d<span class=\"id-r-component br\" data-pos=\"14\"\/>The question is therefore not simply what would happen if China and Taiwan entered a military confrontation. It is why Taiwan became so important to the global chip industry, why TSMC is so difficult to replace, why the company depends on technology and suppliers across several countries, and why the US, China and India are all trying to reshape the semiconductor supply chain.<span class=\"id-r-component br\" data-pos=\"17\"\/><\/p>\n<div data-pos=\"0\" class=\"id-r-component iIpbx undefined  &#10;        \">\n<div><img decoding=\"async\" alt=\"The chip-making giants&lt;br&gt;\" msid=\"134506287\" imgsize=\"324699\" resizemode=\"4\" width=\"\" title=\"The world\u2019s top semiconductor manufacturers powering everything from smartphones to AI data centres\" placeholdersrc=\"https:\/\/static.toiimg.com\/photo\/83033472.cms\" offsetvertical=\"0\" placeholdermsid=\"47529300\" type=\"thumb\" class=\"\" src=\"https:\/\/static.toiimg.com\/photo\/imgsize-324699,msid-134506287\/the-chip-making-giantsbr.jpg\" data-api-prerender=\"true\"\/><\/p>\n<p>The world\u2019s top semiconductor manufacturers powering everything from smartphones to AI data centres<\/p>\n<\/div>\n<\/div>\n<p>The island that became a semiconductor chokepoint<span class=\"id-r-component br\" data-pos=\"20\"\/>Semiconductors are the building blocks of modern electronics. They allow computers to process information, smartphones to function, vehicles to operate sophisticated electronic systems and AI data centres to perform enormous numbers of calculations.<span class=\"id-r-component br\" data-pos=\"22\"\/>But semiconductor manufacturing is not concentrated in one country. The supply chain is divided among economies with different strengths.<span class=\"id-r-component br\" data-pos=\"25\"\/>The US has major capabilities in chip design, software and electronic design automation. Taiwan dominates advanced manufacturing. South Korea is a major force in memory. Japan is important for semiconductor materials and equipment. The Netherlands is home to ASML, the key supplier of advanced lithography systems.<span class=\"id-r-component br\" data-pos=\"27\"\/><\/p>\n<div data-pos=\"0\" class=\"id-r-component iIpbx undefined  &#10;        \">\n<div><img decoding=\"async\" alt=\"The world\u2019s most restricted tech&lt;br&gt;\" msid=\"134506264\" imgsize=\"484243\" resizemode=\"4\" width=\"\" title=\"EUV lithography is at the heart of the race to control the world\u2019s most advanced chips\" placeholdersrc=\"https:\/\/static.toiimg.com\/photo\/83033472.cms\" offsetvertical=\"0\" placeholdermsid=\"47529300\" type=\"thumb\" class=\"\" src=\"https:\/\/static.toiimg.com\/photo\/imgsize-484243,msid-134506264\/the-worlds-most-restricted-techbr.jpg\" data-api-prerender=\"true\"\/><\/p>\n<p>EUV lithography is at the heart of the race to control the world\u2019s most advanced chips<\/p>\n<\/div>\n<\/div>\n<p><span class=\"id-r-component br\" data-pos=\"29\"\/>Taiwan&#8217;s importance comes from the concentration of advanced manufacturing on the island. Government data says Taiwan accounts for more than 60% of global chip production and nearly 90% of advanced chips. <!-- -->TSMC is at the centre of that ecosystem.<span class=\"id-r-component br\" data-pos=\"33\"\/>TSMC&#8217;s scale illustrates why it is difficult to replace. In 2025, the company manufactured 12,682 products using 305 process technologies for 534 customers. Its chips served sectors including high-performance computing, smartphones, automobiles, the Internet of Things and consumer electronics. Its manufacturing capacity exceeded 17 million 12-inch equivalent wafers during the year.<span class=\"id-r-component br\" data-pos=\"36\"\/>The company therefore sits between some of the world&#8217;s largest technology companies and the physical production of their chips.<span class=\"id-r-component br\" data-pos=\"38\"\/><\/p>\n<div data-pos=\"0\" class=\"id-r-component iIpbx undefined  &#10;        \">\n<div><img decoding=\"async\" alt=\"Inside Taiwan\u2019s chip empire&lt;br&gt;\" msid=\"134506296\" imgsize=\"686563\" resizemode=\"4\" width=\"\" title=\"TSMC sits at the centre of Taiwan\u2019s semiconductor ecosystem and the global advanced-chip supply chain\" placeholdersrc=\"https:\/\/static.toiimg.com\/photo\/83033472.cms\" offsetvertical=\"0\" placeholdermsid=\"47529300\" type=\"thumb\" class=\"\" src=\"https:\/\/static.toiimg.com\/photo\/imgsize-686563,msid-134506296\/inside-taiwans-chip-empirebr.jpg\" data-api-prerender=\"true\"\/><\/p>\n<p>TSMC sits at the centre of Taiwan\u2019s semiconductor ecosystem and the global advanced-chip supply chain<\/p>\n<\/div>\n<\/div>\n<p><span class=\"id-r-component br\" data-pos=\"40\"\/><\/p>\n<p><h3>How Taiwan built its semiconductor advantage<\/h3>\n<\/p>\n<p>Taiwan&#8217;s position was built over decades.<span class=\"id-r-component br\" data-pos=\"43\"\/>In the 1970s, Taiwanese policymakers recognised that the island could not immediately compete with the US and Japan across the entire technology industry. Instead, it focused on specialised manufacturing capabilities and technology transfer.<span class=\"id-r-component br\" data-pos=\"46\"\/>The Industrial Technology Research Institute, or ITRI, was established in 1973. Taiwan subsequently acquired semiconductor technology from the US through licensing arrangements and trained engineers overseas. The development of the Hsinchu Science Park, established in 1980, added another crucial component.<span class=\"id-r-component br\" data-pos=\"48\"\/>Hsinchu brought together semiconductor companies, research institutions, universities, engineers and suppliers. <!-- -->Over time, this geographic concentration created an ecosystem in which companies could access skilled workers, equipment, suppliers and technical expertise.<span class=\"id-r-component br\" data-pos=\"52\"\/>The decisive change came in 1987, when Morris Chang founded TSMC.<span class=\"id-r-component br\" data-pos=\"54\"\/>Chang&#8217;s idea was to separate chip design from chip manufacturing. Instead of designing and selling its own branded chips, TSMC would manufacture chips designed by other companies.<span class=\"id-r-component br\" data-pos=\"56\"\/>The model became known as the pure-play foundry model.<span class=\"id-r-component br\" data-pos=\"59\"\/>TSMC&#8217;s business model allowed companies such as Nvidia and Qualcomm to concentrate on chip architecture and design without having to build and operate their own advanced fabs. At the same time, TSMC could focus entirely on manufacturing.<span class=\"id-r-component br\" data-pos=\"61\"\/>The model also reduced concerns among customers that their manufacturing partner would compete with them in the chip market. TSMC says its exclusive focus on manufacturing customers&#8217; products was central to the pure-play foundry model.<span class=\"id-r-component br\" data-pos=\"64\"\/>That division of labour helped create the modern fabless semiconductor industry and made TSMC a central manufacturing partner for some of the world&#8217;s most valuable technology companies.<span class=\"id-r-component br\" data-pos=\"66\"\/><\/p>\n<p><h3>Why TSMC is so difficult to replace<\/h3>\n<\/p>\n<p>TSMC&#8217;s advantage is not simply the buildings containing its fabs.<span class=\"id-r-component br\" data-pos=\"69\"\/>A leading-edge semiconductor facility requires enormous capital investment, but a modern fab also depends on years of accumulated process knowledge, engineering expertise, equipment suppliers, chemicals, gases, utilities, logistics and specialist workers.<span class=\"id-r-component br\" data-pos=\"72\"\/>Taiwan developed these capabilities around TSMC over several decades.<span class=\"id-r-component br\" data-pos=\"74\"\/>The result is a dense industrial ecosystem that is difficult to reproduce simply by spending money on a new factory.<span class=\"id-r-component br\" data-pos=\"76\"\/>TSMC is expanding outside Taiwan. It operates manufacturing facilities in Japan and China, has expanded its Arizona operations and is developing a specialty technology fab in Dresden, Germany. But the company continues to invest heavily in Taiwan, including multiple 2nm facilities and advanced packaging capacity.<span class=\"id-r-component br\" data-pos=\"79\"\/>That is why governments seeking greater semiconductor security are generally trying to create additional capacity rather than assuming that Taiwan&#8217;s entire ecosystem can quickly be recreated elsewhere.<span class=\"id-r-component br\" data-pos=\"81\"\/><\/p>\n<p><h3>Taiwan&#8217;s &#8216;silicon shield&#8217;<\/h3>\n<\/p>\n<p>Taiwan&#8217;s semiconductor dominance has also acquired a geopolitical dimension.<span class=\"id-r-component br\" data-pos=\"84\"\/>The idea of a &#8220;silicon shield&#8221; was explicitly described by former Taiwanese president Tsai Ing-wen in a 2021 Foreign Affairs article. <!-- -->The basic argument is that Taiwan&#8217;s importance to the global economy creates a form of mutual dependence.<span class=\"id-r-component br\" data-pos=\"88\"\/>A major conflict that disrupted Taiwan&#8217;s chip industry would not hurt Taiwan alone. It would affect economies and companies that rely on its semiconductor output.<span class=\"id-r-component br\" data-pos=\"90\"\/>But the shield is not an absolute guarantee of security.<span class=\"id-r-component br\" data-pos=\"92\"\/>Eyck Freymann, author of Defending Taiwan: A Strategy to Prevent War With China, has argued that the concept can be overstated. <!-- -->China would not necessarily need to seize TSMC&#8217;s factories to disrupt the semiconductor supply chain.<span class=\"id-r-component br\" data-pos=\"96\"\/><\/p>\n<div data-pos=\"0\" class=\"id-r-component iIpbx undefined  &#10;        \">\n<div><img decoding=\"async\" alt=\"The most complex machine&lt;br&gt;\" msid=\"134506307\" imgsize=\"695489\" resizemode=\"4\" width=\"\" title=\"An EUV machine combines precision optics, lasers, mirrors, vacuum systems and thousands of specialised components\" placeholdersrc=\"https:\/\/static.toiimg.com\/photo\/83033472.cms\" offsetvertical=\"0\" placeholdermsid=\"47529300\" type=\"thumb\" class=\"\" src=\"https:\/\/static.toiimg.com\/photo\/imgsize-695489,msid-134506307\/the-most-complex-machinebr.jpg\" data-api-prerender=\"true\"\/><\/p>\n<p>An EUV machine combines precision optics, lasers, mirrors, vacuum systems and thousands of specialised components<\/p>\n<\/div>\n<\/div>\n<p><span class=\"id-r-component br\" data-pos=\"98\"\/>A blockade, quarantine or other form of coercion could interfere with the movement of chips out of Taiwan even if the factories themselves continued operating.<span class=\"id-r-component br\" data-pos=\"100\"\/>That distinction is important. Semiconductor production depends not only on fabs but also on electricity, water, equipment, chemicals, logistics, shipping routes and international workers and suppliers.<span class=\"id-r-component br\" data-pos=\"103\"\/>A disruption to those systems could therefore affect output without physically destroying a fab.<span class=\"id-r-component br\" data-pos=\"105\"\/><\/p>\n<p><h3>China wants semiconductor self-reliance<\/h3>\n<\/p>\n<p>China&#8217;s semiconductor strategy is closely linked to its broader technology and national-security objectives.<span class=\"id-r-component br\" data-pos=\"108\"\/>Beijing has invested heavily in reducing dependence on foreign semiconductor technology, while Washington has imposed restrictions on China&#8217;s access to advanced chips and semiconductor manufacturing equipment.<span class=\"id-r-component br\" data-pos=\"111\"\/>Chinese companies including Semiconductor Manufacturing International Corporation and Huawei have developed domestic capabilities, while Beijing has pushed for greater self-sufficiency across the semiconductor value chain.<span class=\"id-r-component br\" data-pos=\"113\"\/>China has made progress, particularly in mature and increasingly advanced manufacturing, but the leading edge remains difficult because of restrictions on advanced equipment and technology.<span class=\"id-r-component br\" data-pos=\"116\"\/>The contest is particularly important because the most advanced chips depend on highly specialised manufacturing equipment that China has historically had limited access to.<span class=\"id-r-component br\" data-pos=\"118\"\/><\/p>\n<p><h3>The EUV bottleneck<\/h3>\n<\/p>\n<p>At the centre of the advanced-chip race is extreme ultraviolet, or EUV, lithography.<span class=\"id-r-component br\" data-pos=\"121\"\/>EUV systems use light with a wavelength of 13.5 nanometres to print extremely small patterns on semiconductor wafers. The technology is critical to producing some of the most advanced generations of chips.<span class=\"id-r-component br\" data-pos=\"124\"\/>This is where the Netherlands enters the semiconductor story.<span class=\"id-r-component br\" data-pos=\"126\"\/>Dutch company ASML is the world&#8217;s key supplier of EUV lithography systems. ASML does not manufacture chips. It makes the machines used by chipmakers to manufacture them.<span class=\"id-r-component br\" data-pos=\"128\"\/>A modern EUV system combines precision optics, lasers, vacuum systems, mirrors, sensors and thousands of components supplied through a highly specialised international network. <!-- -->German company Carl Zeiss is central to the optical systems, while suppliers in the US, Japan and elsewhere contribute other components and materials.<span class=\"id-r-component br\" data-pos=\"132\"\/>The result is a semiconductor supply chain in which no single country controls every critical technology.<span class=\"id-r-component br\" data-pos=\"134\"\/>Taiwan provides leading-edge manufacturing. The Netherlands provides critical lithography equipment. The US has major strengths in chip design and related technologies. <!-- -->Japan supplies important materials and equipment. South Korea dominates parts of the memory market.<span class=\"id-r-component br\" data-pos=\"138\"\/>ASML and TSMC are already working on the next generation of EUV technology. In September 2026, the companies announced an initiative to transition the industry towards 12-inch photomasks for High NA EUV. TSMC intends to use ASML&#8217;s High NA technology in high-volume manufacturing for advanced nodes from 2030, while the initiative targets a 12-inch mask pilot line by 2031 and advanced-node production readiness by 2033.<span class=\"id-r-component br\" data-pos=\"141\"\/>That relationship shows how difficult it is for any one country to become completely independent in semiconductor technology.<span class=\"id-r-component br\" data-pos=\"143\"\/><\/p>\n<div data-pos=\"0\" class=\"id-r-component iIpbx undefined  &#10;        \">\n<div><img decoding=\"async\" alt=\"How EUV makes tiny chips&lt;br&gt;\" msid=\"134506329\" imgsize=\"846107\" resizemode=\"4\" width=\"\" title=\"EUV uses 13.5-nanometre light to print incredibly small patterns needed for advanced semiconductor production.\" placeholdersrc=\"https:\/\/static.toiimg.com\/photo\/83033472.cms\" offsetvertical=\"0\" placeholdermsid=\"47529300\" type=\"thumb\" class=\"\" src=\"https:\/\/static.toiimg.com\/photo\/imgsize-846107,msid-134506329\/how-euv-makes-tiny-chipsbr.jpg\" data-api-prerender=\"true\"\/><\/p>\n<p>EUV uses 13.5-nanometre light to print incredibly small patterns needed for advanced semiconductor production.<\/p>\n<\/div>\n<\/div>\n<p><span class=\"id-r-component br\" data-pos=\"145\"\/><\/p>\n<p><h3>China&#8217;s EUV challenge<\/h3>\n<\/p>\n<p>China&#8217;s attempt to develop its own EUV capability has therefore become one of the most closely watched parts of the semiconductor race.<span class=\"id-r-component br\" data-pos=\"148\"\/>Reuters reported in December 2025 that China had developed a prototype EUV lithography machine at a secure facility in Shenzhen. The machine was reportedly capable of generating EUV light but was not yet capable of producing advanced chips. <!-- -->Reuters also reported that former ASML engineers had been recruited and that China had used components obtained from older systems and secondary markets.<span class=\"id-r-component br\" data-pos=\"152\"\/>The distinction is important. Producing EUV light is not the same as developing a commercially viable EUV system capable of manufacturing advanced chips reliably and at scale.<span class=\"id-r-component br\" data-pos=\"154\"\/>ASML&#8217;s position was built over decades of research, engineering and collaboration with a vast supplier network. <!-- -->China therefore faces the additional challenge of converting research breakthroughs into reliable industrial production.<span class=\"id-r-component br\" data-pos=\"158\"\/>But the effort demonstrates why export controls cannot be viewed simply as a permanent technological barrier. They can restrict access to critical technologies while also encouraging efforts to develop alternatives.<span class=\"id-r-component br\" data-pos=\"160\"\/><\/p>\n<p><h3>The US wants to reduce its dependence<\/h3>\n<\/p>\n<p>Washington faces a different version of the same problem.<span class=\"id-r-component br\" data-pos=\"163\"\/>The US has enormous strengths in semiconductor design and technology, but advanced manufacturing has historically been concentrated in East Asia. <!-- -->As competition with China intensified, that dependence became a national-security concern.<span class=\"id-r-component br\" data-pos=\"167\"\/>The US response has included export controls on advanced semiconductor technology going to China and incentives to expand manufacturing capacity inside the country.<span class=\"id-r-component br\" data-pos=\"169\"\/>The CHIPS and Science Act provided incentives for companies including TSMC to build US manufacturing capacity. TSMC has since expanded its Arizona plans substantially. <!-- -->In July 2026, the company pledged a further $100 billion investment in Arizona, taking its planned US investment to $165 billion.<span class=\"id-r-component br\" data-pos=\"173\"\/>The objective is not necessarily to eliminate Taiwan&#8217;s importance. It is to create additional capacity so that a disruption in Taiwan does not automatically become a disruption to the entire global semiconductor industry.<span class=\"id-r-component br\" data-pos=\"175\"\/>But the same problem remains: a fab is only one part of the ecosystem.<span class=\"id-r-component br\" data-pos=\"178\"\/><\/p>\n<p><h3>Taiwan is also becoming more important to AI<\/h3>\n<\/p>\n<p>The rapid expansion of artificial intelligence has made Taiwan&#8217;s position even more important.<span class=\"id-r-component br\" data-pos=\"181\"\/>AI systems require enormous amounts of computing power, and the most advanced AI accelerators depend on leading-edge semiconductor manufacturing and advanced packaging.<span class=\"id-r-component br\" data-pos=\"183\"\/>TSMC is deeply embedded in this supply chain. Its 2025 annual report said advanced technologies, defined as 7nm and more advanced processes, accounted for 74% of its total wafer revenue.<span class=\"id-r-component br\" data-pos=\"186\"\/>Taiwan is also expanding advanced packaging capabilities. In September 2026, construction began on a new advanced packaging industrial park in Kaohsiung anchored by TSMC, with facilities planned for technology validation and talent development.<span class=\"id-r-component br\" data-pos=\"188\"\/>The semiconductor race is therefore no longer only about making smaller transistors. Advanced packaging, memory, lithography, chip design and manufacturing are increasingly interconnected, particularly as AI demand grows.<span class=\"id-r-component br\" data-pos=\"191\"\/><\/p>\n<p><h3>Taiwan&#8217;s chips as diplomatic leverage<\/h3>\n<\/p>\n<p>Taiwan&#8217;s semiconductor position has also created a new form of economic and diplomatic leverage.<span class=\"id-r-component br\" data-pos=\"194\"\/>In 2025, Taipei announced proposed restrictions on semiconductor exports to South Africa amid a dispute over Taiwan&#8217;s representative office there. The proposed controls were subsequently suspended after South Africa agreed to negotiations.<span class=\"id-r-component br\" data-pos=\"196\"\/>The measures therefore did not become a lasting export-control regime. <!-- -->But the episode demonstrated that Taiwan&#8217;s position in the global chip supply chain can potentially be used as a diplomatic tool.<span class=\"id-r-component br\" data-pos=\"200\"\/>As Wen-ti Sung of the Atlantic Council&#8217;s Global China Hub said in the material supplied for this story, \u201cBy utilizing Taiwan\u2019s position in the global chip supply chain, this looks like Taipei\u2019s attempt at building an autonomous deterrent on the world stage.\u201d<span class=\"id-r-component br\" data-pos=\"202\"\/>He added: \u201cGoing forward, other governments will be looking at this example and considering not only Taiwan\u2019s carrots but also its potential sticks.\u201d<span class=\"id-r-component br\" data-pos=\"205\"\/>The episode also showed the limits of such leverage. The immediate economic impact was limited because South Africa represented only a small share of Taiwan&#8217;s semiconductor exports.<span class=\"id-r-component br\" data-pos=\"207\"\/><\/p>\n<p><h3>Where India stands<\/h3>\n<\/p>\n<p>India enters the semiconductor race from a different starting point.<span class=\"id-r-component br\" data-pos=\"210\"\/>Its strongest links have traditionally been chip design, engineering, software and electronics services, while large-scale advanced fabrication has remained a major gap.<span class=\"id-r-component br\" data-pos=\"213\"\/>That is beginning to change.<span class=\"id-r-component br\" data-pos=\"215\"\/>Qualcomm&#8217;s 2nm chip design tape-out, completed through its engineering centres in Bengaluru, Chennai and Hyderabad, is an example of India&#8217;s growing role in advanced chip development. But a tape-out is a design milestone, not manufacturing. The 2nm chip itself will be fabricated overseas.<span class=\"id-r-component br\" data-pos=\"217\"\/>According to government data, India accounts for nearly 20% of the global semiconductor chip-design workforce and hosts about 7% of semiconductor-domain global capability centres.<span class=\"id-r-component br\" data-pos=\"220\"\/>The government is attempting to build on that design advantage through the India Semiconductor Mission.<span class=\"id-r-component br\" data-pos=\"222\"\/>Semicon 1.0, approved in 2021 with an outlay of Rs 76,000 crore, created support for semiconductor fabs, compound semiconductors, ATMP\/OSAT facilities and chip-design companies. The government says 12 semiconductor manufacturing units have been approved, involving cumulative investment of more than Rs 1.64 lakh crore. <!-- -->It also says 24 chip-design projects have been approved and more than 300 chip designs have been developed through the wider ecosystem.<span class=\"id-r-component br\" data-pos=\"226\"\/>India is also developing fabrication and packaging capabilities. Tata Electronics&#8217; Dholera project in Gujarat is intended to establish domestic silicon fabrication capacity, while projects involving Micron, Tata Electronics, CG Power and Kaynes are expanding assembly, testing and packaging capabilities.<span class=\"id-r-component br\" data-pos=\"229\"\/>The next phase is Semicon 2.0, approved in July 2026 with an outlay of Rs 1,27,500 crore. It expands the focus to six areas: chip design, machines and materials, new fabs, advanced packaging, research and talent.<span class=\"id-r-component br\" data-pos=\"231\"\/>The stakes are rising with domestic demand. India&#8217;s semiconductor market is projected to reach $110 billion by FY2030 and exceed $200 billion by FY2035. India spent almost $150 billion on semiconductor product imports between FY2017 and FY2025.<span class=\"id-r-component br\" data-pos=\"234\"\/><\/p>\n<p><h3>India&#8217;s partnership with the Netherlands matters<\/h3>\n<\/p>\n<p>India&#8217;s strategy is not to build every part of the semiconductor chain independently. It is also to connect with established global technology ecosystems.<span class=\"id-r-component br\" data-pos=\"237\"\/>The Netherlands and ASML are important to that strategy because advanced semiconductor manufacturing depends on sophisticated lithography technology.<span class=\"id-r-component br\" data-pos=\"239\"\/>The Tata-PSMC relationship links India&#8217;s emerging fabrication capacity with Taiwan&#8217;s manufacturing expertise, while India&#8217;s engagement with ASML connects it to the Netherlands&#8217; semiconductor equipment ecosystem.<span class=\"id-r-component br\" data-pos=\"242\"\/>India is also seeking to build capabilities in equipment, materials, packaging and other specialised parts of the supply chain. Semicon 2.0 explicitly includes machines and materials alongside fabs, design, packaging, research and talent.<span class=\"id-r-component br\" data-pos=\"244\"\/>India is therefore not trying to become another Taiwan overnight. Its immediate advantage is design and engineering, while fabrication, equipment, materials and advanced packaging are still developing.<span class=\"id-r-component br\" data-pos=\"247\"\/><\/p>\n<p><h3>The semiconductor map is becoming a map of geopolitical power<\/h3>\n<\/p>\n<p>The global semiconductor industry is now a network of interdependent countries.<span class=\"id-r-component br\" data-pos=\"250\"\/>Taiwan has TSMC and leading-edge manufacturing.<span class=\"id-r-component br\" data-pos=\"252\"\/>The Netherlands has ASML and critical lithography technology.<span class=\"id-r-component br\" data-pos=\"254\"\/>The US has major chip-design companies, software and semiconductor technologies.<span class=\"id-r-component br\" data-pos=\"256\"\/>Japan supplies important materials and equipment.<span class=\"id-r-component br\" data-pos=\"258\"\/>South Korea has enormous strength in memory and advanced manufacturing.<span class=\"id-r-component br\" data-pos=\"260\"\/>China has a vast electronics manufacturing base and is investing heavily in semiconductor self-reliance.<span class=\"id-r-component br\" data-pos=\"263\"\/>India has major engineering and design capabilities and is building manufacturing, packaging and materials capacity.<span class=\"id-r-component br\" data-pos=\"265\"\/>No single country controls the entire chain.<span class=\"id-r-component br\" data-pos=\"267\"\/>That interconnectedness has made advanced chips cheaper and more widely available, but it has also created concentration risks. A disruption at one critical point can affect industries far beyond semiconductors.<span class=\"id-r-component br\" data-pos=\"269\"\/><\/p>\n<p><h3>The Taiwan question is also a technology question<\/h3>\n<\/p>\n<p>This is why Taiwan remains central to the US-China relationship.<span class=\"id-r-component br\" data-pos=\"273\"\/>Beijing&#8217;s claim over Taiwan, Washington&#8217;s policy towards Taipei, Chinese military activity around the island and Taiwan&#8217;s own political position are all part of the geopolitical equation. But beneath that lies another contest: control over the technologies that underpin the global economy.<span class=\"id-r-component br\" data-pos=\"275\"\/>Taiwan&#8217;s semiconductor industry gives the island an outsized position because it became indispensable at one critical point in the global technology chain.<span class=\"id-r-component br\" data-pos=\"278\"\/>TSMC&#8217;s success was built through decades of industrial policy, technology transfer, engineering expertise, supplier networks and a business model that separated chip design from manufacturing.<span class=\"id-r-component br\" data-pos=\"280\"\/>That concentration now creates both strength and vulnerability.<span class=\"id-r-component br\" data-pos=\"283\"\/>China wants alternatives. The US wants additional capacity. Europe and Japan want more resilient supply chains. India is building its own semiconductor ecosystem.<span class=\"id-r-component br\" data-pos=\"286\"\/>The result is a gradual shift from a highly globalised semiconductor supply chain towards one increasingly shaped by national security and geopolitical considerations.<span class=\"id-r-component br\" data-pos=\"288\"\/>For Taiwan, the challenge is to remain technologically ahead while preserving the ecosystem that made its semiconductor industry so difficult to replicate.<span class=\"id-r-component br\" data-pos=\"290\"\/>For the rest of the world, the challenge is to reduce dependence on any single geographic centre without dismantling the global system that made advanced chips possible.<span class=\"id-r-component br\" data-pos=\"292\"\/>And for India, the opportunity is not necessarily to replace Taiwan, but to become another important link in a semiconductor chain that is increasingly central to economic power, national security and geopolitics.<\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/timesofindia.indiatimes.com\/world\/rest-of-world\/how-taiwans-silicon-shield-has-kept-it-safe-from-china-indispensable-to-us-in-age-of-ai\/articleshow\/134506155.cms\" target=\"_blank\" rel=\"noopener\">Source link <\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Trump, Xi and Taiwan sit at the centre of a global semiconductor race, with the island producing most of the world\u2019s advanced chips The latest meeting between US President Donald Trump and Chinese President Xi Jinping has once again put Taiwan at the centre of the world&#8217;s most consequential geopolitical and technology rivalry.Xi pressed Trump [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":29083,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[31],"tags":[],"class_list":["post-29082","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-31"],"magazineBlocksPostFeaturedMedia":{"thumbnail":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","medium":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","medium_large":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","large":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","1536x1536":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","2048x2048":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-small":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-small-tall":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-small-square":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-small-masonry":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-medium":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-medium-masonry":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-large":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg","blogsy-wide":"https:\/\/koshalsambada.in\/wp-content\/uploads\/2026\/09\/1790434907_trump-xi.jpg"},"magazineBlocksPostAuthor":{"name":"admin","avatar":"https:\/\/secure.gravatar.com\/avatar\/8709732a479614e7a8aa24d3eb1b239f30dc6d90c61464ed495001e7a469d856?s=96&d=mm&r=g"},"magazineBlocksPostCommentsNumber":"0","magazineBlocksPostExcerpt":"Trump, Xi and Taiwan sit at the centre of a global semiconductor race, with the island producing most of the world\u2019s advanced chips The latest meeting between US President Donald Trump and Chinese President Xi Jinping has once again put Taiwan at the centre of the world&#8217;s most consequential geopolitical and technology rivalry.Xi pressed Trump [&hellip;]","magazineBlocksPostCategories":["\u0b26\u0b47\u0b36 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