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Hard‑core breakthrough ✨ Shandong‑based Binhua Group has officially put 6N‑grade high‑purity hydrogen fluoride for semiconductors into production! Breaking overseas monopolies, the vital "chemical etching knife" for chip manufacturing has achieved domestic mass production.

23,610 Aufrufe • vor 17 Tagen •via X (Twitter)

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Wall Street is still sleeping on $KOPN. Their new Neural I/O platform announced last month is a breakthrough in chip-to-chip and rack-to-rack interconnect technology that can meaningfully change the way information is moved from place to place in data centers. Unlike traditional copper (which loses energy as heat over distance) or laser-based optics (which require significant power to drive), Kopin’s platform repurposes MicroLED pixels as bi-directional transceivers. They claim this uses considerably less power per bit than existing solutions. By using photons instead of electrons for chip-to-chip and rack-to-rack communication, they can achieve ultra-high bandwidth without the signal degradation seen in copper at high speeds. Oh, and the TAM here is MASSIVE. Estimates for the broader interconnect and optical networking market range from $70B to more than $130B. 🤯 For now, the $15M development order Kopin received will be used to build a prototype that will be ready by mid 2026 (just a few months). After that, they expect to begin production of this new MicroLED interconnect product by late 2026/early 2027. CEO, Michael Murray, has also confirmed that Kopin is already in talks with two of the “Big Five” (Google, Apple, Meta, Amazon, Microsoft) who are supposedly very interested in this technology. Kopin has signed NDAs with these companies, so they can’t disclose any more than that at this time. Note that Kopin does all their manufacturing in the U.S., making their products more appealing to companies seeking domestic producers over foreign ones. Right now, their market cap is just $765M. If they successfully disrupt the market for interconnect devices used in data centers (which I believe they can), the stock will experience a serious re-rating. Exciting times ahead for Kopin. Please don’t consider this financial advice!

Chris Ray

31,595 Aufrufe • vor 3 Monaten

The Cybercab is aiming to produce 2 million units per year. Let this sink in. Today, Tesla produces about ~1.7 million vehicles per year total, across its entire lineup. And now Tesla is preparing to outproduce that with one single vehicle, a fully autonomous one. This is Elon and Tesla going ALL-IN on autonomy. Production is scheduled to start April 2026 at Giga Texas, with volume ramping throughout the year. And as of early 2026, Cybercab prototypes are already being tested around the U.S. The Tesla Cybercab is built from the ground up for unsupervised autonomy. There is no steering wheel and no pedals, just cameras, AI, and Tesla’s custom inference computers. No lidar and radar like other companies, just pure vision and software. Elon put it best on the Q3 2024 earnings call: “It’s not just a revolutionary vehicle design, but a revolution in vehicle manufacturing that is also coming with the Cybercab.” That quote matters a lot bc that means the entire way a vehicle is manufactured is changing with the Cybercab. Tesla is designing what Elon calls “the machine that builds the machine.” The Cybercab uses Tesla’s unboxed manufacturing process, where major sections are built in parallel instead of one long assembly line. There are fewer parts, less steps & cost, and faster scale. That’s how you make 2 million Cybercabs per year possible. FYI, this is not going to be easy though. Elon has been brutally honest about production for many years: • “Prototypes are easy, production is hard.” • “The extreme difficulty of scaling production of new technology is poorly understood. It’s 1000% to 10,000% harder than making a few prototypes.” • “For cars, it’s maybe 100 times harder to design the manufacturing system than the car itself.” He reinforced this again in January 2026 when talking about Cybercab and Optimus on 𝕏: “Initial production is always very slow and follows an S-curve. The speed of the production ramp is inversely proportional to how many new parts and steps there are. For Cybercab and Optimus, almost everything is new, so the early production rate will be agonizingly slow - but eventually end up being insanely fast.” This is the key thing most people miss about Tesla manufacturing. Early output will be slow by design. Almost everything is new like the vehicle architecture, factory layout, AI hardware, and manufacturing flow. But once it works and clicks, it begins to scale hard. Tesla already proved they can do this. They survived Model 3 production hell. They turned Model Y into the BEST selling car in the world, of any kind. They ramped Cybertruck, which has over 30,000+ unique parts, to meaningful volume. Elon summed it up perfectly in 2024: “Compared to the insane pain of reaching high volume, positive margin production, prototypes are a piece of cake.” That’s why Tesla makes manufacturing look easy bc they already earned the scars from the last vehicle lineups. The Cybercab is aiming to be: 1/ Under $30,000 price 2/ ~$0.20 per mile operating cost 3/ 200+ mile range 4/ Up to 5x utilization vs personal cars 5/ Designed to run nearly nonstop 24/7 This is what you call manufacturing + AI + autonomy converging at scale. The competitors are still showing prototypes and demos, while Tesla is building new production lines, expanding factories, and actually building the product. I remember when Elon told me in the past that one of Tesla’s key advantage long term was going to be manufacturing technology. I get it now.

Teslaconomics

31,985 Aufrufe • vor 6 Monaten

Edible mRNA...The Threat Of The Engineered Bioweapon Inserted Into Our Food Is Real. Rep. Cepicky Introduces 'Food Vaccine' Legislation. "University Of California Has The Ability To Put Human Vaccines Into Lettuce & Tomatoes." "RJ Reynolds Has Perfected Vaccines In Tobacco." The proposed law, HB 1894, was passed that would classify as a drug, any foods with vaccine materials added to them. It would classify any food that "contains a vaccine or vaccine material" as a drug under Tennessee law, meaning the food would have to be labeled accordingly. The bill defines vaccine material as a substance intended to "stimulate the production of antibodies." The legislation would not ban vaccine-imbued foods from being sold in the state but would require them to carry the same medical labeling as injectable vaccines or medications. Proponents of the measure cited ongoing research into this method of conveying vaccines & the need to give people the recommended dose of a vaccine. The project, funded by a $500,000 federal grant, at the University of California has developed the technology to input pathogen-targeting mRNA, like that used in COVID-19 vaccines, into the cells of lettuce to replicate & be consumed. The idea of edible vaccines is not new. A 2013 scientific paper noted putting vaccines against various diseases, such as measles, hepatitis B & cholera, into foodstuffs like potatoes, bananas, corn, soybeans & rice. UC Berkeley In The Development Of mRNA Vaccination In Tomatoes: "Tomato can be used as for vaccine production & used as salad which facilitates the easy oral delivery of a particular vaccine. As an example, tomato has excellent biomass & easily transformed & generate the whole plant within short period & this provides an ideal choice for vaccine production. Therefore, tomato is no doubt a green vaccine factory." RJ Reynolds & Tobacco Transgenic Vaccine mRNA: "Tobacco leaves & seeds are considered as a living factory for molecular farming, since they act as an excellent vehicle for the mass production of very complex molecules & recombinant S2 Spike protein." 👇Plant Based Edible Vaccines👇 👇Tomato-Made Edible Oral Vaccine👇 👇Tobacco Based mRNA Vaccines👇 Video: SkillsForLife_

Valerie Anne Smith

28,687 Aufrufe • vor 1 Jahr

MIT announces the Initiative for New Manufacturing | Peter Dizikes, MIT News The Institute-wide effort aims to bolster industry and create jobs by driving innovation across vital manufacturing sectors. MIT today launched its Initiative for New Manufacturing (INM), an Institute-wide effort to reinfuse U.S. industrial production with leading-edge technologies, bolster crucial U.S. economic sectors, and ignite job creation. The initiative will encompass advanced research, innovative education programs, and partnership with companies across many sectors, in a bid to help transform manufacturing and elevate its impact. “We want to work with firms big and small, in cities, small towns and everywhere in between, to help them adopt new approaches for increased productivity,” MIT President Sally A. Kornbluth wrote in a letter to the Institute community this morning. “We want to deliberately design high-quality, human-centered manufacturing jobs that bring new life to communities across the country.” Kornbluth added: “Helping America build a future of new manufacturing is a perfect job for MIT — and I’m convinced that there is no more important work we can do to meet the moment and serve the nation now.” The Initiative for New Manufacturing also announced its first six founding industry consortium members: Amgen, Flex, GE Vernova, PTC, Sanofi, and Siemens. Participants in the INM Industry Consortium will support seed projects proposed by MIT researchers, initially in the area of artificial intelligence for manufacturing. INM joins the ranks of MIT’s other presidential initiatives — including The Climate Project at MIT; MITHIC, which supports the human-centered disciplines; MIT HEALS, centered on the life sciences and health; and MGAIC, the MIT Generative AI Impact Consortium. “There is tremendous opportunity to bring together a vibrant community working across every scale — from nanotechnology to large-scale manufacturing — and across a wide-range of applications including semiconductors, medical devices, automotive, energy systems, and biotechnology,” says Anantha Chandrakasan, MIT’s chief innovation and strategy officer and dean of engineering, who is part of the initiative’s leadership team. “MIT is uniquely positioned to harness the transformative power of digital tools and AI to shape future of manufacturing. I’m truly excited about what we can build together and the synergies this creates with other cross-cutting initiatives across the Institute.” The initiative is just the latest MIT-centered effort in recent decades aiming to expand American manufacturing. A faculty research group wrote the 1989 bestseller “Made in America: Regaining the Productive Edge,” advocating for a renewal of manufacturing; another MIT project, called Production in the Innovation Economy, called for expanded manufacturing in the early 2010s. In 2016, MIT also founded The Engine, a venture fund investing in hardware-based “tough tech” start-ups including many with potential to became substantial manufacturing firms. As developed, the MIT Initiative for New Manufacturing is based around four major themes: - Reimagining manufacturing technologies and systems: realizing breakthrough technologies and system-level approaches to advance energy production, health care, computing, transportation, consumer products, and more; - Elevating the productivity and experience of manufacturing: developing and deploying new digitally driven methods and tools to amplify productivity and improve the human experience of manufacturing; - Scaling new manufacturing: accelerating the scaling of manufacturing companies and transforming supply chains to maximize efficiency and resilience, fostering product innovation and business growth; and - Transforming the manufacturing base: driving the deployment of a sustainable global manufacturing ecosystem that provides compelling opportunities to workers, with major efforts focused on the U.S. The initiative has mapped out many concrete activities and programs, which will include an Institute-wide research program on emerging technologies and other major topics; workforce and education programs; and industry engagement and participation. INM also aims to establish new labs for developing manufacturing tools and techniques; a “factory observatory” program which immerses students in manufacturing through visits to production sites; and key “pillars” focusing on areas from semiconductors and biomanufacturing to defense and aviation. The workforce and education element of INM will include TechAMP, an MIT-created program that works with community colleges to bridge the gap between technicians and engineers; AI-driven teaching tools; professional education; and an effort to expand manufacturing education on campus in collaboration with MIT departments and degree programs. INM’s leadership team has three faculty co-directors: John Hart, the Class of 1922 Professor and head of the Department of Mechanical Engineering; Suzanne Berger, Institute Professor at MIT and a political scientist who has conducted influential empirical studies of manufacturing; and Chris Love, the Raymond A. and Helen E. St. Laurent Professor of Chemical Engineering. The initiative’s executive director is Julie Diop. The initiative is in the process of forming a faculty steering committee with representation from across the Institute, as well as an external advisory board. INM stems partly from the work of the Manufacturing@MIT working group, formed in 2022 to assess many of these issues. The launch of the new initiative was previewed at a daylong MIT symposium on May 7, titled “A Vision for New Manufacturing.” The event, held before a capacity audience in MIT’s Wong Auditorium, featured over 30 speakers from a wide range of manufacturing sectors. “The rationale for growing and transforming U.S. manufacturing has never been more urgent than it is today,” Berger said at the event. “What we are trying to build at MIT now is not just another research project. … Together, with people in this room and outside this room, we’re trying to change what’s happening in our country.” “We need to think about the importance of manufacturing again, because it is what brings product ideas to people,” Love told MIT News. “For instance, in biotechnology, new life-saving medicines can’t reach patients without manufacturing. There is a real urgency about this issue for both economic prosperity and creating jobs. We have seen the impact for our country when we have lost our lead in manufacturing in some sectors. Biotechnology, where the U.S. has been the global leader for more than 40 years, offers the potential to promote new robust economies here, but we need to advance our capabilities in biomanufacturing to maintain our advantage in this area.” Hart adds: “While manufacturing feels very timely today, it is of enduring importance. Manufactured products enable our daily lives and manufacturing is critical to advancing the frontiers of technology and society. Our efforts leading up to launch of the initiative revealed great excitement about manufacturing across MIT, especially from students. Working with industry — from small to large companies, and from young startups to industrial giants — will be instrumental to creating impact and realizing the vision for new manufacturing.” In her letter to the MIT community today, Kornbluth stressed that the initiative’s goal is to drive transformation by making manufacturing more productive, resilient, and sustainable. “We want to reimagine manufacturing technologies and systems to advance fields like energy production, health care, computing, transportation, consumer products, and more,” she wrote. “And we want to reach well beyond the shop floor to tackle challenges like how to make supply chains more resilient, and how to inform public policy to foster a broad, healthy manufacturing ecosystem that can drive decades of innovation and growth.”

Owen Gregorian

77,197 Aufrufe • vor 1 Jahr

Commercial Fluoride Is A Thief...The Industrial Waste That Could Be Stealing Your Thyroid Health. Dr Ben Bikman, PhD The Thyroid Is Completely Dependent On Iodine & Fluoride Will Compete With Iodine & Block Its Absorption. Iodine Is The Backbone Of T3 & T4 Hormone Production. Fluoride is the problem... Fluoride is a neurotoxin & should have never been added to anything humans use or consume....not toothpaste, not mouthwash & definitely not drinking water. It is a chemical byproduct of aluminum, steel, cement, phosphate & nuclear weapons manufacturing. Before the public was convinced that adding fluoride to their water was for their own good, the metal & chemical industries had the problem of disposing of their highly toxic fluoride waste. Now, thanks to corporate lobbyists & the big lie sold to the public about supposed health benefits, the fluoride waste is dumped into our municipal water supplies & into our personal care products. Not only did this solve their toxic waste disposal problem but allowed them to sell it for a profit at a markup of 20,000 times. Iodine is the solution... Iodine is the body's master internal detoxifier of heavy metals, fluoride, chlorine, bromine & the radiation residue that builds up in tissues. Fluoride infiltrates where Iodine should be & harms thyroid function. Hypothyroid is caused by heavy metals poisoning because Iodine cannot uptake into the cells. Which is why Iodine supplementation & a healing protocol heals Hypothyroid permanently. 10 Life Transformative Benefits of Iodine... 1: Detox Mercury, Aluminum, Lead, Fluoride & Bromide 2: Shrinks Cysts, Fibroids & Tumors 3: Prevents Cancer & Parasitic Infections 4: Heals Candida & Fungal Infections 5: Relieves Menopause symptoms, hot flashes & acne 6: Breaks down scar tissue & adhesions 7: Lifts mood & brain fog 8: Heals Hypothyroidism 9: Stimulates hair growth & relieves cold intolerance 10: Heals immune system & reduces inflammation Our soil, water & food are mostly devoid of Iodine in this modern era. Even consuming large quantities of eggs, seafood & raw dairy may not be enough to reach optimal Iodine intake each day. Each of our cells has an iodine receptor site & if there is no available iodine to uptake into the cell, heavy metals will displace & occupy that site. The RDA dose of 150 mcg is only set to prevent a Thyroid Goiter, not the amount every cell needs for vibrant optimal health. Your thyroid gland alone needs about 6 mg of iodine per day for optimal function. The rest of the body uses an additional 4 mg each day. For optimal wellness, which is what we always strive for, you need approximately 10 mg of Iodine each day. Iodine also has required cofactors which are easy to acquire the trace amounts needed thru diet. Iodine needs selenium, zinc, copper, iron & methylated B. An easy way to reach optimal intake involves just a few drops of Lugol's 2% Liquid Iodine. Each drop delivers 2.5 mg of bioavailable Iodine. I have taken J. Crow brand for years, after using a natural protocol 8 yrs ago to heal Hypothyroid. 👇Fluoride Is A Neurotoxin👇 👇200+ Studies On Fluoride Harm & Toxicity👇 👇Fluoride Exposure Affects Thyroid👇 Speaker: Dr Benjamin Bikman, PhD

Valerie Anne Smith

19,337 Aufrufe • vor 9 Monaten

🚨President Trump makes a historical announcement that he will be slapping on Pharmaceutical Tarrifs by the end of the Month Gee… I wonder what this will do for the Kodak Stock? 😀👍 Months ago, I talked about KODAK being one stock I have heavily studied… - I’ve been watching it since 2020, when President Trump put forth the Defense Production Act, and made an announcement about Kodak producing pharmaceuticals. The goal was to repurpose Kodak’s chemical manufacturing facilities in Rochester, New York. • As of late 2024, Kodak is now independently heavily investing tens of millions into a new lab and manufacturing facility at Eastman Business Park, New York, expected to open in 2025. • Fast forward to today, Trump’s tariffs will target foreign pharmaceutical companies. This positions Kodak to produce APIs and reagents domestically, placing them way ahead of the competition by planning this restructuring since 2020, with its facility already nearing completion today, unlike competitors who may need years to relocate or build U.S.-based operations. • Tariffs will likely raise costs for foreign-made APIs, making Kodak’s domestic production more competitive and potentially boosting demand… and its stock. • Also, with potential short term drug shortages looming due to tariffs, Kodak’s soon established U.S.-based supply could see emergency demand spikes. • Kodak’s stock historically surged (e.g., 300% in 2020 after the loan news)… *Disclaimer… this isn’t financial advice. This is my own research for educational purposes.

MJTruthUltra

28,302 Aufrufe • vor 1 Jahr

Our next episode is out! Today's conversation is with Chris Miller, Author of Chip War. The Semiconductor Century with Chris Miller What really determines success in the age of AI? Is it better models or broader reach? Chris Miller, author of the bestselling book Chip War, explains how semiconductors have become the strategic center of gravity for global power, economics, and innovation. As a professor at the Fletcher School at Tufts University, Chris has spent nearly a decade studying how chips are reshaping geopolitics and why they're essential to understanding everything from military capabilities to artificial intelligence. Listen now: • YouTube: • Spotify: • Apple: A big thank you to the incredible sponsors that make the podcast possible: ✨ Explo – Customer-facing analytics for any platform: ✨ Generalist+ – Essential intelligence for modern investors and technologists: We explore: → Why diffusion and adoption of technology are more important markers of impact than actual capabilities → What most people got wrong about DeepSeek's breakthrough, but why China's AI talent still matters → Huawei's surprising transformation from telecom giant to potential AI powerhouse → The critical role India and Southeast Asia may play in chip manufacturing → How the Trump administration's policies will impact the technological battle → Why China will likely achieve semiconductor self-sufficiency in mainstream chips within five years → Barriers to rebuilding a domestic chip industry in the US → The massive infrastructure investments being made in AI computing power → The implications of Stargate …And much more! Books 📕 Chip War: The Fight for the World's Most Critical Technology: 📕Isaac Newton: 📕A Brief History of Intelligence: Evolution, AI, and the Five Breakthroughs That Made Our Brains:

Mario Gabriele 🦊

10,255 Aufrufe • vor 1 Jahr

NEWS: Figure has unveiling its 3rd generation humanoid robot. • Features a completely redesigned sensory suite and hand system. Wireless charging in feet. • Next-generation vision system engineered for high-frequency visuomotor control. Its new camera architecture delivers twice the frame rate, one-quarter the latency, and a 60% wider field of view per camera within a more compact form factor • Soft goods, wireless charging, improved audio system for voice reasoning, and battery safety advancements • "Engineered from the ground-up for high-volume manufacturing. In order to scale, we established a new supply chain and entirely new process for manufacturing humanoid robots at BotQ." • Lower manufacturing cost • Softer, more adaptive fingertips increase surface contact area, enabling more stable grasps across objects of varied shapes and sizes. Each fingertip sensor can detect forces as small as three grams of pressure - sensitive enough to register the weight of a paperclip resting on your finger. • Multi-density foam to protect against pinch points, and is covered in soft textiles rather than hard machined parts. 9% less mass and less volume than Figure 02 • 10 Gbps mmWave data offload capability, allowing the entire fleet to upload terabytes of data • Upgraded audio hardware system for better real time speech-to-speech. Its speaker is twice the size and nearly four times more powerful, while the microphone has been repositioned for improved performance and clarity. • Charging coils in the robot’s feet allow it to simply step onto a wireless stand and charge at 2 kW Figure: "BotQ is Figure’s dedicated manufacturing facility designed to scale robot production. BotQ’s first-generation manufacturing line will initially be capable of producing up to 12,000 humanoid robots per year, with the goal of producing a total of 100,000 robots over the next four years. Instead of relying on contract manufacturers, Figure brought production of its most critical systems in-house to maintain tight control over quality, iteration, and speed."

Sawyer Merritt

140,241 Aufrufe • vor 10 Monaten

Did you buy Kodak when I told you to months ago? There’s Still time… In April, President Trump made a HUGE Announcement Regarding Tariff’s on Pharmaceutical’s And KODAK is one such stock I have heavily studied… read below. - I’ve been watching it since 2020, when President Trump put forth the Defense Production Act, and made an announcement about Kodak producing pharmaceuticals. The goal was to repurpose Kodak’s chemical manufacturing facilities in Rochester, New York. • As of late 2024, Kodak is now independently heavily investing tens of millions into a new lab and manufacturing facility at Eastman Business Park, New York, expected to open late 2025. • Fast forward to April… when Trump said tariffs will target foreign pharmaceutical companies. This positions Kodak to produce APIs and reagents domestically in America, placing them way ahead of the competition by planning this restructuring since 2020, with its facility already nearing completion, unlike competitors who may need years to relocate or build U.S.-based operations. • Tariffs will likely raise costs for foreign-made APIs, making Kodak’s domestic production more competitive and potentially boosting demand… and its stock. • Also, with potential short term drug shortages looming due to tariffs, Kodak’s soon established U.S.-based supply could see emergency demand spikes. • Kodak’s stock historically surged (e.g., 300% in 2020 after the loan news)… There is competition racing back to America after this news, companies investing millions, but KODAK already has a great advantage… it’s a great American based company already established nearing a crucial crossing point. *Disclaimer… this isn’t financial advice. This is my own research for educational purposes. Be wise if you invest. Read This..

MJTruthUltra

19,126 Aufrufe • vor 1 Jahr

SITUATION EXPLAINED: A Chinese state-backed company started mass-producing DUV lithography tools, a step below EUV but still significant. • ASML shares fell as much as 6.5%, their lowest since early June, after The Information reported a Shanghai-based, state-backed company began mass-producing immersion DUV lithography machines • The company is Shanghai Yuliangsheng, with ties to Huawei and the SiCarrier equipment group, it brought together immersion DUV development teams from other Chinese firms • Plans call for 5 tools this year and 20 next year, with confirmed customers SMIC, CXMT, and Hua Hong Semiconductor • Real caveat: SMIC has actually been trialing this tool since September 2025, and active mass production isn't targeted until 2027 at the earliest • Independent analysis from the AI Futures Project puts commercial-scale Chinese immersion DUV in the mid-2030s, with ASML still holding 98.7% of the immersion lithography market • Chinese chipmakers are currently only allowed to buy ASML's older DUV tools, not its cutting-edge EUV machines • The MATCH Act, moving through Congress, would widen restrictions specifically on immersion DUV equipment • China is separately developing its own domestic EUV machine, but that project remains at the prototype stage and is likely years away from producing working chips • Nikon and Canon are the only other established DUV/lithography vendors outside ASML, alongside SMEE as another Chinese domestic challenger Theo Jaffee: "Someone has to own the bottom of the market. Chinese DUV would be the same thing for ASML. The frontier leading-edge chip fabs will still be using ASML EUV machines, but less leading-edge fabs would use DUV machines, like, for example, it would be really helpful for Huawei."

MTS

16,220 Aufrufe • vor 17 Tagen

The Government of Telangana has entered into a Memorandum of Understanding with JSW UAV Limited, a subsidiary of JSW Defence, to establish a state-of-the-art Unmanned Aerial Systems manufacturing facility in the State. As part of this strategic initiative, #JSW UAV, in collaboration with a leading US-based defence technology company, is set to invest approximately Rs 800 crore in the project. This landmark initiative is expected to generate over 200 high-value jobs, reinforcing Telangana's position as a hub for cutting-edge technology and defence innovation. This MoU marks a significant milestone in Telangana's journey to becoming a preferred destination for advanced technology investments and reflects the State's dedication to driving innovation and creating employment opportunities. Hon'ble Chief Minister Shri Revanth Reddy garu, after the signing of the MoU, while welcoming the investment to Telangana, said, "#Hyderabad, and #Telangana, was long positioned in the global market as software and pharma leader. With clear vision and diligent efforts, we are not establishing Telangana as a clear leader for investments in manufacturing across sectors, ranging from semiconductors, defence, private space to FMCG. My government's efforts to position Telangana as a preferred option for the world for its China Plus One strategy has started bearing results." Industries minister shri Minister Sridhar Babu garu said, "We are delighted with this agreement. It will clearly set a trend in the sector. We will strive hard to ensure our state becomes India‘s biggest manufacturing hubs." JSW Group #wef25 #Davos2025 #InvestInTelangana #TelanganaRising

Telangana CMO

37,649 Aufrufe • vor 1 Jahr