Intel has announced plans to expand its semiconductor technology development facilities in Hillsboro, Oregon, with support from the state, city, and county, and potential assistance from the U.S. CHIPS Act, creating thousands of jobs and solidifying Intel's commitment to the Silicon Forest.
- Intel's investment in Oregon will create several thousand new permanent and construction jobs.
- Intel's presence in Oregon is vital to the state's economy.
- Intel is actively working to reduce its environmental impact.
Intel has launched its plans to expand its semiconductor technology development facilities at the Gordon Moore Park in Hillsboro, Oregon. This campus serves as Intel’s innovation hub for semiconductor research, technology development, and manufacturing in the United States. The project is made possible with support from the state of Oregon, city of Hillsboro, and Washington County, and in anticipation of assistance from the U.S. CHIPS and Science Act.
Dr. Ann Kelleher, Intel’s executive vice president and general manager of the Technology Development Group, expressed Intel’s commitment to driving innovation and advancing technology in Oregon. She stated that this investment solidifies their dedication to the Silicon Forest and aims to rebalance the global semiconductor supply chain.
These investments in Intel’s Oregon operations play a crucial role in the company’s technology leadership objectives. They are part of Intel’s plan to invest over $100 billion in the U.S. over a five-year period, as announced by CEO Pat Gelsinger at September’s Intel Innovation event.
The plans include upgrading the existing technology development facilities at the Gordon Moore Park campus to incorporate the latest process technology and tools, positioning the campus at the forefront of innovation. Additionally, Intel plans to introduce the world’s first high-numerical aperture extreme ultraviolet (High-NA EUV) lithography tool this year. Furthermore, Intel will initiate the application process for permits to potentially expand its R&D and manufacturing capacity with a multibillion-dollar investment.
If these investments receive support from the U.S. CHIPS Act, they will create several thousand new permanent and construction jobs, ensuring that Oregon remains a key hub for U.S. semiconductor R&D and technology development for years to come. Oregon Governor Tina Kotek joined Intel executives in Hillsboro to celebrate this major commitment and show support for Intel’s vision of driving future innovation, technology development, and manufacturing capabilities in the state.
Intel’s decision to concentrate its R&D and technology development in the U.S. sets it apart from other leading-edge semiconductor manufacturers. Oregon plays a pivotal role in Intel’s strategy to regain process technology leadership by 2025 and fulfill its IDM 2.0 strategy. The support from the state of Oregon, city of Hillsboro, and Washington County has been instrumental in making this possible. Additionally, incentives from the U.S. CHIPS Act can accelerate advancements at the site and ensure that the U.S. maintains its leading-edge semiconductor technology capabilities in the long run.
Intel remains committed to delivering five nodes within four years and regaining process technology leadership by 2025. The company has made significant progress on its roadmap, recently commencing high-volume manufacturing of Intel 4 technology in Ireland.
Intel’s facilities in Hillsboro, Oregon, form the core of the most important semiconductor innovation cluster in the United States. The company values strong partnerships with the city, county, state, construction trades, educational institutions, and local nonprofits. U.S. Commerce Secretary Gina Raimondo praised the collaboration between Intel, the community, and the government, stating that she was impressed by their collective efforts to fuel the semiconductor industry in Oregon.
Oregon is home to Intel’s Technology Development Group, which focuses on envisioning new process technologies a decade or more into the future. Simultaneously, Intel is actively working to reduce its environmental impact by identifying greener chemistries and treatment strategies, aiming to achieve net-zero greenhouse gas emissions across its global operations by 2040.
Intel is also dedicated to increasing access to opportunities, empowering the next generation of innovators, and expanding its talent pool. Through collaborations with universities, community colleges, and local school districts, Intel is investing in programs across the state that emphasize STEAM education and accessible workforce pathways.
Intel’s presence in Oregon is vital to the state’s economy. Hillsboro in Washington County serves as the epicenter of Intel’s research and technology development, accounting for 4% of statewide employment. The city and county have become the Focal point of Oregon’s growing technology industry, supported by a network of local suppliers and contractors. With over 22,000 employees, Intel’s Oregon site is its largest, and the company spent more than $4 billion with over 500 suppliers across the state last year. Intel’s economic impact in Oregon extends to more than 105,000 indirect jobs, $10 billion in annual labor income, and $19.3 billion in annual GDP.
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Intel Corporation, a global technology leader, is for its semiconductor innovations that power computing and communication devices worldwide. As a pioneer in microprocessor technology, Intel has left an indelible mark on the evolution of computing with its processors that drive everything from PCs to data centers and beyond. With a history of advancements, Intel's relentless pursuit of innovation continues to shape the digital landscape, offering solutions that empower businesses and individuals to achieve new levels of productivity and connectivity.Latest Articles about Intel
Technology Explained
EUV: Extreme Ultraviolet Lithography (EUV or EUVL) is an advanced semiconductor manufacturing technique that employs extremely short wavelengths of light in the extreme ultraviolet spectrum to create intricate patterns on silicon wafers. Utilizing a wavelength around 13.5 nanometers, significantly shorter than traditional lithography methods, EUVL enables the production of smaller and more densely packed integrated circuits, enhancing the performance and efficiency of modern microprocessors and memory chips.
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IDM 2.0: Intel IDM 2.0 is Intel's integrated device manufacturing (IDM) strategy introduced at 2021. It is a major evolution of the company's traditional IDM model, which has been in place since its founding in 1968. Under the IDM 2.0 strategy, Intel will continue to design and manufacture its own chips, but it will also become a major provider of foundry services to other companies. This will allow Intel to tap into the growing demand for semiconductor manufacturing capacity, while also generating new revenue streams.
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