Company that makes equipment for computer chip manufacturing commits $1.5B in Tualatin, breaks ground on new lab



FILE - The inside of a computer is seen on Feb 23, 2019, in Jersey City, N.J. A global computer chip shortage has made it harder for consumers to get their hands on cars, computers and other modern-day necessities, so Congress is looking to boost chip manufacturing and research in the United States with billions of dollars from the federal government.

FILE – The inside of a computer is seen on Feb 23, 2019, in Jersey City, N.J. A global computer chip shortage has made it harder for consumers to get their hands on cars, computers and other modern-day necessities, so Congress is looking to boost chip manufacturing and research in the United States with billions of dollars from the federal government.

Jenny Kane / AP

A company vital in designing and building equipment for the world’s largest computer chip firms broke ground on a $620 million research and development lab in Tualatin Wednesday.

Overall, Lam Research will spend $1.5 billion on major research and development laboratories in Washington County over the next decade and half.

It’s part of a global expansion of the semiconductor equipment firm’s network of labs. Lam Research plans to pump $3 billion into operations in the U.S., as well as in Asia and Europe.

“In the AI era, the pace of innovation is relentless, requiring chips with new architectures, different materials, and complex features engineered with nanoscale precision,” Lam Research CEO Tim Archer said in a written statement earlier this month about the $3 billion global investment. “Our ability to increase velocity throughout the research and development process has become a decisive advantage.”

Wednesday’s groundbreaking comes at a precarious time for the state’s manufacturing sector, which includes semiconductor manufacturing. The sector has been shedding jobs as companies consolidate. Oregon has lost nearly 8,500 manufacturing jobs over the last year, according to state employment data.

Those losses include nearly 2,500 layoffs last summer at major chipmaker Intel, the state’s largest private employer. Lam Research designs and builds tools for Intel and other major semiconductor companies, like Micron.

Lam Research's groundbreaking ceremony on its new research & development lab in Tualatin, Oregon. The facility is expected to create 400 jobs at the semiconductor equipment company.

Lam Research’s groundbreaking ceremony on its new research & development lab in Tualatin, Oregon. The facility is expected to create 400 jobs at the semiconductor equipment company.

Kyra Buckley / OPB

The job losses come despite soaring demand for computer chips due to advancement in the use of artificial intelligence. Intel, which acts as an anchor company for Oregon’s industry that’s mainly concentrated in Washington County, is playing catch-up to other companies when it comes to AI.

But recent partnerships now have Intel providing chips for data centers, needed to keep the AI industry running. Experts say that won’t necessarily translate into big jobs gains for Oregon’s technology manufacturing sector. However, it does raise confidence for equipment companies like Lam Research that their products will be in demand for the foreseeable future.

Lam currently employs around 3,000 people, mostly at its campus in Tualatin. Once constructed, the new 120,000 square foot facility is expected to add another 400 jobs to the company’s headcount. Under a multi-year deal with Washington County, the new building qualifies for property tax breaks and Lam will pay an estimated $111 million in taxes and fees over the life of the agreement.

“Our new advanced Oregon lab is expected to deepen our specialized capabilities and add tens of thousands of square feet of valuable cleanroom space,” Sesha Varadarajan, Lam’s chief operating officer, said in written statement about Wednesday’s groundbreaking, “enabling even closer collaboration with customers while strengthening the expertise and reach of our global lab network.”

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US Manufacturing Boom Favors 167 High-Conviction Hubs


  • US manufacturing construction spending may reach $1 trillion from 2026–2030, with growth concentrated in select industrial submarkets.
  • Advanced manufacturing and ‘New Companies Doing New Things’ are driving leasing demand in regional hubs such as Dallas–Fort Worth, Houston, Phoenix, Atlanta, Chicago, and San Jose.
  • A Hines study identified just 167 ‘high-conviction’ submarkets out of 1,500 nationwide as best positioned to convert manufacturing investment into sustained rent and demand growth.

Key Takeaways

Rise of the Advanced Manufacturing Ecosystem

The US manufacturing surge is sharpening investor focus on a small group of emerging and established industrial hubs. According to Hines Research, manufacturing construction spending could reach roughly $1 trillion between 2026 and 2030. Cyclical rebounds will contribute, alongside a structural shift toward advanced manufacturing.

Hines analyzed about 1,500 submarkets and found that outperformance remains highly concentrated. Winning markets have deep industrial ecosystems or supply constraints that strengthen tenant demand and rent growth. Wholesale reshoring remains limited, but federal incentives and supply chain resilience continue driving capital into US manufacturing. These forces reinforce regional clusters and attract industrial occupiers seeking capacity for next-generation production.

US manufacturing construction spending is projected to reach a rolling five-year total of roughly $1 trillion from 2026 through 2030.

The Details

Hines Research applied its proprietary Manufacturing Market Growth Score (MMGS) across submarkets in 75 US metros. The score weighs manufacturing stock at 48% and five-year manufacturing employment growth at 47%. Current manufacturing workforce size accounts for the remaining 5%. Only 167 submarkets, or roughly 12%, scored above 70, highlighting concentrated investment opportunities.

Dallas–Fort Worth leads as a logistics and defense hub, while Houston stands out in energy and petrochemicals. Phoenix and San Jose excel in semiconductors. Data centers also attract logistics companies and advanced component providers, despite falling outside traditional manufacturing. Meanwhile, battery hubs stretch from the Great Lakes through Tennessee and the Southeast. Many overlap with Opportunity Zones, adding another consideration for tax-sensitive capital.

US map showing geographic clusters for data centers, defense, semiconductor, and battery industries across major manufacturing markets.

Concentration, Not Uniformity, Defines Growth

Despite the $1 trillion forecast, Hines found that capital and tenant demand remain tightly clustered. Of 167 high-conviction submarkets, 162 have significant defense and data center footprints. Those sectors now function as industrial table stakes rather than meaningful differentiators. Semiconductor and battery clusters remain more selective. Battery activity concentrates across 54 submarkets that also qualify as Opportunity Zones.

Spillover activity is emerging along the Great Lakes-Tennessee corridor and in upstate New York, Tulsa, and New Mexico. These markets offer lower-cost alternatives for manufacturers seeking available land and power outside highly competitive metros. Recent shifts in Austin battery facility plans also show how quickly manufacturers can adjust investment and production strategies. Data centers follow different site-selection patterns, favoring power-rich markets like West Texas and Iowa. That trend creates parallel industrial demand across regions with limited historical manufacturing density.

US map showing emerging advanced manufacturing clusters, with battery-related employment concentrated across the Southeast, Midwest, and selected Western markets.

Why It Matters

Investors must determine which markets can translate manufacturing investment into durable rent and demand growth. Hines analyzed Census Bureau and CoStar data through 2025 to measure historical performance. Top-scoring submarkets recorded stronger five-year rent growth and occupied SF gains than lower-scoring peers. The demand gap proved especially significant. Highest-scoring markets gained occupied space, while the bottom quartile recorded net declines.

Institutional capital can gain more by targeting established ecosystems than broadly chasing the manufacturing boom. Scale, infrastructure, and supply chain depth create a virtuous cycle that supports additional investment. Supply constraints can amplify rent growth in tight clusters. New industrial nodes offer potential upside but carry greater oversupply risk. Opportunity Zones can further improve risk-adjusted returns for tax-sensitive investors near battery and semiconductor clusters.

The advanced manufacturing buildout also changes CRE demand fundamentals. Companies and government entities increasingly prioritize supply chain resilience alongside operating efficiency. Large projects can create self-reinforcing hubs of investment, skilled labor, and supplier networks. This agglomeration effect expands demand beyond manufacturers to logistics, infrastructure, and component businesses. In turn, those supporting industries strengthen the competitive advantages of leading submarkets.

What’s Next

Federal policy and private capital could sustain the manufacturing expansion and intensify investor focus on Hines’ 167 high-conviction submarkets. Developers will likely pursue emerging corridors with affordable land and sufficient grid capacity. Areas near new data centers and battery plants could attract particularly strong interest.

However, investors must carefully manage exposure in tertiary markets. Rapid construction could outpace tenant absorption and weaken rent growth. The strongest markets will combine supply constraints, established industrial ecosystems, and infrastructure capable of supporting additional investment. Those fundamentals offer the clearest path for converting the $1 trillion manufacturing boom into durable CRE returns.

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