U.S. chipmakers face deep labor shortage, Samsung, Micron sound alarm


‘Concerned:’ Samsung, TSMC, Micron and other chipmakers face U.S. worker shortage

As AI companies propose slowing down model development on concerns about the technology’s rapid and scary advancements, another issue on the hardware side of the industry might be forcing them to decelerate.

Manpower is at the heart of the world’s ability to make enough chips to power artificial intelligence, and the U.S. now faces a shortage of up to 157,000 semiconductor workers by 2030, according to a new report from McKinsey and the SEMI Foundation.

“I’m concerned,” said Jon Taylor, executive vice president of Samsung’s semiconductor division in Austin, Texas, in an interview with CNBC. “We just don’t see that there’s enough technical people in the pipeline.”

Only 3% of U.S. graduates who take engineering roles enter the semiconductor industry each year, according to McKinsey, and 73% of chip employers report significant difficulty in filling engineering roles.

Engineers and skilled technicians are crucial as the U.S. undergoes its fastest chip manufacturing buildout in history, in a race to make enough memory and logic processors to power AI. Taiwan Semiconductor Manufacturing Company and Intel are now pumping out advanced logic chips from new fabrication plants, or fabs, in Arizona.

Samsung will be the next chipmaker to manufacture advanced logic in the U.S., when the South Korean company starts production at the first of two new fabs in Taylor, Texas, later this year. It’s part of a $35 billion buildout in the state, and Samsung said the two new fabs are expected to create about 3,500 jobs.

“We’re hiring engineers, we’re hiring technicians, we’re hiring people in supply chain,” Taylor said. “Everybody wants and needs the same thing, and it’s a bit of a race against time right now as everything is starting to come online.”

While America is the birthplace of semiconductors and leads the world in chip design, almost all advanced chips have been manufactured in Asia for decades. That’s where the talent pipelines are strongest, and it’s why Idaho-based Micron has held expedited hiring sprees at technical universities in South Korea, interviewing students and offering them permanent positions at its Asia fabs, all in a day. 

It’s a potential bright spot for U.S. college students, who have seen a decline in software engineering roles and increased uncertainty in the job market due to AI. Schools like Purdue University and Arizona State University are spending millions of dollars to launch programs that prepare U.S. students for chip roles.

“We’re already the largest producer of college graduates for the Intel Corporation globally, and so we’re trying to now become that for TSMC,” Michael Crow, president of ASU, told CNBC.

Samsung’s advanced logic chip fab in Taylor, Texas, shown in July, 2026.

Samsung

Still, U.S chip jobs often pay far less than in countries like South Korea, where chip workers are highly sought after in the marriage market. The roles there often come with grueling 12-hour shifts, but when thousands of workers threatened strikes at Micron, Samsung and SK Hynix, bonuses ballooned upwards of $500,000.

Compare that to salaries in the U.S. that typically pay between $127,000 and $187,000, with senior positions in the industry exceeding $238,000, according to the SEMI Foundation. 

“As people continue to evolve their skills, they’re going to have to pay higher salaries,” Crow said. “Particularly as they’re scaling and scaling and scaling and the workforce demands are so significant.”

Staffing U.S. memory fabs

Exclusive look inside SK Hynix's $720 billion AI memory expansion

Creating the pipeline

Although skilled chip workers are concentrated overseas, bringing over foreign talent on H-1B visas has become a costly and cumbersome process. The long-term plan, the chipmakers told CNBC, is to create the talent pipeline domestically. 

Universities in Taiwan and South Korea have graduate schools or departments devoted to semiconductor training. While not widespread yet, hands-on training programs are popping up at some U.S. schools, with big investments from chip companies.

Purdue launched a series of semiconductor degrees in 2022, with some 2,500 students enrolled in chip-related courses each semester. Purdue’s Birck Nanotechnology Center trains students on chip equipment similar to what they could work on at SK Hynix’s nearby fab.

“If you want young people specifically prepared in semiconductors, this is the one place you can come right now for people who have actually majored in and achieved a degree in that,” Mitch Daniels, Purdue’s interim president and former governor of Indiana, told CNBC. “And our job fairs are always overbooked.”

Purdue University’s Birck Nanotechnology center in West Lafayette, Indiana, trains students on advanced chip equipment to help prepare them for new semiconductor degrees, shown on August 26, 2026.

Alex Bedoya

ASU, meanwhile, converted an old Motorola fab into the MacroTechnology Works cleanroom, with a new center, thanks to $200 million from chip equipment maker Applied Materials. TSMC also runs a technician program at ASU, guaranteeing an interview upon completion.

TSMC told CNBC it visited about a dozen universities last year, and plans to offer advanced jobs to many of its hundreds of interns, to help fill some 6,000 roles at its first three fabs in Arizona.

Intel launched its apprenticeship program in Arizona in 2024 and committed $50 million in scholarships at more than 80 Ohio institutions near its fab under construction there. Intel also has a broader semiconductor education pathways program introduced in 2025 that starts at the K-12 level.

Samsung is getting ahead of the shortage with a workforce development program that kicked off in 2023, providing millions of dollars in donations to the University of Texas, Texas A&M and the University of Illinois, with new chip engineering programs at each. It also donated $1 million to help launch new technical labs at Taylor High School last year, and hosts more than 100 interns annually.

Federal support also helps. More than 80 community colleges have launched or expanded semiconductor programs since the CHIPS Act passed in 2022, due in part to a $200 million federal fund for building the domestic chip workforce. 

“If we don’t move more quickly and aggressively than we have before, we will lose,” Daniels said. “And we can’t afford to have that on our record.”

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