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Intel’s Decline: How It Lost Its Chip Manufacturing Crown

📅 Updated 30 September 2026🧵 1968 to 2026⚙️ 10nm to 18A-P
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In short

Why Intel lost its chip manufacturing lead to TSMC: 10nm and 7nm delays, Apple silicon, IDM 2.0, 18A in production and 2026 Apple and Tesla deals.

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Intel didn’t lose its manufacturing crown because someone suddenly built a better chip. It lost it because the factory stopped being its unbeatable advantage. For decades Intel invented the processor, invented the process, built the chip, shrank the process and repeated. Then 10nm ran three years late, 7nm slipped, and tick-tock broke down, while TSMC let hundreds of designers share one specialist factory. AMD, Apple and NVIDIA built on that factory. By 2024 Intel itself was buying its best laptop silicon from TSMC.

Intel did not surrender. In 2021 it launched IDM 2.0. Intel 18A entered production in 2025 and 18A-P entered risk production in June 2026. So this isn’t a story about Intel dying. It is the story of how the company that defined semiconductor manufacturing lost the crown, and why it is now spending tens of billions to win it back. The question is no longer “can Intel make an advanced chip?” It is: can Intel make millions of them, at high yield and competitive cost, and convince other companies to trust its factories with their future?

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💡 Short Answer

Intel lost its chip manufacturing lead between 2016 and 2020, when its 10nm process ran about three years late and 7nm slipped again, while TSMC shipped 7nm in 2018 and 5nm in 2020 for customers including AMD and Apple. Intel’s 2021 IDM 2.0 plan has since put 18A into production, but as of September 2026 its foundry still earns little outside revenue and loses about US$2 billion a quarter.

⚡ Intel Manufacturing: Quick Facts
Founded18 July 1968, Noyce and Moore
Lead lost2018, TSMC 7nm in volume
Comeback planIDM 2.0, 23 March 2021
Newest node18A in volume; 18A-P risk production Jun 2026
Foundry, Q2 2026US$5.8B revenue, US$2.1B loss
CEOLip-Bu Tan, since March 2025
⚡ Quick Answers — AI Overview Ready

Intel’s Manufacturing Decline: Key Questions

Why did Intel fall behind TSMC?
Its 10nm process was about three years late and 7nm slipped again, while TSMC kept to a roughly two-year cadence. TSMC’s foundry model spread each new node’s huge cost over hundreds of customers; Intel’s fabs mostly served Intel.
When did Intel lose the lead?
Around 2018, when TSMC began volume 7nm production while Intel’s 10nm was barely shipping. By July 2020 Intel said its 7nm was a year behind, and TSMC was making 5nm chips for Apple.
Is Intel catching up?
On technology, largely: 18A has been in production at Fab 52 in Arizona since late 2025, and 18A-P entered risk production in June 2026. On business, not yet: external foundry revenue was US$174 million in Q1 2026.
Who are Intel Foundry’s customers?
Mostly Intel itself. Outside, Microsoft has committed to 18A, Tesla said in April 2026 it plans to use 14A, and Apple reached a preliminary agreement reported in May 2026. Intel expects more 14A decisions in late 2026.
📚 Key Takeaways

Intel’s Lost Crown in Ten Points

  • The formula: for 40 years Intel designed and built its own chips, a new process roughly every two years.
  • The rival model: TSMC, founded in 1987, made chips for everyone and designed none of its own.
  • The first crack: 14nm arrived late in 2014 and tick-tock ended in 2016.
  • The big miss: 10nm reached volume only in 2019, about three years late.
  • The handover: TSMC shipped 7nm in 2018 and 5nm in 2020; AMD and Apple built on it.
  • The second miss: Intel’s 7nm slipped again in July 2020.
  • The reset: IDM 2.0 in 2021: Intel fabs, outside foundries and a foundry business for others.
  • The cost: a US$7.0 billion foundry loss in 2023, a US$18.8 billion net loss in 2024 and Gelsinger’s exit.
  • The rescue money: the US government, SoftBank, NVIDIA and a US$20 billion share sale.
  • The test now: 18A works; the question is yield, outside customers and profit.

Two Ways to Make a Chip: IDM vs Foundry

The business model mattered as much as the transistors.

Intel: the integrated device manufacturer

Design → process technology → fab → packaging → chip, all inside one company. Designers and process engineers could tune the chip and the factory together. The catch: Intel’s fabs had essentially one customer, Intel, so every new node had to be paid for by Intel’s own products.

TSMC: the pure-play foundry

Chip designer → TSMC → wafer → packaging → product. Qualcomm, NVIDIA, AMD and Apple design; TSMC manufactures. Every customer helps fill the next US$20 billion fab, and TSMC learns from far more wafers than any single chipmaker. In 2025, 74% of its wafer revenue came from 7nm and more advanced.

5nm 36%3nm 24%7nm 14%16nm and older 26%
Share of TSMC’s 2025 wafer revenue by node. 74% came from 7nm and more advanced, all nodes Intel could not match in time. 2nm entered volume production in the fourth quarter of 2025. Source: TSMC 4Q25 management report.

The Full Intel Manufacturing Timeline, 1968 to 2026

Newest first. Entries tagged 2026 cover this year.

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High-NA milestone, shaky shares2026

1M wafers on High-NAshares US$116.03 on 28 Sep

On 8 September Intel and ASML say more than one million wafers have been processed on High-NA EUV tools, which are used for select layers of Panther Lake on 18A. On 28 September Intel shares fall 5.7% to US$116.03 in a broad chip-stock sell-off. At a Deutsche Bank conference on 26 August, CFO David Zinsner said foundry breakeven, targeted internally for the end of 2027, might not come until the end of 2028.

US$20 billion share sale2026

Priced at US$95 on 10 Augabout US$22.6B with extra shares

Intel upsizes a share offering from US$15 billion to US$20 billion, selling 210.5 million new shares at US$95. With the underwriters’ extra shares the raise reaches about US$22.6 billion. Intel says the money is for general purposes including capital spending. The company that once funded every fab from its own profits is now raising equity to pay for them.

23 Jul
2026

Revenue up 25%, foundry still loss-making2026

Q2 revenue US$16.1Bfoundry loss US$2.1BXeon 6+ on 18A

Intel reports second-quarter revenue of US$16.1 billion, up 25%, its fastest growth in years, driven by data-centre demand (US$6.3 billion, up 59%). Intel Foundry revenue is US$5.8 billion with an operating loss of about US$2.1 billion. Intel launches Xeon 6+, its first server processor on 18A, and raises its 2026 capital spending plan.

The GAAP net loss for the quarter was US$11.0 billion (US$2.16 a share) even as non-GAAP earnings were US$0.42 a share.
13 Jul
2026

EUR 5 billion for Ireland2026

LeixlipIntel 3 capacity for Xeon

Intel announces a EUR 5 billion (about US$5.7 billion) investment at Leixlip to expand production on Intel 3, used for Xeon 6 and the next Xeon, with most of the spending by the end of 2027. It is the most advanced chip production in Europe, after Intel cancelled its planned Magdeburg and Poland sites in 2025.

Intel's Leixlip campus in County Kildare, Ireland, in 2021
Intel’s Leixlip campus in County Kildare, Ireland, in 2021. In July 2026 Intel announced a EUR 5 billion expansion there on Intel 3. Leimanbhradain, CC BY-SA 4.0, via Wikimedia Commons.
16 Jun
2026

18A-P enters risk production2026

9% more performance or 18% less power vs 18A

Intel says 18A-P, the first performance version of 18A, has entered risk production on the schedule promised to customers a year earlier. Intel measures about 9% more performance at the same power or 18% lower power at the same speed. Risk production means early customer designs run under near-production conditions; high-volume output comes later.

8 May
2026

Apple returns, as a foundry customer?2026

Preliminary agreement reported by the WSJ

The Wall Street Journal reports that Apple and Intel have reached a preliminary agreement for Intel to manufacture some Apple chips, after more than a year of talks in which the US government played a role. Intel shares jump about 14%. Which chips, and when, are not disclosed.

Some later reports named specific Apple products and nodes. Neither company has confirmed them, so this timeline does not.

Tesla picks 14A; foundry revenue still mostly internal2026

Q1 foundry US$5.4Bexternal US$174Mloss US$2.4B

On 22 April Elon Musk says Tesla plans to use Intel’s 14A process for chips at its planned Terafab project in Austin, the first big public commitment to 14A. A day later Intel reports first-quarter revenue of US$13.6 billion; Intel Foundry had US$5.4 billion of revenue, of which just US$174 million was from outside customers, and an operating loss of US$2.4 billion.

Panther Lake launches

Core Ultra Series 3first 18A PC chip

Intel launches Panther Lake as Core Ultra Series 3 at CES. Its compute tile is built on 18A in Arizona, bringing Intel’s leading PC chip back into its own fab after the 2024 TSMC generation. Lip-Bu Tan says Intel is now going “big time” into 14A after earlier hints it might abandon the node.

9 Oct
2025

Fab 52 runs 18A

Fifth high-volume fab at Ocotillo, Chandler

Intel says Fab 52, its fifth high-volume fab at the Ocotillo campus in Chandler, Arizona, is fully operational and that Panther Lake is in production on 18A, with RibbonFET transistors and PowerVia backside power. Intel says 18A offers up to 15% better performance per watt and 30% more density than Intel 3.

Washington, SoftBank and NVIDIA buy in

US govt 9.9%SoftBank US$2BNVIDIA US$5B

SoftBank agrees to invest US$2 billion (18 August). On 22 August the US government agrees to take a 9.9% stake for about US$8.9 billion, converting unpaid CHIPS Act grants into shares at US$20.47, weeks after President Trump had called for Tan to resign. On 18 September NVIDIA agrees to invest US$5 billion and co-develop products with Intel.

Intel CEO Lip-Bu Tan at the US Commerce Department on 22 August 2025, the day the government agreed to take a 9.9% stake in Intel
Intel CEO Lip-Bu Tan at the US Commerce Department on 22 August 2025, the day the government agreed to take a 9.9% stake in Intel. US Department of Commerce, public domain, via Wikimedia Commons.

No customer, no 14A

Germany and Poland cancelledOhio slowed

With second-quarter results, Intel cancels its planned fabs in Magdeburg, Germany and Poland, slows construction in Ohio, and warns investors it may pause or stop developing 14A if it cannot win a significant outside customer. It is the clearest admission yet that Intel cannot fund leading-edge fabs for itself alone.

18 Mar
2025

Lip-Bu Tan takes over

Former Cadence CEO

Lip-Bu Tan, the former Cadence Design Systems chief and a veteran chip investor, becomes chief executive. He promises to make Intel an engineering-led company again, cuts management layers and later sells 51% of Altera to Silver Lake.

Gelsinger out

Announced 2 Decinterim co-CEOs Zinsner and Holthaus

Intel says Pat Gelsinger has retired as CEO and left the board, effective 1 December. Reports say the board had lost patience with the pace of the turnaround. A week earlier, on 26 November, the Commerce Department finalised a CHIPS Act award of up to US$7.86 billion. Intel ends 2024 with a net loss of about US$18.8 billion.

Crisis year: layoffs, 20A cancelled, TSMC inside

15%+ job cutsdividend suspended20A dropped 4 Sep

On 1 August Intel announces cuts of more than 15% of its workforce and suspends its dividend; the shares fall 26% the next day. On 4 September it cancels 20A and moves engineering to 18A. Its new Lunar Lake and Arrow Lake PC chips ship with their main compute tiles made on TSMC 3nm. On 16 September Intel Foundry becomes a separate subsidiary.

Intel packaged Lunar Lake and Arrow Lake with its own Foveros 3D technology, so these were still Intel-assembled products with TSMC-made compute tiles.

Intel Foundry opens its books

Direct Connect 21 Feb2023 foundry loss US$7.0B

At its first Intel Foundry Direct Connect event on 21 February, Intel names Microsoft as an 18A customer and adds 14A to its roadmap. On 2 April, reporting manufacturing as a separate segment for the first time, it discloses an Intel Foundry operating loss of US$7.0 billion on US$18.9 billion of revenue in 2023.

Internal foundry model, Tower collapse, first EUV chip

Model 21 JunTower ended 16 AugMeteor Lake 14 Dec

In June Intel says manufacturing will run as an internal foundry with its own profit and loss, charging Intel’s product groups market prices. In August it ends its US$5.4 billion bid for Tower Semiconductor after China’s regulator failed to approve it, paying a US$353 million termination fee. On 14 December it launches Meteor Lake on Intel 4, its first process using EUV lithography, several years after TSMC.

26 Jul
2021

Nodes renamed: five in four years

Intel 7, 4, 3, 20A, 18A

Intel renames its processes to line up with the industry’s labels: enhanced 10nm becomes Intel 7, the old 7nm becomes Intel 4, followed by Intel 3, 20A and 18A. The goal, later called “five nodes in four years”, is to regain process leadership by 2025.

Some summaries date the renaming to 2022. It was announced at the Intel Accelerated event on 26 July 2021.
23 Mar
2021

IDM 2.0

US$20B for two Arizona fabsIntel Foundry Services

Five weeks after returning as CEO on 15 February, Pat Gelsinger announces IDM 2.0: keep manufacturing in-house, use outside foundries where it makes sense, and sell manufacturing to others through a new Intel Foundry Services. Intel commits about US$20 billion to two new fabs at Ocotillo, Arizona, and says it will work with IBM on research.

Pat Gelsinger in 2017, while chief executive of VMware
Pat Gelsinger in 2017, while chief executive of VMware. He returned to Intel as CEO in February 2021 and launched IDM 2.0. Web Summit, CC BY 2.5, via Wikimedia Commons.

Apple leaves Intel

M1 Macs releasedannounced at WWDC 22 Jun

Apple ships the first M1 Macs, built on TSMC 5nm, five months after announcing the move away from Intel. The M1 MacBook Air outperforms many Intel laptops while running cooler and longer on battery. Fifteen years earlier, in 2005, Apple had moved the Mac to Intel.

23 Jul
2020

7nm slips too

About 12 months behindshares down 16%

Intel says its 7nm process is about 12 months behind its internal plan because of a defect problem and that it may use outside foundries for some chips. Intel stock falls about 16% the next day. TSMC is already making 5nm chips for Apple’s next iPhone. Chief engineering officer Murthy Renduchintala leaves days later.

10nm finally ships in volume; AMD goes chiplet

Ice Lake Aug 2019Zen 2 on TSMC 7nm

Intel ships Ice Lake, its first high-volume 10nm processors, about three years after the original 10nm plan. AMD launches Zen 2 desktop and server chips that combine small TSMC 7nm CPU chiplets with a separate input-output die. In July Intel sells most of its smartphone modem business to Apple for about US$1 billion.

TSMC takes the lead

TSMC 7nm in volumeGlobalFoundries quits 7nm

TSMC begins volume production of 7nm. Intel’s only 10nm chip, Cannon Lake, ships in tiny numbers with its graphics disabled. In August GlobalFoundries, which inherited AMD’s fabs, abandons 7nm, pushing AMD fully onto TSMC. For the first time in decades, the most advanced logic process belongs to someone other than Intel.

Tick-tock ends; Intel quits phones

Process, architecture, optimisationmobile SoCs cancelled

Intel’s annual report replaces tick-tock with a three-step process, architecture, optimisation cycle, confirming each node will last longer. In April Intel cancels its Broxton and SoFIA smartphone chips, effectively leaving the phone processor market that TSMC’s customers dominated.

14nm arrives late

Broadwellfirst delays in the cadence

Intel’s first 14nm chips, Broadwell, ship in late 2014 after yield problems pushed them back from 2013. 14nm would end up powering Intel’s main chips until 2020 and beyond, refreshed again and again with “+” versions.

2005–07

The peak, and the phone Intel passed on

Apple Macs to IntelXScale soldhigh-k metal gate

On 6 June 2005 Apple announces it will move the Mac to Intel. In 2006 Intel sells its XScale mobile chip unit to Marvell, and, by Paul Otellini’s later account, declines to make a chip for the first iPhone because the price was too low. In 2007 Intel formalises tick-tock and ships 45nm chips with high-k metal gates, a lead rivals took years to match.

Pentium and Intel Inside

Launched 22 Marbrand campaign from 1991

The Pentium processor launches, backed by the Intel Inside campaign that began in 1991 and made a hidden component into a consumer brand. Behind the brand was a manufacturing machine that shipped a new process roughly every two years.

Meanwhile, in Taiwan

TSMC founded 21 Feb

Morris Chang founds TSMC in Hsinchu as a pure-play foundry: a chip factory for other companies that designs no chips of its own. The same year Andy Grove becomes Intel’s CEO, two years after steering Intel out of memory chips and into microprocessors. Few people saw the two events as connected.

The 4004

First commercial microprocessor

Intel releases the 4004, a 4-bit processor designed for a Japanese calculator maker and widely recognised as the first commercially available microprocessor. It is made on a 10-micron process, about 1,000 times larger than today’s node labels.

Intel 4004 chips
Intel 4004 chips. Released in November 1971, it is widely recognised as the first commercially available microprocessor. Photo by John Pilge, public domain, via Wikimedia Commons.
18 Jul
1968

Intel is founded

Robert Noyce and Gordon MooreMountain View

Robert Noyce and Gordon Moore leave Fairchild Semiconductor and found Intel, first to make memory chips. Andy Grove joins on day one as the first employee hired. Moore’s 1965 observation that transistor counts double at a steady pace, later called Moore’s Law, becomes Intel’s manufacturing roadmap.

Andy Grove, Robert Noyce and Gordon Moore at Intel in 1978
Andy Grove, Robert Noyce and Gordon Moore at Intel in 1978. Noyce and Moore founded the company in 1968; Grove was its first hire. Intel Free Press, CC BY-SA 2.0, via Wikimedia Commons.
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The Node Race: Who Shipped First

Not “which number is smaller”, but who reached high-volume manufacturing first.

2014201620182020202220242026Intel14nm10nm / Intel 7Intel 4Intel 318ATSMC16nm10nm7nm5nm3nm2nmTSMC leads from here
The node race by approximate year of volume production. Node names are marketing labels, not measurements: Intel 7 is roughly comparable to TSMC 7nm, and Intel 18A to TSMC’s 2nm generation. What matters is who ships first, at what yield and cost. Sources: Intel and TSMC releases and annual reports. Scroll sideways on small screens.

Node names stopped measuring anything physical around 2010. Intel’s 10nm was denser than TSMC’s 10nm and roughly equal to TSMC 7nm, which is why Intel renamed it Intel 7 in 2021. Intel 18A is not “worse” than TSMC 2nm because 18 is bigger than 2: both are the first gate-all-around generation, and both entered volume production around the end of 2025. What decides the race is performance, power, density, yield, cost, volume and the customer ecosystem, and on the last three TSMC is still far ahead.

🧩 Interactive: Who Builds the Chip?

Pick a processor. See who designed it, who made the silicon and who packaged it.

The brand on the laptop tells you less than it used to.

Designed by
Silicon made by
Packaged by

Intel’s Manufacturing Journey in Six Eras

EraIntel’s positionWhat changed
1968–1985Memory to microprocessors4004 in 1971; exits DRAM in 1985 under Grove
1985–2005Manufacturing powerhouse386, Pentium, Intel Inside; a new process every two years
2006–2014Process leaderTick-tock, high-k metal gate, first FinFETs in 2011
2015–2020The slip14nm stretches, 10nm three years late, 7nm delayed, Apple leaves
2021–2024IDM 2.0 and crisisRenamed nodes, foundry push, record losses, 20A cancelled, Gelsinger out
2025–2026Rebuild under new ownersLip-Bu Tan, US stake, 18A in production, 18A-P risk production, Apple and Tesla talks

Why Did Intel Actually Lose Its Manufacturing Crown?

There wasn’t one failure. Several forces arrived together.

  1. Process complexity. Each node needed new materials, multi-patterning or EUV and years of yield learning. A mistake now cost billions.
  2. 10nm over-reach. Intel aimed for an aggressive density jump without EUV and hit years of yield problems.
  3. 7nm slipped too. The recovery node was itself a year late in 2020.
  4. Late to EUV. Intel’s first EUV chip shipped in December 2023; TSMC used EUV in volume from 2019.
  5. Fab economics. TSMC spreads each fab across hundreds of customers; Intel had to fill fabs with its own products.
  6. Smartphones. Intel passed on the iPhone and quit phone chips in 2016. The biggest new chip market filled TSMC’s fabs instead.
  7. Apple silicon. Apple showed that custom chips on TSMC could beat Intel in laptops.
  8. AMD’s chiplets. Small TSMC-made dies plus an I/O die gave AMD better manufacturing than Intel without owning a fab.
  9. AI. Growth moved to GPUs and accelerators, designed by NVIDIA and others and made at TSMC.
  10. Organisational load. Intel tried to design CPUs, build fabs, start a foundry, use outside foundries, develop packaging and compete in AI all at once.

Intel Foundry by the Numbers

Revenue is growing. Most of it still comes from Intel.

Q1 2026 revenue all customersUS$5.4BQ1 2026 external revenue outside customers onlyUS$0.174BQ1 2026 operating loss US$2.4BQ2 2026 revenue US$5.8BQ2 2026 operating loss US$2.09B
Intel Foundry in 2026, in US$ billions. Almost all revenue is Intel’s own product groups paying for wafers. Sources: Intel Q1 and Q2 2026 earnings releases.

Since 2024 Intel has reported manufacturing as a separate business, Intel Foundry, which charges Intel’s own product groups for wafers. That made the cost of falling behind visible: a US$7.0 billion operating loss in 2023. In the first half of 2026 revenue rose, but only US$174 million of first-quarter revenue came from outside customers. A new fab is paid for years before it is full: spend now, capacity later, customers later, profit later. Meanwhile TSMC is already selling the wafers.

Where the Rebuild Money Came From

The company that once funded every fab from profits now has new shareholders.

SourceAmountWhen
CHIPS Act awardUp to US$7.86BFinalised 26 Nov 2024; later largely converted into equity
SoftBankUS$2BAgreed 18 Aug 2025
US government9.9% for about US$8.9BAgreed 22 Aug 2025, at US$20.47 a share
NVIDIAUS$5BAgreed 18 Sep 2025, at US$23.28 a share
Altera stake sale51% to Silver LakeAnnounced Apr 2025
Public share saleUS$20B, about US$22.6B with extra sharesPriced 10 Aug 2026 at US$95
🎮 Interactive: Can Intel Win Back the Fab?

A leading-edge fab has to pass five tests. Tap each one to see where Intel stands in September 2026.

Winning one or two is not enough. TSMC passes all five every quarter.

The question
The evidence
Status

So has Intel won back the crown?

Look at all five, then tap Reveal.

The Four Battles Intel Must Win

BattleEvidence, Sep 2026Status
Process technology18A in volume; 18A-P in risk production; 14A in developmentLargely won
YieldNot disclosed; Intel says on planUnproven
CustomersExternal revenue US$174M in Q1 2026; Tesla, Microsoft, Apple (preliminary)Early
Scale and profitFoundry loss about US$2B a quarter; breakeven 2027–2028Not yet

The Apple Paradox

Apple moved the Mac to Intel in 2005, left in 2020, and may come back as a foundry customer. If the preliminary agreement reported in May 2026 becomes production orders, the company whose chips best demonstrated the limits of Intel’s old model would become proof that the new model works. That is exactly what IDM 2.0 was designed to achieve, and it is not confirmed yet.

The bigger picture is geopolitical. Most leading-edge logic is made in Taiwan. The US government’s 9.9% stake, the CHIPS Act and the Arizona and Ireland investments treat Intel as the main non-Asian source of advanced chips. See our TSMC history timeline for the other side of the story.

Myths vs Facts

Myth

“Intel stopped innovating”

It introduced high-k metal gates (2007), FinFETs (2011) and backside power (18A). The failure was execution and timing, not ideas.

Myth

“Intel stopped making its own chips”

It still makes most of them, and its 2026 flagship PC chip is built on Intel 18A. It also buys some tiles from TSMC.

Myth

“18A is behind 2nm because 18 is bigger than 2”

Node names are labels. Both are first-generation gate-all-around processes that reached volume around late 2025.

Correction

“Intel renamed its nodes in 2022”

The Intel 7/4/3/20A/18A names were announced on 26 July 2021.

Correction

“Andy Grove co-founded Intel”

Noyce and Moore founded it. Grove joined on day one as the first hire and is often called the third founder.

Nuance

“Apple is back with Intel”

A preliminary agreement was reported in May 2026. Products, nodes and volumes are unconfirmed.

Did You Know?

  • Memory first: Intel began as a memory company and only exited DRAM in 1985.
  • Circle closed: Apple moved the Mac to Intel in 2005 and bought Intel’s phone modem business in 2019.
  • First High-NA: Intel installed the first commercial High-NA EUV system in 2024, ahead of TSMC.
  • Fab 52: Intel’s 18A fab is its fifth high-volume fab at the Ocotillo campus in Chandler, Arizona.
  • Largest shareholder: since August 2025, the US government.

Test Yourself: Intel Manufacturing Quiz

1. What does IDM stand for?
A. Integrated Digital Memory · B. Integrated Device Manufacturer · C. Intelligent Data Machine · D. Independent Design Manufacturer
B. A company that designs and makes its own chips.
2. Who founded Intel in 1968?
A. Noyce and Moore · B. Grove and Otellini · C. Jobs and Wozniak · D. Moore and Chang
A. Andy Grove joined on day one as the first hire.
3. Which Intel process was about three years late?
A. 45nm · B. 22nm · C. 10nm · D. 18A
C. Volume came with Ice Lake in 2019.
4. When did Apple release its first M1 Macs?
A. 2016 · B. 2018 · C. November 2020 · D. 2024
C. Built on TSMC 5nm.
5. When were Intel’s nodes renamed Intel 7, 4, 3, 20A and 18A?
A. July 2021 · B. 2022 · C. 2023 · D. 2024
A. At Intel Accelerated, 26 July 2021.
6. What are RibbonFET and PowerVia?
A. Intel software · B. 18A transistor and backside power technologies · C. Packaging firms · D. AI chips
B. Gate-all-around transistors and backside power delivery.
7. How much external foundry revenue did Intel report in Q1 2026?
A. US$174 million · B. US$1.7 billion · C. US$5.4 billion · D. US$17 billion
A. Out of US$5.4 billion total foundry revenue.
8. What stake did the US government agree to take in Intel in August 2025?
A. 2% · B. 9.9% · C. 25% · D. 51%
B. About US$8.9 billion, mostly converted CHIPS Act grants.

Explore More Timelines

People Also Ask

Is Intel still a chip manufacturer?
Yes. Intel still makes most of its own processors in its own fabs in Arizona, Oregon, Ireland and Israel, and it sells manufacturing to outside companies through Intel Foundry. It also buys some chips and tiles from TSMC.
Why is TSMC better than Intel at manufacturing?
Mainly scale and focus. TSMC makes chips for hundreds of customers, so it can fill new fabs quickly and learn from far more wafers. Intel’s fabs mostly served Intel, and its 10nm and 7nm delays let TSMC take the lead from 2018.
Did Intel use TSMC?
Yes. Intel has long used TSMC for some chips, and in 2024 it moved the main compute parts of its Lunar Lake laptop chips and Arrow Lake desktop chips to TSMC’s 3nm process. Its 2025-2026 Panther Lake chips moved the compute tile back to Intel 18A.
What year did Intel fall behind?
Intel’s 10nm delays began showing in 2015-2016, but most observers say it clearly lost the process lead in 2018, when TSMC began volume 7nm production while Intel’s 10nm was still not in volume.
Can Intel catch up with TSMC?
Intel 18A is in production and 18A-P entered risk production in June 2026, so the technology gap has narrowed. Catching up as a business also needs high yields, big outside customers and profitable fabs. As of September 2026 external foundry revenue was still small and the foundry was losing about US$2 billion a quarter.

Frequently Asked Questions

Why did Intel lose its chip manufacturing lead?
Mainly because its 10nm process ran about three years late and its 7nm process then slipped again, while TSMC shipped 7nm in 2018 and 5nm in 2020. TSMC’s foundry model spread the cost of each new node across hundreds of customers, and AMD, Apple and NVIDIA used those TSMC nodes to build chips that matched or beat Intel’s.
When did Intel lose its process lead to TSMC?
Most analysts date it to 2018-2020. TSMC began volume production of 7nm in 2018, when Intel’s 10nm was still shipping only in one small laptop chip. By July 2020, when Intel said its own 7nm was about a year behind plan, TSMC was already producing 5nm.
What went wrong with Intel’s 10nm process?
Intel set very aggressive density targets for 10nm and tried to reach them without EUV lithography, relying on complex multi-patterning, cobalt wiring and other new techniques at once. Yields were poor for years. A first 10nm chip shipped in small numbers in 2018 and volume only came with Ice Lake in 2019, about three years after the original plan.
When did Intel announce the 7nm delay?
On 23 July 2020 Intel said its 7nm process was running about 12 months behind its internal target because of a defect problem, pushing products back by about six months and more. Intel shares fell about 16% the next day, and the company said it might use outside foundries.
What is IDM 2.0?
IDM 2.0 is the strategy Pat Gelsinger announced on 23 March 2021. It has three parts: keep making most of Intel’s chips in its own fabs, use outside foundries such as TSMC for some products, and open Intel’s fabs to other companies through a new foundry business. Intel launched it with a plan to spend about US$20 billion on two new fabs in Arizona.
What is an IDM?
An integrated device manufacturer designs chips and also makes them in its own factories. Intel, Samsung and Texas Instruments are examples. The alternative is the fabless model, where companies like NVIDIA, AMD, Apple and Qualcomm design chips and pay a foundry such as TSMC to manufacture them.
Who founded Intel?
Robert Noyce and Gordon Moore founded Intel on 18 July 1968 in Mountain View, California. Andy Grove joined on the first day as its first employee hired and later ran the company as chief executive from 1987 to 1998. He is often called the third founder.
What was Intel’s tick-tock model?
Tick-tock was Intel’s development rhythm from about 2007. A tick was a shrink to a new manufacturing process; a tock was a new microarchitecture on the existing process. It produced a new chip generation roughly every year until the 14nm process ran long and Intel replaced it with a three-step process, architecture, optimisation cycle in 2016.
When did Apple stop using Intel chips?
Apple announced the switch to its own Apple silicon on 22 June 2020 and released the first M1 Macs on 10 November 2020. By June 2023 the Mac line had moved entirely to Apple silicon, made by TSMC. Apple had moved the Mac to Intel in 2005-2006.
Did Intel turn down making the iPhone chip?
Former chief executive Paul Otellini said in a 2013 interview that Intel declined to make a chip for the original iPhone because the price Apple wanted was below Intel’s forecast cost, and that he regretted the decision. Intel later sold its XScale mobile chip unit and in 2016 quit smartphone processors altogether.
How did AMD benefit from TSMC?
AMD sold its fabs in 2009; they became GlobalFoundries. When GlobalFoundries stopped developing 7nm in August 2018, AMD moved its leading chips to TSMC. Its Zen 2 processors in 2019 combined TSMC 7nm CPU chiplets with a separate input-output die, giving AMD a manufacturing advantage over Intel for the first time.
What are Intel 7, Intel 4, Intel 3, 20A and 18A?
They are Intel’s renamed process nodes, announced on 26 July 2021. Intel 7 was the improved 10nm process; Intel 4 was Intel’s first node using EUV lithography; Intel 3 is a refined Intel 4; 20A and 18A added RibbonFET transistors and PowerVia backside power. Intel said it would deliver five nodes in four years.
What happened to Intel 20A?
Intel cancelled 20A for products on 4 September 2024 and moved its engineering to 18A. The Arrow Lake desktop chips that were meant to use 20A were made largely at TSMC instead.
What are RibbonFET and PowerVia?
RibbonFET is Intel’s gate-all-around transistor, in which the gate wraps completely around stacked silicon ribbons to control current better than a FinFET. PowerVia moves the power wiring to the back of the wafer, freeing the front for signal wiring. Intel 18A is the first Intel node to use both.
Is Intel 18A in production?
Yes. Intel said on 9 October 2025 that Fab 52 in Chandler, Arizona was fully operational and that Panther Lake, its first 18A PC processor, was in production. Panther Lake launched as Core Ultra Series 3 in January 2026, and Xeon 6+, the first server chip on 18A, followed in 2026.
What is Intel 18A-P?
18A-P is the first performance version of 18A. Intel said on 16 June 2026 that it had entered risk production, on the timeline given to customers. Intel says it gives about 9% more performance at the same power or 18% lower power at the same performance compared with 18A. Risk production comes before high-volume manufacturing.
Is Intel 18A better than TSMC 2nm?
They cannot be compared by name. Intel says 18A gives up to 15% better performance per watt and 30% more density than Intel 3. TSMC’s 2nm entered high-volume production in the fourth quarter of 2025. Independent analysts generally put the two in the same generation, with TSMC ahead on density and volume; neither company publishes directly comparable figures.
What is Intel Foundry?
Intel Foundry is the part of Intel that develops process technology and runs its fabs, for Intel’s own products and for outside customers. Since the first quarter of 2024 Intel has reported it as a separate segment with its own profit and loss. In the second quarter of 2026 it had US$5.8 billion of revenue and an operating loss of about US$2.1 billion.
How much money does Intel Foundry lose?
Intel Foundry reported an operating loss of US$7.0 billion in 2023, its first year reported separately, and losses of about US$2.4 billion in the first quarter of 2026 and US$2.1 billion in the second. In August 2026 the chief financial officer said breakeven, targeted internally for the end of 2027, could slip into 2028.
How much external foundry revenue does Intel have?
Very little so far. In the first quarter of 2026 Intel Foundry had US$5.4 billion of revenue, of which only US$174 million came from outside customers. Almost all the rest came from making Intel’s own chips.
Why did Pat Gelsinger leave Intel?
Intel announced on 2 December 2024 that Gelsinger had retired as chief executive and left the board, effective 1 December. Reports at the time said the board had lost confidence in the pace of the turnaround after heavy losses, layoffs and a falling share price. CFO David Zinsner and Michelle Johnston Holthaus served as interim co-CEOs.
Who is Intel’s CEO now?
Lip-Bu Tan, the former Cadence Design Systems chief executive, became Intel’s CEO on 18 March 2025. He has cut costs, cancelled planned fabs in Germany and Poland, and said Intel would only build 14A capacity if it won outside customers for it.
Does the US government own part of Intel?
Yes. On 22 August 2025 the US government agreed to take a 9.9% stake in Intel for about US$8.9 billion, largely by converting CHIPS Act grants that had not yet been paid into shares at US$20.47 each. It is Intel’s largest shareholder.
Did NVIDIA invest in Intel?
Yes. On 18 September 2025 NVIDIA agreed to invest US$5 billion in Intel shares at US$23.28 each, and the two companies said they would jointly develop PC and data-centre products. SoftBank had agreed to invest US$2 billion in August 2025.
Is Apple going back to Intel?
Possibly, as a foundry customer. On 8 May 2026 the Wall Street Journal reported that Apple and Intel had reached a preliminary agreement for Intel to make some Apple chips. Neither company has said which chips or when, so it is not yet a confirmed production order.
Who is Intel’s first 14A customer?
Elon Musk said on Tesla’s earnings call on 22 April 2026 that Tesla planned to use Intel’s 14A process for chips at its planned Terafab project in Austin, Texas. Intel has said it expects more 14A customer decisions in the second half of 2026.
Why did Intel raise US$20 billion in 2026?
On 10 August 2026 Intel priced an upsized sale of new shares at US$95 each to raise US$20 billion, and about US$22.6 billion after underwriters bought extra shares. Intel said it would use the money for general purposes including capital spending, after raising its 2026 capital spending plans on strong demand.
Where are Intel’s fabs?
Intel’s main wafer fabs are in Oregon (research and development), Arizona (Ocotillo campus in Chandler, including Fab 52 for 18A), New Mexico (packaging), Ireland (Leixlip, Intel 4 and Intel 3) and Israel (Kiryat Gat). A planned Ohio site has been delayed to the 2030s, and projects in Germany and Poland were cancelled in 2025.
What did Intel announce in Ireland in 2026?
On 13 July 2026 Intel announced a EUR 5 billion (about US$5.7 billion) investment at its Leixlip campus to expand production on Intel 3, the node used for Xeon 6 server processors. Most of the money is to be spent by the end of 2027.
What is High-NA EUV and does Intel use it?
High-NA EUV is the newest generation of ASML’s extreme ultraviolet lithography, able to print finer features in one exposure. Intel installed the first commercial system in 2024. On 8 September 2026 Intel and ASML said more than one million wafers had been processed on High-NA tools and that it was used for select layers of Panther Lake on 18A.
Did Intel ever stop innovating?
No. Intel introduced high-k metal gates in 2007, 3D FinFET transistors in 2011 and backside power delivery with 18A. Its problem was execution: delivering new nodes on schedule with good yields, and funding fabs that served mainly one customer, itself, while TSMC served hundreds.
What is Intel’s market value in 2026?
Intel shares closed at US$116.03 on 28 September 2026, down 5.7% that day, after a rally that took them well above the US$95 price of the August share sale. Share prices move daily; this is not investment advice.

The Question Still Open

Intel didn’t lose the crown in one moment. Tick-tock slowed, 10nm slipped, 7nm slipped, TSMC scaled the foundry model, AMD and Apple used it, and AI moved the industry’s centre of gravity to accelerators. Intel owned the factory, but the factory had to keep winning. Now 18A is in production, 18A-P is in risk production and new money is in the bank. The unanswered question is whether Intel can turn 18A from a technology comeback into a manufacturing comeback.

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⚠️ Editorial Note

Financial figures are from Intel’s quarterly earnings releases and SEC filings; TSMC node shares from its 4Q25 management report; 18A-P, Fab 52, Ireland and High-NA details from Intel and ASML announcements. The Apple agreement is as reported by the Wall Street Journal and is unconfirmed by either company. Corrections to widely shared versions of this story: Intel was founded by Noyce and Moore, with Grove as first hire; the node renaming was in July 2021, not 2022; Fab 52 was declared fully operational in October 2025, not 2026. Yields are not published by Intel or TSMC. Share prices change daily; this article is not investment advice.

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