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Quantum Computing Processor Patent Landscape 2026

Quantum Computing Processor Patent Landscape 2026
Competitive Landscape

Quantum Computing Processor Patent Landscape in 2026

The quantum computing processor patent space is heavily concentrated: the top five filers among the hundred largest filers account for 67% of that group’s combined total, with the Strong Force portfolio entities collectively dominating the ranking. The field is still expanding on a multi-year basis — recent-window filings sit 76% above the prior window — though annual volume has eased from its 2023 peak.

343
Patent families in scope
67%
Top-5 share of top-100 filers
+76%
3-yr filing growth (lag-adj.)
United States
Leading jurisdiction
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Published byPatSnap Insights Team··7 min readVerified by PatSnap Eureka data
Overview

Strong Force portfolio entities lead a highly concentrated field

Strong Force VCN Portfolio 2019 LLC holds the top position with 92 patent families, placing it well ahead of every other filer in scope. The next four ranked applicants — Strong Force EE Portfolio 2022 LLC, Quantum Digital Solutions Corp, Strong Force TX Portfolio 2018 LLC, and Strong Force IOT Portfolio 2016 LLC — together with the leader account for 67% of the hundred largest filers’ combined total.

The tier gap between the Strong Force cluster and the remaining players is pronounced. Google LLC and LiquidX Inc, both sitting at 7 patent families, represent the first recognizable non-portfolio technology companies in the ranking, indicating that mainstream semiconductor and quantum hardware firms have so far made limited formal IP commitments in this particular corpus.

Leading applicants
#ApplicantPatent familiesShare
1Strong Force VCN Portfolio 2019 LLC92
2Strong Force EE Portfolio 2022 LLC45
3Quantum Digital Solutions Corp39
4Strong Force TX Portfolio 2018 LLC33
5Strong Force IOT Portfolio 2016 LLC26
6Strong Force TP Portfolio 2022 LLC16
7Optios Inc8
8Google LLC7
9LiquidX Inc7
10Splashlight Holdings LLC6
#ApplicantPatent familiesShare
11William Edward Quigley5
12Lukasz Jakub Sliwka5
13Boodle Inc5
14Mocsy Inc4
15New York Digital Investment Group LLC4
16IMRSV Data Labs Inc4
17Unanimous AI Inc3
18X Development LLC3
19Hygiene IQ LLC3
20Nicholas John Teague3
↗ Hover a row · click a company to ask Eureka

The dominance of patent-portfolio entities rather than operating hardware companies suggests that the formal IP landscape here skews toward application-layer and AI-assisted computing claims. Engineers evaluating freedom-to-operate or partnership targets will need to assess portfolio-assertion risk alongside technology-development trajectories.

The most recent 18–24 months of filings are under-represented due to publication lag; the apparent drop in 20242026 data should not be read as a real decline in activity. Longer-window growth, applicant concentration, and technology-route coverage are therefore more reliable signals than the latest-year bar alone.

Source: PatSnap Eureka. Chart shows the top applicants ranked by patent families. Applicant counts can overlap where a patent family lists several applicants, so they need not sum to the total in scope.Explore deeper in Eureka →
Trends & Structure

Multi-year growth driven by AI-computing and business-application claims

Annual filing volume grew from a negligible base in 2017 to a 2023 peak, with the multi-year recent window running 76% above the prior window. The technology composition reveals that AI-model computing (G06N) and business-data processing (G06Q) dominate, while core hardware classes remain thin.

Annual filing trend

Filings climbed sharply from 2019 onward, reaching a peak in 2023 at 77 records before the 2024 and 2025 figures — which are artificially depressed by publication lag — show lower counts. The multi-year growth of 76% confirms the field is still in expansion on a structural basis; do not interpret the post-2023 dip as a real slowdown.

Annual filing trendAnnual values from 2017 to 2026, peaking at 77 in 2023.22017420188201938202065202174202277202344202430202512026↗ Hover for values · click a bar to ask Eureka

Technology composition

G06N (AI-model computing) accounts for the largest share of IPC-tagged records, followed by G06Q (business and commerce data processing) and G06F (general digital data processing). Hardware-oriented classes such as H01L (semiconductor devices), H01P (waveguides), and H10N (solid-state devices) appear at very low counts, pointing to an application-software emphasis in the corpus rather than a qubit-hardware emphasis.

Technology compositionG06N · Computing based on AI models leads with 340; G06Q · Business, commerce & admin data processing 194.G06N · Computing based o…340G06Q · Business, commerc…194G06F · Electric digital …169H04L · Digital informati…131G05B · Control & regulat…110B29C · Shaping of plastics31B33Y · Additive manufact…31H02J · Power supply & gr…31↗ Hover for values · click a bar to ask Eureka
Source: PatSnap Eureka. Technology-branch counts are measured in patent records; a single patent family can carry several IPC classes, so class totals can exceed the family total in scope.Explore deeper in Eureka →
Key Patents

Highly cited patent families surfaced by the query

Citation-heavy patent families returned by the query. Use this section as citation context, not as a curated list of the most topic-specific patents.

Featured patent
US10671559B2Published 2020-06-02

Chips including classical and quantum computing pr…

Google LLC

An apparatus includes a substrate, a classical computing processor formed on the substrate, a quantum computing processor formed on the substrate, and one or more coupling components between the classical computing processor and the quantum computing processor, the one or more coupling components being formed on the substrate and being configured to allow… (excerpt from the patent abstract)

Chips including classical and quantum computing pr… — patent drawingChips including classical and quantum computing pr… — patent drawing
Representative drawings from the patent document.
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Highly cited patent families surfaced by this query
#PatentCitations
1Platform for facilitating development of intellige…721
2Intelligent vibration digital twin systems and met…694
3Methods, systems, kits and apparatuses for monitor…546
4Methods and systems for data collection, learning,…506
5Control tower and enterprise management platform w…330
6Robot Fleet Management for Value Chain Networks322
7Transaction platforms where systems include sets o…218
8Systems and methods for detecting occupancy using …191

Ranked by total forward citations. Citation counts favour older and broadly cited patent families, and broad or adjacent patents may appear when they match the search scope. Treat this section as citation context, not as a curated list of the most topic-specific patents. Some patent titles may be shown in their original, non-English language where an accurate translation could not be guaranteed.

Source: PatSnap Eureka. Citation-ranked patent families surfaced by this query.Open in Eureka →
Insights

What the IP structure means for R&D investment decisions

United States–centric jurisdiction profile shapes where engineering investment can be differentiated.

Growth

Growth stage, easing from 2023 peak

The field is classified as Growth: recent-window filings sit 76% above the prior window, confirming structural expansion. Annual volume peaked in 2023 and has eased since, though publication lag means the true 2024–2025 activity level is understated. R&D teams entering now face an established but not yet saturated filing environment.

Life-cycle: Growth
Concentration

Portfolio entities hold a 67% commanding share among top filers

The top five filers among the hundred largest filers hold 67% of that group’s combined total, almost all attributable to the Strong Force entity cluster. This extreme concentration in portfolio vehicles — rather than operating hardware companies — raises freedom-to-operate questions for any product team targeting AI-assisted quantum computing applications. A targeted prior-art search against the Strong Force portfolios is advisable before committing to a product roadmap.

High concentration
Collaboration

No co-applicant activity detected in this corpus

Evidence pending: the collaboration data for this corpus returns no co-filing relationships. The absence of co-applicant patents may reflect the portfolio-entity structure of the dominant filers, who typically file independently rather than in joint ventures. Engineers looking for ecosystem partners should look beyond formal co-filing signals and examine licensing and standards activity directly.

No co-filing detected
Geography

US-centric filing with selective PCT and EPO coverage

The United States leads jurisdiction coverage with 157 patent records, followed by WIPO PCT filings at 52 and Europe (EPO) at 49. Secondary markets — Australia, Singapore, Canada, and Hong Kong — carry meaningful but smaller counts. China appears with only 1 record, suggesting the dominant filers have not prioritized the Chinese market, which may represent a gap for hardware-focused entrants seeking to build IP positions there.

US-led; China thin
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Co-filing pairs, ranked by the number of jointly-filed patent families.

Source: PatSnap Eureka. Jurisdiction counts are at the patent-record level across the corpus.Explore insights →
Leaders

Strong Force VCN leads; Quantum Digital Solutions is the fastest-growing operating company

The ranking is dominated by portfolio-entity filers affiliated with the Strong Force group. Among recognizable technology operators, Quantum Digital Solutions Corp and Google LLC stand out for their distinct technical emphasis.

Leader · Strong Force VCN Portfolio 2019 LLC

Strong Force VCN Portfolio 2019 LLC

The leader holds 92 patent families, the largest position in the corpus by a wide margin. Its technology emphasis spans business-process computing (G06Q 10), AI-model computing (G06N 20), and neural-network computing (G06N 3), reflecting an application-layer claim strategy. Recent-window filings show a trajectory of +100% versus the prior period, indicating the portfolio has been actively expanded rather than held static.

patent families: 92
Challenger · Quantum Digital Solutions Corp

Quantum Digital Solutions Corp

Quantum Digital Solutions Corp holds 39 patent families and ranks third overall, making it the leading non-Strong-Force entity in the corpus. Its focus concentrates on neural-network computing (G06N 3), digital data security (G06F 21), and encrypted information transmission (H04L 9) — a profile more consistent with quantum-safe cryptography and secure computing infrastructure than pure processor hardware. The +125% recent-window momentum marks it as the fastest-growing operating company in the ranking.

patent families: 39
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Strong Force TX Portfolio 2018 LLCGoogle LLC+ more
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Leading-applicant momentum (recent 3 yrs, lag-adjusted)
ApplicantRecent (3 yrs)Trend
Strong Force VCN Portfolio 2019 LLC60▲ +100%
Strong Force EE Portfolio 2022 LLC33▲ new entrant
Quantum Digital Solutions Corp27▲ +125%
Strong Force TX Portfolio 2018 LLC22▲ new entrant
Strong Force IOT Portfolio 2016 LLC16▲ new entrant
Strong Force TP Portfolio 2022 LLC11▲ new entrant
Optios Inc4▲ new entrant
Google LLC2▲ new entrant
Source: PatSnap Eureka. Applicant rankings and momentum are measured at the patent-family level.Explore players →
Adjacent Branches

Under-served branches adjacent to the dominant AI-computing core

Several IPC branches appear at low share relative to the dominant G06N/G06Q core, yet carry plausible technical linkage to quantum processor applications. These are observations of relative sparsity; two stand out as warranting closer technical assessment.

H02J · Power supply and grid systems

H02J carries 31 patent records — a 2% share among IPC-tagged records — despite power delivery and energy management being a well-known engineering bottleneck in superconducting and photonic quantum processors. The sparsity here suggests that quantum-aware power-conditioning and cryogenic power distribution have not yet attracted dedicated patent coverage in this corpus. Teams working on quantum processor cooling infrastructure or energy-efficient qubit drive circuits have a plausible entry path with low current crowding.

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H01L · Semiconductor devices

H01L appears at only 7 patent records in a corpus nominally about quantum computing processors, which is notably thin given that qubit fabrication draws on semiconductor-device process steps. This sparsity likely reflects the application-layer skew of the dominant filers rather than a settled technology space. For engineers working on qubit device architecture — superconducting junctions, spin qubits, or photonic integration — the low H01L count indicates limited direct IP competition in this corpus, though broader semiconductor patent landscapes must be checked separately.

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G05B · Control and regulating systemsB33Y · Additive manufacturing (3D printing)+ more
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Source: PatSnap Eureka. Branch sparsity is assessed relative to total IPC-tagged records in the corpus.Explore emerging →
Route Matrix

How leading filers differ across technology routes

Strength of each leader across the main technology routes.

PlayerG06N 20 · Computing based on AI modelsG06N 3 · Computing based on AI modelsG06Q 10 · Business, commerce & admin data processingG06Q 30 · Business, commerce & admin data processingG05B 19 · Control & regulating systems
Strong Force VCN Portfolio 2019 LLCStrong · 73Strong · 52Strong · 75Strong · 42Moderate · 35
Strong Force EE Portfolio 2022 LLCStrong · 40Strong · 29Strong · 32Strong · 22Strong · 25
Strong Force IOT Portfolio 2016 LLCStrong · 20Strong · 26AbsentModerate · 12Strong · 26
Strong Force TX Portfolio 2018 LLCStrong · 30Strong · 28Emerging · 6Moderate · 14Absent
Quantum Digital Solutions CorpAbsentStrong · 39AbsentAbsentAbsent
LiquidX IncStrong · 7AbsentStrong · 7Strong · 6Absent
Strong Force TP Portfolio 2022 LLCModerate · 4Strong · 12AbsentAbsentEmerging · 1
Source: PatSnap Eureka. Matrix values are measured in patent records and should not be compared directly with family-level applicant totals.Compare in Eureka →
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Disclaimer. This page is generated from PatSnap Eureka data drawn from a limited snapshot of global patent and scientific-literature records, and is provided for general information and reference only.

Patent data carries inherent limitations: recent filings (typically the most recent 18–24 months) are under-counted due to standard publication lag; counts may be reported at either a patent-family or a patent-record basis and are not always directly comparable; classification, applicant-name, and citation data may contain errors, duplicates, or omissions; and the underlying search query defines and constrains the scope shown. As a result, the analysis may be incomplete or inaccurate and may not reflect the full technology landscape.

Nothing on this page constitutes an exhaustive prior-art, novelty, freedom-to-operate, or validity search, nor does it constitute legal, financial, investment, or professional advice, and it should not be relied upon as such. Any patent, commercial, or strategic decision should be verified independently and reviewed with qualified patent, legal, and domain professionals. PatSnap makes no warranties, express or implied, as to the accuracy, completeness, or fitness for any particular purpose of the information presented.

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