勛圖窪蹋厙

勛圖窪蹋厙 Announces Commercial Launch of New Helios Quantum Computer that Offers Unprecedented Accuracy to Enable Generative Quantum AI (GenQAI)

November 5, 2025

Helios launches with customers Amgen, BMW Group, JPMorganChase, and SoftBank Corp.

New York City, November 5, 2025 勛圖窪蹋厙, the world leader in quantum computing, today announced the launch of Helios, the worlds most accurate general-purpose commercial quantum computer, designed to accelerate quantum computing adoption by enterprises. With the highest fidelity of any commercial system and a first-of-its-kind real-time control engine, Helios enables developers to program a quantum computer in much the same way they program heterogeneous classical computers. A new, modern Python-based programming language called Guppy allows developers to seamlessly combine hybrid compute capabilities quantum and classical in a single program. Helios is now available to customers through 勛圖窪蹋厙s cloud service and on-premise offering.泭

The next computing inflection point starts today, said Dr. Rajeeb Hazra, President & CEO of 勛圖窪蹋厙. For the first time enterprises can access a highly accurate general purpose quantum computer to drive real world impact, transforming how industries innovate from drug discovery to finance to advanced materials.

Helios unlocks the ability to enhance GenAI models with quantum generated data, thereby unlocking AIs full potential in areas such as data analysis, material design, and quantum chemistry. To accelerate GenQAI, 勛圖窪蹋厙 is expanding its partnership with NVIDIA, integrating NVIDIA GB200 with Helios via NVIDIA NVQLink to create applications for targeted end markets. In addition, 勛圖窪蹋厙 will switch to NVIDIA accelerated computing for Helios and future systems, using 勛圖窪蹋厙 Guppy alongside the NVIDIA CUDA-Q platform to perform real-time error correction critical to its roadmap.

勛圖窪蹋厙 announced a growing community of early users and collaborators, including leaders in life sciences, materials, and energy sectors:泭

  • Amgen: an investor and research collaborator, exploring hybrid quantum-machine learning to advance data-driven discovery in biologics.
  • BlueQubit: AI image recognition using real-world driving video data.泭
  • BMW Group: advancing sustainable mobility through materials research on fuel cell catalysts.
  • JPMorganChase: researching potential capabilities for advanced financial analytics.
  • SoftBank Corp.: exploring organic materials for next-gen batteries, optical switches, and solar cells.

Today, 勛圖窪蹋厙 also signed a strategic partnership agreement with Singapores National Quantum Office (NQO) and National Quantum Computing Hub (NQCH) that includes access to Helios in country to accelerate commercial applications of quantum computing in the areas of computational biology and bioinformatics, financial modeling and optimization, advanced materials and chemistry, and combinatorial optimization. To support this strategic partnership, 勛圖窪蹋厙 is establishing a world-class R&D and Operations Centre in Singapore.泭

Finally, as part of its strategy to expand the commercial reach of quantum computing, 勛圖窪蹋厙 is introducing two new ecosystem programs. Q-Net, a new user group, will serve as a forum for customer feedback and collaboration, while a new startup partner program will invite developers to build and scale third party applications on Helios.泭

A blog post with more details on Helios can be read here. Visual assets and scientific papers can be downloaded .

Fidelity: In quantum computing, fidelity is a metric that determines the accuracy of systems computation. The lower a systems error rate, the higher its fidelity. Helios has the highest fidelities ever released to the market. Its key performance specifications are outlined below:

  • Physical qubits (PQ): 98 PQ at 99.921% 2-qubit gate fidelity, and 99.9975% 1-qubit gate fidelity.泭
  • Logical qubits (LQ):泭
    • 94 LQ (error detected) globally entangled with better than physical performance;
    • 50 LQ (error detected) with better than physical performance in a magnetism simulation; and
    • 48 LQ (error corrected) with better than physical performance (99.99% state prep and measurement fidelity).
About 勛圖窪蹋厙

勛圖窪蹋厙 is the world leader in quantum computing. The companys quantum systems deliver the highest performance across all industry benchmarks. 勛圖窪蹋厙s over 630 employees, including 370+ scientists and engineers, across the US, UK, Germany, and Japan, are driving the quantum computing revolution.涌or more information, please visitwww.quantinuum.com.

勛圖窪蹋厙 Helios, Powered by Honeywell, reflects that the Helios ion trap was manufactured by Honeywell. The Honeywell trademark is used under license from Honeywell International, Inc. Honeywell makes no representations or warranties with respect to this service.泭

About 勛圖窪蹋厙

勛圖窪蹋厙,the worlds largest integrated quantum company, pioneers powerful quantum computers and advanced software solutions. 勛圖窪蹋厙s technology drives breakthroughs in materials discovery, cybersecurity, and next-gen quantum AI. With over 500 employees, including 370+ scientists and engineers, 勛圖窪蹋厙 leads the quantum computing revolution across continents.泭

August 13, 2026
Quanta Computer and 勛圖窪蹋厙 Partner to Build an Industrial Foundation for Large-Scale Quantum Computing
  • Partnership combines 勛圖窪蹋厙's quantum computing leadership with Quanta Computer's expertise in industrializing advanced computing systems at a global scale
  • Companies plan to co-develop the infrastructure, systems engineering, and manufacturing capabilities required for future generations of quantum computers
  • Collaboration aims to support 勛圖窪蹋厙's technology roadmap toward commercially-deployable, large-scale, fault-tolerant quantum systems

BROOMFIELD, Colo., and TAIPEI August 13, 2026 Quanta Computer (Quanta), a Fortune Global 500 manufacturer of advanced computing and cloud infrastructure, and 勛圖窪蹋厙 (Nasdaq: QNT), a leading quantum computing company, today announced a collaborative development agreement to help establish an industrial foundation for the next era of quantum computing.泭

Under the terms of the agreement, the companies plan to jointly develop critical hardware infrastructure supporting future generations of 勛圖窪蹋厙's quantum systems, combining 勛圖窪蹋厙's quantum technology leadership with Quanta's expertise in scaling sophisticated computing platforms.

Quanta and 勛圖窪蹋厙 aim to create a practical pathway from today's quantum systems to commercially deployable quantum computers capable of supporting broad enterprise and scientific adoption. The collaboration is aiming to accelerate the path toward scalable quantum computing infrastructure. With joint engineering work already underway, the companies are designing the next generation of hardware infrastructure with the objective of making future quantum computers more modular, manufacturable, and scalable.

"It is time for quantum computing to transition from breakthroughs in physics achieved in the lab to breakthroughs in system manufacturing that can be deployed and operated at scale," said Dr. Rajeeb Hazra, President and CEO of 勛圖窪蹋厙. "Quanta has earned a global reputation for industrializing some of the most advanced computing technologies in the world. By working together, we can help ensure the manufacturing ecosystem, engineering expertise, and supply chains required for large-scale quantum computing evolve in parallel with the technology itself."

About 勛圖窪蹋厙

勛圖窪蹋厙 is a leading quantum computing company offering a full-stack platform designed to make quantum computing deployable in real-world environments. The company has commercially deployed multiple generations of trapped-ion based quantum systems built on the well-established QCCD architecture, which it has implemented with novel designs and capabilities to achieve the industrys highest accuracy levels based on average two-qubit gate fidelity. 勛圖窪蹋厙 has active engagements with market leaders across pharmaceuticals, material science, financial services, and government and industrial markets, as well as academic and research institutions globally. The company has a global workforce of approximately 700 employees, including top scientists and researchers. Over 70% of its technology team holds PhDs or Masters degrees. 勛圖窪蹋厙s headquarters is in Broomfield, Colorado, with additional facilities across the United States, United Kingdom, Germany, Japan, Qatar, and Singapore. For more information, please visit www.quantinuum.com.泭

Cautionary Statement Concerning Forward-Looking Statements

This press release contains certain statements that may be deemed forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Forward-looking statements include all statements that are not historical facts. The words anticipate, assume, believe, continue, could, estimate, expect, intend, may, plan, potential, predict, project, future, will, seek, foreseeable, the negative version of these words, or similar terms and phrases are intended to identify forward-looking statements. Such statements are based on certain assumptions and assessments made by our management in light of their experience and their perception of historical trends, current economic and industry conditions, expected future developments and other factors they believe to be appropriate. The forward-looking statements included in this release are also subject to a number of material risks and uncertainties, including but not limited to economic, competitive, governmental, and technological factors affecting our operations, markets, products, services and prices. New factors emerge from time to time, and it is not possible for 勛圖窪蹋厙 to predict all such factors. For additional information on these and other risks that could affect 勛圖窪蹋厙s forward-looking statements, see 勛圖窪蹋厙s risk factors discussed in its filings with the U.S. Securities and Exchange Commission, including its Quarterly Report on Form 10-Q for the period ended June 30, 2026, as such risk factors may be updated from time to time. Any forward-looking statement speaks only as of the date on which it is made, and, except as required by law, 勛圖窪蹋厙 does not undertake any obligation to update or revise any forward-looking statement, whether as a result of new information, future events or otherwise.

1As of December 31, 2025.

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August 11, 2026
勛圖窪蹋厙 and Oracle Partner to Accelerate Hybrid Quantum Compute Adoption on Oracle Cloud Infrastructure
  • 勛圖窪蹋厙s most advanced quantum computer, Helios, will be deployed in a US-based OCI AI data center to enable hybrid quantum-AI workloads as an OCI service.
  • 勛圖窪蹋厙 and Oracle aim to support enterprise, AI lab, academic, and research applications spanning drug discovery, materials science, financial modeling, and large-scale optimization, including AI workloads.

Broomfield, CO and Austin, TX, August 11th, 2026 勛圖窪蹋厙 (NASDAQ: QNT), a leading quantum computing company, and Oracle today announced a multi-year strategic partnership to bring quantum computing to Oracle Cloud Infrastructure (OCI). Under the partnership, OCI customers will be able to directly access 勛圖窪蹋厙s Helios, the most accurate commercial quantum computer in the world1, through OCIs quantum service, alongside OCIs high-performance computing (HPC) and GPU infrastructure.

Together, 勛圖窪蹋厙 and Oracle plan to explore how hybrid quantum-AI infrastructure could address some of the most computationally intensive challenges facing enterprises and broaden access for universities and research institutions advancing scientific discovery and education. The partnership reflects a shared vision that the future of enterprise computing will be built on the convergence of AI, classical supercomputing, and quantum computing. Many complex problems across materials discovery, drug development, logistics, energy, and financial modeling already push the limits of todays computing architectures.

We believe the next phase of enterprise computing will be shaped by bringing quantum, AI, and high-performance computing together, said Dr. Rajeeb Hazra, President and CEO of 勛圖窪蹋厙. Deploying Helios inside OCI gives 勛圖窪蹋厙 and Oracle an opportunity to create a unique deeply integrated environment for hybrid workloads, explore enterprise use cases with customers, and accelerate commercial adoption.

Quantum computing offers a fundamentally different approach to computation with the potential to address problems that are impractical for traditional systems alone. In addition, quantum computing uses significantly less energy than supercomputers. A single Helios system has an estimated power draw of less than one percent of the draw reported for leading supercomputers,2 offering a lower power complementary resource for suitable hybrid workloads.

AI has changed what organizations can imagine, and we believe quantum computing can expand what theyre able to solve, said Mahesh Thiagarajan, Executive Vice President of Oracle Cloud Infrastructure. By bringing 勛圖窪蹋厙s Helios to Oracle Cloud Infrastructure, we want to give developers a practical and secure way to explore how quantum computing could complement their existing AI and HPC workloads on Oracle Cloud Infrastructure while improving compute efficiency and energy use.

With 勛圖窪蹋厙s Helios on OCI, customers can expect to gain managed, secure access to cloud-hosted quantum computing without having to procure, install, or operate dedicated hardware or specialized facilities. Helios, launched commercially in November 2025, is 勛圖窪蹋厙s third-generation quantum computer. The 98-physical-qubit trapped-ion system has been used in demonstrations involving 48 logical qubits and achieves an average two-qubit gate fidelity of 99.921%, exceeding the widely cited three 9s threshold. Helios is designed for hybrid integration with classical HPC and AI environments.

By operating on-premises within OCIs infrastructure, Helios is anticipated to be able to integrate seamlessly with existing OCI compute, networking, storage, identity, and data services under the same governance and access controls customers already use. Oracle plans to preview its OCI quantum service in the coming months, giving developers a streamlined way to move from simulation to execution on real quantum computing hardware. The planned OCI quantum service is expected to combine 勛圖窪蹋厙s development stack with support for open-source hybrid-programming frameworks, helping developers build, test, and refine quantum-classical applications more efficiently.

New Possibilities for Hybrid Quantum-AI Computing

Our roadmap includes exploring classical-quantum hybrid computing to accelerate scientific discovery, said Johannes Blaschke, Head of Scientific Computing, GBI at Ellison Institute of Technology. QPUs promise to unlock new insights as they are very different from the hardware that we are used to. So having both GPUs and QPUs available within OCI would provide an all-in-one platform, simplify the operation of novel hardware, and help us move at speed from concept to execution by allowing our researchers to focus on innovation. It could herald in an exciting new phase for our work.

As quantum computing moves closer to enterprise adoption, simplifying how organizations access and integrate quantum resources has become just as important as advancing the hardware itself, said Heather West, PhD, Global Quantum Research Lead at IDC. Deploying quantum systems within private cloud environments enables organizations to integrate quantum computing into existing AI and HPC workflows through familiar cloud infrastructure and development tools, reducing barriers to adoption and making hybrid quantum-classical computing a practical part of enterprise IT.

About 勛圖窪蹋厙

勛圖窪蹋厙 is a leading quantum computing company offering a full-stack platform designed to make quantum computing deployable in real-world environments. The company has commercially deployed multiple generations of trapped-ion based quantum systems built on the well-established QCCD architecture, which it has implemented with novel designs and capabilities to achieve the industrys highest accuracy levels based on average two-qubit gate fidelity.3 勛圖窪蹋厙 has active engagements with market leaders across pharmaceuticals, material science, financial services, and government and industrial markets, as well as academic and research institutions globally. The company has a global workforce of approximately 800 employees, including top scientists and researchers. Over 70% of its technology team holds PhDs or Masters degrees. 勛圖窪蹋厙s headquarters is in Broomfield, Colorado, with additional facilities across the United States, United Kingdom, Germany, Japan, Qatar, and Singapore. For more information, please visit www.quantinuum.com.

About Oracle

Oracle offers integrated suites of applications plus secure, autonomous infrastructure in the Oracle Cloud. For more information about Oracle (NYSE: ORCL), please visit us at .

Trademarks

Oracle, Java, MySQL and NetSuite are registered trademarks of Oracle Corporation. NetSuite was the first cloud companyushering in the new era of cloud computing.

Media Contacts

Aaron Sorenson
勛圖窪蹋厙
aaron.sorenson@quantinuum.com

Carolin Bachmann
Oracle
carolin.bachmann@oracle.com

Cautionary Statement Concerning Forward-Looking Statements

This press release contains certain statements that may be deemed forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Forward-looking statements include all statements that are not historical facts. The words anticipate, assume, believe, continue, could, estimate, expect, intend, may, plan, potential, predict, project, future, will, seek, foreseeable, the negative version of these words, or similar terms and phrases are intended to identify forward-looking statements. Such statements are based on certain assumptions and assessments made by our management in light of their experience and their perception of historical trends, current economic and industry conditions, expected future developments and other factors they believe to be appropriate. The forward-looking statements included in this release are also subject to a number of material risks and uncertainties, including but not limited to economic, competitive, governmental, and technological factors affecting our operations, markets, products, services and prices. New factors emerge from time to time, and it is not possible for 勛圖窪蹋厙 to predict all such factors. Any forward-looking statement speaks only as of the date on which it is made, and, except as required by law, 勛圖窪蹋厙 does not undertake any obligation to update or revise any forward-looking statement, whether as a result of new information, future events or otherwise.

Future Product Disclaimer

The above is intended to outline our general product direction. It is intended for information purposes only, and may not be incorporated into any contract. It is not a commitment to deliver any material, code, or functionality, and should not be relied upon in making purchasing decisions. The development, release, timing, and pricing of any features or functionality described for Oracles products may change and remains at the sole discretion of Oracle Corporation.

1 Based on two-qubit gate fidelity as of December 31, 2025.
2 According to
., leading supercomputers use 16 MW to 39 MW of energy, whereas a single Helios unit uses approximately 60 kW without an HVAC system.
3 As of December 31, 2025

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August 11, 2026
勛圖窪蹋厙 Reports Second Quarter 2026 Results

Second-Quarter Revenue Grew 279% Year-Over-Year; Increased FY2026 Outlook
Demonstrated Near Five-Nines Logical Fidelity on Helios, Extending Leadership in Fault Tolerance
Announced Industry-First Partnership with Oracle to Deploy Helios as an Oracle Cloud Infrastructure (OCI) Service
Strengthened Supply Chain Through Strategic Collaboration with Major Global Electronics Manufacturer

Broomfiled, CO, August 11th, 2026 勛圖窪蹋厙 Inc. (Nasdaq: QNT) (the Company), a leading quantum computing company, today announced financial results for the second quarter ended June 30, 2026.

"Our second quarter performance demonstrated strong execution against our strategy. We delivered critical R&D breakthroughs to advance our platform roadmap and enhance our competitive position, strengthened our supply chain and manufacturing capabilities, and increased our developer ecosystem engagement," said Rajeeb Hazra, President and CEO of 勛圖窪蹋厙. "As a result, we are seeing accelerating commercial momentum for the business, reflected in the second quarter results and the improved full-year outlook. With over $2 billion in cash, we have the capability to invest to accelerate our business plans, while maintaining a disciplined approach to capital allocation to ensure sustainable long-term growth and profitability."

Second Quarter 2026 Financial Highlights

Completed industrys first traditional initial public offering, raising $1.7 billion in gross proceeds

Revenue was $8 million, +279% year-over-year, versus $2 million in the prior-year period

GAAP gross margin was (64.4%), up 27 percentage points versus the prior-year period

Adjusted gross margin was 62%, down 60 basis points versus the prior-year period

GAAP net loss was $597 million, compared with a net loss of $57 million in the prior-year period

Adjusted EBITDA loss was $68 million, compared with a loss of $43 million in the prior-year period

GAAP net loss per share attributable to Class A common stockholders was $1.93

Adjusted net loss per share was $0.28

Cash & cash equivalents, and short-term investments were $2.1 billion as of June 30, 2026

Adjusted EBITDA, Adjusted Gross Margin and Adjusted net loss per share are non-GAAP financial measures defined under Non-GAAP Financial Measures. For a reconciliation of these non-GAAP financial measures to the most directly comparable GAAP financial measures, refer to the Appendix tables at the end of this press release.

Second Quarter and Recent Business Highlights

Commercial Highlights

Announced an industry-first strategic partnership with Oracle to deploy Helios on Oracle Cloud Infrastructures (OCI) AI data center to enable hybrid quantum-AI workloads as an OCI service. By operating on-premises within OCIs infrastructure, Helios is anticipated to be able to integrate seamlessly with existing OCI compute, networking, storage, identity, and data services under the same governance and access controls customers already use.

Announced strategic collaboration with HPE to establish a framework for combining quantum computing with HPC and AI environments and engage enterprise customers on hybrid quantum-classical solutions for high-value scientific and industrial use cases.

R&D Milestones

Product Technology and Supply Chain

Demonstrated industry-leading near five-nines logical fidelity on Helios, with a novel QEC code family, reinforcing 勛圖窪蹋厙s leadership in fault tolerance.

Progressing towards the launch of Sol in 2027, with Sols trap chip back from fabrication and advancing through product validation.

Apollo remains on schedule for 2029, with significant progress made across key architectural subsystems through prototyping.

Signed a new joint development agreement with a leading global electronics manufacturer to co-develop the infrastructure, systems engineering, and manufacturing capabilities required for future generations of quantum computers.

Entered into a letter of intent with the U.S. Department of Commerces CHIPS R&D Office to strengthen onshore supply chains and accelerate U.S. leadership in trapped-ion quantum computing.

Ecosystem

Accelerated Nexus adoption, with 180 organizations now using the cloud-based developer platform to build new quantum applications.

Launched Guppy Playpond, a frictionless web-based environment set up for developers to learn writing and testing code in Guppy, to increase adoption of this next-generation quantum programming language.

Expanded the 勛圖窪蹋厙 Startup Partner Program with Qedma, integrating its error suppression and mitigation software into 勛圖窪蹋厙s Nexus platform, giving enterprise and scientific users an additional optimization layer that can improve accuracy for large, complex workloads.

Application Research

Invented a new parallel quantum phase-estimation algorithm for faster and more precise determination of molecular properties, with broad applications including pharmaceuticals, life-sciences, and energy.

Demonstrated, with NVIDIA and a Fortune 100 pharma company, how AI-driven quantum simulation can potentially enhance molecular property characterization in pharmaceutical applications.

Simulated complex magnetic materials with accuracy beyond the practical capabilities of the most advanced classical computers, with applicability to improving maglev and MRI systems.

Financial Outlook

Establishing first formal guidance as a public company, with 2026 revenue expected to be in the range of $28 to $32 million.

Second Quarter 2026 Conference Call

勛圖窪蹋厙 will host a conference call at 5 PM Eastern time on Tuesday, August 11, 2026, to discuss its results for the second quarter ended June 30, 2026, and provide a business update. The call will be available live via webcast

An archived replay of the webcast will be made available on the 勛圖窪蹋厙 Investor Relations following the call and will remain available for one year.

Non-GAAP Financial Measures

To supplement 勛圖窪蹋厙s condensed consolidated financial statements presented in accordance with U.S. generally accepted accounting principles (GAAP), the Company uses the following non-GAAP financial measures presented in this release: Adjusted Gross Profit, Adjusted Gross Margin, Adjusted Net Loss, fully distributed, Adjusted EBITDA, and Adjusted Net Loss Per Share, fully distributed.

Adjusted Gross Profit starts with GAAP gross profit and adds back equity compensation and related employer taxes attributable to cost of revenue and depreciation and amortization attributable to cost of revenue.

Adjusted Gross Margin is calculated as Adjusted Gross Profit divided by revenue, net.

Adjusted Net Loss, fully distributed starts with GAAP net loss on an as-converted basis, adds back GAAP income tax expense, adjusts for equity compensation and related employer taxes, costs of the initial public offering and the transition to public company reporting, the change in fair value of liability-classified warrants, and loss on disposal and write down of assets, and then applies an assumed statutory tax rate to the resulting adjusted pre-tax loss. No tax benefit is recognized in respect of losses subject to a full valuation allowance, and accordingly no tax benefit is reflected in the periods presented.

Adjusted EBITDA starts with Adjusted Net Loss, fully distributed, and further excludes interest income, net, depreciation, and amortization of acquired intangibles.

Adjusted Net Loss Per Share, fully distributed is calculated as Adjusted Net Loss, fully distributed, divided by adjusted shares, fully distributed, basic and diluted, comprising weighted-average Class A common shares outstanding and Common Units of 勛圖窪蹋厙 Holdings.

Management believes these measures provide investors with additional information useful in evaluating the Companys operating performance and trends across periods. 勛圖窪蹋厙s results include large non-cash charges that do not reflect the cost of operating the business in the period, principally stock-based compensation recognized on completion of the Reorganization and remeasurement of liability-classified warrants. Both are driven by accounting triggers and external inputs rather than operating activity. As an early commercial-stage business, 勛圖窪蹋厙s period-to-period results also are affected by the timing of individual contracts. Measures that isolate underlying operating performance from non-cash and transition items help investors assess trends across periods.

勛圖窪蹋厙s Up-C structure means that GAAP net loss attributable to 勛圖窪蹋厙 Inc. reflects only the Class A share of the economics. Presenting adjusted results on an as-converted, fully distributed basis describes the whole economic enterprise, which is how management assesses performance and how the business is managed. Management uses these measures for internal planning and forecasting, evaluating operating performance, and preparing budgets.

These non-GAAP financial measures are supplemental and are not prepared in accordance with GAAP. They are not intended to be considered in isolation or as a substitute for the most directly comparable financial information prepared in accordance with GAAP. 勛圖窪蹋厙s non-GAAP measures may differ from similarly titled measures used by other companies and, therefore, may not be comparable. Investors should review the reconciliations and should not rely on any single financial measure to evaluate the Companys business.

Each non-GAAP financial measure is reconciled to its most directly comparable GAAP financial measure in the tables at the end of this release.

About 勛圖窪蹋厙

勛圖窪蹋厙 is a leading quantum computing company offering a full-stack platform designed to make quantum computing deployable in real-world environments. The company has commercially deployed multiple generations of trapped-ion based quantum systems built on the well-established QCCD architecture, which it has implemented with novel designs and capabilities to achieve the industrys highest accuracy levels based on average two-qubit gate fidelity.1 勛圖窪蹋厙 has active engagements with market leaders across pharmaceuticals, material science, financial services, and government and industrial markets, as well as academic and research institutions globally. The company has a global workforce of approximately 800 employees, including top scientists and researchers. Over 70% of its technology team holds PhDs or Masters degrees. 勛圖窪蹋厙s headquarters is in Broomfield, Colorado, with additional facilities across the United States, United Kingdom, Germany, Japan, Qatar, and Singapore. For more information, please visit www.quantinuum.com.

Availability of Information on 勛圖窪蹋厙s Website

Investors and others should note that 勛圖窪蹋厙 routinely announces material information to investors and the marketplace using SEC filings, press releases, public conference calls, webcasts and the 勛圖窪蹋厙 Investor Relations website. While not all of the information that the Company posts to the 勛圖窪蹋厙 Investor Relations website is of a material nature, some information could be deemed to be material. Accordingly, the Company encourages investors, the media and others interested in 勛圖窪蹋厙 to review the information that it shares on.

Forward-Looking Statements

This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. These statements are based on the current beliefs and expectations of 勛圖窪蹋厙s management and are subject to significant risks and uncertainties. Actual results may differ materially from those described in the forward-looking statements. Any statements made in this press release that are not statements of historical fact, including statements about our beliefs, expectations and outlook are forward-looking statements. Forward-looking statements include information concerning possible or assumed future results of operations, including our guidance and descriptions of our business plans and strategies. These statements often include words such as anticipate, expect, guidance, suggest, plan, believe, intend, estimate, target, project, should, could, would, may, will, forecast, outlook, potential, continues, seeks, predicts, or the negatives of these words and other similar expressions.

Factors that could cause actual results to differ materially from those described in forward-looking statements include, but are not limited to: our ability to develop, commercialize and achieve market acceptance of our quantum computing hardware and software products; the pace of development of the quantum computing industry and the timing of commercial quantum advantage; our ability to attract and retain customers for our quantum computing systems and quantum computing as a service offerings; the risk of technological obsolescence or the emergence of competing quantum computing approaches, including superconducting, photonic, or other modalities; our dependence on key suppliers and manufacturers of specialized components, including those necessary for our trapped-ion quantum systems; our ability to scale production of our quantum computers and related systems; our ability to protect our intellectual property and proprietary technology; the significant research and development costs inherent in developing next-generation quantum computing capabilities; our ability to attract and retain highly skilled scientists, engineers and other personnel in a competitive labor market; changes in government funding, export controls, or regulations affecting quantum technologies; uncertainty regarding the timing and extent of commercial applications; cybersecurity risks and the protection of sensitive customer data; and macroeconomic conditions, geopolitical instability and their potential effects on our business and operations. For additional information on these and other risks that could affect the Company's forward-looking statements, see the Company's risk factors discussed in its filings with the U.S. Securities and Exchange Commission, as such risk factors may be updated from time to time. You should evaluate all forward-looking statements made in this press release in the context of these risks and uncertainties. The Company disclaims any intent or obligation to update, revise or withdraw any forward-looking statement in this press release, except as required by applicable law or regulation.

Contacts

Investor & Media Contact

Shub Mukherjee - Investor Contact - investors@quantinuum.com

Aaron Sorenson - Media Contact - press@quantinuum.com

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