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Quantum Information Technologies (QT) is sponsored by National Science Foundation (NSF) Small Business Innovation Research (SBIR). This topic focuses on innovations in information and communications technologies that rely fundamentally on quantum mechanical properties and interactions, including quantum sensing and metrology. Proposals may include innovations at the component, sub-system or system level.
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Quantum Information Technologies Grant – Apply Today | NSF SBIR Check recent critical alerts! (Last updated 4/16/2026) NSF will resume the submission of new Project Pitches to the SBIR/STTR programs in the coming weeks. Program Directors will continue to process Project Pitches that were previously received.
Please direct any questions to sbir@nsf. gov . Quantum Information Technologies (QT) Jane’s Carousel in Brooklyn Bridge Park (artists: Sydney Shea & Carol Hsiung for drawing, and Joel Artista for mural) made possible by Mental Canvas LLC, the first to translate hand illustrations into 3D.
Quantum Information Technologies (QT) This topic focuses on innovations in information and communications technologies that rely fundamentally on quantum mechanical properties and interactions. Typically, such innovations will involve the generation, detection, or manipulation of quantum states to provide faster, more efficient or more secure information processing and communications.
Proposals may include innovations at the component, sub-system or system level that result in substantial and usable improvements in the generation, transmission, detection, storage or processing of information, or the security and privacy of information.
Proposed innovations must offer the potential for robustness, reliability, scalability and operation at temperatures that are practical within the constraints of the intended application. Innovations at the component and sub-system level should aim for compactness and energy efficiency, consistent with the requirements of the application.
Examples of technology innovations in the quantum computing subtopic could include qubit generation and detection, development of computational models (quantum circuits, etc.), error correction, software, hardware sub-systems and systems and Noisy Intermediate-Scale Quantum (NISQ) computers.
Examples of technology innovations in the quantum communications subtopic could include components such as sources, memories, repeaters, detectors, hardware sub-systems and systems, networks, cryptography and key distribution. QT2. Quantum Communications QT4.
Quantum Sensing and Metrology QT6. Other Quantum Information Technologies Application process for Quantum Information Technologies (QT) funding Eligibility for Quantum Information Technologies (QT) funding + Your company must be a small business (fewer than 500 employees) located in the United States. At least 50% of your company’s equity must be owned by U.S. citizens or permanent residents.
NSF does not fund companies that are majority-owned by multiple venture capital firms, private equity firms, or hedge funds, to participate in SBIR and STTR. All funded work, including work done by consultants and contractors, needs to take place in the United States. The project’s principal investigator (tech lead) must be legally employed at least 20 hours a week by the company seeking funding.
The principal investigator doesn’t need any advanced degrees. The principal investigator needs to commit to at least one month (173 hours) of work on a funded project per six months of project duration. Evaluation Criteria: What We Look for When Evaluating Quantum Information Technologies (QT) proposals + Take our project assessment to see if your work might be a good fit for NSF funding.
We invest up to $2 million in seed funding and take zero equity. We’re looking for companies that are transformative, high-risk, have a market pull, and are scaleable.
Based on current listing details, eligibility includes: Small businesses (fewer than 500 employees) located in the United States, with at least 50% equity owned by U. S. citizens or permanent residents. Applicants should confirm final requirements in the official notice before submission.
Current published award information indicates $305K + $1.25M+ in follow-on funding Always verify allowable costs, matching requirements, and funding caps directly in the sponsor documentation.
The current target date is rolling deadlines or periodic funding windows. Build your timeline backwards from this date to cover registrations, approvals, attachments, and final submission checks.
Federal grant success rates typically range from 10-30%, varying by agency and program. Build a strong proposal with clear objectives, measurable outcomes, and a well-justified budget to improve your chances.
Requirements vary by sponsor, but typically include a project narrative, budget justification, organizational capability statement, and key personnel CVs. Check the official notice for the complete list of required attachments.
Yes — AI tools like Granted can help research funders, draft proposal sections, and check compliance. However, always review and customize AI-generated content to reflect your organization's unique strengths and the specific requirements of the solicitation.
Review timelines vary by funder. Federal agencies typically take 3-6 months from submission to award notification. Foundation grants may be faster, often 1-3 months. Check the program's timeline in the official solicitation for specific dates.
Many federal programs offer multi-year funding or allow competitive renewals. Check the official solicitation for continuation and renewal policies. Non-competing continuation applications are common for multi-year awards.
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NIST AI-Focused Manufacturing USA Institute is sponsored by National Institute of Standards and Technology (NIST). NIST announced an open competition for a new Manufacturing USA institute focused on the use of artificial intelligence (AI) to increase the resilience of U.S. manufacturers. The institute will be required to obtain cost-share funds from nonfederal sources.