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Find similar grantsCyberinfrastructure and Advanced Computing Programs is sponsored by U.S. National Science Foundation (NSF). NSF funds cyberinfrastructure, including hardware, software, networks, data, and people, to underpin advanced computing technology and enable scientific discoveries.
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Cyberinfrastructure and Advanced Computing | NSF - U.S. National Science Foundation Cyberinfrastructure and Advanced Computing View image credit & caption Since the 1960s, the U.S. National Science Foundation has invested in powerful computing capabilities that drive innovation across the nation.
NSF-funded cyberinfrastructure — the hardware, software, networks, data and people that underpin today's advanced computing technology — has enabled transformative scientific discoveries. This infrastructure helps researchers decipher genomes, map new regions of the Arctic, detect signs of dark matter and understand the inner workings of the human brain.
To maintain its competitive edge and security, the U.S. must continue to pioneer computer systems, from advanced memory and new semiconducting materials to quantum computers. These advancements will unlock new opportunities for the future, like intelligent transportation systems, personalized health care and human-like virtual assistants.
Find funding in advanced computing NSF's decades of sustained investments have ensured the continual advance of computing technology and infrastructure. Trailblazing work supported by NSF includes: Drawing on the Defense Advanced Research Projects Agency's support for early computer networking projects and the development of internet protocols, NSF funding catalyzed the creation of the commercial internet of today.
NSF funding played a critical role in the development of data compression algorithms used in cloud storage, digital streaming, hard drives and other technologies. Since the 1980s, NSF has funded some of the most powerful supercomputers in the world, including Frontera and Delta , and made these resources widely available to the research community.
NSF-funded research led to the creation of new ways to search the internet using a page-ranking system , a central component in Google's search engine. NSF funded the research behind Logo, the first programming language designed specifically for kids.
Fundamental and translational research We support research that expands cyberinfrastructure capabilities through seamless integration of advanced hardware, software, networking and data resources. Access to cyberinfrastructure We support the development, acquisition and provision of state-of-the-art cyberinfrastructure resources, tools and services essential to science and engineering.
Education and workforce development We invest in education and training to foster a nationwide research and development ecosystem for cyberinfrastructure and to nurture a robust skilled cyber workforce.
Partnerships to accelerate progress We partner with other federal agencies, industry and nonprofits to share data, tools, expertise and other resources; strengthen workforce development; and translate research into products and services that benefit society.
NSF-wide infrastructure programs Major Research Instrumentation Program : Supports requests for up to $4 million from NSF for the development or acquisition of multi-user research instruments that are critical to the advancement of science and engineering.
Mid-scale Research Infrastructure-1 : Supports the design and implementation of research infrastructure — including equipment, cyberinfrastructure, large-scale datasets and personnel — whose total project costs exceed NSF's Major Research Instrumentation program but are under $20 million.
Mid-scale Research Infrastructure-2 : Supports the implementation of research infrastructure — including equipment, cyberinfrastructure, large-scale datasets and personnel — whose total project costs fall between $20 million and $100 million.
Computer and Information Science and Engineering: Core Programs Supports research and education projects across computing, communications, information science and engineering, and advanced cyberinfrastructure. America's Seed Fund (SBIR/STTR) Supports startups and small businesses to translate research into products and services, including cloud and edge computing , for the public good.
Campus Cyberinfrastructure Supports coordinated campus-level networking and cyberinfrastructure improvements for science applications and distributed research projects. Cyberinfrastructure for Sustained Scientific Innovation Supports interdisciplinary efforts to successfully integrate the development, deployment and support of cyberinfrastructure services with innovation and research.
Experiential Learning for Emerging and Novel Technologies Supports experiential learning opportunities that provide cohorts of learners with the skills needed to succeed in advanced computing, cyberinfrastructure and other emerging technology fields.
Explore more advanced computing funding NSF directorates supporting advanced computing research Computer and Information Science and Engineering (CISE) Mathematical and Physical Sciences (MPS) Social, Behavioral and Economic Sciences (SBE) Biological Sciences (BIO) International Science and Engineering (OISE) Integrative Activities (OIA) Technology, Innovation and Partnerships (TIP) Supercomputers: Powering American discovery NSF announces funding to establish the National AI Research Resource Operations Center NSF expanding national AI infrastructure with new data systems and resources Explore cyberinfrastructure news Cyberinfrastructure resources Advanced Cyberinfrastructure Coordination Ecosystem: Services & Support Advances innovations in cyberinfrastructure accessibility, user support and integration services.
A large-scale, deeply reconfigurable experimental platform built to support computer sciences systems research. Allows the research and education community to access cloud computing platforms. Allows researchers to build their own clouds, experimenting with new architectures that will form the basis for next-generation computing platforms.
Provides essential cyberinfrastructure for the scientific study of cultural or natural heritage. Provides adaptive programmable research infrastructure for computer science and science applications. Provides access to a leadership-class computing resource to enable research.
National Artificial Intelligence Research Resource Pilot Provides computational, data and training resources needed to advance AI research and research that employs AI. National Internet Observatory Collects and provides access to data that helps researchers study online behavior while preserving privacy.
Partnership to Advance Throughput Computing Supports high-throughput computational needs for thousands of researchers across the science and engineering community each year. Platforms for Advanced Wireless Research This program's four city-scale research platforms create an interconnected national network for testing and validating emerging wireless concepts.
Provides virtual labs and exercises for teaching and learning about computer networks, network security, cloud computing and more. National Quantum Initiative A coordinated federal approach to quantum information science and engineering and its technological applications. "CHIPS and Science Act of 2022" The act authorizes historic investments in use-inspired, solutions-oriented research and innovation in key technology focus areas.
According to the current listing, eligibility includes: Varies by specific program (e. g. , universities, colleges, non-profit organizations). Confirm the full requirements in the official notice before applying.
Cyberinfrastructure and Advanced Computing Programs is funded by U.S. National Science Foundation (NSF). Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
TCUP lists eight funding tracks and roughly $10.3M a year, but the October 14, 2026 deadline applies to only three of them — CHAI, Pre-TI, and TCUP Partnerships — and each carries a restriction that disqualifies most applicants. Here is the track-by-track math.
Read articleNSF 26-513 makes roughly $100 million available for up to 10 State and Regional AI Infrastructure Hubs at $4M to $12M each over five years. One award per state or multi-state region. One proposal per organization. And NSF is not buying you GPUs — it funds the coordination, the workforce and the faculty training, while the compute has to come from partners you have to already have.
Read articleAs of September 12, NSF had obligated $6.3 billion across 6,200 grants versus $8.1 billion and 8,600 last year. AHRQ has made 61 awards. Judge Allison Burroughs ordered the government to report by September 28 on whether IES will obligate $180 million before it expires. Here is what actually happens to the money on October 1 — and what it means for your FY2027 application.
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