1,000+ Opportunities
Find the right grant
Search federal, foundation, and corporate grants with AI — or browse by agency, topic, and state.
"SNS experimental infrastructure" is currently closed and not accepting applications.
SNS experimental infrastructure is sponsored by European Commission — Horizon Europe. Expected Outcome: The main outcome will be (1) the availability of an evolvable experimental infrastructure representative of a 6G system for the Phase 3 of the SNS JU Programme with the ability to engage the 6G community to run experimentations and (2) the validation of key 6G technologies with demonstrated performance characteristics through experiments carried out using the experimental infrastructure. Such reference platform in the SNS JU will be used to demonstrate 6G technologies including those developed by SNS Stream B projects. Proponents should select a clear and limited number of technologies from Stream B projects. It will provide platform users with standardized and supported methods for affordable-cost integration of new technologies in the end-to-end environment as well to follow a common SNS approach to KPI measurement and data definition-storage-exposition. This SNS reference platform can be also offered by SNS to other communities to support broader collaboration and technology diffusion (e.g. 3GPP, AI RAN Alliance, ESA, ETSI and others). It targets: • Validation of new 6G network technologies in E2E setups potentially covering the European ecosystem. Within SNS, this project will further support Stream D projects that focus on supporting trials for validation of vertical use cases. It will integrate, test and benchmark the various connectivity technologies to be used in future Stream D vertical evaluations. • Validation capabilities covering as examples the 6 technological areas identified for SNS technological developments, namely: (1) AI Driven architecture, programmability and control, (2) Radio and signal processing, new waveforms and spectrum, ISAC capabilities, (3) Optical networking, flexible and green high capacity transport and backhaul, (4) Ubiquitous computing, edge cloud continuum service and management, (5) Security for network and services, security as a service and (6) NTN, technologies for TN/NTN unification. • Experiments with network technologies following two schemes: (1) on demand, any topic and time experimentation, mainly from SNS community and (2) specific technologies open to the community, Platform will be open for experimenters outside of the consortium but with no budget for them. Proponents are requested to detail their plan for engaging such experimenters. • Integration and validation of Stream B technologies coming from previous calls in the SNS in order to keep them as part of the new infrastructure until the end of SNS JU. • Provision to SNS participants of a framework to mature their new technologies for exploitation, in order to accelerate potential start-ups, taking advance of the testing and experimentation tools and expertise from the project partners. • Alignment with standards development by ensuring the platform follows standards evolutions and ensuring Impactful contributions to international standardization. In view of ensuring maximum impact of previous investment, proposals should include a significant representation of European players with strong demonstrated impact at development and operation of 5G/6G experimental platforms and tools and strong potential of reutilization of existing platforms and solutions including open-source solutions. Proposals should also demonstrate the validity of the platform and related technology developments/validation in industrial context, towards maximised industrial take up. Objective: Please refer to the "Specific Challenges and Objectives" section for Stream C-01 in the Work Programme, available under ‘Topic Conditions and Documents - Additional Documents’. Scope: The project will leverage existing SNS JU Stream C and D project results, as well as results from European National Initiatives, aggregating testbed sites that can offer combined capabilities across Europe. The project should focus on integration, evaluation and validation beyond PoC of Stream B type of technologies for 6G KPIs and KVIs in a system context. The projec
Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space, Key Digital Technologies
Keywords: Communication engineering and systems telecommunications, 6G, smart networks and services, sns
Get a weekly digest of new grants like this
A free weekly digest of new foundation and federal funding opportunities as they're added to Granted. Unsubscribe anytime.
Or search similar grants →According to the current listing, eligibility includes: Open to legal entities established in EU Member States and countries associated to Horizon Europe (including EEA/EFTA countries, and other associated third countries). Action type: HORIZON-JU-RIA HORIZON JU Research and Innovation Actions. Additional conditions: "> General conditions 1. Admissibility Conditions: Proposal page limit and layout General Annex A of the General Annexes to the Horizon Europe Work Programme 2026-2027 20 shall apply mutatis mutandis  to the SNS call 2026 covered by this Work Programme, with the following derogations to page limits: The limit for a full proposal is  70 pages for RIAs and IAs  submitted under Stream B and C. 2. Eligible Countries General Annex B of the General Annexes to the Horizon Europe Work... See the official call documentation on the F&T Portal for full eligibility criteria and participation rules. Confirm the full requirements in the official notice before applying.
The published deadline was April 29, 2026, which has passed. Check the official notice for any future application windows before investing time in a proposal.
SNS experimental infrastructure is funded by European Commission — Horizon Europe. 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.
Reinforcing EU autonomous access to space through EU-based spaceports is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following outcomes: Reinforcing EU strategic autonomy by reducing non-EU dependencies for accessing space; Providing an EU access to space necessary for EU space missions through state of the art and innovative solutions; Diversifying the access to space providers in the EU; Contributing to expand commercial access to space offers and services in the EU; Reinforcing Access to Space to ensure that Europe maintains and improve autonomous, reliable and cost-effective access to space. Scope: The EU needs to improve the resilience of its access to space for the implementation of EU space programme. New entrants will contribute to this endeavour. Projects are expected to support EU launch service providers to set up launch pad(s) in the EU territory enabling to perform EU launch services. Projects are expected to contribute to the development of necessary ground facilities to conduct launch services from the EU territory; e.g. launch integration, storage and operation facilities, launch pad and complex, control command facility, payload processing and integration facilities, tracking means, safety means, propellant storage... EU launch service provider(s) are expected to be part of the project consortium and be the ultimate users of the resulting facilities making use of EU launch vehicles for providing EU launch services. Proposals under this topic should explore synergies and be complementary to past actions related to ground segment for launch services, in particular the topics: HORIZON-CL4-2023-SPACE-01-23 and HORIZON-CL4-2025-02-SPACE-11. All the activities should be complementary with national and ESA on-going or future activities, in particular those decided at the ESA council Ministerial Meeting in November 2025. In this topic, the integration of the gender dimension (sex and gender analysis) in research and innovation content should be addressed only if relevant in relation to the objectives of the research effort. Technology Readiness Level - Technology readiness level expected from completed projects Activities are expected to achieve TRL 8 by the end of the project. The reference TRL definition is the ISO 16290:2013 applicable to the space sector. Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
Space critical Equipment for EU non-dependence – Space Refuelling Interface is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: Reinforcing EU strategic autonomy by reducing non-EU dependencies on critical space Equipment and related technologies across their entire supply chain; Providing unrestricted access to critical space Equipment and related technologies relevant for EU space missions and pilots (e.g. In-Orbit Space Operations); Developing or regaining capacity to operate independently in space by developing resilient space Equipment and related technologies supply chains, relying on EU supply chains and/or trustable and reliable supply chains not affected by non-EU export restrictions; Enhancing competitiveness by developing products and capabilities reaching equivalent or superior performance level than those from outside the EU and compete at worldwide level. Scope: Unrestricted access to state-of-art space equipment and related technologies is a pre-requisite for the EU space industry responding to EU space missions. However, especially for some families of equipment, the available solutions in EU do not meet the current high-performance space requirements. Currently, alternative products sourced from outside EU, are either affected by non-EU export control, that limits its use, or present challenges in terms of trustable supply chains for the implementation of EU space missions with a security dimension. Within the frame of this topic, it is expected to finance and implement a development project aiming at maturing critical equipment with the final goal of lowering the dependency from outside EU. This will be done by establishing a long-term sustainable supply chain for supporting EU strategic autonomy in the space sector. The selection of the supply chains shall reflect this objective. Therefore, the supply chain shall preferably be built fully based in EU and when this can only be achieved partially, services procured from outside EU shall nevertheless ensure that the overall supply chain will remain trustable and not affected by non-EU export control. The latest scenario is subject to the approval of the granting authority (i.e. DG-DEFIS and HaDEA). The space equipment and related technologies relevant for this topic represent a direct implementation of the EU Observatory of Critical Technologies (OCT) Technology Roadmap, named Robotics Manipulators for Space Applications: Space Refuelling Interface . Further details will be provided at the latest at the opening of the Call, in a Guidance document published on the Funding & Tenders Portal. Space is a low volume market affected by a dynamic industrial landscape compared to the terrestrial market therefore, technological spin in and/or bilateral collaborations should be enhanced between European non-space and space industries. Furthermore, proposed activities should be complementary to relevant national or other activities at EU level. Complementary activities should be clearly identified, described and the proposal should report how the complementarity is ensured. To achieve the non-dependence objective, applicants are expected to include a dedicated proposal’s paragraph covering: The description of the technology and/or technology processes used for developing the equipment and high-level breakdown of the supply chain to be used. Applicants should demonstrate that the supply chain and final product are free of any legal export restrictions or limitations, such as those established in the International Traffic in Arms Regulations (ITAR) or equivalent instruments applicable in other non-EU jurisdictions. Applicants shall also report, in a dedicated subsection, if and which part of the supply chain is affected by non-EU export controls such as the Export Administration regulation (EAR) i.e. EAR99. The description of the suitable technology development process that has been identified and set up within the consortium for avoiding export restrictions of non-EU states and assess vulnerab Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space, Space, including Earth Observation
IA Resilience call reinforcing Europe's strenght in health is sponsored by European Commission — Horizon Europe. Expected Outcome: the proposals under this call are expected to address one or more of the following subjects : • Enhanced personalized monitoring, care and treatments, focusing on the development of highly customized healthcare solutions, including the required research and diagnostic tools, tailored to individual needs, covering various scenarios such as chronic disease management, physiotherapy, precision diagnosis, personalized medicine/treatment, pre- and postoperative care, and daily assistance in homes and common spaces. It also targets effective management of chronic diseases and elderly care through personalized monitoring and interventions facilitated by advanced sensor technologies and edge-to-cloud solutions. This includes the development and integration of solutions for Hospitalization at Home, enabling patients to receive complex, remotely supervised care using intelligent medical devices capable of sensing, analysing, and transmitting real-time data. This requires a continuum, from in-hospital diagnostics to robust, long-term patient support at home via AI-driven care pathways and hospitalization at home. • Prevention and treatment of diseases, allowing the improved scientific understanding, early detection and proactive prevention of diseases through scientific research, continuous monitoring, predictive analytics, and timely alerts, possibly powered by AI algorithms. This preventive approach enables early intervention and significantly reduces risks associated with many illnesses such as viral infections (e.g. epi- and pan demics), cardiovascular diseases, diabetes complications affecting the health of the young and old. • Efficient, scalable, and cost-effective healthcare, demonstrating how ECS-based technologies can streamline clinical workflows, reduce administrative burdens, and improve resource allocation in healthcare systems. This includes automation and intelligent operations management across clinical, diagnostic, and homecare settings, ultimately improving cost-effectiveness and scalability. • Secure and compliant healthcare continuum, including solutions that ensure robust data protection and regulatory compliance (e.g. GDPR), particularly in handling sensitive health data. Projects should adopt privacy-by-design principles and implement secure data handling architectures using localized edge computing, encryption, authentication, and anonymization strategies within both clinical and assisted living environments. • Seamless interoperability across devices, systems, and platforms, addressing the integration of heterogeneous systems across the edge-to-cloud continuum. Solutions should rely on open standards and modular architectures to ensure interoperability, flexibility, and adaptability across various healthcare settings and use cases, fostering a unified European health-tech ecosystem. Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
NSF invests in scientific discoveries, technological breakthroughs, and transformative innovations that strengthen economic growth, enhance security, and improve the lives of Americans and people around the world. Our ability to support that mission requires a robust scientific and engineering (S&E) enterprise in the United States that allows scientists to innovate at the frontier. In addition to funding scientists, America needs next-generation scientific instrumentation that allows scientists to pursue new innovations. In many fields, it is critical that this new scientific instrumentation is developed in the United States. In support of this mission, NSF is initiating a pilot emphasis area for its SBIR/STTR programs to invest in startups and small businesses that are specifically developing enabling technologies that include next-generation instrumentation, novel experimental platforms, and other scientific equipment to advance the frontiers of scientific discovery and strengthen the American scientific and engineering enterprise. This encompasses novel instrumentation necessary for the coming era of AI-driven discoveries. This pilot will prioritize investing in the necessary infrastructure to support entirely new fields of scientific discovery, making new technological breakthroughs and transformative applications possible. Through this approach, NSF will continue to lead in propelling the scientific enterprise to new frontiers. This pilot emphasis area for the NSF SBIR/STTR programs funds across enabling technology areas and market sectors in alignment with the above goals; the programs do not solicit specific technologies for the purpose of procuring goods and services for the agency from startups and small businesses. NSF will continue to invest in other deep-tech ventures through the historic NSF SBIR/STTR programs available here. Funding opportunities are available through the NSF SBIR/STTR programs: Phase I, Phase II, Fast-Track, and Supplements. Each company can receive up to $2.0 million for R&D. Separately, NSF welcomes Strategic Breakthrough proposals, upon recommendation from the Program Officer, for Phase II awardees. NSF takes no equity and awardees keep full ownership of their company and intellectual property. Expanding Participation in STEM and Gold Standard Science: NSF prioritizes cutting-edge discovery science and engineering research, advancing technology and innovation, and creating opportunities for all Americans. NSF also expects the highest standards of scientific rigor, integrity and adherence to tenets of Gold Standard Science in proposals, as appropriate for the field of science and research modality. Funding Opportunity Number: 26-511. Assistance Listing: 47.084. Funding Instrument: G. Category: ST. Award Amount: $40M total program funding.
DURIP is the quiet infrastructure grant behind a large share of university AI research that DoD later builds on, and it is frequently overlooked because it funds equipment rather than people. Under opportunity W911NF26S0095, the FY2027 competition provides funds for accredited U.S. institutions of higher education to acquire major research equipment and instrumentation supporting defense-relevant research and the education of scientists and engineers. For AI groups the relevant use is direct: GPU and accelerator clusters, high-performance computing and storage for large model training, robotic platforms and manipulators, sensor and perception rigs, autonomous ground and air testbeds, and instrumented environments for human-machine teaming experiments. Awards are one year and range from $50,000 to $3,000,000 against roughly $28 million in total FY2027 funding, which is about $6 million below the FY2026 level - a tightening that makes the fit between the requested instrument and an existing DoD-relevant research portfolio more decisive than in past cycles. The structural point applicants often miss is that DURIP is not a standalone equipment purchase program: proposals are evaluated on how the instrumentation enables defense-relevant research, so the strongest submissions are anchored to active or planned ARO, ONR or AFOSR research and are written by PIs with a visible track record in the sponsoring service's portfolio. Eligibility is narrower than most DoD basic research announcements - accredited U.S. institutions of higher education with degree-granting programs in science, mathematics or engineering, explicitly excluding for-profit educational institutions, with University Affiliated Research Centers also permitted to apply. There is no cost-share requirement, but institutional commitment to house, maintain and staff the instrument is a practical evaluation factor. Full proposals are due November 6, 2026 at 5:00 PM Eastern, and because the three service research offices issue parallel solicitations under the same program, applicants should read the specific service announcement matching their research area rather than a generic DURIP summary.
The EU's last major Horizon Europe work programme puts €14B on the table through 2027. A strategic breakdown of budgets, deadlines, eligibility, and how US-based teams can compete.
Read articleEUR 307M in Horizon Europe AI calls closed April 15, 2026. US researchers can participate — but the rules are specific. Here is how to navigate them.
Read articleThe EU committed €900 million to lure researchers with relocation grants worth up to €2 million each. France placed 41 of 46 recruits from the US. Here is what the global talent war means for American research institutions and grant seekers.
Read article