Open & upcoming calls
EDIP IRA 2nd Call β Key Electronic Components
Industrial Reinforcement Action supporting increased manufacturing capacity for key defence electronics including guidance electronics, propulsion electronics, RF and laser modules, multispectral cameras, avionics, PCBs, IC substrates, lithium-ion polymer batteries, power electronics and critical semiconductor building blocks. Maximum EU contribution is EUR 20 million per project.
EDIP USI Industrial Reinforcement Action β 2nd Call: Unmanned Systems and Counter-Unmanned Systems
Ukraine Support Instrument call to reinforce production capacity for unmanned systems (UxS) and counter-unmanned systems, including EW-resilient UxS variants, UxS interceptors, and counter-UxS and EW-resilient supporting systems. Total budget EUR 80 million; maximum EU contribution EUR 10 million per project; funding rate up to 100% of eligible costs.
EDIP Industrial Reinforcement Action β 2nd Call: Platforms and End-products
Funding to increase manufacturing capacity for defence platforms and end-products covering forging/machining, key sub-systems, composites materials, assembly/integration, Manufacturing as a Service, and dual-use heavy industry conversion for defence surge. Total topic budget EUR 152.75 million; maximum EU contribution EUR 30 million per project.
EDIP Industrial Reinforcement Action β 2nd Call: Key Electronic Components
Funding to increase manufacturing capacities for key electronic components including guidance electronics, propulsion electronics, RF and laser modules, multispectral cameras, avionics, PCBs and IC substrates, lithium-ion polymer batteries, power electronics and critical semiconductor building blocks. Total topic budget EUR 122.25 million; maximum EU contribution EUR 20 million per project.
EDIP-USI β Unmanned Systems and Counter-unmanned Systems
Industrial reinforcement for unmanned and counter-unmanned systems. The PDF states a EUR 80 million envelope and up to EUR 10 million per project.
Eurostars Call 12 for projects β deadline March 2027
+ Programmes Innovation programmes Eurostars Eurostars is part of the European Partnership on Innovative SMEs. The partnership is co-funded by the European Union through Horizon Europe . Eurostars is a funding instrument that supports innovative SMEs and project partners (large companies, universities, research organisations and other types of organisations) by funding international collaborative R&D and innovation projects. By participating, organisations can access public funding for international collaborative R&D projects in all fields. To have a successful Eurostars application you must: Eurostars call. Deadline: 04 Mar 2027. Source: Eureka Network catalogue.
In Orbit Demonstration/Validation β 2023/2027
Multiple cut-off call for expressions of interest for In-Orbit Demonstration/Validation (IOD/IOV) actions, open to experiments needing aggregation and to ready-to-fly IOD/IOV satellites, with upcoming cut-off dates in October 2026 and March 2027.
FY26 DEFENSE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (DEPSCoR) β RESEARCH COLLABORATION (RC)
The Department of Defense (DoD) announces the fiscal year 2026 (FY26) Defense Established Program to Stimulate Competitive Research (DEPSCoR) β Research Collaboration (RC) opportunity. The program is sponsored and managed by the Basic Research Office, Office of the Under Secretary of Defense for Research and Engineering (OUSD [R&E]), awarded by the Air Force Office of Scientific Research (AFOSR), and administered through the Office of Naval Research (ONR). The DoD plans to award FY26 DEPSCoR appropriations through this announcement. DEPSCoR's objectives are to: (1) increase the number of university researchers in eligible States/Territories capable of performing science and engineering (S&E research responsive to the needs of the DoD; and (2) enhance the capabilities of institutions of higher education (IHE) in eligible States/Territories (listed below) to develop, plan, and execute (S&E) research that is relevant to the mission of the DoD, and competitive under the peer-review systems used for awarding Federal research assistance; (3) increase the probability of long-term growth in the competitively awarded financial assistance that IHE in eligible States receive from the Federal Government for S&E research. Consistent with these long term objectives of building research infrastructure, the DoD intends to competitively make, and fund from fiscal year 2026 appropriations, multiyear awards for S&E research in areas relevant to the DoDβs mission and important to national security. The Basic Research Office anticipates up to $14.4 million in total funding will be made available for this program to fully fund and award up to twenty four (24) grants up to $600,000 (total cost) each. Each grant award will be funded up to $200,000 (total cost) per year for three (3) years. Awards are subject to funding availability. There is no guarantee of an award. This funding opportunity aims to create basic research collaborations between a pair of researchers
FY26 DEFENSE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (DEPSCoR) CAPACITY BUILDING (CB)
The Department of Defense (DoD) announces the fiscal year 2026 (FY26) Defense Established Program to Stimulate Competitive Research (DEPSCoR) β Capacity Building opportunity. The program is sponsored and managed by the Basic Research Office, Office of the Under Secretary of Defense for Research and Engineering (OUSD [R&E]), awarded by the Air Force Office of Scientific Research (AFOSR), and administered through the Office of Naval Research (ONR). The DoD plans to award FY26 DEPSCoR appropriations through this announcement. DEPSCoR's objectives are to: (1) increase the number of university researchers in eligible States/Territories capable of performing science and engineering (S&E) research responsive to the needs of the DoD. (2) enhance the capabilities of institutions of higher education (IHEs) in eligible States/Territories (listed below) to develop, plan, and execute S&E research that is relevant to the mission of the DoD, and competitive under the peer-review systems used for awarding Federal research assistance; and (3) increase the probability of long-term growth in the competitively awarded financial assistance that IHEs in eligible States/Territories receive from the Federal Government for S&E research. The Basic Research Office anticipates up to $6 million in total funding will be made available for this program to fully fund and award between one to four grants up to $1.5 million (total cost) each. Each grant award will be funded up to $750,000 (total cost) per year for two (2) years. The award is subject to funding availability. The Basic Research Office reserves the right to select and fund for award all, some, part, or none of the proposals received. There is no guarantee of an award. This funding opportunity aims to support the strategic objectives of IHEs (either individually or in partnership with others) in DEPSCoR States/Territories to achieve basic research excellence in areas of high relevance to the DoD. IHEs in the following State
CDTI PID β Proyectos de I+D (2026β2027 open call)
Continuous open call for Spanish companies executing R&D projects. Advance up to 50% (up to β¬300,000) without additional guarantees, partly-repayable loan with a non-repayable tranche of 10β33%. Projects must last 12β36 months.
Information Processing Techniques Office Office-Wide
This Broad Agency Announcement (BAA) seeks revolutionary research ideas for topics not being addressed by ongoing IPTO programs or other published solicitations. Potential proposers are highly encouraged to visit the IPTO technical office page (https://www.darpa.mil/about/offices/ipto) to view current and upcoming IPTO programs and solicitations in order to avoid proposing efforts that duplicate existing activities or that are responsive to other published IPTO solicitations. All responsible sources capable of satisfying the Government's needs may submit a proposal that shall be considered by DARPA. See the Eligibility Information section of the BAA for more information.
Integrated Data Systems & Services (IDSS)
The Integrated Data Systems and Services (IDSS) program supports operations-level national-scale cyberinfrastructure systems and services that broadly advance and facilitate open, data-intensive and artificial intelligence-driven science and engineering research, innovation, and education. Through this solicitation, the IDSS program is accepting proposals for three categories of projects: Category I. Development, deployment, and operation of novel national-scale integrated data systems and services, which may include interfacing with or leveraging other existing capabilities, systems and services, as appropriate to the project; Category II. β―Transition of established smaller scale, regional, pilot, or prototype data-focused systems and services to national-scale production/operational quality/level. This may also include enhancement and expansion of existing national-scale data-focused operational systems and services; and Category III. Planning grants for future potential development/deployment or transition/enhancement IDSS projects. NSF and the Office of Advanced Cyberinfrastructure (OAC) have long supported the development of innovative foundational and application-specific cyberinfrastructure resources and systems to address data-intensive research needs at the campus, regional, and community scales, through programs such as Cyberinfrastructure for Sustained Scientific Innovation (CSSI), Campus Cyberinfrastructure (CC*), and other investments. The primary goal of the IDSS program is to support national-scale foundational data cyberinfrastructure that broadly enables data- and artificial intelligence-driven research for many communities. The IDSS program supports foundational transdisciplinary and demonstrably multi-disciplinary projects aimed to broadly impact the science and engineering research and education community. Projects that aim to primarily benefit a single science discipline, domain, project, or application are not supported. It is
Expeditions in Computing (Expeditions)
The far-reaching impact and rate of innovation in the computer and information science and engineering ο¬elds has been remarkable, generating economic prosperity, and enhancing the quality of life for people. More than a decade ago, the NSF Directorate for Computer and Information Science and Engineering (NSF CISE) established the NSF Expeditions program to provide the NSF CISE research community with the opportunity to pursue ambitious, foundational research agendas that promise to deο¬ne the future of computing and information. Investigators are strongly encouraged to come together within or across departments or institutions to identify compelling, transformative research agendas that look ahead by at least a decade and promise disruptive innovations in computer and information science and engineering for the years ahead. Expeditions may advance a range of areas including, but not limited to, fundamentally new architectures for intelligence and the hardware and compute substrates that make them possible; rigorous physical and mathematical theories of how systems learn, generalize, and can be interpreted; neuroscience-inspired approaches to learning, memory, reasoning, and behavioral steering; intelligence embodied in the physical world through general physical intelligence, advanced robotics hardware, and novel architectures and learning paradigms for embodied systems; transformative approaches to next generation communication and networking; and high-risk, high-reward areas that no single discipline could pursue alone. β― Now funded at levels up to $15,000,000 over seven years, NSF Expeditions projects represent some of the largest single investments made by the CISE Directorate. These awards are designed to promote the formation of large, multidisciplinary research teams to address transformative foundational computing research problems. This reflects CISEβs recognition that achieving deep and lasting breakthroughs often require advances in multiple ο¬elds or su
SEEDING CRITICAL ADVANCES FOR LEADING ENERGY TECHNOLOGIES WITH UNTAPPED POTENTIAL (SCALEUP) READY
The purpose of this modification is to clarify the meaning of the Program Policy Factors in Section V.C. To obtain a copy of the Notice of Funding Opportunity (NOFO) please go to the ARPA-E website at https://arpa-e-foa.energy.gov. To apply to this NOFO, Applicants must register with and submit application materials through ARPA-E eXCHANGE (https://arpa-e-foa.energy.gov/Registration.aspx). For detailed guidance on using ARPA-E eXCHANGE, please refer to the ARPA-E eXCHANGE User Guide (https://arpa-e-foa.energy.gov/Manuals.aspx). ARPA-E will not review or consider concept papers submitted through other means. For problems with ARPA-E eXCHANGE, email ExchangeHelp@hq.doe.gov (with NOFO name and number in the subject line). Questions about this NOFO? Check the Frequently Asked Questions available at http://arpa-e.energy.gov/faq. For questions that have not already been answered, email ARPA-E-CO@hq.doe.gov. AGENCY OVERVIEW The Advanced Research Projects Agency β Energy (ARPA-E), an organization within the Department of Energy (DOE), is chartered by Congress in the America COMPETES Act of 2007 (P.L. 110-69), as amended by the America COMPETES Reauthorization Act of 2010 (P.L. 111-358), as further amended by the Energy Act of 2020 (P.L. 116-260): β(A) to enhance the economic and energy security of the United States through the development of energy technologies thatβ (i) reduce imports of energy from foreign sources; (ii) reduce energy-related emissions, including greenhouse gases; (iii) improve the energy efficiency of all economic sectors; (iv) provide transformative solutions to improve the management, clean-up, and disposal of radioactive waste and spent nuclear fuel; and (v) improve the resilience, reliability, and security of infrastructure to produce, deliver, and store energy; and (B) to ensure that the United States maintains a technological lead in developing and deploying advanced energy technologies.β ARPA-E issues this Notice of Funding Opportunit
National Center for Narrative Intelligence (NCNI)
Under this FY26 grant agreement, academic partners will establish the National Center for Narrative Intelligence (NCNI) by executing RDT&E tasks across the following four pillars: workforce development, applied research infrastructure, collaborative networks, and strategic analysis for DoW leadership. The only eligible applicant is the Mississippi State University; no other applications will be considered.
MPS Physics Research Programs (MPS Physics)
The U.S. National Science Foundation Directorate for Mathematical and Physical Sciences (NSF MPS) supports multiple research programs at the frontiers of discovery in physics. Physics research supported by NSF MPS enables understanding of the fundamental aspects of nature at all scales, from the quantum effects inside atoms to the mysterious dark energy spanning the entire universe. The core research programs covered by this funding opportunity are: Atomic, Molecular, and Optical Physics - Experiment (AMO-Experiment) Atomic, Molecular, and Optical Physics - Theory (AMO-Theory) Elementary Particle Physics - Experiment (EPP-Experiment) Elementary Particle Physics, Astrophysics and Cosmology - Theory (EPP/Cosmology-Theory) Gravitational Physics Integrative Activities in Physics (IAP) Nuclear Physics - Experiment (NP-Experiment) Nuclear Physics - Theory (NP-Theory) Particle Astrophysics - Experiment (PA-Experiment) Physics of Living Systems (PoLS) Plasma Physics Quantum Information Science (QIS) The cross-cutting research programs covered by this funding opportunity are: Advanced Physics Instrumentation (API) Focused Research Hubs in Theoretical Physics (FRHTP) Physics at the Information Frontier (PIF) NSF MPS is particularly interested in intellectually ambitious and potentially transformative foundational research. Proposals need not promise a near-term product, deployment, or commercial outcome, nor need they address later-stage development to be competitive.
MPS Mathematical Sciences Research Programs (MPS MathSci)
The U.S. National Science Foundation Directorate for Mathematical and Physical Sciences (NSF MPS) supports multiple research programs at the frontiers of discovery in theoretical and applied mathematical sciences. Programs include: Algebra and Number Theory Analysis Applied Mathematics Combinatorics Computational Mathematics Foundations Geometric Analysis Mathematical Biology Probability Statistics Topology Mathematical Sciences Research Infrastructure Mathematical Sciences Focused Research Groups Mathematical Sciences Research Training Groups NSF anticipates a portfolio of awards for these programs with a range of budgets, durations and scopes. Program budgets, number of awards, award sizes and durations are subject to the availability of funds. NSF MPS is particularly interested in intellectually ambitious and potentially transformative foundational research. Proposals need not promise a near-term product, deployment, or commercial outcome, nor need they address later-stage development to be competitive. *Who May Submit Proposals: Proposals may only be submitted by the following: -Non-profit, non-academic organizations: Independent museums, observatories, research laboratories, professional societies and similar organizations located in the U.S. that are directly associated with educational or research activities. -Institutions of Higher Education (IHEs): Two- and four-year IHEs (including community colleges) accredited in, and having a campus located in the US, acting on behalf of their faculty members. Special Instructions for International Branch Campuses of US IHEs: If the proposal includes funding to be provided to an international branch campus of a US institution of higher education (including through use of sub-awards and consultant arrangements), the proposer must explain the benefit(s) to the project of performance at the international branch campus, and justify why the project activities cannot be performed at the US campus. -Tri
Engineering (ENG): Electrical, Communications, and Computing Systems (ECCS)
The U.S. National Science Foundation Directorate for Engineering (NSF ENG) supports foundational research for electrical, communications and computing systems through the following programs: The Electronic, Photonic, Magnetic, and Quantum Devices (EPMQD) program supports foundational engineering research on novel classical and quantum devices, exploring matterβs electronic, photonic, and magnetic properties to enable new applications. The Circuits and Systems for Communications and Sensing (CSCS) program supports foundational engineering research on classical and quantum aspects of advanced components, systems, and signal processing for communications and sensing. The Energy, Power, Control, and Learning (EPCL) program supports foundational research on systems and control, learning, optimization, artificial intelligence, and networked multi-agent systems, and their applications, with emphasis on power and energy systems. NSF ENG anticipates a portfolio of ENG: Electrical, Communications, and Computing Systems (ECCS) awards with a range of budgets and durations. Estimated program budget, number of awards, and average award size/duration are subject to the availability of funds. NSF ENG is particularly interested in intellectually ambitious and potentially transformative foundational research. Proposals need not promise a near-term product, deployment, or commercial outcome, nor need they address later-stage development to be competitive.
Engineering (ENG): Chemical, Bioengineering, Energy, and Transport Systems (CBET)
The U.S. National Science Foundation Directorate for Engineering (NSF ENG) supports foundational engineering research for chemical, bioengineering, energy, and transport systems through the following programs:β― The Chemical Process Systems (CPS) program supports foundational engineering research in chemical and biochemical processes for chemicals, fuels, energy, and materials. The Engineering Biological and Biomedical Systems (EBBS) program supports foundational engineering research on platforms, devices, organisms, tissues, and processes that advance knowledge and control of biological functions. The Energy, Water, and Resource Engineering (EWRE) program supports foundational engineering research to manage energy, water, minerals, and material resources. The Transport Phenomena (TP) program supports foundational engineering research to understand, model, and control the transport of mass, momentum, energy, and species across multiple scales. NSF ENG anticipates a portfolio of ENG: Chemical, Bioengineering, Energy, and Transport Systems (CBET) awards with a range of budgets and durations. Estimated program budget, number of awards, and average award size/duration are subject to the availability of funds. NSF ENG is particularly interested in intellectually ambitious and potentially transformative foundational research. Proposals need not promise a near-term product, deployment, or commercial outcome, nor need they address later-stage development to be competitive.
Transport Phenomena (TP)
The Transport Phenomena (TP) program supports fundamental research to understand, model, and control the transport of mass, momentum, energy, and species across multiple scales. Innovative TP research supports advances in artificial intelligence; manufacturing; biotechnology; microelectronics; energy generation, extraction, and utilization; nuclear energy; quantum science and engineering; and other national priorities. TP projects involve experiments, theory, and/or computational modeling. They aim to improve understanding and to create novel analytical techniques. While projects focus on fundamental principles, they also have a clear vision of how research outcomes will benefit applications in engineering. TP supports research on the dynamics of single- and multiphase systems. Special interests include flow separation, transition to turbulence, drag reduction, cavitation, instabilities, and reactive flows. The program encourages research on the connection between dynamics at the microscale and material and flow properties at the macroscale. Fluids of interest include liquids, gases, suspensions, emulsions, granular materials, active fluids, biological fluids, colloids, aerosols, bubbles and drops, and fluids with surfactants. TP supports research on physicochemical phenomena at the interfaces between fluids and between fluids and solids. These phenomena include adsorption and desorption of nanoparticles and surfactants; bulk and interfacial rheology; wetting and capillarity phenomena; electrokinetics; flow in porous media; and directed and self-assembly of particles. TP supports research on thermodynamics and thermal transport involving conduction, diffusion, convection, phase transition, and radiation. Research may be across scales, in complex structures and at interfaces, in microelectronic devices, and in biological systems. Projects involving phonon transport and quantum thermal phenomena are welcome. TP encourages proposals focused on combustion of gas, l