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Find similar grantsThe COOLERCHIPS program aims to develop novel high-performance, high-reliability cooling systems for compute electronics, enabling power-dense computational systems, data centers, and modular EDGE systems cooled with 5% or less of the IT load.
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Or search similar grants →According to the current listing, eligibility includes: Multi-disciplinary teams incorporating expertise from compute servers, heat transfer, reliability, modeling, data center techno-economics, data center operation, and commercialization. Confirm the full requirements in the official notice before applying.
The current listing shows not specified, but individual projects can receive significant funding (e.g., $1.1 million subcontracts). Verify award ceilings, matching requirements, and allowable costs in the official notice.
Cooling Operations Optimized for Leaps in Energy, Reliability and Carbon Hyperefficiency for Information Processing Systems (COOLERCHIPS) is funded by DOE Advanced Research Projects Agency-Energy (ARPA-E). Verify program details on the funder's official page before applying.
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Structural and Architectural Engineering and Materials (SAEM) is sponsored by U.S. National Science Foundation (NSF). The SAEM program supports fundamental research for advancing knowledge and innovation in structural and architectural engineering and materials that promotes a holistic approach to analysis and design, construction, operation, maintenance, retrofit, and repair of structures. This includes research in new engineering concepts and design paradigms for buildings with significantly reduced dependence on municipal infrastructure through, for example, building components that can aid in minimizing fresh water consumption or can promote self-heating-cooling-ventilating. For buildings, all components including the foundation-structure-envelope (the façade, curtain-wall, windows, and roofing) are of interest.
Transition to low-temperature heating solutions in multi-apartment buildings is sponsored by European Commission — Horizon Europe. Expected Outcome: The projects are expected to deliver on one of or combination of the following topic outcomes: Faster transition of district heating systems towards low-temperature operations Faster transition of building heating systems towards low-temperature operations Increased use of renewable energy and/or waste heat. Scope: Low-temperature district heating systems in urban areas offer higher potential for integration of renewable energy sources and waste heat, but their deployment is slowed down because the existing stock of inefficient buildings has been designed for high-temperature heat delivery systems. The topic supports the creation of the conditions necessary for the conversion of existing supply solutions – district heating, as well as individual heating ones – into low-temperature alternatives, along with reducing and optimising the heat load of buildings. Efficient district heating systems are expected to meet increasingly stringent criteria in terms of the use of renewable energy, waste heat and/or co-generation in line with Article 26(1) of the Directive (EU) 2023/1791. To help district heating operators meet those criteria, there is a need to demonstrate solutions that support the transition to low-temperature district heating systems operating at supply temperatures at below 70°C. There is currently a limited choice of established non-fossil fuel heating and hot water systems to replace fossil-fuel based heating systems in multi-apartment buildings. There is a need to demonstrate systems based on heat pumps solutions to replace both central and individual fossil fuel boilers in existing residential multi-apartment buildings. Proposals are expected to address at least two of the following: Demonstrate system design and technical solutions at district and building level, to enable the integration of various heat supply sources (particularly renewable energy sources and waste heat), and to facilitate the transition to low-temperature district heating systems. Furthermore, refine digital tools for the control and monitoring of district heating systems as well as digital tools to support decision-making both at the initial planning stages and for the standardized replication of solutions. Demonstrate building-level heating solutions for hot water and low-temperature heating with maximum heating supply temperatures up to 50°C and fulfilling water safety regulations in at least four residential multi-apartment buildings of at least 1000 m2 each. The solutions should be transferrable and standardised. Demonstrate building-level heating solutions for hot water and heating needs in at least four residential multi-apartment buildings of at least 1000 m2 each that use either on-site renewable energy sources or an ambient or geothermal loop shared with other buildings / facilities, or a connection to district heating systems for the heat supply. At a building, district or city level, demonstrate approaches for connecting buildings via district heating networks and ambient or geothermal loops to reduce the overall energy demand, to facilitate the deployment of low-temperature district heating systems and to improve heating systems’ flexibility via the integration of heat storage, including in heat networks, by or with the inclusion of energy communities. Ensure the participation of local energy communities to assess their socio-economic benefits for the local community and heating system operators. Projects are expected to demonstrate the proposed solutions in two different climate zones, at building, district and/or city level, and to assess the environmental, social and economic benefits of the proposed solutions for the local community and heating system operators while accounting for the regional economic and regulatory aspects. The system design must include advanced controls to allow exploiting the energy flexibility of individual heating systems in a collective way. Projects must present a concise state-of-the- Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Climate, Energy and Mobility Keywords: Civil engineering, Decarbonisation, District Heating & Cooling, Renewable energy sources, Renewable heating & cooling, building heating systems, deacarbonisation, district heating systems, renewable energy, waste heat
On August 24, 2026, DOE and SBA signed a memorandum of agreement creating the Small Business Investment Company-Energy Initiative, pointing a $58 billion SBA-leveraged investment program at DOE's technology priorities. No application, no NOFO, no deadline. Here is how SBIC capital actually works, why a January 2026 rule change made this possible, and what a company sitting on a DOE Phase II award should do about it.
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