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Find similar grantsMicroelectronics Science Research Centers (MSRCs) is sponsored by U.S. Department of Energy (DOE) Office of Science. The DOE announced funding for three Microelectronics Science Research Centers to perform basic research in microelectronics materials, device and system design, and manufacturing science to transform future microelectronics technologies.
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Department of Energy Announces $179 Million for Microelectronics Science Research Centers | Department of Energy Department of Energy Announces $179 Million for Microelectronics Science Research Centers Centers focus on basic research to transform the energy efficiency of microelectronics and create microelectronics for extreme environments WASHINGTON, D. C .
- Today, the U.S. Department of Energy (DOE) announced $179 million in funding for three Microelectronics Science Research Centers (MSRCs). These three MSRCs will perform basic research in microelectronics materials, device and system design, and manufacturing science to transform future microelectronics technologies.
The MSRCs were authorized by the Micro Act, passed in the CHIPS and Science Act of 2022, and complement the activities appropriated under the CHIPS and Science Act at the Department of Commerce, the Department of Defense, and other agencies.
For decades, DOE has been at the leading edge of microelectronics, both as a consumer and as an engine of scientific understanding that has enabled many of the technological breakthroughs adopted by industry.
Today, as we look beyond Moore’s Law, the emergence of new computing, artificial intelligence, and sensing workloads, in addition to rapidly expanding data, have resulted in an unprecedented need and opportunity to redesign the microelectronics materials and innovation process.
In addition to needing more energy efficient microelectronics, DOE also needs microelectronics designed to operate in extreme environments, including high-radiation, cryogenic, and high magnetic field environments. “Advancements in microelectronics are critical to furthering scientific discovery,” said Harriet Kung, DOE’s Office of Science Deputy Director for Science Programs .
“The innovations that come from these research centers will improve our daily lives and drive forward U.S. leadership in science and technology. ” The Microelectronics Energy Efficiency Research Center for Advanced Technologies (MEERCAT) is committed to revolutionizing energy-efficient microelectronics by advancing integrated innovations across materials, devices, information-carrying modalities, and systems’ architectures.
Focusing on intelligent sensing, data bandwidth, multiplexing, and advanced computing, the center will explore transformative solutions that seamlessly bridge sensing, edge processing, artificial intelligence, and high-performance computing.
Through end-to-end co-design, spanning nanoscale materials, neuromorphic architectures, in-transit data processing, and heterogeneous integration, MEERCAT will discover new approaches for real-time energy-efficient information handling.
By leveraging state-of-the-art methods for synthesis, simulation, and prototyping, the center will accelerate the deployment of novel concepts, enabling scalable, sustainable, and data-challenge-ready systems that redefine computing and sensing paradigms.
The Co-design and Heterogeneous Integration in Microelectronics for Extreme Environments (CHIME) Center aims to drive transformative advancements in extreme environment electronics through heterogeneous integration and a seamless fusion of diverse materials, processes, and technologies to enable next-generation systems.
The center will create robust, high-performance solutions capable of excelling in the most challenging conditions, including extreme thermal and radiation environments. Through co-design spanning materials, devices, circuits, and systems, the center will harness interdisciplinary expertise to optimize technologies from the atomic scale to fully integrated instrumentation.
The center’s efforts will advance rapid prototyping methodologies to accelerate the innovation cycle, enabling swift iteration and validation of novel concepts. By bridging the gap from lab-to-fab, the center will translate groundbreaking research into scalable, manufacturable solutions that address critical societal and industrial needs.
The Extreme Lithography & Materials Innovation Center (ELMIC) aims to advance the fundamental science driving the integration of new materials and processes into future microelectronic systems, focusing on key areas such as plasma-based nanofabrication, extreme ultraviolet (EUV) photon sources, 2D-material systems, and extreme-scale memory.
The center’s scientific investigations will be informed strongly by a systems-to-physics motivation aimed at long term impact. The centers are formed as networks of projects, 16 in total led out of 10 national laboratories. These projects were selected by competitive peer review under the DOE Laboratory Announcement “ Microelectronics Science Research Center Projects for Energy Efficiency and Extreme Environments .
” Total funding is $179 million for projects lasting up to four years in duration, with $41 million in Fiscal Year 2024 dollars and outyear funding contingent on congressional appropriations. The list of projects and more information can be found on the Office of Science program page . Selection for award negotiations is not a commitment by DOE to issue an award or provide funding.
Before funding is issued, DOE and the applicants will undergo a negotiation process, and DOE may cancel negotiations and rescind the selection for any reason during that time. LM Program Manager Retiring After 17-Year Career with DOE View Previous Press Release Three Years of Impact: OCED by the Numbers
According to the current listing, eligibility includes: National Laboratories, in partnership with universities and industry. Confirm the full requirements in the official notice before applying.
The current listing shows $179 million total funding for projects, with individual awards lasting up to four years. Verify award ceilings, matching requirements, and allowable costs in the official notice.
Microelectronics Science Research Centers (MSRCs) is funded by U.S. Department of Energy (DOE) Office of Science. Verify program details on the funder's official page before applying.
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MGPV Travel Grant is sponsored by Geological Society of America (GSA), Mineralogy, Geochemistry, Petrology, Volcanology Division. MGPV Travel grants support student travel to the annual GSA meeting. Applications are restricted to active graduate or undergraduate students who are the presenting authors of an accepted abstract at the annual GSA meeting.
Research Opportunities in Space and Earth Science (ROSES) - 2025: A.4 Rapid Response and Novel Research in Earth Science is sponsored by National Aeronautics and Space Administration (NASA) Science Mission Directorate (SMD). This omnibus research funding opportunity includes various program elements, with rolling submissions for Earth Science research through August 2026. Proposers to Earth Science using the NASA Center for Climate Simulation high-end computing facility must include specific budget details.
The Trump administration committed $5B and 278 projects across 15+ agencies to the Genesis Mission. Here's the structure — and how to position for the next wave.
Read articleOn July 22, 2026, the White House announced more than $5 billion in federal commitments for the Genesis Mission — the Department of Energy-led national initiative to fuse AI, exascale computing, and the 17 national labs into a single scientific platform. Nearly 300 projects across all 50 states were selected from a historic Request for Applications, and 15-plus agencies are now attaching funding to a set of National Science and Technology Challenges. Here is what the Genesis Mission is, how the money is structured, and the concrete on-ramps for researchers, universities, and small businesses who were not in the first cohort.
Read articleDOE's FY2026 Office of Science open-call solicitation (DE-FOA-0003600) makes roughly $500 million available across about 500 awards of $50,000 to $5 million — across computing, physics, chemistry, biology, fusion, and isotopes — with a rolling window that stays open through September 30, 2026. Unlike a targeted NOFO, it lets investigators propose almost anything within the agency's mission. Here is how the open call actually works, why it is chronically underused, and how to write into it.
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