Project Grant 2155208
- This Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070) provides $203,206 to the University of Kansas Center for Research Inc. over a 4-year period from September 2024 to August 2028. The grant funds the development of a new framework for securing hardware intellectual property (IP) against reverse engineering, theft, and piracy threats. The project uses a combination of reinforcement learning...
- Federal Project Grant Award Summary The National Science Foundation's Computer and Information Science and Engineering program (CFDA 47.070), administered through the Office of Advanced Cyberinfrastructure, awarded $496,820 to the University of California, San Diego on December 15, 2025, for research on hardware intellectual property (IP) protection in semiconductor design. The project, titled "Hardware Intellectual Property Protection Through Hybrid ASIC/TRAP Integrated Circuit...
- This Project Grant from the National Science Foundation's Division of Computer and Network Systems, under the Computer and Information Science and Engineering program (CFDA 47.070), provides $173,000 to the Long Beach Research Foundation of California State University to investigate secure embedded field-programmable gate array (EFPGA) redaction solutions and dynamic key schemes for hardware security and reliability from March 2023 to February 2025. The project aims to develop a comprehensive...
- This Project Grant award from the National Science Foundation (NSF) STEM Education program (CFDA 47.076) provides $3,000,000 to New York University (NYU) to develop an innovative PhD traineeship model that empowers researchers from diverse disciplines to design specialized computer hardware and application-specific integrated circuits (ASICs). The key products and services to be delivered include: Tailored chip design coursework and a "Silicon Makerspace" that makes chip design...
- The National Science Foundation Division of Computing and Communication Foundations awarded a $499,058 Project Grant to Stony Brook University to support research titled "SATC: CORE: SMALL: SELECTIVE DATA PROTECTION AGAINST DATA-ORIENTED AND TRANSIENT EXECUTION ATTACKS." The grant period runs from July 1, 2021 to June 30, 2024. The funding supports research and development of techniques to protect data and systems against data-oriented and transient execution attacks through...
- This three-year, $221,204 National Science Foundation project grant supports research at North Carolina A&T State University to develop an ensemble of countermeasures addressing hardware Trojans implanted in integrated circuit thermal sensors. Hardware Trojans pose risks to computing system security, reliability, and performance. While detection methods exist, each has limitations when used individually at the design, test, or runtime stages of integrated circuit development. This project...
- The National Science Foundation Division of Computer and Network Systems awarded a $731,838 Project Grant to the University of Texas at Dallas to develop algorithms and techniques for learning the hidden structure of digital and analog circuits from side-channel measurements. This work aims to advance hardware security and integrity checking by allowing adaptive interaction with circuits to intelligently model arbitrary analog circuit side-channels and utilize non-linear solvers and...
- This National Science Foundation project grant provides $100,000 to support research into integrated circuit cloaking against reverse engineering through adversarial machine learning techniques. The University of California, Irvine will utilize the funding over a two-year period ending April 2024 to develop novel integrated circuit cell layouts that cannot be identified through scanning electron microscope images obtained via reverse engineering attempts. Researchers will introduce adversarial...
- This $174,705 project grant from the National Science Foundation's Computer and Information Science and Engineering program (CFDA 47.070) supports research at the Rochester Institute of Technology to develop a design space modeling framework for logic obfuscation configuration in integrated circuits. The goal is to automate identification of effective allocations of obfuscation resources that maximize system-wide security with minimal design overhead. Key products include quantifiable security...
- This Project Grant from the National Science Foundation's Integrative Activities program, with a CFDA number of 47.083, provides $515,208 to Prairie View A&M University. The funding supports research to improve detection of malicious hardware alterations in integrated circuits through two complementary approaches. Specifically, the University will analyze circuit delays to detect and locate hardware trojans, develop clock frequency sweeping methods to target trojans despite process...
SATC: TTP: MEDIUM: HARDWARE INTELLECTUAL PROPERTY PROTECTION THROUGH HYBRID ASIC/TRAP INTEGRATED CIRCUIT DESIGN -AS THE SEMICONDUCTOR INDUSTRY TRANSITIONED FROM AN IN-HOUSE FABRICATION MODEL TO A THIRD-PARTY FOUNDRY MODEL, IT PROVIDED WIDESPREAD ACCESS TO CUTTING EDGE TECHNOLOGY AT AFFORDABLE COST AND ACCELERATED DEVELOPMENT OF ADVANCED ELECTRONIC CIRCUITS. AT THE SAME TIME, IT INTRODUCED NEW CONCERNS REGARDING PROTECTION OF THE INTELLECTUAL PROPERTY OF THESE ELECTRONIC CIRCUITS, WHOSE BLUEPRINTS MUST NOW BE SHARED WITH GLOBALLY DISTRIBUTED AND POTENTIALLY UNTRUSTED ENTITIES INVOLVED IN THE CONTEMPORARY ELECTRONICS SUPPLY CHAIN. TO ADDRESS THESE CONCERNS, THIS PROJECT IS DEVELOPING A METHODOLOGY WHICH ENABLES REDACTION OF PROPRIETARY OR SENSITIVE PORTIONS OF AN ELECTRONIC CIRCUIT PRIOR TO FABRICATION AND REINSTATEMENT UPON RECEIPT OF THE FINAL PRODUCT, THEREBY PROTECTING THE CRITICAL INTELLECTUAL PROPERTY FROM THEFT AND/OR MALICIOUS MODIFICATION. BY FOCUSING ON TRANSITIONING THIS TECHNOLOGY TO PRACTICE IN COLLABORATION WITH OTHER ACADEMIC INSTITUTIONS, INDUSTRIAL PARTNERS AND FEDERAL LABORATORIES, THIS PROJECT ADDRESSES THE NEED FOR HIGH TECHNOLOGY-READINESS LEVEL SOLUTIONS AS WELL AS WORKFORCE DEVELOPMENT. CONSIDERING THE PERVASIVE DEVELOPMENT OF ELECTRONICS IN EVERY FACET OF MODERN LIFE, INCLUDING CRITICAL INFRASTRUCTURE, THE OBJECTIVE OF THIS PROJECT ALIGNS WITH NSF'S MISSION TO SECURE THE NATIONAL DEFENSE AND TO ADVANCE PROSPERITY. AT A TECHNICAL LEVEL, THIS PROJECT BUILDS UPON A NOVEL TRANSISTOR-LEVEL PROGRAMMABLE (TRAP) FABRIC WHICH CHALLENGES CONVENTIONAL PRACTICES IN RECONFIGURABLE COMPUTING BY PUSHING GRANULARITY OF POST-FABRICATION PROGRAMMABILITY DOWN TO THE TRANSISTOR-LEVEL. THEREBY, TRAP ACHIEVES SIGNIFICANT REDUCTION IN AREA, PERFORMANCE AND POWER CONSUMPTION OVERHEAD OVER CONVENTIONAL LOOK-UP TABLE (LUT) BASED SOLUTIONS, WHILE AT THE SAME TIME PRESENTING HARDER OBSTACLES FOR BRUTE-FORCE OR INTELLIGENT SEARCH-BASED REVERSE ENGINEERING ATTACKS TO OVERCOME. TO TRANSITION THIS TECHNOLOGY TO PRACTICE, THIS PROJECT IS DEVELOPING AN ECOSYSTEM OF DESIGN TOOLS, TRAINING MATERIAL AND PROOF-OF-CONCEPT SILICON FABRICATION OPPORTUNITIES, TO ENABLE THE USE OF UNTRUSTED FACILITIES FOR MANUFACTURING TRUSTED ELECTRONIC COMPONENTS WHILE PREVENTING UNAUTHORIZED ENTITIES FROM BEING ABLE TO UNDERSTAND, USE OR COPY SENSITIVE HARDWARE INTELLECTUAL PROPERTY. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($497k) | 12/4/25 | ||
| Not listed | $900.0k | 7/14/22 |