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2607580

Cooperative Agreement

Overview

Grant Description
NSF PCL-TEST BED: AI-ENABLED, CLOUD-BASED SELF-DRIVING NANOFABRICATION NODE FOR ACCELERATING SEMICONDUCTOR RESEARCH AND EDUCATION -NSF PCL-TEST BED: AI-ENABLED, CLOUD-BASED SELF-DRIVING NANOFABRICATION NODE FOR ACCELERATING SEMICONDUCTOR RESEARCH AND EDUCATION THIS PROJECT WILL ADDRESS A LONGSTANDING CHALLENGE IN SEMICONDUCTOR RESEARCH AND INNOVATION, VIZ., THE SLOW, COSTLY, AND DIFFICULT TO REPRODUCE PROCESSES INVOLVED IN THE DEVELOPMENT OF MINISCULE, MICRO- AND NANOSCALE ELECTRONIC, PHOTONIC, AND SENSING DEVICES DUE TO THE FACT THAT MANY FABRICATION PROCESSES CONTINUE TO RELY ON MANUAL TESTING AND EXPERT JUDGMENT. THE PROJECT AIMS TO CREATE A SECURE, REMOTELY AND BROADLY ACCESSIBLE LABORATORY THAT CONNECTS NANOFABRICATION TOOLS, MEASUREMENT SYSTEMS, STRUCTURED DATA, AND COMPUTING RESOURCES INTO A UNIFIED EXPERIMENTAL ENVIRONMENT. BY USING HUMAN-SUPERVISED AI-ASSISTED WORKFLOWS, THE PLATFORM WILL ACCELERATE LEARNING FROM EXPERIMENTAL DATA AND DRAMATICALLY REDUCE THE TIME REQUIRED TO MOVE FROM PROMISING CONCEPTS TO VALIDATED DEVICES. THIS INVESTMENT WILL STRENGTHEN U.S. LEADERSHIP IN SEMICONDUCTOR INNOVATION, ENHANCE NATIONAL COMPETITIVENESS, AND SUPPORT TECHNOLOGIES ESSENTIAL TO COMPUTING, COMMUNICATIONS, HEALTH, AND NATIONAL SECURITY. THE PROJECT WILL ALSO BROADEN ACCESS TO ADVANCED RESEARCH INFRASTRUCTURE AND PROVIDE HANDS-ON EDUCATION AND WORKFORCE TRAINING FOR FUTURE SEMICONDUCTOR SCIENTISTS, ENGINEERS, AND TECHNICAL PROFESSIONALS.? THE PROJECT WILL ESTABLISH THE VIRGINIA TECH NSF PROGRAMMABLE CLOUD LABORATORY (PCL) NODE FOR SECURE, REMOTELY ACCESSIBLE, AND HUMAN-SUPERVISED SEMICONDUCTOR NANOFABRICATION RESEARCH. THIS WILL BE AN AI-ENABLED, REMOTELY ACCESSIBLE SELF-DRIVING NANOFABRICATION PLATFORM DESIGNED TO ACCELERATE SEMICONDUCTOR AND NANO DEVICE DESIGN-BUILD-TEST-LEARN CYCLES. THE PLATFORM WILL INTEGRATE NANOFABRICATION INSTRUMENTS, CHARACTERIZATION TOOLS, STRUCTURED DATA SYSTEMS, AND COMPUTATIONAL RESOURCES TO ACCELERATE ITERATIVE DESIGN, FABRICATION, MEASUREMENT, AND LEARNING CYCLES. AI-ASSISTED WORKFLOWS WILL SUPPORT EXPERIMENT PLANNING, PROCESS MONITORING, MEASUREMENT ANALYSIS, AND ITERATIVE IMPROVEMENT OF FABRICATION PROCESSES. THE TECHNICAL SCOPE WILL INCLUDE STANDARDIZED EXPERIMENT RECORDS, COORDINATED TOOL AND METROLOGY DATA, SECURE USER ACCESS, WORKFLOW ORCHESTRATION, AND REUSABLE PROCESS DESCRIPTIONS THAT IMPROVE REPRODUCIBILITY ACROSS USERS AND PROJECTS. REPRESENTATIVE VALIDATION WORKFLOWS WILL INCLUDE DIELECTRIC META-OPTICS, PLASMONIC BIOSENSORS, FLEXIBLE BIOELECTRONICS, AND THIN-FILM LITHIUM NIOBATE QUANTUM AND TELECOMMUNICATIONS PHOTONICS. THE INTELLECTUAL CONTRIBUTION LIES IN ADVANCING NEW KNOWLEDGE ON HOW TO COMBINE DATA DRIVEN MODELS, PHYSICAL PROCESS UNDERSTANDING, AND HUMAN OVERSIGHT TO IMPROVE COMPLEX SEMICONDUCTOR NANOFABRICATION WORKFLOWS AFFECTED BY VARIABILITY, NONLINEAR BEHAVIOR, AND INTERACTIONS ACROSS MULTIPLE LENGTH SCALES. THE PROPOSED METHODOLOGY WILL DEVELOP AN AI-DRIVEN SELF-DRIVING EXPERIMENTATION FRAMEWORK THAT INTEGRATES PHYSICS-INFORMED MODELS, MACHINE LEARNING APPROACHES, AND HUMAN-IN-THE-LOOP OVERSIGHT. THE RESULTING INFRASTRUCTURE WILL ESTABLISH THE GROUNDWORK FOR FASTER AND MORE REPRODUCIBLE SEMICONDUCTOR RESEARCH, BROADER ACCESS TO ADVANCED NANOFABRICATION CAPABILITIES, AND WORKFORCE TRAINING AT THE INTERSECTION OF FABRICATION, DATA SCIENCE, AND INTELLIGENT AUTOMATION.? 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.- SUBAWARDS ARE PLANNED FOR THIS AWARD.
Funding Goals
THE GOAL OF THIS FUNDING OPPORTUNITY, "TEST BED: TOWARD A NETWORK OF PROGRAMMABLE CLOUD LABORATORIES", IS IDENTIFIED IN THE LINK: HTTPS://WWW.NSF.GOV/PUBLICATIONS/PUB_SUMM.JSP?ODS_KEY=NSF25541
Awarding / Funding Agency
Place of Performance
Blacksburg, Virginia 24060-3359 United States
Geographic Scope
Single Zip Code
Virginia Polytechnic Institute & State University was awarded AI-Enabled Nanofabrication Node Accelerating Semiconductor Research Cooperative Agreement 2607580 worth $5,000,000 from National Science Foundation in August 2026 with work to be completed primarily in Blacksburg Virginia United States. The grant has a duration of 4 years and was awarded through assistance program 47.084 NSF Technology, Innovation, and Partnerships. The Cooperative Agreement was awarded through grant opportunity Test Bed: Toward a Network of Programmable Cloud Laboratories.

Status
(Ongoing)

Last Modified 8/25/26

Period of Performance
8/1/26
Start Date
7/31/30
End Date
2.0% Complete

Funding Split
$5.0M
Federal Obligation
$0.0
Non-Federal Obligation
$5.0M
Total Obligated
100.0% Federal Funding
0.0% Non-Federal Funding

Activity Timeline

Interactive chart of timeline of amendments to 2607580

Additional Detail

Award ID FAIN
2607580
SAI Number
None
Award ID URI
SAI EXEMPT
Awardee Classifications
Public/State Controlled Institution Of Higher Education
Awarding Office
491502 INNOVATION AND TECHNOLOGY ECOSYSTEMS
Funding Office
491502 INNOVATION AND TECHNOLOGY ECOSYSTEMS
Awardee UEI
QDE5UHE5XD16
Awardee CAGE
4B976
Performance District
VA-09
Senators
Mark Warner
Timothy Kaine
Modified: 8/25/26