Cooperative Agreement 2126852
- This SBIR Phase I Project Grant, awarded by the National Science Foundation (NSF) under its Technology, Innovation, and Partnerships (CFDA 47.084) program, provides $275,000 in funding to Tiami LLC, a minority-owned small disadvantaged business, to design and prototype an intelligent 5G wireless repeater. This effort aims to enable pervasive, high-throughput mobile broadband connectivity across underserved urban and rural areas, addressing shortcomings in current 5G deployments. The...
- This $255,000 Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) will develop alternative solutions to address the growing demand for high-power radio frequency (RF) transceiver front-ends capable of operating over multiple frequency bands used in 5G/6G cellular wireless communications. The project aims to create a single transmitter that can operate over the entire 1805-2155 MHz frequency range, which would significantly reduce the size, cost,...
- This Project Grant award from the National Science Foundation (NSF) Division of Electrical, Communications and Cyber Systems, under the NSF Engineering program (CFDA 47.041), provides $1,500,000 to the University of Central Florida (UCF) to develop an energy- and spectrum-efficient millimeter-wave (mmW) transmitter array system for next-generation wireless communications. The key objectives are to: 1) Utilize heterogeneous integration and advanced packaging to embed high-power wide-bandgap...
- This National Science Foundation (NSF) Small Business Innovation Research (SBIR) Phase I project award to OSO Semiconductor Inc., a minority-owned small business, will develop a new phased array communication technology to achieve lower power consumption, smaller form factors, and more affordable price targets. The $274,992 grant, awarded on December 15, 2023, will fund the development and testing of an ultra-low loss beamforming circuit that can be integrated into a unique low-power phased...
- This SBIR Phase I project, awarded by the National Science Foundation (CFDA 47.084 - NSF Technology, Innovation, and Partnerships), aims to develop massively parallel protocols for software-based wireless systems. The $273,383 award, granted on September 15, 2023, will enable Lutris, Inc., the for-profit awardee, to demonstrate the feasibility of using commodity computing hardware and specially designed software to implement radio processing tasks at high speed. This approach has the potential...
- This Project Grant from the National Science Foundation's $375,000 Computer and Information Science and Engineering program will support the development of opportunistic millimeter-wave receivers and associated algorithms from 2023 to 2025. The University of Southern California will use the funding to create transceiver hardware and array-based receivers that can adaptively operate within the 18-54 GHz spectrum through machine learning techniques. The receivers will identify available...
- This National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) Project Grant award of $274,993 to Amrf LLC, a small business located in San Jose, CA, focuses on the design and development of ultra-wideband beamforming integrated circuits. The project aims to establish the feasibility of using a novel radio-frequency fractional Hilbert transformation design theory to create wideband RF front-end systems with phased arrays, which have the potential to transform...
- This SBIR Phase I Project Grant, awarded by the National Science Foundation (NSF) under the Technology, Innovation, and Partnerships (CFDA 47.084) program, is focused on developing a novel analog processing unit that leverages physics-based deep learning for real-time interference mitigation in dynamic spectrum sharing. The core innovation is an integrated hardware device that can filter out interference between commercial and government users of valuable radio frequency spectrum, enabling...
- The National Science Foundation (NSF) awarded a $275,000 Phase I Small Business Innovation Research (SBIR) grant to Maxwave LLC on December 15, 2023 under the NSF Technology, Innovation, and Partnerships program (CFDA 47.084). The project aims to develop a novel wireless power-beaming technology using millimeter waves that can efficiently transmit high-power energy over long distances. Key applications include wireless charging of heavy-duty drones and establishing resilient airborne energy...
- This $275,000 Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) will support the University of Nebraska in exploring new methods of radio-frequency transmission and reception using novel electromagnetic wavefronts with spin and angular momentum. The research aims to develop enabling technologies based on electromagnetic solutions to increase data rates in wireless communication systems without increasing spectral bandwidth demand. Key activities...
SBIR PHASE II: HIGH PERFORMANCE MILLIMETER-WAVE RADIOFREQUENCY (RF) FRONT-END TECHNOLOGY FOR MULTI-GIGABIT WIRELESS COMMUNICATIONS -THE BROADER IMPACT/COMMERCIAL POTENTIAL OF THIS SMALL BUSINESS INNOVATION RESEARCH (SBIR) PHASE II PROJECT IS A PLATFORM ENABLING A WIDE RANGE OF HIGH-THROUGHPUT WIRELESS COMMUNICATIONS FOR THE NEXT GENERATION OF BROADBAND MULTIGIGABIT CONNECTIVITY. MORE SPECIFICALLY, THE TECHNOLOGY SEEKS TO SOLVE SOME OF THE KEY UNDERLYING CHALLENGES OF MILLIMETER-WAVE (MMWAVE OR HIGH BAND 5G) RADIOS AND NETWORKS AND A WIDE SET OF 5G/6G WIRELESS APPLICATIONS, INCLUDING FIXED AND MOBILE WIRELESS ACCESS. THE PROJECT IS AN ENABLER OF MANY APPLICATIONS INCLUDING AUTOMOTIVE, MANUFACTURING, AND HEALTHCARE TO SMART CITY INTERNET OF THINGS (IOT) AND SMART HOME. MANY OF THE MORE ADVANCED 5G/6G WIRELESS USE CASES FOCUS ON CONNECTING PREVIOUSLY UNCONNECTED OR UNDER-CONNECTED COMMUNITIES AND INDUSTRIES. AS A BUILDING BLOCK OF 5G/6G WIRELESS TECHNOLOGIES, THE PROPOSED ADVANCED WIRELESS TECHNOLOGY MAY ENABLE RAPID AND ROBUST ROLL-OUT OF THE NEXT GENERATION NETWORK AND PLAY A ROLE IN INCREASING THE PACE OF 5G TECHNOLOGY PENETRATION. THIS SMALL BUSINESS INNOVATION RESEARCH PHASE II PROJECT AIMS TO DEVELOP A HIGH GAIN BEAMFORMING ANTENNA SYSTEM, AS THE CORE OF A MILLIMETER-WAVE (MMWAVE) RADIO FREQUENCY (RF) FRONT-END TECHNOLOGY FOR THE NEXT GENERATION OF MULTI-GIGABIT APPLICATIONS. WITH 10X HIGHER AVAILABILITY OF BANDWIDTH COMPARED TO THE LEGACY SUB-6 GHZ SPECTRUM, MMWAVE ENABLES FASTER CONNECTION SPEEDS AND IS OF SIGNIFICANT FOCUS IN THE TELECOMMUNICATION INDUSTRY. THESE APPLICATIONS HAVE RECENTLY MOTIVATED FEDERAL COMMUNICATIONS COMMISSION (FCC) AND OTHER INTERNATIONAL COUNTERPARTS TO OPEN SEVERAL FREQUENCY BANDS AT MMWAVE SPECTRUM FOR COMMUNICATION APPLICATIONS INCLUDING 5G CELLULAR, WIRELESS INFRASTRUCTURE, ETC. DESPITE THESE ADVANTAGES, THE EXISTING COMMERCIALLY AVAILABLE MMWAVE FRONT-END TECHNOLOGIES ARE LIMITED IN THEIR PERFORMANCE AND ARE NOT SUITABLE FOR THE EMERGING FIXED AND MOBILE ACCESS USE CASES OF 5G MMWAVE. TO ADDRESS THIS NEED, THIS PROJECT PROPOSES A NOVEL BEAMFORMING MMWAVE TECHNOLOGY THAT SUPPORTS AN ORDER OF MAGNITUDE HIGHER AGGREGATED THROUGHPUT COMPARED TO THE EXISTING MMWAVE WIRELESS SOLUTIONS AND CAN SERVE AS AN ENABLER TO A NUMBER OF DATA-INTENSIVE APPLICATIONS. INTEGRATED AS A WIRELESS SOLUTION FOR FIXED WIRELESS ACCESS (FWA), THIS TECHNOLOGY OFFERS SIGNIFICANT COST SAVINGS AND REVENUE FOR NETWORK AND SERVICE OPERATORS AND PROVIDERS. THIS PROJECT BUILDS ON THE TECHNICAL ACHIEVEMENTS OF THE PHASE I EFFORT AND FOCUSES ON DESIGN IMPLEMENTATION AND PROTOTYPING OF THE HIGH PERFORMANCE MMWAVE ANTENNA TECHNOLOGY. THIS TECHNOLOGY PROVIDES A COMBINATION OF POWER-EFFICIENT BEAMFORMING WITH HIGH-GAIN MULTI-GIGABIT THROUGHPUTS AND IS BASED ON A NOVEL ARCHITECTURE ALONG WITH HIGH-PERFORMANCE ANTENNA SYSTEMS AND SUB-SYSTEMS THAT ARE FUNDAMENTALLY DIFFERENT FROM THE EXISTING STATE-OF-THE-ART MMWAVE WIRELESS TECHNOLOGIES. TO ENABLE REALIZATION OF THIS TECHNOLOGY, THE TEAM IS APPLYING A SET OF UNIQUE DESIGN METHODOLOGIES AND TECHNOLOGIES TO TACKLE THE CHALLENGES OF THE PROPOSED COMPLEX MMWAVE FRONT-END TECHNOLOGY. THE RESULT IS AN ULTRA-HIGH GAIN MMWAVE BEAMFORMING SYSTEM THAT CLOSES THE FUNDAMENTAL TECHNOLOGY GAP IN THE MMWAVE WIRELESS COMMUNICATION INDUSTRY. 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 | $200.0k | 11/27/23 | ||
| Not listed | $1.0m | 2/24/22 |