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The Award database is continually updated throughout the year. As a result, data for FY23 is not expected to be complete until September, 2024.
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SBC: PHYSICAL SCIENCES INC. Topic: A19BT009
Physical Sciences Inc. (PSI), in collaboration with the University of Texas, Austin (UT), propose to develop a metasurface-enhanced type-II superlattice (T2SL) imaging detector that achieves significant absorption enhancement for midwave infrared wavelengths (MWIR, 3–5 μm) using an absorbing layer with average thickness that is sub-micron. MWIR imaging is critical need for unmanned aircrafts an ...STTR Phase I 2020 Department of DefenseArmy
SBC: SA PHOTONICS, LLC Topic: A19BT001
Traditional spherical optics implemented on a common optical axis are the foundation of today’s fielded gunsights for small arms fire control. SA Photonics has helped pioneer the application of precision injection molded freeform optical surfaces in head/helmet mounted display (HMD) systems for augmented reality (AR), virtual reality (VR) and low light level sensor applications. SA Photonics tea ...STTR Phase I 2020 Department of DefenseArmy
SBC: AMERICAN LITHIUM ENERGY CORP. Topic: A19BT016
The ALE-PNNL Team is developing a nonflammable high capacity and high power 18650 cell using nonflammable electrolyte for military electric vehicle and energy storage applications. The 18650 cells will be nonflammable even under extreme temperature conditions and after metal penetration, even including bullet penetration.STTR Phase I 2020 Department of DefenseArmy
SBC: 2W ITech LLC Topic: A19BT014
Next-level improvements in thermal extremity protection for the current Extended Cold Weather Clothing System (ECWCS) are needed for soldiers in order to improve mobility and achieve peak performance in bitterly cold Arctic climes. In this STTR program, 2W iTech LLC proposes to develop phase change material (PCM) based thermal regulating films, in collaboration with the Multiscale Thermal Science ...STTR Phase I 2020 Department of DefenseArmy
Mm-Wave Phased-Array Antennas with Ultra-Low-Latency Beam-Forming and Spatial-Filtering for Highly Dynamic and Mobile Satellite CommunicationsSBC: Alcatera Inc. Topic: A19CT006
This project aims to reduce the size and cost of current AEHF front-end by the integration of a compact beam-steering antenna array. The integration consists of novel antenna design, novel steering technique, and a scalable capable architecture.STTR Phase I 2020 Department of DefenseArmy
SBC: TRX SYSTEMS, INC. Topic: A19BT002
Military platforms and personnel rely on Global Positioning System (GPS) for precision navigation and targeting, to enhance situational awareness, improve command and mission effectiveness, and to operate more safely. However, Global Navigation Satellite System (GNSS – including GPS and other similar systems such as Galileo, GLONASS) rely on very low-powered signals susceptible to threats from j ...STTR Phase I 2020 Department of DefenseArmy
SBC: Fit Genetics, Inc. Topic: A19BT008
Advances in DNA sequencing technology have generated a rapid expansion of human genome information and the revelation of extraordinary individual-level genetic variation. Individual genome sequencing will soon be routine and cost-effective. To exploit this resource to the benefit of warfighters, we propose an approach for identifying and characterizing genetic variants that compromise metabolic ef ...STTR Phase I 2020 Department of DefenseArmy
SBC: PRECISION COMBUSTION, INC. Topic: A19BT015
Precision Combustion, Inc. (PCI) together with University of Michigan (UMich) proposes a system to use solar energy to convert water to ultra-high purity compressed hydrogen suitable for PEM fuel cells. We will combine UMich’s high efficiency photocatalytic water splitting approach with PCI’s integrated hydrogen separator/compressor. The proposed effort will confirm the avoidance of external e ...STTR Phase I 2020 Department of DefenseArmy
SBC: WINCHESTER TECHNOLOGIES LLC Topic: A19BT007
n conjunction with ferromagnetic and antiferromagnetic materials the topological insulators are elements of future magnetic random access memory (MRAM) and GHz-to-THz frequency sources (spin-torque nano-oscillators, STNO). One of the major challenges in applying topological insulators (TIs) in magnetic devices is the mutual incompatible deposition processes. TIs are usually destroyed by the high t ...STTR Phase I 2020 Department of DefenseArmy
SBC: TECH-X CORPORATION Topic: A19BT004
High-average current and high-brightness electron beams are needed in advance applications such as ultra-high power Free-Electron Lasers (FELs) and electron accelerators. The technologically important material properties of diamond are of significant interest for development of electron emission, detector, and wide-bandgap semiconductor applications, including radiation-hard devices. A diamond amp ...STTR Phase I 2020 Department of DefenseArmy