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Award Data
The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.
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Advanced Technology for Demilitarization of Plastic Bonded
SBC: GRADIENT TECHNOLOGY Topic: N/AGradient Technology in conjunction with Professor M. Hillmyer of the Department of Chemistry at the University of Minnesota proposed to develop advanced technology to recover and convert the explosive and urethane binder found in plastic bonded explosives. This technology provides a unique reclamation, recovery, and reuse opportunity for dramatically reducing the disposal cost of technology munit ...
STTR Phase I 1998 Department of DefenseAir Force -
Broadband Front Ends for Radar & Digital Receivers
SBC: THESUS LOGIC, INC. Topic: N/AThe Theseus Logic/SUNY-Stony Brook team is proposing to develop, demonstrate and commercialize Rapid Single Flux Quantum (RSFQ) circuit designed using NULL Convention Logic (NCL). Phase I of this program will demonstrate, by simulation and modeling, the feasibility of implementing logic gate structures in RSFQ technology which can exploi the effective delay insensitivity of NCL. In Phase II the te ...
STTR Phase I 1998 Department of DefenseMissile Defense Agency -
Carbon NanotubeCopper Composite as Electron Emitter for Passive Spacecraft Discharging
SBC: CFD Research Corporation Topic: AF18AT011This SBIR project will develop and demonstrate efficient electron emitter based on carbon nanotubecopper (CNT-Cu) composite for passive discharging of spacecraft in plasma environment. A spacecraft moving through harsh plasma environment collects electrons, which leads to the spacecraft charging up to several kilovolts. High voltage between different parts of the spacecraft can ignite arcing, whic ...
STTR Phase I 2018 Department of DefenseAir Force -
Coupled Multi-Physics Tool for Analysis of Structural Profile Disruption Effects of Aerovehicles
SBC: CFD Research Corporation Topic: AF17AT025High speed air vehicles operate at material strength performance limits and are at significant risk when subjected to additional localized heating that can result in softening, pitting and burn-through the material and potentially change the vehicle structural profile. These effects degrade aerodynamic performance. The team of CFDRC and UDRI proposed to develop, validate and deliver a comprehensiv ...
STTR Phase II 2018 Department of DefenseAir Force -
CPS: Creative Problem Solver
SBC: Smart Information Flow Technologies, LLC Topic: N16AT002Military systems operate in complex, adversarial environments where their initial planned operations are often overcome by events, but soldiers use those systems in creative ways to achieve their mission objectives. For example, complex ground robotic systems that were initially deployed for surveillance and explosive ordinance disposal have instead been used as decoys, ammunition carriers, and ot ...
STTR Phase II 2018 Department of DefenseDefense Advanced Research Projects Agency -
Fine Powder Cathode and Separator Binder Characterization for Thermal Batteries
SBC: CFD Research Corporation Topic: MDA16T001Fine powder thermal battery cathode materials can exhibit challenging flow properties which makes processing with automated presses difficult.Granulating these powders can substantially improve flow properties and reduce the tendency for powder segregation during handling and pressing operations.Additionally, the properties of MgO that lead to good performance in thermal battery separators are not ...
STTR Phase II 2018 Department of DefenseMissile Defense Agency -
High speed, multispectral, linear polarization display
SBC: Polaris Sensor Technologies, Inc. Topic: AF17AT021To understand how insects and crustaceans sense and process light fields, researchers need a projection system that provides realistic wide field of view (FOV), high-speed imagery from UV to red (320-650nm) that includes polarization control. Insects and crustaceans have vastly different visual acuity and wavelength response from humans. In addition, some can sense polarization. Therefore, commerc ...
STTR Phase II 2018 Department of DefenseAir Force -
High-Speed Simultaneous Multiple Object Detection System
SBC: FREENT TECHNOLOGIES, INC. Topic: MDA16T006FreEnt Technologies, Inc., A2Z Innovations, Inc., and the University of Alabama Aerospace Research Center (UAH/ARC) have teamed together to design, develop, and perform ground-based-demonstrations of a High-Speed Simultaneous Multiple Object Detection (HS-SMOD) System for MDA. The HSSMOD system uses a simple but innovative technique of a passive fiber-optic grid and high-speed COTS opto-electronic ...
STTR Phase II 2018 Department of DefenseMissile Defense Agency -
Mechanically Static High Speed 3-D Optical/Digital Holographic Polarimeter
SBC: Polaris Sensor Technologies, Inc. Topic: AF18AT007Phase I of this effort involves the creation of a comprehensive end-to-end model of a novel holographic polarimeter.The polarimeter that can be constructed based on our model will be able to determine the full polarization properties (Mueller matrix elements) of scattering, reflecting and absorbing media as a function of the materials depth.Unlike previous attempts, this system will be a real-time ...
STTR Phase I 2018 Department of DefenseAir Force -
Microrover for Tactical Land Warfare
SBC: VIA, INC. Topic: N/AThe objective of this research effort is to design a mobile robotic platform, and the related operator interfaces required for remote operation, which enhance a soldier's abilities to accomplish mission goals. This system will be modular in design, scaleable, low cost and rugged. The size and weight of these platforms will range form a meter long and 200 pounds, to a few centimeters long and abo ...
STTR Phase I 1998 Department of DefenseDefense Advanced Research Projects Agency