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The Award database is continually updated throughout the year. As a result, data for FY22 is not expected to be complete until September, 2023.
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High Hesitivity Magnetic Materials for Magnetic Toroid and Flat Dipole AntennasSBC: WINCHESTER TECHNOLOGIES LLC Topic: N16AT001
Novel approaches are needed to improve the performance and reduce the size, number and signature of antennas with significantly enhanced efficiency in HF-UHF. It has been shown recently hesitivity, which is able to characterize the performance of the material and categorize the radiation efficiency of magnetodielectric wire antennas; the higher the hesitivity, the higher the attainable antenna eff ...STTR Phase I 2016 Department of DefenseNavy
Air Cycle Machine Low Friction, Medium Temperature, Foil Bearing CoatingSBC: ACREE TECHNOLOGIES INC Topic: N16AT005
The purpose of this project is to demonstrate the feasibility of using an innovative, durable, low friction, and non-toxic solid lubricant coating for foil air bearings for air cycle machines (ACM). Acrees coating provides superior wear characteristics at all temperatures and provides a substantial improvement over polyimide type coatings that are currently used on ACMs. The coating consists of tw ...STTR Phase I 2016 Department of DefenseNavy
Perovskite Solar CellsSBC: Radiation Monitoring Devices, Inc. Topic: N16AT006
The goal of the proposed research is to develop light-weight, flexible, high efficiency solar cells made from perovskite halide light-harvesting materials for use on unmanned aircraft systems (UAS), for use in conjunction with an energy storage system. Solar cells have historically been heavy, costly, and inflexible. In this research, low-cost manufacturing methods will be used to make high effici ...STTR Phase I 2016 Department of DefenseNavy
TOME: Tools for Objective Measurement and EvaluationSBC: APTIMA INC Topic: N16AT002
The introduction of new systems and technologies is critical for maintaining superiority, yet this brings with it uncertainty regarding the impact on users, teams, and organizations. Rigorous test and evaluation (T&E) practices are therefore essential prior to acquiring and instituting new technologies, particularly to assess the workload imposed on end users. Traditionally, workload assessment ha ...STTR Phase I 2016 Department of DefenseNavy
System to Evaluate and Assess Holistic Aircrew Workload (SEAHAWK)SBC: CHARLES RIVER ANALYTICS, INC. Topic: N16AT002
The Navy is continually developing new technologies to improve warfighting effectiveness. These technologies risk overloading Aircrews physical and cognitive capacities, thereby degrading performance. To mitigate that risk, the Navy needs a system to assess Aircrews physical and cognitive workloads unobtrusively and objectively. Such a system must (1) perform real-time data collection in a robust ...STTR Phase I 2016 Department of DefenseNavy
Novel, Low-Cost Phased arrays Manufactured by 3D Printing (1000-325)SBC: SI2 TECHNOLOGIES, INC Topic: N14AT021
SI2 Technologies, Inc. (SI2) proposes to accelerate development of printed, high-efficiency phased arrays operating at Navy-relevant frequencies. The proposed development effort will include optimization of the array printing techniques from Phase I to meet the Navys phased array performance goals. The printed arrays will incorporate both printed radiating elements and an innovative printed packag ...STTR Phase II 2016 Department of DefenseNavy
Light-Weight Solar Cells with High Specific Power and Conversion EfficiencySBC: AGILTRON, INC. Topic: N14AT003
Agiltron in collaboration with National Renewable Energy Laboratory (NREL) will develop a new class of high-efficiency and lightweight broadband inverted metamorphic multi-junction (IMM) solar cells for the uninterrupted flight missions of unmanned aerial vehicles (UAVs). The approach is closely coupled with Agiltrons extensive experience in high-transmittance broadband and wide-angle anti-reflect ...STTR Phase II 2016 Department of DefenseNavy