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SBC: MODUS OPERANDI INC Topic: N11AT018
As stated in the topic, The decision environment in which the Anti-Submarine Warfare Commander must operate during threat prosecution is characterized by severe time pressure, complex, multi-component decision tasks, and rapidly evolving andchanging information and situational state. There is therefore an increasing need to extend ASW decision support capabilities with the ability to help operator ...STTR Phase II 2014 Department of DefenseNavy
SBC: Sciperio, Inc. Topic: N14AT021
3D printed phased array antennas (PAA) would be more rugged, lighter and take a variety of shapes and including unmanned aerial vehicle (UAV) wings. Printing antennas, passives and interconnects has been demonstrated in 3D printing. Using printed electronic approaches for printing Field Effect Transistors (FET) has been demonstrated and including printing switches in the GHz regime. The challenge ...STTR Phase I 2014 Department of DefenseNavy
SBC: Innovative Veterinary Medicine, Inc. Topic: N14AT015
Innovative Veterinary Medicine, Inc. will conceptualize and design an anesthesia ventilator named DolVent specifically designed to meet the unique physiologic requirements of Atlantic bottlenose dolphins and California sea lions. The significance of the DolVent ventilator will be its ability to properly support normal respiratory function in anesthetized animals using ventilation modes that mimic ...STTR Phase I 2014 Department of DefenseNavy
SBC: Tusaire Incorporated Topic: N14AT020
Advanced effective Micro-glider development will be conceived under this Phase I effort.STTR Phase I 2014 Department of DefenseNavy
SBC: FORGE NANO, INC. Topic: N14AT025
Moisture buildup on high voltage antenna components can cause electrical shorts that damage system parts and produce communication noise. Not only are significant costs incurred repairing and replacing damaged components, but critical operations communications can be disrupted by these electrical discharges. This STTR proposal will apply hydrophobic and superhydrophobic coatings to antenna compone ...STTR Phase I 2014 Department of DefenseNavy
SBC: HYGRATEK LLC Topic: N14AT013
In this Phase I effort, HygraTek will explore a novel anti-ice coating formulation to develop icephobic surfaces for naval ship superstructures, decks, equipment and vehicles on board naval ships, e.g. fighter jets, helicopters etc. HygraTek has recently developed a series of different environmentally safe, non-fluorinated, transparent, icephobic coatings. These coatings display the lowest ice-adh ...STTR Phase I 2014 Department of DefenseNavy
SBC: SECURBORATION, INC. Topic: N14AT024
A general framework for course of action (COA) recommender systems consists of four primary functional areas : (1) mapping human entered COA into formalized, machine readable knowledge representation; (2) deconstructing COA decision models into relevant features or variables of interest; (3) gathering and routing intelligence related to those features to specific warfighters evaluating COA; and (4 ...STTR Phase I 2014 Department of DefenseNavy
High Energy Density Micro-Ultracapacitors through Tunable Electrolyte Confinement and Directional TransportSBC: MAINSTREAM ENGINEERING CORP Topic: DMEA13B001
The increasing penetration of MEMs devices into the commercial market has lead to an increasing demand for micro-sized electrical energy storage devices to interface with a support them. Electrochemical double layer capacitors hold significant promise asSTTR Phase I 2014 Department of DefenseDefense Microelectronics Activity
SBC: INTRABAND, LLC Topic: N12AT003
The technical objective of this proposal is to demonstrate a Quantum Cascade Laser (QCL) emitting in the 3.0-3.5 & #181;m wavelength region, which employs a metamorphic buffer layer (MBL). It is the goal of this program to develop a QCL single-stripe device which will operate in a single, diffraction-limited lobe under room temperature continuous-wave (CW) operation to moderately high (~ 0.5 W) ou ...STTR Phase II 2014 Department of DefenseNavy
SBC: MATRIX RESEARCH INC Topic: AF12BT06
ABSTRACT: The objective of this effort is to demonstrate innovative methods for deriving a sparse set of physical target features that can be used for exploitation of air-to-ground signature data collected from sensor systems including electro-optical, infrared, ladar, and radar. Current classification methods require near exact replication of the original imaging parameters, or extensive modelin ...STTR Phase II 2014 Department of DefenseAir Force