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SBC: LYNNTECH INC. Topic: DHP15B002
Between Operation Iraqi Freedom, Operation Enduring Freedom, and Operation New Dawn, the total number of U.S. Casualties (those Wounded in Action) has exceeded 52,000 as of January 30, 2015. These numbers point to the fact that active warfighters in the battlefield are almost constantly exposed to the threat of external penetrating wounds. The goal of combat wound care is to protect open wounds u ...STTR Phase I 2016 Department of DefenseDefense Health Agency
SBC: Arete Associates Topic: ST15C002
It has long been known that analog computers can be faster and more power efficient than digital processors by many orders of magnitude. Until the 1970s analog computers were the dominant controllers in most industrial and military applications. Even today digital processors are still slower and more power consumptive than analog, but offer much more flexibility (programmability) and precision. ...STTR Phase I 2016 Department of DefenseDefense Advanced Research Projects Agency
SBC: XUV LASERS, INC. Topic: ST15C001
We propose to develop a high-resolution soft x-ray nanoscope based on Fourier Transform Holography which has the very important advantage for real time visualization: 3D images are nearly instantaneously retrieved with a simple 2D Fast Fourier Transform operation. The table-top soft x-ray nanoscope will use for illumination a compact high average power soft x-ray laser that generates high e ...STTR Phase I 2016 Department of DefenseDefense Advanced Research Projects Agency
Monte Carlo Sampling Based Collision Detection Algorithm Development And False Positive And False Negative Rate Analysis: A Bayesian ApproachSBC: Princeton Vision LLC Topic: ST081005
In this Phase II proposal, the main thrust is to build a hardware MCICD prototype, and validate the FAR/FNR through real vehicle testing. By leveraging the existing LADAR based sensing platform in CMU, we expect to shorten the development cycle and reduce the overall cost. Extensive real vehicle testing is expected both in staged scenarios and in normal traffic. In this Phase II program, we also p ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency
SBC: DiaCarta, Inc. Topic: ST081003
Early detection of virulent infectious pathogens is critical to blocking the devastating epidemic spread of the pathogen and the potential harm this could have on our armed forces and general populations. In Phase I, we have utilized the state-of-the-art QuantiGene 2.0 technology to establish an assay for the sensitive quantification of SARS (epidemic spread in 2001) and assessing plasma DNA level ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency
SBC: MEMTRONICS CORPORATION Topic: SB12A006
There is a clear gap between commercially available UHF tunable filters and the technology needs of current military communication systems. MEMtronics Corporation, teamed with Purdue University, intend to develop and commercialize technology that fills this gap. The intent of this Phase II project is continue the successful demonstrations began in Phase I and bring the technology to a level of ma ...STTR Phase II 2013 Department of DefenseDefense Advanced Research Projects Agency
SBC: Technology Service Corporation Topic: ST081008
The challenges faced by airborne and ground-based sensors in detecting, classifying, identifying, associating and tracking difficult moving targets, such as insurgent forces, operating in difficult terrain such as mountains and forests will be addressed. Our team will quantify the performance that can be achieved using multi-sensor, multi-spectral, and multi-platform techniques, where the sensors ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency
SBC: ACTINIX Topic: ST071006
Cost effective semiconductor processing tools that enable the high-resolution nano-fabrication of low-volume electronics are needed by the DOD. The printing of ultra-fine gratings on silicon wafers using interference immersion lithography is envisaged as a first maskless process step in the fabrication of advanced application specific integrated circuits. Next generation interference immersion lit ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency
SBC: FREEDOM PHOTONICS LLC Topic: ST081014
The development of compact, ultra-low drive voltage optical phase modulators is a critical key component for passive antenna remoting applications, a strategic area, part of a number of current and upcoming DARPA initiatives. With the development of sufficiently low V-pi modulators, passive front-ends can be constructed with a low figure even for a moderate optical pumping power. The combination o ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency
SBC: MAYACHITRA, INC. Topic: ST081010
The increasing use of video in force protection, autonomous vehicles reconnaissance, and surveillance in general has created a great demand for automated analysis and monitoring. It is infeasible to have humans monitoring and analyzing the vast amount of video used in such surveillance, and automated analysis yields hope to ease the burden and increase the amount of information extracted from col ...STTR Phase II 2010 Department of DefenseDefense Advanced Research Projects Agency