The Phase 1 work effort involves a system design and subscale prototype technology emonstration. Laboratory scale parametric experiments will be performed for different TPMC materials and ATP process conditions to guide the model development and characterize the influence of process conditions on material behavior and resulting properties. Using modified waveforms but the same data that is used for SAR processing, these techniques use GMTI techniques on intermediate SAR image formation processing to detect the moving target. In Phase 1 the Company will determine the feasibility of developing a wide area protection system consisting of a sensor and wireless network to detect and communicate the presence of a biological threat and BioBlowers to neutralize the threat. In Phase I we will focus on coupling the fluid dynamics with a radiative heat transfer model that accounts for the effects of the gas and particles demonstrating the effects for a simple unit problem. In Phase I, we will design the overall system architecture, assemble, test and evaluate all critical components, fabricate a breadboard prototype and demonstrate that the prototype meets the key requirements of the solicitation.
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The alloy powders will then be consolidated sfp warm extrusion or spark plasma sintering or a combination of both, to bulk material with a grain size below 20 nm.
The sensing system is modular, uses electrically passive, electromagnetic interference EMI immune, multiplexable, fiber optic bofa technology with many sensors on a single lightweight commercial-grade optical fiber that is unobtrusively attached to the armor. The proposer will develop a 3 kW alternator for Army applications using high performance magnetic material with less or no rare earth.
In Phase II, POC plans to develop an initial prototype which will be tested in a lab environment, implement upgrades and modifications leading to an optimized prototype suitable for a relevant and realistic training environment. The concept of the BDP approach includes to dissolve the interested biological samples into nucleic acid protecting reagents and then to lyophilize mixture into BDP for preservation of nucleic acids at room temperature or 4 degree Bocw for many years.
The principal avenue for increasing thermal battery specific energy is to identify and develop new electrode materials that provide higher specific capacity and power performance.
Many currently deployed and in-development weapons and associated systems require copious amounts of RF radio frequency power at many different frequency ranges. The continuous system will be optimized and a full-scale prototype will be designed. Our coated ADN ingredient will allow for a viable oxidizer ingredient to be incorporated in propellants and explosives to boost performance.
New classes of antimicrobial agents are needed to combat this threat. Teleoperation is the most reliable method of operating a UGV.
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An innovative deployment mechanism is also proposed that reduces deployment time significantly over existing methods. The treated water must meet secondary treatment standards, and the processing system must be rugged, easy to use, consume less than 1 kW of power, occupy approximately 1 yd3, and use minimal consumables.
The proposed baseline approach tunes the carrier frequency around the water absorption line to cloak the transmission beyond the required link range. We anticipate such a process development will yield nanostructured bulk ceramics with mechanical and optical performance enhancements that lie well beyond those currently achievable at an affordable cost. To achieve high powers, the output of several lasers must be merged. The operator will issue voice commands to control software through the use of speech recognition, call up and enter patient records, and navigate through medical databases.
DoD SBIR FY – SOLICITATION SELECTIONS w/ ABSTRACTS
This work is divided into three phases. FFF produces several sizes and versions of AirBeam supported shelters. A distributed approach is proposed that collects and analyzes data at measurement nodes. In bad weather, the MEMS tuning fork gyro will determine the bearings to targets. The early and aggressive administration of antimicrobial treatment, starting with intervention on the battlefield, has resulted in improved patient outcomes and is considered ffsp standard of care.
Wounds infected with drug-resistant Gram-negative bacteria can increase morbidity, hospital length of stay and cost. In Phase II we will develop a detailed design and build an advanced prototype sensor ready for integration into selected engine system s for operational assessment. Toyon proposes to develop a high-integrity navigation system for SWAP-constrained platforms that provides improved electronic protection against broadband and narrowband jammers, as well as repeaters, spoofers, and multipath using a small-aperture antenna.
The combination of the two technologies will provide the best possible azimuth solution under all weather conditions and in the presence of magnetic abnormalities, while bocs size, weight and power. New software-controlled GaN LNA technology is proposed to improve the dynamic range of the receiver during high input-power jamming conditions without increasing the front-end noise figure.
Model development and validation will be guided by prior modeling experience in the characterization of carbon fiber reinforced composites and extensive manufacturing experience with the in-situ automated tape placement process. Solutions are proposed by addressing a set of novel and innovative technologies within the scope of the AISTS application domain. Current approaches for protecting military facilities and personnel from biological threats principally involve installations of particulate filtration for fixed facilities or individual bica equipment IPE.
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Buffalo, NY Phone: This system is built on new spatial partitioning algorithms, rendering techniques, and collective localization heuristics designed to integrate live and existing data sources and leverage the latest advances in GPU technology. The advanced properties achieved by modern ceramic matrix composite CMC structures depend critically on the surface condition of reinforcement materials used in the manufacturing process.
In this proposal, DIApedia, LLC, a Pennsylvania small business with a track record of innovation and commercialization in the therapeutic footwear domain and experience with military contracts, will lead a multidisciplinary team of experts in composite materials, lot biomechanics, military medicine, and manufacture of military footwear in the design of an advanced modular ISFO and a new high-performance boot container.
The present thermal battery technologies cannot currently meet future requirements that call for higher power and capacity with a smaller footprint.