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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. STEWARD: Sensor Technologies for Enhancing Workplace Awareness through Remote Discernment

    SBC: APTIMA, INC.            Topic: DLA162001

    Warehouse injuries and accidents are occurring much too frequently and resulting in devastating consequences and implications for the involved facility. Although the recent emergence of low-cost and unobtrusive sensor technologies have flooded nearly every market to improve health and safety, the warehousing and manufacturing markets have remained largely unpenetrated. Aptima plans to fill this ga ...

    SBIR Phase I 2017 Department of DefenseDefense Logistics Agency
  2. The Property Reuse and Disposition Tool

    SBC: Technology Solutions Experts, Inc.            Topic: DLA162003

    Technology Solutions Experts, Inc. (TSE) is proposing to develop the Property Reuse and Disposition Tool, a mobile app that will significantly expedite and facilitate the way in which the Defense Logistics Agency (DLA) catalogs excess property for its reuse.The DLA's current process of cataloging excess property is cumbersome and tedious--with the advent and proliferation of mobile technologies, t ...

    SBIR Phase I 2017 Department of DefenseDefense Logistics Agency
  3. Low Cost Production of Carbon Monofluoride (CFx) for Lithium Batteries

    SBC: REACTIVE INNOVATIONS, LLC            Topic: DLA122002

    Li/CFx primary batteries are considered to be a superior choice for military applications that require long life, light weight and very low self-discharge. The high cost of current carbon monofluoride materials, however, adds significantly to the total cost of the battery. Reactive Innovations, LLC (RIL) proposes to develop a method to produce CFx materials with over a 50% cost saving. The process ...

    SBIR Phase I 2014 Department of DefenseDefense Logistics Agency
  4. An Integrated Li-ion Battery Manufacturing Process for Improved Safety and Decreased Battery Cost

    SBC: Giner, Inc.            Topic: DLA122002

    Commercial separators for Li-ion battery applications consist of microporous membranes that prevent contact between electrodes and enable free ion flow in the cell. Major drawbacks of these separators include their complex manufacturing process which adds cost to the battery and insufficient protection against thermal runaway reactions at elevated temperatures. This project addresses these limitat ...

    SBIR Phase I 2014 Department of DefenseDefense Logistics Agency
  5. Development of Advanced Battery Manufacturing Techniques

    SBC: Physical Sciences Inc.            Topic: DLA142001

    Physical Sciences Inc. together with EaglePicher Technologies will demonstrate that PSIs proprietary coating techniques can be employed to reduce the cost of producing lithium ion cells while improving the energy density and safety. Testing will clearly demonstrate the ability to increase the active material content and electrode density, provide in-situ short circuit protection, and reduce both ...

    SBIR Phase I 2014 Department of DefenseDefense Logistics Agency
  6. Logistically Robust, Long Life, High Power Rechargeable Battery

    SBC: CAMX Power LLC            Topic: DLA142001

    CAMX Power proposes to develop a high power, long life lithium-ion (Li-ion) vehicle battery that can be completely de-energized for logistical transportation and storage purposes, giving it exceptional shelf life and making it intrinsically safe under conditions of relaxed environmental controls and with no or minimal state-of-health monitoring. This novel battery, based on CAMX Powers proprietar ...

    SBIR Phase I 2014 Department of DefenseDefense Logistics Agency
  7. Reduced Manufacturing Cost for Li-ion Batteries

    SBC: CAMX Power LLC            Topic: DLA142001

    Lithium-ion batteries are being increasingly deployed in DoD applications as the result of their very high energy and power densities, but their manufacturing costs are high because of relatively long production timescales, The primary factor limiting throughput in Li-ion cell production is the long time required for the formation and aging sequence in which cells are cycled to render the cell op ...

    SBIR Phase I 2014 Department of DefenseDefense Logistics Agency

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