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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. Compact, Rugged and Low-Cost Atmospheric Ozone DIAL Transmitter

    SBC: Bridger Photonics, Inc.            Topic: S101

    Bridger Photonics Inc. (Bridger) proposes developing the most efficient, compact, rugged, low-power consumption and cost-effective UV ozone differential absorption lidar (DIAL) transmitter available. Bridger will demonstrate pulse energies above 0.5 mJ with a goal of 1 mJ/pulse with a pulse repetition frequency of 1 kHz. The proposed transmitter will enable widespread deployment of ozone DIAL s ...

    SBIR Phase I 2015 National Aeronautics and Space Administration
  2. Space Plastic Recycling System

    SBC: TECHSHOT, INC.            Topic: H1403

    Techshot's proposed Space Plastic Recycler (SPR) is an automated closed loop plastic recycling system that allows the automated conversion of disposable ISS packaging materials into suitable 3D printer filament. The SPR includes a receptacle to hold materials to be recycled, a grinding system to cut materials into small pieces, an auger system to transport the shredded material to a heated nozzle ...

    SBIR Phase I 2015 National Aeronautics and Space Administration
  3. Finite Internal Temperature Slide for Use with Colloid Experiments

    SBC: TECHSHOT, INC.            Topic: H1002

    The Light Microscopy Module (LMM), developed and managed by NASA Glenn Research Center (GRC), is producing fascinating results. LMM will yield even more astonishing results with the addition of enhancing subsystems. Techshot is developing one such subsystem, the LMM-Dynamic Stage (LMM-DS), which will satisfy a host of new experiments. However, GRC has many more researchers awaiting enhancing subsy ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  4. A Simple, Robust Lightweight Microscopy and Sample Processing System for Scientific and Commercial Research on ISS

    SBC: TECHSHOT, INC.            Topic: H1002

    A light-weight, user-friendly, algorithmically or remotely controlled microscope, not purchased from a microscope company, coupled to fluid sample processing and sample changing systems is proposed. It is an easy-access light microscope consisting of a novel illuminator-condenser with no moving parts, a sample-processing remotely controlled translating stage using hollow slides, a high-definition ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  5. Heterogeneous Chip Integration for GHz Systems

    SBC: INDIANA INTEGRATED CIRCUITS LLC            Topic: S102

    Indiana Integrated Circuits, LLC (IIC) proposes to develop the customizable, high-performance microchip interconnect technology called Quilt Packaging (QP) to address NASA's requirement for high performance integration of heterogeneous microwave systems. QP is an affordable, scalable, patented edge-interconnect technology for joining microchips of disparate materials and/or process technologies i ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  6. Seed-Derived Second Harmonic Source for In-Situ Alignment and Calibration of Trace Gas Measurement Instruments

    SBC: ADVR, Inc            Topic: S108

    This SBIR Phase I effort will demonstrate the feasibility of developing a tunable, high-power, narrowband seed laser source integrated with a broadband, waveguide-based second harmonic generation (SHG) module to allow in situ alignment, component testing and calibration across the tuning range of fiber-based lidar systems for measuring atmospheric oxygen concentrations. The lidar is being develope ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  7. Digital Acquisition and Wavelength Control of Seed Laser for Space-Based LIDAR Applications

    SBC: ADVR, Inc            Topic: S101

    This SBIR Phase I proposes to establish the feasibility of using a space qualifiable Field Programmable Gate Array (FPGA) based digital controller to autonomously acquire and wavelength lock a tunable seed laser to a specified atomic or molecular reference. Successful development of this technology, due to its compact, efficient, and reliable design, is an important step towards enabling deployme ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  8. Multi-Channel Tunable Source for Atomic Sensors

    SBC: ADVR, Inc            Topic: S109

    This Phase I SBIR will establish the feasibility of developing compact, robust, integrated components suitable for atomic interferometry. AdvR's design is enabled by capitalizing on robust, well-commercialized, low-noise telecom components with high reliability and declining costs which will help to drive the widespread deployment of this system. The key innovation is the combination of current ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  9. Pulsed Green Laser for Time Resolved Raman Spectroscopy

    SBC: ADVR, Inc            Topic: S106

    This SBIR Phase I effort will demonstrate the feasibility of developing a fully packaged, efficient, short pulse, high repetition rate frequency doubled micro-chip laser for use in NASA-JPL's Time Resolved Raman Spectrometer (TRRS) to analyze elemental and mineral compositions in remote planetary environments. Time Resolved Raman Spectroscopy can identify mineral content in natural geological co ...

    SBIR Phase I 2014 National Aeronautics and Space Administration
  10. HomePortal – A Universal Home Environment for Individuals who are Blind or Have Visual Impairments.

    SBC: CREATEABILITY CONCEPTS, INC.            Topic: 84133S1

    Ironically people who are blind or have visual impairments that should benefit the most from technology, have great difficulty in interacting with modern home appliances and electronics. This is primarily due to a combination of a lack of accessible features, device complexity, or the lack of a centralized strategy. Current strategies do not incorporate reminders, the possible fixed income status ...

    SBIR Phase I 2013 Department of Education

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