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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. A Digital System-On-Chip CO2 Sensor

    SBC: N5 Sensors, Inc.            Topic: DEFOA0001738

    N5 Sensors have teamed up with University of Tennessee, Molecule Works Inc., and Syracuse University Center of Excellence for Environmental and Energy Systems to develop and commercialize a breakthrough digital system-on-chip (SoC) CO2 sensor technology that will satisfy the ARPA-E’s SENSOR program’s energy saving goal in commercial and residential buildings. This project represent a collabora ...

    SBIR Phase II 2018 Department of EnergyARPA-E
  2. A Digital System-On-Chip CO2 Sensor

    SBC: N5 Sensors, Inc.            Topic: DEFOA0001738

    N5 Sensors have teamed up with University of Tennessee, Molecule Works Inc., and Syracuse University Center of Excellence for Environmental and Energy Systems to develop and commercialize a breakthrough digital system-on-chip (SoC) CO2 sensor technology that will satisfy the ARPA-E’s SENSOR program’s energy saving goal in commercial and residential buildings. This project represent a collabora ...

    SBIR Phase II 2018 Department of EnergyARPA-E
  3. Formulation and testing of an entirely wood-based exterior insulation board for the high-performance building market

    SBC: GO Lab Inc.            Topic: 17NCER6B

    The goal of this project is the formulation a rigid, insulating, low-density wood composite, with physical and thermal properties comparable to fossil fuel derived foams. _x000D_ _x000D_ To achieve energy conservation standards mandated by certification agencies such as Passive House and LEED, high performance buildings require multiple shells of insulation – an inner shell that contains electri ...

    SBIR Phase I 2018 Environmental Protection Agency
  4. A Digital System-On-Chip CO2 Sensor

    SBC: N5 Sensors, Inc.            Topic: DEFOA0001738

    N5 Sensors have teamed up with University of Tennessee, Molecule Works Inc., and Syracuse University Center of Excellence for Environmental and Energy Systems to develop and commercialize a breakthrough digital system-on-chip (SoC) CO2 sensor technology that will satisfy the ARPA-E’s SENSOR program’s energy saving goal in commercial and residential buildings. This project represent a collabora ...

    SBIR Phase I 2018 Department of EnergyARPA-E
  5. Manufacturing Design of Bio-based Ceiling Tiles using Nanocellulose

    SBC: REVOLUTION RESEARCH, INC.            Topic: 15NCER06

    Suspended ceiling tiles are widely used in commercial and residential construction because they offer flexibility and easy access to utilities. Most of the available tiles absorb water, resulting in sagging, staining, and mold/mildew growth. They also contain potentially hazardous chemicals and release airborne fibers when broken or cut. Existing tiles are not durable, requiring frequent replaceme ...

    SBIR Phase I 2016 Environmental Protection Agency
  6. Radio Frequency Catalytic Decontamination

    SBC: Zeteo Tech LLC            Topic: 15NCER07

    The novel RFCAT technology will allow for safe and rapid decontamination of biological agents on railroad and subway cars. The technology creates biocidal conditions on external and internal surfaces of the rail and subway cars. The technology has been demonstrated on building materials and will be modified for the surfaces found in rail and subway cars. Additionally the system will kill odor and ...

    SBIR Phase I 2016 Environmental Protection Agency
  7. High-Power Vertical-Junction Field-Effect Transistors Fabricated on Low-Dislocation-Density GaN by Epitaxial Lift-Off

    SBC: MicroLink Devices            Topic: DEFOA0000941

    "In this program, we will develop a breakthrough technology that will enable wafer-scale epitaxial lift-off (ELO) of GaN power device heterostructures from low-dislocation-density bulk GaN substrates. This technology will be used to provide a low-cost vertical junction field effect transistors (VJFETs) with high breakdown voltage (greater than 1,200 V) and high current capability (greater than 100 ...

    SBIR Phase II 2013 Department of EnergyARPA-E
  8. High-Power Vertical-Junction Field-Effect Transistors Fabricated on Low-Dislocation-Density GaN by Epitaxial Lift-Off [Phase IIS]

    SBC: MicroLink Devices            Topic: 1

    In this program, we will develop a breakthrough technology that will enable wafer-scale epitaxial lift-off (ELO) of GaN power device heterostructures from low-dislocation-density bulk GaN substrates. This technology will be used to provide a low-cost vertical junction field effect transistors (VJFETs) with high breakdown voltage (greater than 1,200 V) and high current capability (greater than 100 ...

    SBIR Phase II 2014 Department of EnergyARPA-E
  9. Low Cost, Efficient Microchannel Plasma Ozone System for Point of Use Water Treatment

    SBC: EP Purification, Inc.            Topic: A

    A team at EP Purification has performed research for the development and commercialization of low-cost microchannel plasma reactor modules capable of efficiently producing ozone for water treatment and other environmental applications in a slim form factor and size. The conservation of water resources for human consumption is a growing national priority. Ozone is a unique purification agent as it ...

    SBIR Phase II 2014 Environmental Protection Agency
  10. Low-power, Small Form-factor Benzene Sensor for Mobile Devices-based Exposure Monitoring

    SBC: N5 Sensors, Inc.            Topic: D

    Measuring individual exposure in real-time can revolutionize air quality monitoring in communities everywhere. Such information would allow citizens to take preventive measures to reduce their exposures to air toxics, which would impact their health and quality of life tremendously. Mobile devices such as smart-phones and tablets represent a powerful infrastructure that could be leveraged to devel ...

    SBIR Phase I 2014 Environmental Protection Agency

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