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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. Self-Monitoring Surveillance System for Prestressing Tendons

    SBC: Construction Technology            Topic: N/A

    N/A

    SBIR Phase I 1995 Nuclear Regulatory Commission
  2. Development of a Performance Assessment Process Controller

    SBC: Innovative Tech. Solutions            Topic: N/A

    N/A

    SBIR Phase I 1995 Nuclear Regulatory Commission
  3. ELECTROMAGNETIC ENVIRONMENTAL EFFECTS WITHIN A NUCLEAR POWER PLANT

    SBC: MISSION RESEARCH CORP.            Topic: N/A

    MRC PROPOSES TO DEVELOP A SAFETY PERFORMANCE INDICATOR (PI) OF THE ELECTROMAGNETIC (EM) PROTECTION STATUS OF A NUCLEAR POWER PLANT (NPP). WE BELIEVE THAT SUCH A PI IS NEEDED BECAUSE: (1) EM ENVIRONMENTAL POLLUTION IS ON THE INCREASE,(2) ADDITIONAL EM THREATS MUST BE EVALUATED, AND (3) DISRUPTION OF NPP OPERATIONS BY EM EFFECTS CAN AND MUST BE AVOIDED. PREVIOUS STUDIES HAVE ADDRESSED THE ISSUE OF E ...

    SBIR Phase I 1990 Nuclear Regulatory Commission
  4. MICRO COMPUTER BASED PARALLEL PROCESSING SYSTEM FOR CODE COMPUTATIONS

    SBC: Risk Management Systems            Topic: N/A

    THE RESEARCH PROGRAM WILL DEVELOP A MICROCOMPUTER BASED SYSTEM OF HARDWARE AND SOFTWARE WHICH WILL ALLOW THE USER TOEXECUTE MAINFRAME BASED CODES ON THE MICROCOMPUTER. IN ADDITION PARALLEL EXECUTION OF SEVERAL CODES AT ONCE IS POSSIBLEA SPECIAL INPUT AND OUTPUT PROCESSOR MODULES WILL ALSO BE DEVELOPED TO DEMONSTRATE THE USER FRIENDLY CAPABILITIES OF THE SYSTEM AND FACILITATE INPUT PREPARATION AND ...

    SBIR Phase II 1989 Nuclear Regulatory Commission
  5. MICRO COMPUTER BASED PARALLEL PROCESSING SYSTEM FOR CODE COMPUTATIONS

    SBC: Risk Management Systems            Topic: N/A

    N/A

    SBIR Phase I 1988 Nuclear Regulatory Commission
  6. A PORTABLE IMAGING SYSTEM FOR NONDESTRUCTIVE EXAMINATION OF NUCLEAR POWER PLANT COMPONENTS

    SBC: TPL, INC.            Topic: N/A

    THE DIFFICULTY IN PREDICTING STRUCTURAL DEGRADATION RATES FOR NUCLEAR POWER PLANT COMPONENTS DUE TO CORROSION AND OTHER FACTORS HAS LED TO THE NEED FOR COSTLY, TIME CONSUMING INSPECTIONS AND INCREASED COST FROM INTENTIONALLY OVERDESIGNED COMPONENTS. THE SITUATION INDICATES A SERIOUS, UNMET NEED FOR A SIMPLE BUT ACCURATE SYSTEM FOR REAL- TIME, IN SITU, NONDESTRUCTIVE ANALYSIS OF NUCLEAR POWER PLANT ...

    SBIR Phase II 1994 Nuclear Regulatory Commission
  7. A PORTABLE IMAGING SYSTEM FOR NONDESTRUCTIVE EXAMINATION OF NUCLEAR POWER PLANT COMPONENTS

    SBC: TPL, INC.            Topic: N/A

    N/A

    SBIR Phase I 1992 Nuclear Regulatory Commission
  8. High Efficiency, Large-Area, 1550 nm InGaAs Photodiodes

    SBC: VOXTEL, INC.            Topic: N/A

    A back-illuminated planar InGaAs photodiode tested to have 95% quantum effiiency (QE) at 1550 nm, area greater than 1 mm2, low capacitance (<23 pF), and high bandwidth (>125 MHz) will be improved. Although the existing Phase I device exhibited bulk material dark current generation better than commercially available devices, the sidewall-generated dark current was found to dominate the noise ...

    SBIR Phase II 2010 Department of CommerceNational Institute of Standards and Technology
  9. Microfabrication and Micromaching- correct DUN# 142425888

    SBC: Atometric, Inc.            Topic: N/A

    Biotechnology, aerospace, automotive and communications industries need small ultra-precise, three dimensional parts for component miniaturization. Present metal cutting technology is rapidly reaching its limits. A new technology is required to accelerate this trend. Atometric will pursue innovations in ultra-precision multi-axis machine tools. The machining capacity will be within a cube of 50 mm ...

    SBIR Phase I 2004 Department of CommerceNational Institute of Standards and Technology
  10. Microfabrication and Micromaching

    SBC: Atometric, Inc.            Topic: N/A

    During Phase 1 Atometric developed and demonstrated principles of a four-axis micro machine. This machine is capable of machining metal parts that are sized within 50mm cube to an accuracy within one micron. Our goal is to develop a micro machine that is applicable to a broad commercial market. Three additional features need to be added to make the machine fully commercially viable. These three fe ...

    SBIR Phase II 2005 Department of CommerceNational Institute of Standards and Technology

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