Orora Design Technologies, Inc.

Basic Information

18378 Redmond Fall CIty Road
Redmond, WA, -

http://orora.com

Company Profile

n/a

Additional Details

Field Value
DUNS: 10947088
Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N
Number of Employees: 6


  1. Innovative Computational Mitigation of Radiation Effects in Nano-technology Microelectronics

    Amount: $150,000.00

    Orora Design Technologies, Inc. proposes to develop an innovative computer-aided design (CAD) based methodology and enabling tools for rapid radiation-hardened prototyping and migration of military sa ...

    SBIR Phase I 2012 Department of Defense Defense Threat Reduction Agency
  2. Technologies to Mitigate Radiation Effects in Advanced Nanoscale Microelectronics

    Amount: $150,000.00

    The goal of this research is to develop electronic design automation (EDA) tools to automate the following three major radiation-hardened-by-design (RHBD) tasks: (1) The capture of RHBD design const ...

    SBIR Phase I 2012 Department of Defense Defense Threat Reduction Agency
  3. VLSI CMOS-memristor Building-block for Future Autonomous Air Platforms

    Amount: $100,000.00

    ABSTRACT: In this project, Orora Design Technologies, Inc. is teaming up with researchers from the University at Albany and the University of Washington to develop techniques to design, simulate and ...

    STTR Phase I 2011 Air Force Department of Defense
  4. The Characterization and Mitigation of Radiation Effects on Nano-technology Microelectronics

    Amount: $100,000.00

    OBJECTIVE: The successful outcome of this effort will support the use of ultra-deep submicron integrated circuits in DoD satellite systems that will result in very significant savings in weight, powe ...

    SBIR Phase I 2011 Department of Defense Defense Threat Reduction Agency
  5. High Performance Rad Hard Analog to Digital Converter Architectures

    Amount: $100,000.00

    Orora Design Technologies proposes to develop and demonstrate the feasibility of a template-based solution to the design of high-performance radiation-hardened analog-to-digital converters (ADCs). Res ...

    SBIR Phase I 2008 Missile Defense Agency Department of Defense
  6. The Characterization and Mitigation of Single Event Effects in Ultra-Deep Submicron (< 90nm) Microelectronics

    Amount: $750,000.00

    Orora Design Technologies proposes to develop electronic design automation (EDA) tools employing minimally invasive circuit design-based methods to mitigate single event effects (SEEs) for next genera ...

    SBIR Phase II 2008 Defense Threat Reduction Agency Department of Defense
  7. The Characterization and Mitigation of Single Event Effects in Ultra-Deep Submicron (< 90nm) Microelectronics

    Amount: $97,599.00

    Orora Design Technologies proposes the development of minimally invasive circuit design-based methods to mitigate single event effects (SEEs) in next generation Ultra-DSM CMOS (

    SBIR Phase I 2007 Defense Threat Reduction Agency Department of Defense
  8. Ballistic Missile System Innovative Radiation Hardened/Tolerant Electronics Products

    Amount: $749,987.00

    Orora Design Technologies, teaming up ATK Mission Research and Boeing Solid-State Electronics, with the support from Oregon State University and Vanderbilt University, proposes to develop innovative m ...

    SBIR Phase II 2006 Defense Threat Reduction Agency Department of Defense
  9. Design-Hardened Analog/Mixed-Signal Electronics

    Amount: $1,250,000.00

    In this Phase II SBIR proposal, Orora Design Technologies proposes to develop a retargetable design kit for radiation-hardened high-performance A/D converters. In Phase I of the project, Orora demo ...

    SBIR Phase II 2006 Air Force Department of Defense
  10. Hierarchical CAD Tools for Radiation Hardened Mixed Signal Electronic Circuits

    Amount: $1,383,750.00

    In this SBIR proposal, Orora Design Technologies proposes to develop a behavioral modeling centric automated design flow and supporting CAD tools for radiation-hardened mixed-signal electronic systems ...

    SBIR Phase II 2005 Defense Advanced Research Projects Agency Department of Defense

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