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Company Information
4425 FORTRAN DR # 4425X
SAN JOSE, CA 95134-2300
United States



# of Employees: 22

Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: No

Woman Owned: No

Award Charts

Award Listing

  1. Advanced Propulsion Systems Ground Test Technology

    Amount: $120,601.00

    IFOS proposes to develop a test rig sensor suite to measure pressures/acoustics, static and dynamic strains and tempersures for advanced propulsion systems such as that used for NASA?s Space Launch Sy ...

    SBIRPhase I2017National Aeronautics and Space Administration
  2. Multifunctional Integrated Photonic Lab-on-a-Chip for Astronaut Health Monitoring

    Amount: $120,805.00

    Astronauts do not have a simple and reliable method to accurately and in real-time monitor their health during missions. IFOS proposes an innovative miniaturized blood monitoring lab-on-a-chip to dire ...

    STTRPhase I2017National Aeronautics and Space Administration
  3. High-Resolution Multiplexed Fiber-Optic Pressure Shock Sensors for Scramjets

    Amount: $149,953.66

    To meet the critical DoD sensing need for robust turbine-based combined cycle (TBCC) propulsion control, IFOS proposes survivable fiber-optic based high-speed, high-resolution, distributed sensors to ...

    SBIRPhase I2017Department of Defense Defense Advanced Research Projects Agency
  4. Intelligent Fiber-Optic Network with Real Time Built-in Test Performance Monitoring for Prognostics and Diagnostics

    Amount: $224,668.00

    The aircraft environment poses extreme stresses on connector performance and can degrade network performance before system detection. IFOS proposes to leverage on its directly related experience in ad ...

    SBIRPhase I2017Department of Defense Navy
  5. Multiplexed Fiber Optic Sensor System for SHM of Ships: Integration & Validation

    Amount: $1,517,971.00

    In Phase II, IFOS developed a multisource sensor system supporting 128 FBG sensors per node over a range of ±1500 microstrain or 256 sensors per node across ±500 microstrain. A demonstration was giv ...

    SBIRPhase II2017Department of Defense Navy
  6. Integrated Fiber-Optic Sensor Reliability Modeling and Analysis Tools for Thermal and Power Management Systems for Gas Turbine Engines

    Amount: $749,042.00

    Addressing a key technology gap in deployment of fiber-optic sensor networks, IFOS and multidisciplinary collaborators are developing an integrated fiber-optic component reliability modeling software ...

    STTRPhase II2017Department of Defense Air Force
  7. Intelligent and Multiplexable Ultra-High Temperature Fiber Optic Pressure Sensors for Robust Distributed Engine Control

    Amount: $749,996.00

    Engines will be getting smaller and hotter for efficiency reasons, requiring novel sensors with extended and enhanced performance. Emerging fiber-optic sensing approaches could provide a unique soluti ...

    STTRPhase II2017Department of Defense Air Force
  8. Innovative Fiber-Optic Gyroscopes (FOGs) for High Accuracy Space Applications

    Amount: $747,073.00

    This project aims to develop a compact, highly innovative Inertial Reference/Measurement Unit (IRU/IMU) that pushes the state-of-the-art in high accuracy performance from a FOG with drastically reduce ...

    SBIRPhase II2016National Aeronautics and Space Administration
  9. Advanced Fiber-Optic Gyroscope for Measurement-While-Drilling in Harsh Downhole Environments

    Amount: $154,998.97

    New methods and technologies are needed to evaluate, improve, and/or optimize the reliability, accuracy, and/or performance of drilling technologies and instrumentation, testing methods and applicatio ...

    SBIRPhase I2016Department of Energy
  10. Silicon Photonics Parallel Processor for High Performance Computing and Sensor Networks

    Amount: $149,990.00

    High performance computing (HPC) and network systems have been experiencing dramatic growth in information processing capabilities. However, meeting the demand for increased capacity (larger bandwidth ...

    SBIRPhase I2016Department of Energy
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