Definitive Contract NNX12CA73C
- Not listed
- This is a $124,381 firm fixed price Phase I SBIR contract awarded by NASA to Sibelloptics, a veteran-owned small business located in Lafayette, Colorado. The contract is for the conceptual design of a compact, efficient, and reliable LIDAR system that can be deployed on various platforms such as balloons, small satellites, CubeSats, and ground-based exploratory systems. The goal is to develop a coherent LIDAR system for wind measurement that can meet the size, weight, power, and reliability...
- This is a Small Business Innovation Research (SBIR) Phase I contract awarded by NASA to Systems & Processes Engineering Corporation (SPEC), a veteran-owned small business based in Austin, Texas. The $125,000 firm-fixed-price contract is for the development of a wind measurement lidar system to improve the flight duration or fuel efficiency of unmanned aerial vehicles (UAVs) and light aircraft. The system uses a fiber optic-based, eye-safe wind lidar combined with software to optimize control...
- This SBIR Phase II contract was awarded by the National Aeronautics and Space Administration (NASA) Shared Services Center to Aeromancer Technologies Corporation, a minority-owned, small disadvantaged business based in Washington, D.C. The contract, valued at $749,998.00, is for the development of a 3D Global LIDAR Airspeed Sensor (3D-LGAS) using aerosol correlation velocimetry for standoff sensing of high-resolution, spatially and temporally resolved three-component global airspeeds. The...
- Aeromancer Technologies Corporation, a minority-owned, small disadvantaged business in Washington, D.C., was awarded a $124,969.00 Small Business Innovation Research (SBIR) Phase I contract by the National Aeronautics and Space Administration (NASA) Shared Services Center. The contract is for the development of a 3D LIDAR Global Airspeed Sensor (3D-GLAS) for remote optical sensing of three-component airspeeds in wind tunnel applications. This SBIR Phase I contract will fund requirements...
- The National Aeronautics and Space Administration (NASA) awarded a $124,863 Small Business Innovation Research (SBIR) Phase I contract to Boulder Nonlinear Systems Inc. to develop a compact, low-size, weight, and power (low-SWAP) 3D wind sensor system that can be deployed on small unmanned aerial vehicles (UAVs). The goal is to provide wider coverage and cheaper operation for measuring 3D wind vectors, which is critical for understanding climate processes, weather prediction, and planetary...
- NASA's Armstrong Flight Research Center awarded a $383,495.00 firm-fixed-price purchase order to Vaisala Inc., a foreign-owned manufacturer, for the purchase of a scanning pulsed coherent Doppler lidar system, along with travel and training. The lidar equipment will be used to measure 3-D winds in the boundary layer and middle troposphere at the Edwards Air Force Base location in California. This requirement was full and open, with no set-aside designation. Vaisala is a provider of specialized...
- The National Aeronautics and Space Administration (NASA) Shared Services Center awarded a Small Business Innovation Research (SBIR) Program Phase I contract to Systems & Processes Engineering Corporation (SPEC), a veteran-owned small business, for the development of Multi-Channel Long-Range Wind LIDAR (Light Detection and Ranging) remote-sensing technologies. The $124,689.00 firm-fixed-price contract has a completion date of November 19, 2021. SPEC has received prior prime contract awards...
- The U.S. Department of Transportation awarded a $250,871.70 firm fixed-price purchase order to Vaisala Inc. on February 4, 2026, to conduct a Light Detection and Ranging (LiDAR) demonstration for wake turbulence research in support of the Federal Aviation Administration. Under this contract, which is scheduled for completion by September 30, 2026, Vaisala will install a modern scanning pulsed LiDAR system at the Volpe National Transportation Systems Center test site in Burlingame, California...
- NASA awarded a $514,037.23 firm fixed price contract to Simpson Weather Associates, Inc. to design airborne Doppler wind lidar missions to study tropical convective processes across various scales. The purpose is to investigate the planetary boundary layer structure, aerosols, and circulations within the lower tropical troposphere under different convective conditions. The effort will include using numerical models and data assimilation techniques to assess the impact of assimilating the...
- This federal contract award to Physical Optics Corporation (POC), a division of Mercury Systems Inc., supports the National Aeronautics and Space Administration's (NASA) need for advanced atmospheric monitoring instrumentation. The contract, valued at $124,997, is a Small Business Innovation Research (SBIR) Phase I award for POC to adapt its portable, ground-based Light Detection and Ranging (LIDAR) weather system to measure winds, temperature, and humidity in a 3D volume. The proposed...
OTHER FUNCTION - LIDAR (LIGHT DETECTION AND RANGING) SYSTEMS HAVE PROVEN THEIR VALUE IN THE REMOTE MEASUREMENT OF SPATIALLY RESOLVED ATMOSPHERIC WIND VELOCITIES IN A NUMBER OF APPLICATIONS, INCLUDING THE DETECTION OF CLEAR-AIR TURBULENCE, WIND SHEAR, AIRCRAFT WAKE VORTICES, AND MICROBURSTS. THE CAPACITY OF COHERENT LIDAR SYSTEMS TO PRODUCE A CONTINUOUS, REAL-TIME 3D SCAN OF WIND VELOCITIES VIA DETECTION OF THE MIE BACKSCATTER OF ATMOSPHERIC AEROSOLS IN CLEAR-AIR CONDITIONS AND AT STAND-OFF DISTANCES OF UP TO 50 KM AT RELATIVELY LOW PULSE ENERGY GIVES THIS TECHNOLOGY A CLEAR ADVANTAGE OVER OTHER ATMOSPHERIC MONITORING TECHNOLOGIES. SIBELLOPTICS PROPOSED AND SUCCESSFULLY EXECUTED ON A PHASE I SBIR CONTRACT WHOSE PURPOSE WAS TO DESIGN, BUILD, AND TEST A NOVEL HEMISPHERICAL SCANNER AS PART OF A COMPACT ALL-FIBER COHERENT WIND LIDAR SENSOR. ACTIVITIES INCLUDED DETAILED DRAWINGS, PROCUREMENT OF THE CUSTOM OPTO-MECHANICAL MATERIALS, AND BUILD AND TEST OF THE SCANNER ASSEMBLY AND CONTROLLER. DURING THE EXECUTION OF CONTRACT NNX11CG86P SIBELLOPTICS DESIGNED, PROCURED, AND ASSEMBLED THE KEY COMPONENTS OF THE HEMISPHERICAL SCANNER AND CONTROLLER AND TESTED THE ASSEMBLY FOR OPERATION WITH THE CONTROL COMPUTER, REPEATABILITY OF POSITIONING, ACCURACY OF POINTING, AND AZIMUTH AND ELEVATION LOAD ENDURANCE. IN PHASE II, IT IS PROPOSED THAT, BASED UPON FINDINGS AND TESTING DURING PHASE I EFFORTS, THE FULL HEMISPHERICAL SCANNER SYSTEM BE DESIGNED, BUILT, AND TESTED USING A COMPUTER-BASED CONTROLLER THAT OPERATES WITH AN INTERACTIVE, USER-SELECTED INTERFACE MENU.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| 2 | Other Administrative Action | $0 | 12/24/13 | |
| 1 | Other Administrative Action | $0 | 10/16/12 | |
| Not listed | Not listed | $749.9k | 4/23/12 |