National Aeronautics and Space Administration awarded Predictive Science Incorporated of San Diego, CA $849,479 under the SBIR program (Phase II), with work starting 2025-08-18 and running to 2027-08-17. It is one of 3 SBIR and STTR awards Predictive Science Incorporated received in the last two years, $1,224,114 in all. Each figure links to the federal record.
The award
| Recipient | Predictive Science Incorporated (San Diego, CA) |
|---|---|
| Awarding agency | National Aeronautics and Space Administration |
| Phase | Phase II |
| Amount obligated | $849,479 |
| Period of performance starts | 2025-08-18 |
| Period of performance ends | 2027-08-17 |
| Award number | 80NSSC25C0063 (contract) |
| Industry (NAICS) | 541713, Research and development in nanotechnology |
| Product or service code | AJ14, General science and technology R&D services; general science and technology; R&D administrative expenses |
| Place of performance | San Diego, San Diego County, CA |
| Recipient registry id (UEI) | C2XFYLH7Y977 |
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What it is for
80nssc25c0063 an advanced surface flux transport model for space weather
Funding actions on this award
| Date | Action | Modification | Amount |
|---|---|---|---|
| 2026-06-15 | Other administrative action | P00001 | $0 |
| 2025-08-18 | Initial award | 0 | $849,479 |
From the federal award record.
Other SBIR and STTR awards to Predictive Science Incorporated
| Starts | Agency | Program | Amount | Project |
|---|---|---|---|---|
| 2026-09-30 | National Aeronautics and Space Administration | SBIR Phase I | $224,699 | Flarefirst: A real-time tool for solar flare prediction (record) |
| 2025-09-29 | National Aeronautics and Space Administration | SBIR | $149,936 | I improved probabilistic forecasts of solar energetic particles with magpy (record) |
Every other federal award to Predictive Science Incorporated on record
The federal register lists 47 or more other awards to the same registry id (UEI C2XFYLH7Y977), $34,050,187 in all, from 3 agencies.
| Starts | Agency | Amount | Award |
|---|---|---|---|
| 2026-08-15 | National Aeronautics and Space Administration | $515,888 | Execute a balanced science program based on discipline-specific guidance from the national academies of scienc (80NSSC26K1377) |
| 2025-05-01 | National Science Foundation | $578,828 | Shine: How does surface flux evolution determine the structure and dynamics of the solar corona and inner heli (2501333) |
| 2024-09-18 | Department of the Navy | $477,635 | Modeling and analysis support for wispr and solohi. Baa contract to predictive science inc. (N0017324C0004) |
| 2024-08-07 | National Aeronautics and Space Administration | $149,362 | FY24 SBIR Phase I- an advanced surface flux transport model for space weather (80NSSC24PB413) |
| 2024-06-01 | National Aeronautics and Space Administration | $774,418 | On the evolution of cmes in the corona and inner heliosphere (80NSSC24K1108) |
| 2023-07-01 | National Science Foundation | $545,775 | Shine: A numerical investigation into coronal mass ejections (cme-cme) interaction events -coronal mass ejecti (2301403) |
| 2022-08-05 | National Aeronautics and Space Administration | $179,942 | EO14042 P3 an extensible tool for estimating space weather benchmarks (80NSSC22CA210) |
| 2022-07-19 | National Aeronautics and Space Administration | $999,572 | Linking surface magnetic fields to the structure and dynamics of the solar corona (80NSSC22K1021) |
| 2022-06-13 | National Aeronautics and Space Administration | $3,877,641 | Dynamcs: A dynamically evolving model of cmes and seps (80NSSC22K0893) |
| 2021-12-16 | National Aeronautics and Space Administration | $461,717 | One of the major challenges in heliophysics is the characterization of the global structure and evolution of c (80NSSC22K0349) |
| 2020-10-13 | National Aeronautics and Space Administration | $243,055 | NASA amazon web services, and gpu porting (80NSSC21P0069) |
| 2020-09-14 | National Aeronautics and Space Administration | $498,406 | The rise of sunrunner: A new model for predicting the properties of interplanetary coronal mass ejections at 1 (80NSSC20K1403) |
| 2020-09-01 | National Aeronautics and Space Administration | $1,637,832 | Using a combination of data analysis global modeling and theoretical development we propose to address thre (80NSSC20K1285) |
| 2020-08-15 | National Aeronautics and Space Administration | $1,396,482 | Our proposed project will significantly increase our current understanding of cme evolution. (80NSSC20K1274) |
| 2020-08-15 | National Aeronautics and Space Administration | $749,190 | Coronal mass ejections (cmes) are large eruptions of magnetized plasma from the sun into the heliosphere. Ther (80NSSC20K1317) |
| 2020-07-06 | National Aeronautics and Space Administration | $929,079 | An extensible tool for estimating space weather benchmarks (80NSSC20C0187) |
| 2020-04-06 | National Aeronautics and Space Administration | $901,205 | The solar wind expands outward from the solar corona and fills the heliosphere. IT is the medium by which sola (80NSSC20K0192) |
| 2020-03-01 | National Aeronautics and Space Administration | $524,851 | The basic picture of a two-state solar wind in part ed by the ulysses mission has been challenged many time (80NSSC20K0695) |
| 2020-01-23 | National Aeronautics and Space Administration | $399,954 | Integrated mhd-focused transport modeling of solar particle events (80NSSC20K0285) |
| 2019-10-16 | Department of the Air Force | $200,000 | Baa fa9453-19-s-001, call 003 - d-region absorption models and associated solar drivers and tools (FA945320C0302) |
| 2019-09-15 | National Science Foundation | $396,772 | Collaborative research: Plasma heating and energy partition in flares and coronal mass ejections (cmes) (1923377) |
| 2019-08-19 | National Aeronautics and Space Administration | $124,968 | An extensible tool for estimating space weather benchmarks (80NSSC19C0405) |
| 2019-08-01 | National Science Foundation | $1,690,434 | Collaborative research: Preevents track 2: Quantifying the risk of extreme solar eruptions (quest) (1854790) |
| 2019-08-01 | National Aeronautics and Space Administration | $707,355 | Prominences (or filaments) are elongated cold and dense plasma structures that are observed in the solar coro (80NSSC19K0858) |
| 2019-07-09 | National Aeronautics and Space Administration | $749,998 | Coronal mass ejections are huge explosions that propel plasma and magnetic field away from the sun and are the (80NSSC19C0193) |
| 2019-06-10 | Department of the Navy | $864,675 | 76-8022-19 modeling and analysis simulation support (N0017319C2003) |
| 2019-02-15 | National Aeronautics and Space Administration | $396,530 | Solar eruptions such as cmes and coronal jets stem from current-carrying (sheared/twisted) coronal magnetic fi (80NSSC19K0263) |
| 2017-11-14 | National Aeronautics and Space Administration | $1,727,095 | Using a combination of statistical and physics-based models we will develop a robust scheme for predicting th (80NSSC18K0100) |
| 2017-08-28 | National Aeronautics and Space Administration | $533,868 | We propose an effort aimed at bringing together recent advances in the theory and modeling of turbulent heatin (80NSSC18K1129) |
| 2017-04-01 | National Aeronautics and Space Administration | $410,000 | The confluence of the stereo and sdo missions has allowed a large fraction of the sun to be simultaneously obs (NNX17AB78G) |
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Get the free SnapshotWhere this comes from
The Small Business Innovation Research (SBIR) and Small Business Technology Transfer (STTR) programs set aside part of federal research budgets for small companies. Agencies award them in phases: Phase I tests whether an idea is feasible, Phase II funds development, and Phase III is follow-on work paid for outside the set-aside. STTR awards also require a research institution as a partner.
Every figure on this page is taken from the award's own federal record, linked beside it, as it stood when the page was built: the recipient, its address, the awarding agency and office, the amount obligated so far, the dates and the description. Phase and program are shown as the award's own description states them. The amount can grow later if the agency adds funding to the same award.
