Awards for “BAE SYSTEMS SPACE & MISSION SYSTEMS INC.”
25 awards on this page · sorted by amount · page 11
| Award ID | Recipient | Awarding agency | Amount | Start | End | NAICS | Description |
|---|---|---|---|---|---|---|---|
| 1332KP20CNEEP0073 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Commerce | $380K | 2020-04-22 | 2020-11-21 | 541715 | BALL OPERATIONAL WEATHER INSTRUMENT EVOLUTION - MICROWAVE (BOWIE-M) SOUNDER STUDY |
| N6523616C8007 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $379.86K | 2016-05-19 | 2016-12-16 | 541330 | IGF::OT::IGF DARPA BAA 16-18 |
| SPE7M517C0005 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $377.2K | 2016-12-22 | 2017-09-18 | 334220 | 8503710170!ANTENNA |
| 0001 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $376.98K | 2010-04-30 | 2011-02-28 | 541330 | SAFIRE2 TASK |
| 80MSFC20C0051 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $375K | 2020-10-01 | 2020-12-31 | 541715 | BALL AEROSPACE NATIONAL OCEANIC AND ATMOSPHERIC ADMINISTRATION (NOAA) INSTRUMENT ACCOMMODATION STUDY |
| 1332KP22CNEEP0007 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Commerce | $374.93K | 2022-10-01 | 2024-09-30 | 541715 | A COMPARATIVE ASSESSMENT STUDY OF DOPPLER WIND LIDAR TECHNOLOGIES |
| SPM7M910M5397 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $370.4K | 2010-09-24 | 2011-05-22 | 334220 | 4515665916!ANTENNA |
| N0016425FJ530 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $361K | 2025-06-02 | 2026-04-16 | 334511 | STALKER LONG-LEAD TIME SPARES AND MAINTENANCE MATERIALS |
| 0011 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $353.48K | 2012-08-27 | 2013-09-03 | 541330 | LABOR |
| NNL14AB91T | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $351.06K | 2015-02-01 | 2017-10-31 | 541712 | IGF::OT::IGF STRATOSPERIC AEROSOL AND GAS EXPERIMENT (SAGE III) TECHNICAL CONSULTATION SUPPORT |
| NNL14AB54T | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $325.13K | 2014-07-29 | 2015-04-30 | 541712 | IGF::OT::IGF "TROPOSPHERIC EMISSIONS: MONITORING OF POLLUTION (TEMPO) HOST ACCOMODATIONS STUDY SUPPORT" OBTAIN SYSTEMS ENGINEERING SUPPORT IN THE INSTRUMENT TO SPACECRAFT INTERFACES AREA FOR THE UPCOMING TROPOSPHERIC EMISSIONS: MONITORING OF POLLUTION (TEMPO) MISSION HOST ACCOMMODATIONS STUDIES. THE HOST ACCOMMODATION STUDIES WILL BE USED TO INFORM THE MISSION PROJECT REQUIREMENT DOCUMENTS. FEEDBACK FROM THE CONTRACTOR WILL BE ASSESSED AND USED TO UPDATE/ITERATE THE MISSION PROJECT REQUIREMENTS DOCUMENTS. |
| NNL14AA37T | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $319.32K | 2014-02-03 | 2016-08-01 | 541330 | IGF::OT::IGF OTHER FUNCTIONS CLOUD- AEROSOL LIDAR AND INFRARED PATHFINDER SATELLITE OBSERVATIONS (CALIPSO) INDEFINITE DELIVERY INDEFINITE QUANTITY (IDIQ) HYBRID LINEITEM NO 4 RISK REDUCTION LASER TASK ORDER |
| SPE7M518C0029 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $318.07K | 2018-05-22 | 2019-11-11 | 334220 | 8505429299!ANTENNA |
| 0010 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $308K | 2012-06-13 | 2013-06-13 | 541330 | LABOR |
| NNM09AA11C | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $304.61K | 2009-01-01 | 2011-04-01 | 541712 | CONTAMINATION RESISTANT SURFACES FOR LUNAR DUST MITIGATION THE OBJECTIVE FOR THIS WORK SHALL BE TO DEVELOP AND DEMONSTRATE RUGGED COATINGS FOR MITIGATING ADHESION OF LUNAR DUST TO SURFACES. THE CONTRACTOR, BALL AEROSPACE&TECHNOLOGIES CORP. (BALL AEROSPACE) HAS PRODUCED CONTAMINATION RESISTANT SURFACE COATINGS THAT HAVE VERY LOW SURFACE ENERGY, ARE TRANSPARENT IN THE VISIBLE AND NEAR-INFRARED WAVELENGTHS, AND HAVE BEEN SHOWN TO TOLERATE TEMPERATURES BETWEEN 77 AND 673 K WITHOUT PERFORMANCE DEGRADATION. THE PROPOSED WORK SHALL BE DIRECTED AT UNDERSTANDING THE NATURE OF DUST ADHESION AND ADVANCING THESE SURFACE COATINGS FOR APPLICATION TO HARDWARE THAT ARE CRITICAL FOR LUNAR EXPLORATION. THIS WORK IS PROPOSED TO THE LASER SUBTOPIC AREA "LUNAR REGOLITH INTERACTION AND SIMULANT INVESTIGATIONS," WHICH SUPPORTS INVESTIGATION OF DUST MITIGATION APPROACHES AND DUST-REPELLANT MATERIALS. THE THICK LAYER OF DUST THAT COVERS THE MOON IS A SERIOUS PROBLEM AND MUST BE DEALT WITH TO ACCOMPLISH THE EXPLORATION OBJECTIVES. LUNAR DUST ADHERES TO AND DESTROYS SPACE SUITS, INSTRUMENTATION, AND MACHINERY, AND POLLUTES THE AIR SUPPLY FOR ASTRONAUT LIFE SUPPORT. THESE PROBLEMS WERE TOLERABLE DURING THE RELATIVELY SHORT APOLLO MISSIONS, BUT COULD SERIOUSLY JEOPARDIZE FUTURE LONG-TERM MISSIONS. ONE OF THE UNIQUE ADVANTAGES OF THIS PROPOSED TECHNOLOGY IS THAT IT IS WIDELY VERSATILE AND COULD BE USED TO MINIMIZE ADHERENCE OF DUST PARTICLES AND OTHER CONTAMINANTS TO A RANGE OF SUBSTRATES INCLUDING SENSITIVE OPTICAL COMPONENTS AND EQUIPMENT. FOR EXAMPLE, DURING THE APOLLO MISSIONS DUST ACCUMULATED ON INSTRUMENT FACEPLATES, VISOR SUNSHADES, BATTERIES, RADIATORS, SOLAR CELLS, SPACESUITS, AND SEALS FOR SPACE SUITS AND SAMPLE CONTAINERS (GAIER, 2005). THE STRONG ADHERENCE OF DUST TO THESE SURFACES MADE IT IMPOSSIBLE TO ADEQUATELY REMOVE THE DUST, WHICH DEGRADED PERFORMANCE OF THE COMPONENTS. THE APPROACH TO BE DEVELOPED DURING THIS PROJECT COULD BE USED TO MINIMIZE DUST ADHERENCE IN EACH OF THESE APPLICATIONS. |
| 0002 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $302.84K | 2015-04-28 | 2016-02-26 | 334220 | BALL AEROSPACE PAA DEVELOPMENT |
| HR001116C0104 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $300.91K | 2016-08-23 | 2017-07-31 | 541712 | IGF::OT::IGF LASER EFFECTS, MITIGATION, AND ATTRIBUTION (LEMA) STUDY |
| NNH11CC23C | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $300.56K | 2011-05-17 | 2013-12-15 | 541712 | RESEARCH EFFORT SUMMARY: FUTURE MISSIONS TO THE MOON, WHETHER MANNED OR UNMANNED, WILL HAVE TO CONTEND WITH A STICKY PROBLEM: THE TENACIOUS ADHESION OF LUNAR DUST TO EVERYTHING IT COMES INTO CONTACT WITH. THE CONTRACTOR HAS EXPERIMENTALLY DEMONSTRATED THAT IT IS POSSIBLE TO MODIFY A WIDE RANGE OF SUBSTRATE SURFACES SUCH THAT THE ADHESION OF JSC-IAF, A LUNAR SIMULANT, IS DRAMATICALLY REDUCED AS COMPARED WITH ADHESION ON THE VIRGIN SURFACE. THESE RESULTS ARE PROMISING, BUT ARE ONLY THE FIRST STEP TOWARDS THE ULTIMATE GOAL OF CREATING SURFACES WHICH RELIABLY SHED ALL TYPES OF LUNAR DUST ON THE MOON, ALLOWING INSTRUMENTS, SOLAR CELLS, MECHANISMS, ASTRONAUTS OR ANY OTHER OBJECT DURING A LUNAR STAY. IN COLLABORATION WITH OTHER INSTITUTIONS, UTILIZING THEIR CAPABILITIES AND DOVETAILING MUTUAL INTERESTS, A PRODUCTIVE RESEARCH MATRIX OF MATERIALS, EXPERIMENTAL CAPABILITIES AND INTELLECTUAL RESOURCES WILL BE CREATED TO ADDRESS THIS COMPLEX PROBLEM. THE COLLABORATIVE EFFORT INCLUDES PROVIDING A RANGE OF SYNTHETIC LUNAR SIMULANTS FOR THIS WORK, STUDYING ADHESION BEHAVIOR IN A PLASMA, AND PROVIDING NANO-TEXTURED SURFACES FOR THIS STUDY. IN THE LAST YEAR, SIGNIFICANT PROGRESS IN QUANTIFYING ADHESION FORCES AND HAVE CONFIRMED REDUCED ADHESION OF SIMULANT ONTO MATERIALS WHICH HAVE BEEN MODIFIED BY THE CONTRACTOR BOTH IN AIR AND VACUUM. THUS, WE HAVE ALREADY CREATED A MODEST MATRIX OF MATERIALS AVAILABLE FOR COMPARISON VIS A VIS ADHESION AND MATERIAL PROPERTIES. OVER THE NEXT TWO YEARS, WE ARE SEEKING SUPPORT TO FURTHER OUR UNDERSTANDING OF THE INTERACTION OF DIFFERENT TYPES OF LUNAR DUST SIMULANTS (AND RELATED PARTICULATES) WITH A WIDE RANGE OF SUBSTRATE MATERIALS IN AMBIENT, VACUUM AND PLASMA CONDITIONS. THE FUNDAMENTAL ASPECTS OF THIS WORK WILL PROVIDE A BETTER UNDERSTANDING OF HOW THE SPECIFIC PROPERTIES OF DIFFERENT TYPES OF LUNAR SIMULANTS (E.G. SIZE, CHEMISTRY, MORPHOLOGY) WILL INTERACT WITH THE ATTENDANT PROPERTIES OF SURFACES (E.G. CHEMISTRY, MORPHOLOGY, WORK FUNCTION) TO AFFECT ADHESION. IN TURN, THIS WORK WILL AID FURTHER DEVELOPMENT OF ROBUST SURFACES WHICH SHED A WIDE RANGE OF LUNAR DUST EXPECTED TO BE ENCOUNTERED DURING A MOON EXPEDITION. |
| HQ086024C0009 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $300K | 2024-09-20 | 2025-09-19 | 541715 | RESEARCH AND DEVELOPMENT |
| FA875022C0009 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $297.21K | 2022-09-30 | 2023-03-31 | 541715 | VERDI |
| 0012 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $291.34K | 2013-04-08 | 2013-12-31 | 541330 | LABOR |
| 0003 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $289.09K | 2006-08-19 | 2007-08-20 | 541330 | COMPASS REAL-TIME EXPLOITATION |
| N0016425FA550 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $282.92K | 2025-06-18 | 2026-09-30 | 334220 | QTY 14 TEST TEARDOWN EVALUATION AND REPAIR OF LLTV CAMERA |
| NNA08BB95C | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | National Aeronautics and Space Administration | $280K | 2008-09-25 | 2009-08-24 | 541712 | SAP PURCHASE REQUISITION: 4200251824 |
| 0009 | BAE SYSTEMS SPACE & MISSION SYSTEMS INC. | Department of Defense | $279.94K | 2009-09-18 | 2010-09-17 | 541330 | TACSAT-3 LABOR SUPPORT |