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Federal Contract Awards

133awards

Analyze awards, watch incumbents and competitors, track new transactions or changes, and use award history to shape recompete and capture strategy.

Awardee
is
N8J7GS1DB3A6
Award ID
Description
Recipient
Total Value
Awarding Agency
Funding Agency
Set Aside
NAICS
PSC
Award Date
Start Date
End Date
HQ085022C0024
PHASE I SBIR BASIC AWARD FOR NON-MECHANICAL BEAM STEERING TECHNOLOGY FOR OPTICAL INTERSATELLITE LINKSBOULDER NONLINEAR SYSTEMS, INC.$259,535SPACE DEVELOPMENT AGENCY (SDA)SPACE DEVELOPMENT AGENCY (SDA)—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AC13NATIONAL DEFENSE R&D SERVICES; DEPARTMENT OF DEFENSE - MILITARY; EXPERIMENTAL DEVELOPMENTSep 27, 2022Sep 27, 2022Sep 27, 2023
80NSSC22PA970
E014042 SBIR PHASE I COMPATIBLE HIGH-RES 3D VISION SYSTEMBOULDER NONLINEAR SYSTEMS, INC.$148,960NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AJ14GENERAL SCIENCE AND TECHNOLOGY R&D SERVICES; GENERAL SCIENCE AND TECHNOLOGY; R&D ADMINISTRATIVE EXPENSESJul 20, 2022Jul 25, 2022Jan 25, 2023
80NSSC21P2660
NON-MECHANICAL BEAM STEARING SYSTEMBOULDER NONLINEAR SYSTEMS, INC.$40,410NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)6760PHOTOGRAPHIC EQUIPMENT AND ACCESSORIESSep 9, 2021Sep 9, 2021Aug 10, 2022
80NSSC20C0502
PROGRAMMABLE PHASE NULLING INTERFEROMETERBOULDER NONLINEAR SYSTEMS, INC.$123,014NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHAug 27, 2020Aug 31, 2020Mar 1, 2021
80NSSC19C0218
VERSATILE 3D IMAGER FOR HUMAN/SPACECRAFT MONITORINGBOULDER NONLINEAR SYSTEMS, INC.$749,762NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHAug 14, 2019Aug 14, 2019Feb 11, 2022
80LARC19C0009
NASA ELECTRO OPTICAL TECHNOLOGY DEVELOPMENT IN LIQUID CRYSTAL BEAM STEERING PROJECT. THE CONTRACTOR WILL DESIGN AND CONSTRUCT FOUR LIQUID CRYSTAL BASED NONMECHANICAL LASER BEAM STEERING SYSTEMS TO BE INTEGRATED INTO NASA LARCS NDL. THE SYSTEM DESIGNS FOR THE FIRST TWO UNITS SHALL BE BASED ON A SET OF THRESHOLD SPECIFICATIONS. THE CONTRACTOR SHALL CONDUCT ADDITIONAL RESEARCH AND DEVELOPMENT TO INVESTIGATE MEETING A SET OF OBJECTIVE SPECIFICATIONS FOR THE SECOND TWO UNITS. ALL BEAM STEERING UNITS SHALL BE CONSTRUCTED AND CHARACTERIZED BY THE CONTRACTOR PRIOR TO DELIVERY TO NASA LARC.BOULDER NONLINEAR SYSTEMS, INC.$348,930NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHMay 16, 2019May 16, 2019Oct 31, 2020
N0017319P0544
IGF::OT::IGF POLARIZATION GRATINGS PR# 56-9205-19BOULDER NONLINEAR SYSTEMS, INC.$21,040DEPT OF THE NAVYDEPT OF THE NAVY—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AJ43Feb 11, 2019Feb 11, 2019Mar 22, 2019
FA865019P1849
SHARED-APERTURE POLARIZATION-GRATING BEAM STEERING FOR ATTRITABLE PLATFORMSBOULDER NONLINEAR SYSTEMS, INC.$149,941DEPT OF THE AIR FORCEDEPT OF THE AIR FORCE—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AC61Jan 15, 2019Jan 15, 2019Oct 18, 2019
80NSSC18P2206
THE PROPOSED EFFORT IS TO DEVELOP A HIGH-DEFINITION (HD) 3D IMAGER THAT PROVIDES IN REAL-TIME HIGH-RESOLUTION POINT CLOUD DATA OVER A WIDE ANGLE FOR MONITORING HUMAN ACTIVITY FROM A FREE-FLYING ROBOT PLATFORM. THE OBJECTIVE IS TO BUILD A COMPACT SENSOR PACKAGE THAT MEETS THE LOW SIZE, WEIGHT AND POWER (SWAP) REQUIREMENTS OF THE APPLICATION. THE 3D SENSOR WILL PROVIDE BETTER THAN 1CM BY 1CM BY 1CM RESOLUTION OVER A 60-DEGREE BY 45-DEGREE FIELD OF REGARD AT A STANDOFF DISTANCE OF 10 METERS OR MORE. THIS 3D IMAGING CAPABILITY IS ACHIEVED USING A UNIQUE ELECTRO-OPTIC STEP AND STARE SCANNER THAT PROVIDES THE LARGEST ANGLE-APERTURE PRODUCT OF ANY NON-MECHANICAL SCANNING TECHNOLOGY.BOULDER NONLINEAR SYSTEMS, INC.$124,976NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHJul 26, 2018Jul 27, 2018Feb 15, 2019
80NSSC18P2060
WE PROPOSE THE DEVELOPMENT OF A PROGRAMMABLE PHASE NULLING INTERFEROMETER THAT EXTENDS THE CAPABILITY OF A COMPUTER GENERATED HOLOGRAM (CGH) TO NULL TEST A RANGE OF METER CLASS TELESCOPE MIRRORS, INSTEAD OF A SINGLE ONE FOR WHICH IT WAS DESIGNED. THE ACTIVE ELEMENT IS A CRYSTAL ON SILICON (LCOS) SPATIAL LIGHT MODULATOR (SLM). THE SLM CORRECTS FOR THE RESIDUAL WAVEFRONT REMAINING WHEN A CGH IS USED TO TEST A MIRROR FOR WHICH IT WAS NOT DESIGNED. AN APERTURE F-NUMBER TRADE SPACE EXISTS IN WHICH A RANGE OF MIRRORS CAN BE NULL TESTED WITH ONE CGH. THE PROTOTYPE CAN BE MODULARLY ADDED-ON TO A RAILED INTERFEROMETRIC TEST SETUP WITH A CGH. IN PHASE I A SYSTEM WILL BE CONSTRUCTED WITH A 512X512 SLM IN A BRASSBOARD TWYMAN-GREEN INTERFEROMETER TO NULL TEST A 10 INCH F3.5 OR F4 PARABOLIC MIRROR. IT WILL RESEMBLE THE PROPOSED PROTOTYPE, BUT WITHOUT A CGH, AS IN THIS CASE THE SLM ALONE CAN NULL THE PHASE ERROR FROM THE MIRROR. TESTS OF NULL QUALITY AND REPEATABILITY WILL BE PERFORMED AND MEASURES TO ELIMINATE MODULO 2P PHASE ARTIFACTS WILL BE IMPLEMENTED. THE PHASE 1 BRASSBOARD WILL BE CONTROLLED WITH A LABVIEW EXECUTABLE AND DELIVERED TO NASA.BOULDER NONLINEAR SYSTEMS, INC.$113,030NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHJul 26, 2018Jul 27, 2018Feb 15, 2019
80NSSC18C0175
THIS PHASE II EFFORT WILL BE A PROOF-OF-CONCEPT DEMONSTRATION OF A NON-MECHANICAL (NO MOVING PARTS) 3D LIDAR SYSTEM THAT PROVIDES IN REAL TIME HIGH-RESOLUTION TERRAIN POINT CLOUD INFORMATION. THE OBJECTIVE IS TO BUILD A COMPACT SENSOR THAT MEETS THE LOW SIZE, WEIGHT AND POWER (SWAP) REQUIREMENTS OF PLANETARY LANDERS BEING DEVELOPED FOR FUTURE NASA PLANET, MOON AND ASTEROID EXPLORATION. THE LIDAR SENSOR WILL PROVIDE 5CM BY 5CM BY 5CM RESOLUTION OVER A 30-DEGREE BY 30-DEGREE FIELD OF REGARD AT A STANDOFF DISTANCE OF 1 KM OR MORE. THIS WILL BE ACCOMPLISHED USING A UNIQUE ELECTRO-OPTIC SCANNER THAT PROVIDES THE LARGEST ANGLE-APERTURE PRODUCT OF ANY COMMERCIALLY-AVAILABLE NON-MECHANICAL SCANNING TECHNOLOGY.BOULDER NONLINEAR SYSTEMS, INC.$749,927NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHJun 12, 2018Jun 12, 2018Dec 11, 2020
80NSSC18C0047
BOULDER NONLINEAR SYSTEMS (BNS) PROPOSES TO PURSUE DEVELOPMENT OF LOW SIZE, WEIGHT, AND POWER (SWAP) BEAM SCANNER TECHNOLOGY FOR ENTRY, DESCENT AND LANDING (EDL) OR WIND SENSING LIDAR NASA APPLICATIONS THAT CAN REDIRECT THE BEAM OF LIGHT AT 1 KHZ (THRESHOLD) TO 10 KHZ (GOAL) FRAMERATES. THE PROTOTYPE SCANNER WILL STEER TO 8 SPOTS OVER AT LEAST A 60O FIELD OF REGARD. BNS WILL EMPLOY THEIR CURRENT LIQUID CRYSTAL POLARIZATION GRATING (LCPG) TECHNOLOGY AND FERROELECTRIC LIQUID CRYSTAL (FLC) SWITCHES TO MEET SCANNER SPEED AND RESOLUTION REQUIREMENTS. ADVANTAGES OF APPLYING BNS LCPG AND SWITCH COMPONENT TECHNOLOGY SPECIFIC TO THE SPACE-BASED LIDAR APPLICATIONS WILL INCLUDE ACCURACY, RELIABILITY, AND IMPROVED SWAP AS WELL AS HIGH RATE (AT LEAST 1 KHZ ) SCANNING. IN ADDITION, BNS WILL DEVELOP LOW SWAP DEDICATED DRIVE ELECTRONICS AND ENVIRONMENTALLY TEST THE SCANNER PROTOTYPE WHICH WILL BE BUILT IN PHASE II.BOULDER NONLINEAR SYSTEMS, INC.$749,907NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHApr 18, 2018Apr 18, 2018Jul 10, 2020
FA865018C1150
IGF::OT::IGF BROADBAND BEAM STEERING DEVICES FOR MIDWAVE INFRARED (MWIR)BOULDER NONLINEAR SYSTEMS, INC.$749,529DEFENSE CONTRACT MANAGEMENT AGENCY (DCMA)DEPT OF THE AIR FORCE—541715Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)AC62Oct 30, 2017Oct 30, 2017Feb 4, 2020
FA865117P0121
IGF::OT::IGF APHID FOR CHARACTERIZING INVERTEBRATE VISIONBOULDER NONLINEAR SYSTEMS, INC.$149,931DEPT OF THE AIR FORCEDEPT OF THE AIR FORCE—541712AC51Aug 9, 2017Aug 9, 2017May 9, 2018
N0017317P1748
IGF::OT::IGF POLARIZATION GRATINGS PR# 56-9213-17BOULDER NONLINEAR SYSTEMS, INC.$13,030DEPT OF THE NAVYDEPT OF THE NAVY—541712AJ43Jul 18, 2017Jul 18, 2017Aug 18, 2017
N6833517C0510
RESEARCH AND DEVELOPMENT IGF::OT::IGFBOULDER NONLINEAR SYSTEMS, INC.$224,777DEPT OF THE NAVYDEPT OF THE NAVY—541712AC61Jun 6, 2017Jun 6, 2017Jun 7, 2018
NNX17CS52P
IGF::OT::IGF THIS PHASE I EFFORT WILL BE A PROOF-OF-CONCEPT DEMONSTRATION OF A NON-MECHANICAL (NO MOVING PARTS) 3D LIDAR SYSTEM THAT PROVIDES IN REAL TIME HIGH-RESOLUTION TERRAIN POINT CLOUD INFORMATION. THE OBJECTIVE IS TO BUILD A COMPACT SENSOR THAT MEETS THE LOW SIZE, WEIGHT AND POWER (SWAP) REQUIREMENTS OF SMALL AUTONOMOUS SPACE VEHICLES, ROBOTS AND ROVERS BEING DEVELOPED FOR FUTURE NASA PLANETARY AND ASTEROID/COMET EXPLORATION. THE LIDAR SENSOR WILL PROVIDE A VARIABLE ANGULAR RESOLUTION OF 0.04 DEGREES BY 0.04 DEGREES TO 0.005 DEGREES BY 0.005 DEGREES WITH<10CM RANGE PRECISION OVER AN 80 DEGREES BY 80 DEGREES FIELD OF REGARD AND 200 METER RANGE IN BRIGHT SUN LIGHT. THIS WILL BE ACCOMPLISHED USING A UNIQUE ELECTRO-OPTIC SCANNER THAT PROVIDES THE LARGEST ANGLE-APERTURE PRODUCT OF ANY COMMERCIALLY-AVAILABLE NON-MECHANICAL SCANNING TECHNOLOGY.BOULDER NONLINEAR SYSTEMS, INC.$124,794NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541712AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHMay 23, 2017Jun 9, 2017Dec 8, 2017
NNX17CS54P
IGF::OT::IGF BOULDER NONLINEAR SYSTEMS (BNS) WILL DEVELOP A HIGH SPEED (SUB-15 MICRO-SECOND RESPONSE TIME) LOW SIZE, WEIGHT, AND POWER (SWAP) BEAM SCANNER FOR APPLICATION TO SPACE-BASED LIDAR. BNS WILL EMPLOY THEIR CURRENT LIQUID CRYSTAL POLARIZATION GRATING (LCPG) TECHNOLOGY AND FERROELECTRIC LIQUID CRYSTAL (FLC) SWITCHES TO MEET THE DISCRETE SCANNER SPEED AND RESOLUTION REQUIREMENTS CALLED FOR IN THE SOLICITATION. ADVANTAGES OF APPLYING BNS LCPG AND SWITCH COMPONENT TECHNOLOGY SPECIFIC TO THE SPACE-BASED LIDAR APPLICATION WILL INCLUDE ACCURACY, RELIABILITY, AND IMPROVED SWAP AS WELL AS HIGH RATE (AT LEAST 8 KHZ ) SCANNING. IN ADDITION, BNS WILL DEVELOP AN ENVIRONMENTAL TEST AND OR MITIGATION PLAN FOR OUR COMPONENTS TAILORED TO THE SPACE-BASED LIDAR APPLICATION. THE PHASE I ANALYSIS WILL RESULT IN THE DESIGN OF A SCANNER PROTOTYPE WHICH WILL BE BUILT IN PHASE II.BOULDER NONLINEAR SYSTEMS, INC.$124,790NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541712AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHMay 23, 2017Jun 9, 2017Dec 8, 2017
W911QX17P0006
IGF::OT::IGF 6 MONTH SBIR PHASE I TOPIC 16.2 A16-094BOULDER NONLINEAR SYSTEMS, INC.$149,697DEPT OF THE ARMYDEPT OF THE ARMY—541712AJ41Oct 27, 2016Nov 1, 2016Aug 31, 2017
NNL16AE94P
NONMECHANICAL BEAM STEERING SYSTEMBOULDER NONLINEAR SYSTEMS, INC.$69,540NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—5417125895MISCELLANEOUS COMMUNICATION EQUIPMENTAug 14, 2016Aug 14, 2016Feb 24, 2017
FA865016M1812
IGF::OT::IGF SBIR PHASE I - BROADBAND BEAM STEERING DEVICES FOR MIDWAVE INFRARED (MWIR)BOULDER NONLINEAR SYSTEMS, INC.$149,785DEPT OF THE AIR FORCEDEPT OF THE AIR FORCE—541712AC61Jun 7, 2016Jun 7, 2016Mar 9, 2017
FA865016C1750
IGF::OT::IGF NON-MECHANICAL BEAM CONTROL FOR SYNTHETIC APERTURE LADARBOULDER NONLINEAR SYSTEMS, INC.$924,963DEPT OF THE AIR FORCEDEPT OF THE AIR FORCE—541712AC62May 31, 2016May 31, 2016Mar 2, 2020
NNX16CL90P
IGF::OT::IGF BOULDER NONLINEAR SYSTEMS (BNS) AND UNIVERSITY OF DAYTON (UD) WILL TEAM ON DEVELOPMENT OF A NON-MECHANICAL BEAM STEERING (NMBS) SUBSYSTEM FOR ENTRY, DESCENT AND LANDING (EDL) SENSORS. BNS WILL IMPROVE THEIR CURRENT POLARIZATION GRATING (PG) TECHNOLOGY WHICH IS CAPABLE OF SWITCHING WELL OVER THE +- 25 DEGREE REQUIREMENT CALLED FOR IN THE SOLICITATION. ADVANCES TO THE PG TECHNOLOGY SPECIFIC TO THE NASA EDL APPLICATION WILL INCLUDE IMPROVED THROUGHPUT, AND SIGNIFICANT WEIGHT REDUCTION BY COMBINING COMPONENTS AND DRASTICALLY REDUCING SUBSTRATE THICKNESSES. IN ADDITION BNS AND UD WILL DEVELOP AN ENVIRONMENTAL TEST PLAN TAILORED TO AN EDL MISSION. THE PG TECHNOLOGY IS A COARSE STEERING TECHNOLOGY AND A NMBS SYSTEM EMPLOYING IT WOULD BE IMPROVED BY ADDING FINE ANGLE CONTINUOUS STEERING CAPABILITY. UD WILL LEVERAGE ITS ELECTRO-OPTIC (EO) CRYSTAL CENTER AND INVESTIGATE CONTINUOUS FINE STEERING BASED ON EO CRYSTALS. IN ADDITION UD WILL ALSO TAP INTO ITS LADAR EXPERTISE AT THE LADAR AND OPTICAL COMMUNICATIONS INSTITUTE (LOCI) TO PROVIDE SYSTEMS LEVEL ANALYSIS TO DESIGN A NMBS PROTOTYPE WHICH WILL BE BUILT IN PHASE II.BOULDER NONLINEAR SYSTEMS, INC.$124,725NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541712AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHMay 26, 2016Jun 10, 2016Jun 9, 2017
NNX16CM31P
IGF::OT::IGF WE PROPOSE THE USE OF A PHASE RECONFIGURABLE SPATIAL LIGHT MODULATOR (SLM) IN PLACE OF A STATIC COMPUTER GENERATED HOLOGRAM (CGH) IN INTERFEROMETRIC TEST SYSTEMS FOR NEXT GENERATION METER CLASS TELESCOPE OPTICS. A LIQUID CRYSTAL ON SILICON (LCOS) SLM OFFERS ADDITIONAL FLEXIBILITY, POTENTIALLY HIGHER MEASUREMENT PRECISION, AND RELAXED ALIGNMENT REQUIREMENTS OVER STATIC CGHS. PROGRAMMABLE PHASE PROVIDES THE USER WITH THE ABILITY TO TEST DIFFERENT OPTICAL COMPONENTS WITHOUT REQUIRING THE DESIGN OF A DIFFERENT CGH IN EACH CASE. APPLYING THE PHASE TO THE SLM IN-SITU, TO GENERATE THE OPTICAL NULL, GREATLY RELAXES THE REQUIREMENTS FOR THE CRITICAL ALIGNMENT PRECISION ASSOCIATED WITH CGHS. ADDITIONAL MEASUREMENT PRECISION MAY BE ACHIEVED BY APPLYING ADDITIONAL PISTON PHASE CHANGES TO THE SLM HOLOGRAM IN THE MANNER OF A VIBRATION FREE PHASE SHIFTING INTERFEROMETER. PHASE ERRORS DUE TO AIR CURRENTS COULD POTENTIALLY BE REMOVED ON THE FLY, AND PHASE ERRORS IN OTHER SYSTEM COMPONENTS COULD ALSO BE COMPENSATED. PHASE I EXAMINES A SMALL FORMAT 512X512 10 BIT SLM ON A BENCHTOP TEST INTERFEROMETER TO VALIDATE THE CONCEPT USING COMMERCIAL OFF THE SHELF (COTS) COMPONENTS. A PHASE II CONTINUATION WOULD IMPLEMENT A 31MM SQUARE LARGE FORMAT 1536X1536 SLM WITH 768 WAVES OF APPLICABLE PHASE STROKE.BOULDER NONLINEAR SYSTEMS, INC.$124,909NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—541712AR11SPACE R&D SERVICES; SPACE FLIGHT, RESEARCH AND SUPPORTING ACTIVITIES; BASIC RESEARCHMay 25, 2016Jun 10, 2016Dec 9, 2016
NNL16AA28P
NON-MECHANICAL BEAM STEERING DEVICEBOULDER NONLINEAR SYSTEMS, INC.$13,015NATIONAL AERONAUTICS AND SPACE ADMINISTRATIONNATIONAL AERONAUTICS AND SPACE ADMINISTRATION—5417125895MISCELLANEOUS COMMUNICATION EQUIPMENTNov 24, 2015Nov 24, 2015Mar 20, 2016
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