Brimrose Technology Corp
CAGE Code: 4X5M1
NCAGE Code: 4X5M1
Status: Active
Type: Commercial Supplier
Dun & Bradstreet (DUNS): 808275890
Summary
Brimrose Technology Corp is an Active Commercial Supplier with the Cage Code 4X5M1 and is tracked by Dun & Bradstreet under DUNS Number 808275890..
Address
19 Loveton Cir
Sparks MD 21152-9201
United States
Points of Contact
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Frequently Asked Questions (FAQ) for CAGE 4X5M1
- What is CAGE Code 4X5M1?
- 4X5M1 is the unique identifier used by NATO Organizations to reference the physical entity known as Brimrose Technology Corp located at 19 Loveton Cir, Sparks MD 21152-9201, United States.
- Who is CAGE Code 4X5M1?
- 4X5M1 refers to Brimrose Technology Corp located at 19 Loveton Cir, Sparks MD 21152-9201, United States.
- Where is CAGE Code 4X5M1 Located?
- CAGE Code 4X5M1 is located in Sparks, MD, USA.
Contracting History for CAGE 4X5M1 Most Recent 25 Records
- W911SR23C0025
- The Purpose Of This Contract Is To Counter Person-Borne Improvised Explosive Devices Based On Acousto-Optic Tunable Filter And Liquid Crystal Variable Retarder Based Polarimetric Hyperspectral Imaging.
- 29 Aug 2023
- The Purpose Of This Contract Is To Counter Person-Borne Improvised Explosive Devices Based On Acousto-Optic Tunable Filter And Liquid Crystal Variable Retarder Based Polarimetric Hyperspectral Imaging.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $749,986.79
- Department Of Defense (Dod)
- HT942523P0090
- Dha Sbir Phase I Development Of Handheld, Optical Speckle-Tolerant Non-Contact Laser Near-Infrared Photoacoustic Imager With Photonics Integrated Circuit
- 13 Sep 2023
- Dha Sbir Phase I Development Of Handheld, Optical Speckle-Tolerant Non-Contact Laser Near-Infrared Photoacoustic Imager With Photonics Integrated Circuit
- Army Med Res Acq Activity
- Department Of Defense (Dod)
- $249,911.11
- Department Of Defense (Dod)
- HT942523P0087
- Dha Sbir Phase I Robust, Speckle-Tolerant, Handheld Non-Contact Vital Sign Monitor With Photonics Ic
- 11 Sep 2023
- Dha Sbir Phase I Robust, Speckle-Tolerant, Handheld Non-Contact Vital Sign Monitor With Photonics Ic
- Army Med Res Acq Activity
- Department Of Defense (Dod)
- $249,411.97
- Department Of Defense (Dod)
- 80NSSC23PB380
- Sttr Phase I - Fast Elemental And Molecular Interrogation Sensor (Femis) For In-Situ Lunar And Martian Resource Utilization
- 22 Jul 2023
- Sttr Phase I - Fast Elemental And Molecular Interrogation Sensor (Femis) For In-Situ Lunar And Martian Resource Utilization
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $149,686.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC23PB380
- Sttr Phase I - Fast Elemental And Molecular Interrogation Sensor (Femis) For In-Situ Lunar And Martian Resource Utilization
- 4 Aug 2023
- Sttr Phase I - Fast Elemental And Molecular Interrogation Sensor (Femis) For In-Situ Lunar And Martian Resource Utilization
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $149,686.00
- National Aeronautics And Space Administration (Nasa)
- W81XWH22C0124
- Per Section 711 Of The 2019 Ndaa, Usamraa Transferred To Dha 10/1/2022. Dha Sbir Phase Ii Proposal H2-0698
- 22 Nov 2022
- Per Section 711 Of The 2019 Ndaa, Usamraa Transferred To Dha 10/1/2022. Dha Sbir Phase Ii Proposal H2-0698
- W4pz Usa Med Rsch Acquis Act
- Department Of Defense (Dod)
- $1,099,862.44
- Department Of Defense (Dod)
- W81XWH22C0124
- Dha Sbir Phase Ii Proposal H2-0698
- 12 Sep 2022
- Dha Sbir Phase Ii Proposal H2-0698
- W4pz Usa Med Rsch Acquis Act
- Department Of Defense (Dod)
- $1,099,862.44
- Department Of Defense (Dod)
- W911SR21C0042
- The Objective Of This Contract Is To Develop A Prototype Using The Results Of The Phase I Study. The System Is A Remotely Operated Unmanned Aerial Vehicle Should Travel At Speeds Up To 45 Mph
- 9 Jul 2022
- The Objective Of This Contract Is To Develop A Prototype Using The Results Of The Phase I Study. The System Is A Remotely Operated Unmanned Aerial Vehicle Should Travel At Speeds Up To 45 Mph
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $1,099,626.24
- Department Of Defense (Dod)
- W911SR21C0042
- The Objective Of This Small Business Innovative Research (Sbir Ii) Contract Is To Develop A Prototype Remotely Operated Unmanned Aerial Vehicle Should Travel At Speeds Up To 45 Mph.
- 22 Sep 2023
- The Objective Of This Small Business Innovative Research (Sbir Ii) Contract Is To Develop A Prototype Remotely Operated Unmanned Aerial Vehicle Should Travel At Speeds Up To 45 Mph.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $1,099,626.24
- Department Of Defense (Dod)
- W911SR21C0042
- The Contractor Shall Design And Demonstrate Remote Laser Induced Breakdown Spectroscopy (Libs) Laser Induced Thermal (Infrared) Emission (Lite) Detection System For Surface Contaminant Mapping And Identification.
- 24 Sep 2021
- The Contractor Shall Design And Demonstrate Remote Laser Induced Breakdown Spectroscopy (Libs) Laser Induced Thermal (Infrared) Emission (Lite) Detection System For Surface Contaminant Mapping And Identification.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $748,330.29
- Department Of Defense (Dod)
- W81XWH21P0150
- Medical Research And Development Contract To Brimrose Technology Corporation Dha Phase I Proposal H211-012-0114 Titled: Non-Contact High-Resolution All-Optical Handheld Ultrasound Imaging System
- 13 Aug 2021
- Medical Research And Development Contract To Brimrose Technology Corporation Dha Phase I Proposal H211-012-0114 Titled: Non-Contact High-Resolution All-Optical Handheld Ultrasound Imaging System
- W4pz Usa Med Rsch Acquis Act
- Department Of Defense (Dod)
- $249,898.18
- Department Of Defense (Dod)
- HQ014715C7401
- Sttr Phase Ii Research&Development; Light Weight Optics For High Power Directed Energy Applications
- 31 May 2018
- Sttr Phase Ii Research&Development; Light Weight Optics For High Power Directed Energy Applications
- Missile Defense Agency (Mda)
- Department Of Defense (Dod)
- $999,477.00
- Department Of Defense (Dod)
- W911SR17C0045
- Development Of A Lightweight, Low-Power, Inexpensive Hyperspectral Spectro-Polarimetric Imaging Sensor For Wide Area Standoff Detection Of Chemical Agents.
- 15 Feb 2023
- Development Of A Lightweight, Low-Power, Inexpensive Hyperspectral Spectro-Polarimetric Imaging Sensor For Wide Area Standoff Detection Of Chemical Agents.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $2,099,993.20
- Department Of Defense (Dod)
- 80NSSC19C0057
- Eo14042 Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- 14 Jun 2022
- Eo14042 Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $2,872,282.00
- National Aeronautics And Space Administration (Nasa)
- HQ086021C7006
- Sbir/Sttr Phase I Research & Development-Bi-Modal Technology For In-Situ Defect Detection In Additively Manufactured Parts
- 16 Dec 2020
- Sbir/Sttr Phase I Research & Development-Bi-Modal Technology For In-Situ Defect Detection In Additively Manufactured Parts
- Missile Defense Agency (Mda)
- Department Of Defense (Dod)
- $149,869.00
- Department Of Defense (Dod)
- W911SR23C0010
- Sbir Phase 1 Requirement To To Develop A Low-Cost Millimeter Wave Imager Based On High-Electron-Mobility Transistors And Schottky Diode Rectifiers. As Well As To Develop An Advanced Composite Detector That Can Be Assembled Into Compact Arrays.
- 30 Aug 2023
- Sbir Phase 1 Requirement To To Develop A Low-Cost Millimeter Wave Imager Based On High-Electron-Mobility Transistors And Schottky Diode Rectifiers. As Well As To Develop An Advanced Composite Detector That Can Be Assembled Into Compact Arrays.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $182,882.94
- Department Of Defense (Dod)
- W911SR17C0045
- Phase Ii Small Business Innovation Research, Enhanced: Perform Research & Development To Develop An Acousto-Optic Tunable Filter (Aotf) Based Imaging System For Enhanced Standoff Chemical Detection In The Long-Wave Infrared Region.
- 9 Jun 2021
- Phase Ii Small Business Innovation Research, Enhanced: Perform Research & Development To Develop An Acousto-Optic Tunable Filter (Aotf) Based Imaging System For Enhanced Standoff Chemical Detection In The Long-Wave Infrared Region.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $1,899,993.28
- Department Of Defense (Dod)
- 80NSSC19C0057
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- 25 Aug 2021
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $2,451,959.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC19C0057
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- 29 Jun 2020
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $2,451,959.00
- National Aeronautics And Space Administration (Nasa)
- HQ086021C7006
- Sbir/Sttr Phase I Research & Development
- 7 Jan 2021
- Sbir/Sttr Phase I Research & Development
- Missile Defense Agency (Mda)
- Department Of Defense (Dod)
- $149,869.00
- Department Of Defense (Dod)
- W911SR17C0045
- Research And Development Required For The Development Of An Acousto-Optic Tunable Filter (Aotf) Based Imaging System For Enhanced Standoff Chemical Detection In The Long-Wave Infrared Region. (Small Business Innovative Research, Phase Ii Sequential)
- 5 Aug 2020
- Research And Development Required For The Development Of An Acousto-Optic Tunable Filter (Aotf) Based Imaging System For Enhanced Standoff Chemical Detection In The Long-Wave Infrared Region. (Small Business Innovative Research, Phase Ii Sequential)
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $1,899,993.28
- Department Of Defense (Dod)
- NNX16CP80C
- Radiation Detectors That Sense Gamma And Neutron Radiation Are Critical To The Exploration Of Planetary Surface Composition. Among The Key Technological Challenges Is To Have A Suitable Detector That Not Only Can Be Used For Both Gamma Ray And Neutron Detection, But Also Satisfy The Many Highly Desirable And Essential For Spaceflight Properties: Good Energy Resolution, High Efficiency, High Radiation Tolerance, Low Power Consumption, Low Volume, Low Weight And Operation Without Cryogenic Cooling. We Propose A Room Temperature Semiconductor Detector (Rtsd) Using A Single Material That Can Detect Both Gamma Radiation And Neutron Particles. The Novel Materials We Propose Are Mercurous Halides, Hg2x2 (Xcl, Br) - Mercurous Chloride (Hg2cl2) And Mercurous Bromide (Hg2br2). The Development Of These Spectroscopy Grade Mercury Halide-Based Radiation Detectors Are Especially Relevant To Future Nasa Missions To Any Solid Body In The Solar System, Including The Moon, Terrestrial Planets, Asteroids, Comets, And The Moons Of The Other Planets. Our Goal Is To Deliver A Breakthrough In Detector Technology That Can Lead To Spectrometers That Are Capable Of Performing Both Gamma And Neutron Spectroscopy.
- 13 Sep 2019
- Radiation Detectors That Sense Gamma And Neutron Radiation Are Critical To The Exploration Of Planetary Surface Composition. Among The Key Technological Challenges Is To Have A Suitable Detector That Not Only Can Be Used For Both Gamma Ray And Neutron Detection, But Also Satisfy The Many Highly Desirable And Essential For Spaceflight Properties: Good Energy Resolution, High Efficiency, High Radiation Tolerance, Low Power Consumption, Low Volume, Low Weight And Operation Without Cryogenic Cooling. We Propose A Room Temperature Semiconductor Detector (Rtsd) Using A Single Material That Can Detect Both Gamma Radiation And Neutron Particles. The Novel Materials We Propose Are Mercurous Halides, Hg2x2 (Xcl, Br) - Mercurous Chloride (Hg2cl2) And Mercurous Bromide (Hg2br2). The Development Of These Spectroscopy Grade Mercury Halide-Based Radiation Detectors Are Especially Relevant To Future Nasa Missions To Any Solid Body In The Solar System, Including The Moon, Terrestrial Planets, Asteroids, Comets, And The Moons Of The Other Planets. Our Goal Is To Deliver A Breakthrough In Detector Technology That Can Lead To Spectrometers That Are Capable Of Performing Both Gamma And Neutron Spectroscopy.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $749,805.00
- National Aeronautics And Space Administration (Nasa)
- W911SR17C0061
- Igf::Ot::Igf The Purpose Of This Modification Is The Change Vendor Duns And Cage Information.
- 15 Sep 2017
- Igf::Ot::Igf The Purpose Of This Modification Is The Change Vendor Duns And Cage Information.
- W6qk Acc-Apg
- Department Of Defense (Dod)
- $999,993.33
- Department Of Defense (Dod)
- 80NSSC19C0057
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- 7 Jul 2023
- Nasa Ames Research Center Has Been Collaborating With Brimrose To Develop A Small, Low-Power Point Spectrometer To Be Included Into The Near Infrared Volatiles Spectrometer (Nirvss) Instrument. Through An Sttr Contract, Brimrose Successfully Developed A Dual-Channel Acousto-Optic Tunable Filters (Aotf) Spectrometer That Operates Across 1300 And 4000Nm. An Aotf Is An All Solid-State, Tunable Filter With No Moving Parts. The Aotf Is A High Throughput And High-Speed, Programmable Device Capable Of Accessing Wavelengths At Rates Of 100 Khz. Initial Work Has Been Conducted Via A Sbir Phase Iii To Demonstrate The Aotf Spectrometer Would Have Sufficient Performance To Meet Instrument Measurement Requirements. Following This Demonstration, Preliminary Design Work Was Begun With Brimrose As Part Of The Current Phase Ii-X Sttr Contract. This Work Lead To The Delivery Of A Fully Functional Spectrometer Engineering Test Unit (Etu) That Is Very Flight-Forward In Design. This Etu Has Become The Baseline Spectrometer For The Nirvss Instrument. Also Part Of This Phase Iii Effort Was The Development Of A Bifurcated Multi-Fiber Optical Fiber Cable Which Integrates The Spectrometer To The Nirvss Observation Bracket Assembly. Brimrose Is Responsible For Both The Spectrometer And The Bifurcated Optical Fiber Cable. The Nirvss Instrument Was Selected As A Science And Technology Demonstration Payload Via The Nasa Provided Lunar Payload (Nplp) Development Program To Fly To The Moon Using U.S. Commercial Landing Delivery Services (Clps). The Clps Flight Unit For This Program Is To Be Delivered In Late Spring, 2020. Accommodation Of The Nirvss Instrument Onto Clps Lunar Landed Service Providers Will Occur Once The Lander Providers Are Selected (Expected May, 2019). This Sow Describes The Necessary Tasks And Deliverables In Support Of The Clps Flight Unit. As Part Of This Accommodation The Exact Dimensions Of The Bifurcated Multi-Fiber Optical Fiber Cable Will Be Defined. Therefore, A Later Sow Modification Is Anticipated Once These Dimensions Are Defined.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $3,117,499.00
- National Aeronautics And Space Administration (Nasa)
- W911QY18D0028
- Joint Enterprise Research, Development, Acquisition And Production/Procurement Program (Je-Rdap) Base Idiq Contract Award - Program Ceiling $8.27B
- 2 Nov 2017
- Joint Enterprise Research, Development, Acquisition And Production/Procurement Program (Je-Rdap) Base Idiq Contract Award - Program Ceiling $8.27B
- W6qk Acc-Apg Natick
- Department Of Defense (Dod)
- $0.00
- Department Of Defense (Dod)