Photonsystems, Inc
CAGE Code: 1RYV4
NCAGE Code: 1RYV4
Status: Active
Type: Commercial Supplier
Dun & Bradstreet (DUNS): 946316007
Summary
Photonsystems, Inc is an Active Commercial Supplier with the Cage Code 1RYV4 and is tracked by Dun & Bradstreet under DUNS Number 946316007..
Address
1512 W Industrial Park St
Covina CA 91722-3417
United States
Points of Contact
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Frequently Asked Questions (FAQ) for CAGE 1RYV4
- What is CAGE Code 1RYV4?
- 1RYV4 is the unique identifier used by NATO Organizations to reference the physical entity known as Photonsystems, Inc located at 1512 W Industrial Park St, Covina CA 91722-3417, United States.
- Who is CAGE Code 1RYV4?
- 1RYV4 refers to Photonsystems, Inc located at 1512 W Industrial Park St, Covina CA 91722-3417, United States.
- Where is CAGE Code 1RYV4 Located?
- CAGE Code 1RYV4 is located in Covina, CA, USA.
Contracting History for CAGE 1RYV4 Most Recent 25 Records
- 80NSSC21C0532
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- 2 Jun 2023
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $743,379.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC21C0532
- This Proposal Addresses The Need For Spacecraft Microbial Monitoring For Long Duration Human Missions. The Proposal Will Lead To A Near-Real-Time In-Situ Reagentless Sensor On The International Space Station And For Future Spacecraft For Human.
- 27 Jul 2021
- This Proposal Addresses The Need For Spacecraft Microbial Monitoring For Long Duration Human Missions. The Proposal Will Lead To A Near-Real-Time In-Situ Reagentless Sensor On The International Space Station And For Future Spacecraft For Human.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $743,379.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC21C0532
- Eo14042 This Proposal Addresses The Need For Spacecraft Microbial Monitoring For Long Duration Human Missions. The Proposal Will Lead To A Near-Real-Time In-Situ Reagentless Sensor On The International Space Station
- 14 Oct 2021
- Eo14042 This Proposal Addresses The Need For Spacecraft Microbial Monitoring For Long Duration Human Missions. The Proposal Will Lead To A Near-Real-Time In-Situ Reagentless Sensor On The International Space Station
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $743,379.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC21C0532
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- 20 Sep 2023
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $1,118,379.00
- National Aeronautics And Space Administration (Nasa)
- 68HERC21C0010
- Sbir Phase I Proposal #B201a-0017. Laser-Based In-Situ Testing For Microbes With Ultraviolet Spectroscopy (Litmus). Photon Systems Inc.
- 18 Feb 2021
- Sbir Phase I Proposal #B201a-0017. Laser-Based In-Situ Testing For Microbes With Ultraviolet Spectroscopy (Litmus). Photon Systems Inc.
- Cincinnati Acquisition Div (Cad)
- Environmental Protection Agency (Epa)
- $99,985.00
- Environmental Protection Agency (Epa)
- 68HERC21C0010
- Sbir Phase I Proposal #B201a-0017. Laser-Based In-Situ Testing For Microbes With Ultraviolet Spectroscopy (Litmus). Closeout Modification
- 21 Jan 2022
- Sbir Phase I Proposal #B201a-0017. Laser-Based In-Situ Testing For Microbes With Ultraviolet Spectroscopy (Litmus). Closeout Modification
- Cincinnati Acquisition Div (Cad)
- Environmental Protection Agency (Epa)
- $99,985.00
- Environmental Protection Agency (Epa)
- 70RWMD20C00000008
- Cwmd Obaa Award To Photon Systems, Inc For For Standoff Handheld Research And Development.
- 24 Jul 2020
- Cwmd Obaa Award To Photon Systems, Inc For For Standoff Handheld Research And Development.
- Cwmd Acq Div
- Department Of Homeland Security (Dhs)
- $323,607.00
- Department Of Homeland Security (Dhs)
- 70RWMD20C00000008
- Cwmd Obaa Award To Photon Systems, Inc For For Standoff Handheld Research And Development.
- 12 Jul 2021
- Cwmd Obaa Award To Photon Systems, Inc For For Standoff Handheld Research And Development.
- Cwmd Acq Div
- Department Of Homeland Security (Dhs)
- $573,704.00
- Department Of Homeland Security (Dhs)
- HHSD2002017M94456P
- Igf::Ot::Igf Continued Development Deep Uv Personal Exposure Monitor
- 13 Jun 2017
- Igf::Ot::Igf Continued Development Deep Uv Personal Exposure Monitor
- Cdc Office Of Acquisition Services
- Department Of Health And Human Services (Hhs)
- $50,000.00
- Department Of Health And Human Services (Hhs)
- 80NSSC18P2054
- Detection Of Organics On Solar System Bodies And Their Spatial Distribution Are Fundamental Capabilities Required To Meet Nasa Strategic Goals. This Proposal Addresses The Need For Remote Detection And Classification Of Trace Concentrations Of Organic Compounds On The Surfaces Of Ocean And Icy Worlds Including Europa, Enceladus, Titan, As Well As Other Cold Worlds. Mars 2020 Sherloc Conducts Vibrational Spectroscopy At Standoff About 6 Cm Due To Low Cross-Sections About 108 To 1010 Times Lower Than Fluorescence. At Temperatures Below 160K, The Ability To Measure Vibrational Information Of Organic Compounds With Vastly Increased Cross-Sections, Equivalent To Room Temperature Fluorescence Or Greater, Was Demonstrated In The Publication In 2011 By P.V. Johnson Of Jpl And Others. They Showed That Low Temperature Fluorescence Exhibits Resolvable Vibrational Bands That Provide Structural Details Such As The Arrangement Of Methyl Groups And The Presence And Variability Of Functional Groups. This Enables Detection At Far Greater Standoff Distances And Lower Concentrations With Anticipated Limits Of Detection From Below 1 Ppb At Standoff Distances Of 10 S Of Meters To About 1 Ppm At 10 S Of Kilometers. Using Existing Cryogenic Facilities, Deep Uv Lasers, And Related Optical And Vacuum Hardware At Photon Systems, We Propose In Phase I To Quantify The Absolute Cross-Sections Of Relevant Organic Materials And Understand Cryoluminescence Spectral Features At Low Temperatures. We Will Generate A Radiometric Photon Budget Model To Predict The Limits Of Detection Versus Standoff Distance For A Small, Light-Weight, Low-Power, Ritoc Instrument. The Phase I Effort Is Intended To Provide The Proof-Of-Concept For The Proposed Standoff Ritoc Instrument, Increasing The Trl From About 1 To 2. The Phase Ii Effort Will Be Focused On Developing And Demonstrating The Ritoc Instrument In Terrestrial Settings At Distances Up To 100 M, Bringing Ritoc Instrument Trl Up To About 3.
- 26 Jul 2018
- Detection Of Organics On Solar System Bodies And Their Spatial Distribution Are Fundamental Capabilities Required To Meet Nasa Strategic Goals. This Proposal Addresses The Need For Remote Detection And Classification Of Trace Concentrations Of Organic Compounds On The Surfaces Of Ocean And Icy Worlds Including Europa, Enceladus, Titan, As Well As Other Cold Worlds. Mars 2020 Sherloc Conducts Vibrational Spectroscopy At Standoff About 6 Cm Due To Low Cross-Sections About 108 To 1010 Times Lower Than Fluorescence. At Temperatures Below 160K, The Ability To Measure Vibrational Information Of Organic Compounds With Vastly Increased Cross-Sections, Equivalent To Room Temperature Fluorescence Or Greater, Was Demonstrated In The Publication In 2011 By P.V. Johnson Of Jpl And Others. They Showed That Low Temperature Fluorescence Exhibits Resolvable Vibrational Bands That Provide Structural Details Such As The Arrangement Of Methyl Groups And The Presence And Variability Of Functional Groups. This Enables Detection At Far Greater Standoff Distances And Lower Concentrations With Anticipated Limits Of Detection From Below 1 Ppb At Standoff Distances Of 10 S Of Meters To About 1 Ppm At 10 S Of Kilometers. Using Existing Cryogenic Facilities, Deep Uv Lasers, And Related Optical And Vacuum Hardware At Photon Systems, We Propose In Phase I To Quantify The Absolute Cross-Sections Of Relevant Organic Materials And Understand Cryoluminescence Spectral Features At Low Temperatures. We Will Generate A Radiometric Photon Budget Model To Predict The Limits Of Detection Versus Standoff Distance For A Small, Light-Weight, Low-Power, Ritoc Instrument. The Phase I Effort Is Intended To Provide The Proof-Of-Concept For The Proposed Standoff Ritoc Instrument, Increasing The Trl From About 1 To 2. The Phase Ii Effort Will Be Focused On Developing And Demonstrating The Ritoc Instrument In Terrestrial Settings At Distances Up To 100 M, Bringing Ritoc Instrument Trl Up To About 3.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,967.00
- National Aeronautics And Space Administration (Nasa)
- HDTRA117C0016
- Option 1 - Sttr, Phase Iii: Shcbe Sensor
- 3 Dec 2018
- Option 1 - Sttr, Phase Iii: Shcbe Sensor
- Defense Threat Reduction Agency
- Department Of Defense (Dod)
- $811,940.00
- Department Of Defense (Dod)
- HDTRA117C0016
- Standoff, Handheld, Chemical, Biological, Explosives (Shcbe) Sensor
- 7 Mar 2019
- Standoff, Handheld, Chemical, Biological, Explosives (Shcbe) Sensor
- Defense Threat Reduction Agency
- Department Of Defense (Dod)
- $811,940.00
- Department Of Defense (Dod)
- W911S619P0013
- Photon Chemical Printer Scanner
- 10 Apr 2019
- Photon Chemical Printer Scanner
- W6qm Micc-Dugway Prov Grd
- Department Of Defense (Dod)
- $37,600.00
- Department Of Defense (Dod)
- 80NSSC22PB150
- Deep Uv Lasers For Raman & Fluorescence Spectroscopy In Extreme Environments.
- 7 Jul 2022
- Deep Uv Lasers For Raman & Fluorescence Spectroscopy In Extreme Environments.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $145,661.00
- National Aeronautics And Space Administration (Nasa)
- 80NSSC20C0551
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- 25 Aug 2020
- Maia: Microbial Assessment W/In-Situ Autofluorescence
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,902.00
- National Aeronautics And Space Administration (Nasa)
- HHSD2002017M94456P
- Igf::Ot::Igf Continued Development Deep Uv Personal Exposure Monitor
- 19 Jun 2018
- Igf::Ot::Igf Continued Development Deep Uv Personal Exposure Monitor
- Cdc Office Of Acquisition Services
- Department Of Health And Human Services (Hhs)
- $50,000.00
- Department Of Health And Human Services (Hhs)
- HDTRA117C0016
- Standoff, Handheld, Chemical, Biological, Explosives (Shcbe) Sensor
- 30 Aug 2019
- Standoff, Handheld, Chemical, Biological, Explosives (Shcbe) Sensor
- Defense Threat Reduction Agency
- Department Of Defense (Dod)
- $988,865.00
- Department Of Defense (Dod)
- 80NSSC21C0384
- High Specificity Bioaerosol Particle (Hs-Bap) Sensor
- 28 Jun 2021
- High Specificity Bioaerosol Particle (Hs-Bap) Sensor
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,884.00
- National Aeronautics And Space Administration (Nasa)
- HDTRA109C0010
- Base Period (12 Month Period)
- 8 Mar 2018
- Base Period (12 Month Period)
- Dcma Santa Ana
- Department Of Defense (Dod)
- $1,303,506.01
- Department Of Defense (Dod)
- HDTRA117C0016
- Option 1 - Sttr, Phase Iii: Shcbe Sensor
- 27 Jun 2019
- Option 1 - Sttr, Phase Iii: Shcbe Sensor
- Defense Threat Reduction Agency
- Department Of Defense (Dod)
- $988,865.00
- Department Of Defense (Dod)
- 80NSSC21C0384
- High Specificity Bioaerosol Particle (Hs-Bap) Sensor
- 4 May 2021
- High Specificity Bioaerosol Particle (Hs-Bap) Sensor
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,884.00
- National Aeronautics And Space Administration (Nasa)
- 70RWMD21C00000005
- Sbir Phase 1 - This Is A Firm Fixed Price Contract Awarded To Photon Systems Inc.To Provide Support To Cwmd For The Airborne Risk Identification Enabled By Raman And Luminescence - Ariel
- 6 May 2021
- Sbir Phase 1 - This Is A Firm Fixed Price Contract Awarded To Photon Systems Inc.To Provide Support To Cwmd For The Airborne Risk Identification Enabled By Raman And Luminescence - Ariel
- Cwmd Acq Div
- Department Of Homeland Security (Dhs)
- $149,939.68
- Department Of Homeland Security (Dhs)
- 80NSSC18P2054
- Detection Of Organics On Solar System Bodies And Their Spatial Distribution Are Fundamental Capabilities Required To Meet Nasa Strategic Goals. This Proposal Addresses The Need For Remote Detection And Classification Of Trace Concentrations Of Organic Compounds On The Surfaces Of Ocean And Icy Worlds Including Europa, Enceladus, Titan, As Well As Other Cold Worlds. Mars 2020 Sherloc Conducts Vibrational Spectroscopy At Standoff About 6 Cm Due To Low Cross-Sections About 108 To 1010 Times Lower Than Fluorescence. At Temperatures Below 160K, The Ability To Measure Vibrational Information Of Organic Compounds With Vastly Increased Cross-Sections, Equivalent To Room Temperature Fluorescence Or Greater, Was Demonstrated In The Publication In 2011 By P.V. Johnson Of Jpl And Others. They Showed That Low Temperature Fluorescence Exhibits Resolvable Vibrational Bands That Provide Structural Details Such As The Arrangement Of Methyl Groups And The Presence And Variability Of Functional Groups. This Enables Detection At Far Greater Standoff Distances And Lower Concentrations With Anticipated Limits Of Detection From Below 1 Ppb At Standoff Distances Of 10 S Of Meters To About 1 Ppm At 10 S Of Kilometers. Using Existing Cryogenic Facilities, Deep Uv Lasers, And Related Optical And Vacuum Hardware At Photon Systems, We Propose In Phase I To Quantify The Absolute Cross-Sections Of Relevant Organic Materials And Understand Cryoluminescence Spectral Features At Low Temperatures. We Will Generate A Radiometric Photon Budget Model To Predict The Limits Of Detection Versus Standoff Distance For A Small, Light-Weight, Low-Power, Ritoc Instrument. The Phase I Effort Is Intended To Provide The Proof-Of-Concept For The Proposed Standoff Ritoc Instrument, Increasing The Trl From About 1 To 2. The Phase Ii Effort Will Be Focused On Developing And Demonstrating The Ritoc Instrument In Terrestrial Settings At Distances Up To 100 M, Bringing Ritoc Instrument Trl Up To About 3.
- 13 Feb 2019
- Detection Of Organics On Solar System Bodies And Their Spatial Distribution Are Fundamental Capabilities Required To Meet Nasa Strategic Goals. This Proposal Addresses The Need For Remote Detection And Classification Of Trace Concentrations Of Organic Compounds On The Surfaces Of Ocean And Icy Worlds Including Europa, Enceladus, Titan, As Well As Other Cold Worlds. Mars 2020 Sherloc Conducts Vibrational Spectroscopy At Standoff About 6 Cm Due To Low Cross-Sections About 108 To 1010 Times Lower Than Fluorescence. At Temperatures Below 160K, The Ability To Measure Vibrational Information Of Organic Compounds With Vastly Increased Cross-Sections, Equivalent To Room Temperature Fluorescence Or Greater, Was Demonstrated In The Publication In 2011 By P.V. Johnson Of Jpl And Others. They Showed That Low Temperature Fluorescence Exhibits Resolvable Vibrational Bands That Provide Structural Details Such As The Arrangement Of Methyl Groups And The Presence And Variability Of Functional Groups. This Enables Detection At Far Greater Standoff Distances And Lower Concentrations With Anticipated Limits Of Detection From Below 1 Ppb At Standoff Distances Of 10 S Of Meters To About 1 Ppm At 10 S Of Kilometers. Using Existing Cryogenic Facilities, Deep Uv Lasers, And Related Optical And Vacuum Hardware At Photon Systems, We Propose In Phase I To Quantify The Absolute Cross-Sections Of Relevant Organic Materials And Understand Cryoluminescence Spectral Features At Low Temperatures. We Will Generate A Radiometric Photon Budget Model To Predict The Limits Of Detection Versus Standoff Distance For A Small, Light-Weight, Low-Power, Ritoc Instrument. The Phase I Effort Is Intended To Provide The Proof-Of-Concept For The Proposed Standoff Ritoc Instrument, Increasing The Trl From About 1 To 2. The Phase Ii Effort Will Be Focused On Developing And Demonstrating The Ritoc Instrument In Terrestrial Settings At Distances Up To 100 M, Bringing Ritoc Instrument Trl Up To About 3.
- Nasa Shared Services Center
- National Aeronautics And Space Administration (Nasa)
- $124,967.00
- National Aeronautics And Space Administration (Nasa)
- 70RWMD21C00000005
- Ffp Contract With Photon Systems, Inc. Contract For Airborne Risk Identification Enabled By Raman And Luminescence (Ariel).
- 23 Jun 2021
- Ffp Contract With Photon Systems, Inc. Contract For Airborne Risk Identification Enabled By Raman And Luminescence (Ariel).
- Cwmd Acq Div
- Department Of Homeland Security (Dhs)
- $149,939.68
- Department Of Homeland Security (Dhs)