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BRIMROSE TECHNOLOGY CORP

Company Information
Address
19 LOVETON CIR
SPARKS, MD 21152-9201
United States


www://brimrosetechnology.com

Information

UEI: WKDYRE26KLT7

# of Employees: 56


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: No

Woman Owned: No



Award Charts




Award Listing

  1. Novel Doped Hg2Br2 As A New High-Performance Scintillator for Nuclear Physics Research

    Amount: $199,905.00

    Current COTS scintillation detectors are still not ideal for applications that simultaneously require non-hygroscopicity, high density, fast timing, radiation hardness, cost-effectiveness and with dua ...

    SBIRPhase I2022Department of Energy
  2. Development of Cadmium Magnesium Telluride for Picosecond Response X-Ray Optical Laser Photodetector

    Amount: $1,149,891.00

    Free-Electron Laser (FEL) x-ray sources are continuously being improved and upgraded, opening the doors for many scientific frontiers in biology, chemistry, and material science, such as structural dy ...

    SBIRPhase II2022Department of Energy
  3. Continuous Photoacoustic Monitoring of Neonatal Stroke in Intensive Care Unit

    Amount: $344,468.00

    PROJECT SUMMARY/ABSTRACT Neonatal encephalopathy can arise from fetal hypoxia-ischemia during labor, chronic uteroplacental inflammation, and large cerebral artery embolization primarily arising from ...

    STTRPhase I2022Department of Health and Human Services National Institutes of Health
  4. A Normal Paradigm to Monitor Perinatal Asphyxia Using A Combined Ultrasound-Neuromodulation and Photoacoustic-Imaging Device

    Amount: $300,000.00

    PROJECT SUMMARYThe Brimrose Technology Corporation and partner, The Johns Hopkins University, propose using non-invasive ultrasound neuromodulation to identify hypoxic-ischemic encephalopathy (HIE) in ...

    STTRPhase I2022Department of Health and Human Services National Institutes of Health
  5. Non-Contact High-Resolution All-Optical Handheld Ultrasound Imaging System

    Amount: $1,099,862.00

    We set out in the Phase I program to design a handheld, non-contact laser ultrasound (ncLUS) imager for aiding combat medics’ fast triaging on injured Warfighters in the battlefield. The ncLUS image ...

    SBIRPhase II2022Department of Defense Defense Health Agency
  6. Rapid Viral Pandemic Suppression With Molecular Affinity Development

    Amount: $99,905.00

    This SBIR Phase I project will develop a platform and protocol to rapidly identify and prepare materials and methods for the suppression of a viral pandemic after the virus has been identified and seq ...

    SBIRPhase I2021Department of Defense Defense Logistics Agency
  7. Development of Cadmium Magnesium Telluride for Picosecond Response X-Ray Optical Laser Photodetector

    Amount: $199,832.00

    The constantly improved and upgraded X-ray Free Electron Lasers (FEL) have been opening the doors for many scientific frontiers in biology, chemistry and material science, such as structural dynamics, ...

    SBIRPhase I2021Department of Energy
  8. A Compact, Integrated, Modular, Multi-Technology, Optical Sensor (CIMMOS) for In-Situ Characterization of Ocean Worlds

    Amount: $124,942.00

    With the goal of enabling comprehensive standoff sensing of chemical bonds, we propose to develop a compact, integrated, modular, multi-technology, optical sensor (CIMMOS) with high spectroscopic info ...

    SBIRPhase I2021National Aeronautics and Space Administration
  9. Mercurous Halide Crystals Growth in theInternational Space Station (ISS)

    Amount: $115,666.00

    We propose the growth of Acousto-Optic crystals such as Hg2Cl2, Hg2Br2, and Hg2I2. These crystals are very promising material and extremely suitable for the fabrication of Acousto-Optic devices such a ...

    SBIRPhase I2021National Aeronautics and Space Administration
  10. Remote Laser Induced Breakdown Spectroscopy (LIBS) + Laser Induced Thermal (Infrared) Emission (LITE) Detection System for In-Situ Surface Contaminant Mapping and Identification

    Amount: $748,330.30

    With the goal of enabling rapid and comprehensive standoff sensing of chemical compounds, we proposed to develop a compact, integrated, optical sensing LIBS + LITE instrument with high spectroscopic i ...

    SBIRPhase II2021Department of Defense Office for Chemical and Biological Defense
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