This Pre-Solicitation opportunity from Department Of Health And Human Services was posted on July 21, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.
Hamamatsu photomultiplier module H15620-25, controller C16137 and cable
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The National Institutes of Health, under the Department of Health and Human Services, is seeking to upgrade the Adaptive Optics Scanning Light Ophthalmoscope (AOSLO) located in the NEI clinical space OP10 in Bethesda, Maryland. This presolicitation, identified by solicitation number 75N98026Q00848HAMAMATSU, aims to refresh aging hardware to maintain compliance with clinical studies and trials. The acquisition of specialized near infrared photomultiplier sensors is intended to enable the detection of novel retinal biomarkers that are not identifiable using commercial imaging devices, thereby expediting critical clinical research. The required deliverables include three H15620-25 near infrared photomultiplier sensors with a spectral response of 950 to 1200 nm, three C16137-C2 power supply units capable of cooling to -30 degrees Celsius, and four 5-foot MCAB-C16137-1550 signal cables. All items must be delivered to the NIH facility within 180 days of the contract award. The procurement is categorized under NAICS code 335999 with no set-aside used. While technical specifications for dimensions and performance are strictly defined, the documentation does not list specific FAR clauses, pricing data, or formal evaluation factors.
General Info
Agency
NAICS
Place of Performance
Bethesda, MD, 20892, USASet-Aside
Timeline
Submission Closed
Organization & Contact Information
Full Description
THE CUSTOM-BUILD AOSLO AT NEI CLINICAL SPACE OP10 HAS BEEN USED FOR PATIENTS IMAGING IN THE PAST A FEW YEARS TO STUDY RETINAL DISEASE. THE SOSLO SYSTEM REQUIRES REGULA UPDATE AND REFRESHING OF HARDWARE TO COMPLIES WITH NEI CLINICAL STUDIES AND CLINICAL TRAILS.
THESE NEAR INFRARED PHOTOMULTIPLIER SENSORS FOR THE EXISTING CUSTOM-BUILT AOSLO WILL ENABLE THE SYSTEM TO HAVE POTENTIALS TO FIND NEW RETINAL BIOMARKERS THAT CAN'T BE FOUND COMMERCIAL RETINAL IMAGING DEVICES, HENCE THE POTENTIALS TO EXPEDITE CLINICAL STUDIES AND CLINICAL TRIALS.
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