BIOSPHERICAL INSTRUMENTS, INC. — Department of Commerce SBIR Phase II: 9.3

BIOSPHERICAL INSTRUMENTS, INC. — SBIR Phase II award from Department of Commerce.

Phase II SBIR prototype / development signal

  • Phase II is where Department of Commerce funds deeper R&D after feasibility. Incumbents with Phase II history are serious competitors on adjacent topics.
  • Use this award as past-performance context and to map customer organizations for STRATFI/TACFI-style transition planning.
  • Obligated amount $643,720 is consistent with substantial Phase II-scale effort; compare to related awards from the same agency.
  • Topic code 9.3 links this award to a solicitation family — search the same topic stem for incumbents and recompete timing.

Informational capture context from public federal data — not legal or bid advice.

Amount
$643,720
Agency
Department of Commerce · National Oceanic and Atmospheric Administration
Program / Phase
SBIR · Phase II
Topic
9.3
Solicitation
NOAA-OAR-TPO-2023-2007785
NAICS
Place of performance
CA
Period
2023-08-01 → 2025-07-31

Description

This project will build upon research conducted during a Phase I SBIR effort, which showed that germicidal UV-C radiation emitted by LEDs installed inside of submerged radiometers can reach levels known to prevent biofouling (accumulation of biological matter) on their external optical surfaces (windows, diffusers) without affecting the instrument’s measurements. This technology will improve the long-term accuracy of sensors monitoring the health of the oceans and their data products (e.g., concentration of chlorophyll and dissolved organics). We will build and test multichannel and single-channel radiometers for measuring light (irradiance and radiance) in the ultraviolet, visible, and infrared range. Challenges include the integration of LEDs and other optical elements identified in Phase I into pressure-rated underwater housings that can withstand deployment in the ocean for several months or more without the need of servicing. Once designed and prototyped, these radiometers will be rigorously tested in San Diego Bay and in a tidal estuarine river with extremely high biofouling rates. At the end of this project, we anticipate that these radiometers will be ready for sale. We will also re-evaluate published thresholds for the prevention of biofouling and will determine whether the onset of biofouling can be detected in the radiometers’ measurements.