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NOTE: The Solicitations and topics listed on this site are copies from the various SBIR agency solicitations and are not necessarily the latest and most up-to-date. For this reason, you should visit the respective agency SBIR sites to read the official version of the solicitations and download the appropriate forms and rules.
If no search results for your keyword(s) were found, you are encouraged to review Agency omnibus solicitations for additional funding opportunities. Omnibus solicitations are structured to be broad, extensive Programmatic issuances with research areas related to the petitioning Agency and are not limited to predetermined Topics/Subtopics. If upon reviewing you have additional questions, you may consider reaching out to the respective Agency for clarification regarding acceptable proposals (https://www.sbir.gov/agency-contacts).
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OSD232-003: Efficient Integration or Direct Growth on SOI of Foundry-Scale CMOS Compatible Second Order Nonlinear Materials and/or Short-Wavelength Photonic Materials with Low Optical Loss
Release Date: 04-19-2023Open Date: 05-17-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Quantum Science OBJECTIVE: Development of a foundry-compatible, direct growth in a Silicon on insulator (SOI) stack, second-order nonlinear material that can be that can be used for photon conversion and low loss waveguides. DESCRIPTION: Silicon on insulator (SOI) has been a growing standard platform for foundry-scale (300mm) integrated photonics. In that ...
SBIRPhase I/Phase IIDepartment of DefenseOffice of the Secretary of Defense -
OSD232-008: Efficient, Scalable, and Robust Techniques for Interconnecting Optical Fibers and Photonic Integrated Circuit Waveguides at Milli-Kelvin Temperature
Release Date: 04-19-2023Open Date: 05-17-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Integrated Sensing and Cyber; Integrated Network Systems-of-Systems OBJECTIVE: To develop techniques for efficient, reliable, and extensible routing of light from ambient conditions through optical fibers to quantum photonic integrated circuit waveguides at milli-Kelvin temperature. DESCRIPTION: Future quantum information networks will enable new capabilit ...
SBIRPhase I/Phase IIDepartment of DefenseOffice of the Secretary of Defense -
DHA23B-003: Electrodermal Activity for Prediction and Detection of Symptoms Related to the Central Nervous System Oxygen Toxicity Including Seizures
Release Date: 04-19-2023Open Date: 05-18-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Military Operational Medicine OBJECTIVE: Develop a means to detect the onset of seizures due to CNS-OT for real-time monitoring of divers immersed underwater. DESCRIPTION: Divers breathing hyperbaric oxygen (HBO2) are at risk for developing Central Nervous System Oxygen Toxicity (CNS-OT), which can manifest as symptoms that might impair a diver’s perform ...
STTRPhase IDepartment of DefenseDefense Health Agency -
N232-112: Electromagnetic Manipulation of Plasma on Hypersonic Reentry Bodies
Release Date: 04-19-2023Open Date: 05-17-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Hypersonics;Sustainment The technology within this topic is restricted under the International Traffic in Arms Regulation (ITAR), 22 CFR Parts 120-130, which controls the export and import of defense-related material and services, including export of sensitive technical data, or the Export Administration Regulation (EAR), 15 CFR Parts 730-774, which control ...
SBIRPhase I/Phase IIDepartment of DefenseNavy -
A23-003: Electromagnetic Skins and Smart RF Radomes for Spectrum Camouflage
Release Date: 04-19-2023Open Date: 05-17-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Integrated Sensing and Cyber OBJECTIVE: Design and build an electrically thin electromagnetic (EM) skin to absorb, scatter, and change the polarization of undesirable radio frequency (RF) radiation providing spectrum camouflage for Army antennae and radar systems. The objective of this SBIR is to utilize novel EM skins by adding RF functionality to create a ...
SBIRPhase I/Phase IIDepartment of DefenseArmy -
N23B-T033: Electron Beam Additive Manufacturing (EBAM) Capability for Large, Complex, Metallic Components
Release Date: 04-19-2023Open Date: 05-18-2023Due Date: 06-14-2023Close Date: 06-14-2023OUSD (R&E) CRITICAL TECHNOLOGY AREA(S): Advanced Materials; Sustainment OBJECTIVE: Develop the capability to additively manufacture large, high-complexity, high-criticality metallic parts using wire-fed directed energy deposition (DED) electron beam additive manufacturing (EBAM) and establish a qualification approach for these parts. DESCRIPTION: Traditional manufacturing techniques used to prod ...
STTRPhase IDepartment of DefenseNavy -
S1: Electronic Devices
Release Date: 11-22-2022Open Date: 11-22-2022 Due Dates: Multiple Close Date: 11-01-2023NA
SBIR/STTRPhase INational Science Foundation -
S2: Electronic Materials
Release Date: 11-22-2022Open Date: 11-22-2022 Due Dates: Multiple Close Date: 11-01-2023NA
SBIR/STTRPhase INational Science Foundation -
HC4: Embodied and Wearable Computing
Release Date: 11-22-2022Open Date: 11-22-2022 Due Dates: Multiple Close Date: 11-01-2023NA
SBIR/STTRPhase INational Science Foundation -
ET4: Emission/Waste Reduction and the Circular Economy
Release Date: 11-22-2022Open Date: 11-22-2022 Due Dates: Multiple Close Date: 11-01-2023NA
SBIR/STTRPhase INational Science Foundation