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The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

  1. Environmentally Hardened Laser-based micro combat ID

    SBC: Aerius Photonics, LLC.            Topic: SOCOM10008

    Aerius Photonics will address the need for a small, ruggedized, long-range wearable micro combat identification device by developing a compact, portable, battery-powered beacon that employs state-of-the-art mid-wave IR (MWIR), long-wave IR (LWIR) and near IR (NIR) laser technology to emit an eyesafe signal that is easily detected by presently deployed targeting pods. Phase I will demonstrate, eval ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  2. Broadband Quadrature Mixers and I/Q Mismatch Reduction

    SBC: Tahoe RF Semiconductor Inc.,            Topic: DMEA102002

    Silicon on Sapphire technology offer several advantages over bulk CMOS and BiCMOS technologies for the design of RFICs (RF Integrated Circuits) for the System on Chip radio applications. These advantages include superior radiation hardness, improved isolation between circuits, higher efficiency amplifiers, and more bandwidth per cost. In the last few years, RFIC designers have favored are Zero-IF ...

    SBIR Phase I 2010 Department of DefenseDefense Microelectronics Activity
  3. Small Team Command, Control, Communications and Situational Awareness (C3SA)

    SBC: CEEBUS TECHNOLOGIES, LLC            Topic: SOCOM08001

    In Phase I Ceebus demonstrated the feasibility of an underwater, acoustic, direct-sequence spread-spectrum communication architecture, including actual data transfers and decoded message recovery. All of the communication algorithms were post-processed and communication was performed with a single piezo transducer. Prototype development is the next step in delivering a system that offers real-time ...

    SBIR Phase II 2010 Department of DefenseSpecial Operations Command
  4. High Speed Combatant Craft Automated Ride Control

    SBC: CONTINENTAL CONTROLS AND DESIGN, INC.            Topic: SOCOM10005

    We propose to demonstrate an integrated ride control system for high speed small craft. Our approach uses a smart EM actuator and transom trim tabs as a direct replacement for the ubiquitous electrohydraulic and electric systems currently used for static trim adjustments. Our recent IRAD efforts have produced a self contained control system which can be installed on virtually any craft within a f ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  5. Machine Diagnostics System on a Chip

    SBC: ORBITAL RESEARCH INC            Topic: DMEA102001

    The diagnostic systems in use in military machines are large and expensive. Other military machines could benefit from diagnostic and prognostic systems, but cannot afford the added size, weight and expense. Orbital Research proposes to address this issue by adapting the rugged ASICs that it has presently in development, and those planned for future development, into a single System on a Chip ( ...

    SBIR Phase I 2010 Department of DefenseDefense Microelectronics Activity
  6. Nanoparticle Adhesive Deposition Process for Metal Hydroxide Nanoplatelets

    SBC: Physical Optics Corporation            Topic: SOCOM10007

    To address the USSOCOM need to develop new materials or processes using nanotechnology for chemical and biological warfare (CBW) defense, Physical Optics Corporation (POC) proposes to develop a new Nanoparticle Adhesive Deposition (NANOPAD) process. This proposed process is based on established chemical finishing techniques using chemically synthesized metal hydroxide nanoplatelets (MHN) to impreg ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  7. Optical Wave Guide Integrated Weather Sensor

    SBC: Physical Optics Corporation            Topic: SOCOM10006

    To address the SOCOM need for live, day-and-night weather monitoring, Physical Optics Corporation (POC) proposes to develop a new Optical-Wave-Guide–Integrated Weather Sensor (WAGIS). This proposed device is based on a new design that utilizes in-house–developed mature components and COTS components. The innovation in multispectral optical train design and implementation of POC’s proprietary ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  8. Automated vehicle Identification at a Distance

    SBC: SURFACE OPTICS CORP.            Topic: SOCOM07003

    The HyperSensor camera used in this program is a new imaging technology for hyperspectral imaging recently developed at Surface Optics Corporation. The camera system is a compact solid-state staring hyperspectral imager that captures the information required to generate complete spectral/spatial data cubes with each focal plane exposure. The program proposed here will develop an optimized design f ...

    SBIR Phase II 2010 Department of DefenseSpecial Operations Command
  9. Micro Weather Sensor (MWS)

    SBC: UES, Inc.            Topic: SOCOM10006

    The Special Operations Forces mission requirement for remote weather sensing can be satisfied with an innovative solution that addresses tactical mobility in high threat environments. Within this context UES proposes the development of a novel Micro Weather Sensor, a modular system consisting of a comprehensive sensor suite and a compact, powerful networking device. The suite measures temperatur ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  10. Lightweight, Small Volume, CO2 Removal Technology for Underwater Breathing Apparatus (UBA) and Undersea Platforms: An Advanced Nanotechnology Resolut

    SBC: Marshall Laboratories, Inc.            Topic: SOCOM10002

    We will employ the very latest methods in nanotechnology to realize vastly improved CO2 scrubbing efficiency in closed cycle underwater breathing apparatuse(UBA). Our system will occupy minimal volume, will be simple in design and will employ benign nano-particles as the CO2 active scrubbing material. Due to the design, CO2 uptake will be maximized and breathing flow resistance will kept at a mi ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
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