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INTELLIEPI IR, INC STTR Phase I Award, September 2022

A STTR Phase I contract was awarded to INTELLIEPI IR, INC in September, 2022 for $173,000.0 USD from the U.S. Department of Defense and United States Army.

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sbir.gov/node/2319893
Is a
SBIR/STTR Awards
SBIR/STTR Awards

SBIR/STTR Award attributes

SBIR/STTR Award Recipient
INTELLIEPI IR, INC
INTELLIEPI IR, INC
0
Government Agency
U.S. Department of Defense
U.S. Department of Defense
0
Government Branch
United States Army
United States Army
0
Award Type
STTR0
Contract Number (US Government)
W911NF-22-P-00680
Award Phase
Phase I0
Award Amount (USD)
173,0000
Date Awarded
September 30, 2022
0
End Date
March 31, 2023
0
Abstract

IntelliEPI IR, Inc. (IIR) and Sandia National Laboratory (SNL) propose to advance new avalanche photodetector (APD) technology using low-noise Aluminum Gallium Arsenide Antimonide (AlGaAsSb) based multiplication material and Indium Gallium Arsenide Antimonide absorber material and based on Sb-capable multi-wafer Molecular Beam Epitaxy (MBE) technology. Under this development effort, the team will be working closely with industrial partner Raytheon Vision Systems (RVS) to ensure that APD materials development will meet Army needs and enable applications such as micro air vehicle (MAV) sensors and 3D imaging.  The industry technical inputs will ensure that the technology proposed here is compatible with the existing manufacturing infrastructure—particularly being compatible with the existing ROICs and automatically have opportunities for fast production insertion. IIR and SNL will develop low-voltage/ high-temperature APD materials through advanced MBE growth technique, novel design and employing proven epitaxial layer components such as the InGaAsSb absorber and low-noise AlGaAsSb multiplication layers. It is anticipated that IIR advanced III-V approach to the MBE fabrication of the APD structure will result in improved performance and manufacturability over prior competing Silicon and MCT technologies. The Phase I STTR goal is to develop high-performance epi materials operating in linear mode at room temperature and low voltage

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