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Additive Manufacturing of a Conformal, Wideband Array for Attritable Aircraft Platforms (1000-456)

Award Information
Agency: Department of Defense
Branch: Air Force
Contract: FA8650-18-C-1003
Agency Tracking Number: F171-115-0396
Amount: $749,990.00
Phase: Phase II
Program: SBIR
Solicitation Topic Code: AF171-115
Solicitation Number: 2017.1
Timeline
Solicitation Year: 2017
Award Year: 2018
Award Start Date (Proposal Award Date): 2018-08-13
Award End Date (Contract End Date): 2020-08-31
Small Business Information
267 Boston Road
North Billerica, MA 01862
United States
DUNS: 131640919
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Principal Investigator
 Dr. Douglas Kern
 (978) 495-5332
 pi@si2technologies.com
Business Contact
 Noel Marie Burgoa
Phone: (978) 495-5302
Email: nburgoa@si2technologies.com
Research Institution
N/A
Abstract

SI2 Technologies, Inc. (SI2) proposes to enable wideband, conformal, dual-polarized phased array capability for geometrically constrained platforms, such as attritable aircraft and tube-launched munitions.SI2s AM arrays can be designed to conform to the outer mold line of those vehicles, minimizing aerodynamic drag and offering a SWAP-C advantage over conventional arrays.To meet this objective, SI2 offers its unique combination of in-house wideband array design capability, in-house RF electronics design capability, and in-house multi-material additive manufacturing (AM) capability.SI2s innovative solution offers the Air Force a wideband (6:1) phased array with integrated active electronics solution that can be grown layer by layer, is agnostic to the beamforming electronics, and has similar performance to conventionally manufactured phased arrays but at a lower cost.In this Phase II program, SI2 will design, simulate and optimize the tightly coupled dipole array (TCDA) with integrated RF electronics using 3D electromagnetic modeling tools and incorporating AM materials and process parameters into the models. In a risk mitigated approach, SI2 will design, manufacture and characterize the performance of both planar (Year 1) and conformal (Year 2) versions of the array with integrated electronics.We will further mature the technology by performing system testing with beamforming electronics.

* Information listed above is at the time of submission. *

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