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Company Information:

Name: Vega Technology & Systems Inc.
Address: 7980 Kingsbury Drive
Hanover Park, IL
Located in HUBZone: No
Woman-Owned: No
Minority-Owned: No
Phone: (630) 788-0306

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $300,000.00 3
SBIR Phase II $400,000.00 1

Award List:

Multiband Infrared (IR) Seeker

Award Year / Program / Phase: 2007 / SBIR / Phase I
Agency / Branch: DOD / MDA
Principal Investigator: Vincent Y. Chow, President & Founder
Award Amount: $100,000.00
Abstract:
We propose a large format collinear MWIR/LWIR 2-color HgCdTe IR Focal Plane Array with multiband enhancement capabilities that can be integrated into a kill vehicle interceptor to perform rudimentary signal pre-processing and cell memory functions thereby elevating seeker abilities to acquire,… More

Multiband Infrared (IR) Seeker

Award Year / Program / Phase: 2008 / SBIR / Phase II
Agency / Branch: DOD / MDA
Principal Investigator: Vincent Y. Chow, President
Award Amount: $400,000.00
Abstract:
We propose a large-format LWIR HgCdTe Focal Plane Array that can perform rudimentary signal pre-processing and increase pixel well dynamic range, thereby elevating seeker abilities to acquire, track, and discriminate enemy targets. This approach, supported by Lockheed Martin and BAE Systems, is… More

Interceptor Seekers

Award Year / Program / Phase: 2010 / SBIR / Phase I
Agency / Branch: DOD / MDA
Principal Investigator: Vincent Y. Chow, President
Award Amount: $100,000.00
Abstract:
We propose a large-format collinear LWIR Type II Strained Superlattice (SLS) Focal Plane Array with digital signal readout and near-focal-plane digital image processing that can reduce demands on computer power and data bandwidths. This proposed approach, supported by Lockheed Martin, is based on a… More

Smart Infrared Focal Plane Arrays and Advanced Electronics

Award Year / Program / Phase: 2012 / SBIR / Phase I
Agency: DOD
Principal Investigator: Vincent Chow, President – (630) 788-0306
Award Amount: $100,000.00
Abstract:
We propose a smart ROIC design where one ROIC unit cell may service two FPA unit cells instead of the normal one-to-one relationship. This proposed approach, supported by Lockheed Martin, is based on a novel dual pixel design that consists of using pairs of adjacent FPA pixels connected in a… More