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Company Information:

Company Name: Zenwa Inc
City: Sudbury
State: MA
Zip+4: 01776-1734
Woman-Owned: No
Minority-Owned: Yes
HUBZone-Owned: No
Website URL: N/A
Phone: (978) 443-8636

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $69,622.00 1
STTR Phase I $149,995.00 1
STTR Phase II $499,990.00 1

Award List:

Innovative portable human / computer interface system for performance monitoring / prediction and eye movement robotic control

Award Year / Program / Phase: 2005 / SBIR / Phase I
Agency / Branch: DOD / ARMY
Principal Investigator: Jacob L. Kuykendall, Jr., President
Award Amount: $69,622.00
Abstract:
The primary objective of this research is to develop an innovative portable human / computer interface system for performance monitoring / performance prediction based on eye movement. The system will be capable of capturing gaze, pupil, and saccadic movements in each eye individually,… More

STTR Phase I: 3D Lithography of Thick Photopolymers for Imaging and Photonic Crystal Waveguides

Award Year / Program / Phase: 2007 / STTR / Phase I
Agency: NSF
Research Institution: U of CO-Boulder
Principal Investigator: Jacob M. Kuykendall, Mr
Award Amount: $149,995.00
RI Contact: Robert R. McLeod
Abstract:
The Small Business Technology Transfer Research (STTR) Phase I project will result in the demonstration of an innovative new form of 3D lithography to be used for fabricating imaging arrays and photonic-crystal waveguides in thick photopolymers that are cheaper, higher performance, lighter, more… More

STTR Phase II: 3D Lithography of Thick Photopolymers for Imaging and Photonic Crystal Waveguides

Award Year / Program / Phase: 2008 / STTR / Phase II
Agency: NSF
Research Institution: University of Colorado Boulder
Principal Investigator: Jacob L. Kuykendall, MBA
Award Amount: $499,990.00
RI Contact: David Allen
Abstract:
This Small Business Technology Transfer (STTR) Phase II project will culminate in a new form of 3D lithography capable of fabricating imaging arrays and photonic-crystal waveguides that are cheaper, higher performance, lighter, more flexible and have capabilities not currently possible with current… More