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All-Optical Switches for Self-Routing Multiplexed Networks

Award Information
Agency: Department of Defense
Branch: Defense Advanced Research Projects Agency
Contract: N/A
Agency Tracking Number: 31786
Amount: $98,735.00
Phase: Phase I
Program: SBIR
Solicitation Topic Code: N/A
Solicitation Number: N/A
Timeline
Solicitation Year: N/A
Award Year: 1996
Award Start Date (Proposal Award Date): N/A
Award End Date (Contract End Date): N/A
Small Business Information
P.O. Box 11704
Blacksburg, VA 24062
United States
DUNS: N/A
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Principal Investigator
 Jonathon Greene
 (540) 953-4269
Business Contact
Phone: () -
Research Institution
N/A
Abstract

The proposed SBIR program will accelerate the commercialization of multiplexed optical fiber networks and their use in both DoD and commercial systems. F&S (Fiber & Sensor Technologies, Inc.) proposes to implement all-optical low-loss switches for signal multiplexing in large networks. This new approach to multiplexing is based on the development of optically-activated in-line switches to automatically route 100% of the optical power to successive network nodes, thereby eliminating power division losses and increasing the number of devices that can be multiplexed. F&S envisions immediate use of such photonic switching products in combination with arrays of optical fiber strain and pressure sensors, already demonstrated and commercialized by F&S in cooperation with major U.S. aerospace manufacturers, DARPA and DoD laboratories. Such switches also have a very large potential market in self-routing optical fiber communication networks. The program builds directly upon the documented experience of F&S and subcontractors in the commercialization of optical fiber coupling devices and the demonstration of nonlinear all-optical fiber switch concepts in the laboratory. Non-Federal product commercialization funding is pledged for both Phase I and Phase II programs.

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

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