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Efficient Manufacture of Flanged Composite Yb:YAG Laser Rods for kW-Class Lasers

Award Information
Agency: Department of Defense
Branch: Missile Defense Agency
Contract: DASG60-02-P-0161
Agency Tracking Number: 02-0790
Amount: $69,612.00
Phase: Phase I
Program: SBIR
Solicitation Topic Code: N/A
Solicitation Number: N/A
Timeline
Solicitation Year: N/A
Award Year: 2002
Award Start Date (Proposal Award Date): N/A
Award End Date (Contract End Date): N/A
Small Business Information
6551 Sierra Lane
Dublin, CA 94568
United States
DUNS: 808141931
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Principal Investigator
 Helmuth Meissner
 Chairman of the Board
 (925) 833-1969
 hmeissner@onyxoptics.com
Business Contact
 Oliver Meissner
Title: Chief Executive Officer
Phone: (925) 833-1969
Email: omeissner@onyxoptics.com
Research Institution
N/A
Abstract

"Military and commercial applications of diode pumped solid state lasers (DPSSL) using end-pumped flanged Yb:YAG composite rods, incorporating Onyx Optics Adhesive-Free Bond (AFB) and flange-finishing technology, have the potential for significant growthbecause they represent a new class of compact, efficient and economical high-brightness lasers. They are expected to be crucial as a laser-radar (LADAR) device and as illuminator laser for programs such the Airborne Laser (ABL). For commercial applicationsthey are expected to improve the quality of traditional laser machining techniques and enable new applications such as welding of aluminum car bodies, and cutting of aluminum and titanium for aircraft parts. Therefore, this laser system offers to leveragecommercial volume production for supplying a high-performance, low-cost laser system for incorporation into BMD systems.The scale-up of flanged Yb:YAG composite rods for kilowatt-class lasers poses the problem of developing a production process of a lasing element of complex shape. Onyx pioneered the manufacture of such rods in prototype quantities. Onyx Optics now proposesto break new ground in the development of a cost-effective manufacturing process for production quantities of flanged Yb:YAG composite rods with polished barrels. The proposed production process would form the basis for opening a large market for military and commercial high-power laser-diode end-pumped solid state

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

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