Veeco Instruments Inc. today announced that it received orders totaling more than $250 million from multiple customers for its Spector® Ion Beam Deposition (IBD), Lumina® Metal Organic Chemical Vapor Deposition (MOCVD) and its WaferEtch® Wet Processing systems. These orders, driven by momentum in silicon photonics, support the manufacturing of Indium Phosphide (InP) lasers, with deliveries beginning in 2026 and significantly accelerating in 2027.
A substantial portion of the orders are for the Spector® IBD from leading manufacturers of 800G and 1.6T optical transceivers for hyperscale data centers. The system is used to deposit high-performance, low-absorption laser facet coatings that are required for high-power laser operation. This strong order activity underscores the long-term value of Veeco’s Ion Beam Deposition technology and the company’s expanding role in this rapidly growing market.
“Veeco’s differentiated portfolio of Ion Beam, MOCVD and Wet Processing technologies enables our customers to scale up advanced InP laser production with high performance, yield, and reliability,” said Adrian Devasahayam, Senior Vice President of Veeco Instruments. “These orders reflect the strength of our long-standing customer partnerships, many spanning more than two decades, and our ability to support the evolving requirements of silicon photonics and the optical interconnect market.”
Veeco’s Spector® IBD system delivers ultra-dense, low-loss optical films with precise control over thickness and reflectivity required by advanced InP lasers. Veeco’s Lumina® MOCVD platform, underpinned by its TurboDisc® reactor technology, supports high-volume InP epitaxy with excellent uniformity, low defectivity and superior productivity. Veeco’s WaferEtch® platform was selected for its best-in-class process, device-to-device repeatability, system flexibility and exceptional productivity.
TrendForce 2026 Infrared Sensing Application Market and Branding Strategies
Release: 01 January 2026
Format: PDF / EXCEL
Language: Traditional Chinese / English
Page: 168
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