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Innolume at CIOE 2025 in Shenzhen!
Innolume invites you to CIOE 2025 in Shenzhen! Meet us on September 10–12 at the booth of our distributor Micro photons (Shanghai) Technology Co., LTD. (Hall 4, Booth 4C095).
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New Week, New DFB Release – Expanding the DFB Laser Portfolio with 780 nm, 785 nm, and 795 nm Solutions
Innolume introduces DFB lasers at 780 nm, 785 nm, and 795 nm, delivering up to 10 mW output power with high stability and a narrow spectral linewidth for precise scientific and industrial applications.
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Pushing the Limits of O-Band: Innolume’s High-Power QD DFB Laser
Discover our latest O-band QD DFB laser in a 14-pin Butterfly package, delivering up to 300 mW ex-fiber with exceptional spectral purity. Ideal for long-range optical communication, FMCW LiDAR, and advanced sensing.
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Visit of the Mayor of Dortmund to Innolume
The Mayor of Dortmund, Thomas Westphal, visited Innolume to learn more about photonics production and the company’s expansion plans
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Application note: Guidelines for Quantum Dot DFB Laser Coupling in Optical Subassemblies
Innolume has published a new Application Note detailing its quantum dot (QD) distributed feedback (DFB) lasers operating in the O-Band range.
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Alexey Kovsh took part in the Co-Packaged Optics webinar
Alexey Kovsh joined the Supporting Technologies session at the Tracking Progress in Co-Packaged Optics 2025 webinar by LightCounting, presenting Innolume’s breakthroughs in QD-based DFB and comb lasers for CPO systems. Highlights included high-temp operation, low RIN, and 100 GHz comb laser progress.
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Successfull implementation of a new fully automated chip-on-carrier (CoC) bonder at Innolume
Innolume has implemented a fully automated chip-on-carrier (CoC) bonder, boosting production capacity, enhancing product quality, and accelerating delivery of high-performance laser components.
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New publication on bidirectional high-speed transmission using QD-SOA
The article in IEEE Photonics Technology Letters presents a bidirectional optical access link using a QD-SOA with 100 Gbit/s uplink and 150 Gbit/s downlink over 20 km fiber. Results show QD-SOAs are suitable for future passive optical networks. DOI: 10.1109/LPT.2025.3580280
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Innolume at the Integrated Photonics Applications Stage 2025
At the Integrated Photonics Applications Stage 2025 in Munich, Innolume’s Alexey Borodkin presented cutting-edge quantum dot (QD) laser solutions designed for AI cluster scalability, highlighting performance benefits, energy efficiency, and seamless integration with silicon photonics.
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