Exciting Developments in Optical Transceivers at OFC 2024

Exciting Developments in Optical Transceivers at OFC 2024!

This week at OFC, the world’s leading conference and exhibition for optical communications and networking, innovation is at its peak! Two major transceiver OEMs, Eoptolink (Booth 3127) and HG Genuine (Booth 3312), are set to unveil their groundbreaking 800G DR8 LPO transceivers featuring Innolume Quantum Dot DFB lasers.
What sets these transceivers apart? The incorporation of Quantum Dot DFB lasers without optical isolators has simplified the assembly process and improved yield significantly. Moreover, these lasers boast impressive power conversion efficiency at high temperatures, resulting in lower power consumption at 70°C. This makes these LPO transceivers among the most efficient.
Excited to witness these advancements firsthand? Swing by Innolume booth 5251, where we’ll be showcasing our O band Quantum Dot DFB back reflection resistance in a live BER demo test. Don’t miss out on experiencing the future of optical networking firsthand!

About Innolume GmbH: Innolume GmbH stands at the forefront of laser diode fabrication, with a legacy of over two decades in developing and manufacturing quantum well and quantum dot laser diodes based on InGaAs/GaAs material systems. Catering to diverse market segments including Datacom, LiDAR, Industrial, and Scientific applications, Innolume has earned the trust of over 100 customers worldwide.
Innolume is a registered trademark of Innolume GmbH. All other trademarks mentioned herein are the property of their respective owners.

Visit Us at OFC: We invite you to explore the future of optical communication with Innolume at OFC, Booth 5251.

Postdeadline presentation at OFC 2024

Innolume’s Postdeadline presentation at OFC 2024

Innolume proudly announces it’s results on “High-Power O-band QD Booster Amplifier for Uncooled Operation” was selected for presentation at the Postdeadline Paper Session II at OFC 2024 (March 28, 5:30-5:45, Room 6E). High-power single-mode InGaAs QD-based BOA demonstrates almost 20dB amplification and reaches CW output power as high as 1.5W at room temperature and 0.7W at 105°C with PCE above 20%. To the best of our knowledge this is the maximum power ever reported for non-tapered Semiconductor Optical Amplifiers, approaching power level of EDFA devices.  This level of performance enables more efficient and compact FMCW LiDAR and Free Space Communications systems.

About Innolume GmbH: Innolume GmbH stands at the forefront of laser diode fabrication, with a legacy of over two decades in developing and manufacturing quantum well and quantum dot laser diodes based on InGaAs/GaAs material systems. Catering to diverse market segments including Datacom, LiDAR, Industrial, and Scientific applications, Innolume has earned the trust of over 100 customers worldwide.
Innolume is a registered trademark of Innolume GmbH. All other trademarks mentioned herein are the property of their respective owners.

Visit Us at OFC: We invite you to explore the future of optical communication with Innolume at OFC, Booth 5251.

Innolume GmbH Introduces Breakthrough BDFA for Enhanced Optical Communication

 

Innolume GmbH Introduces Breakthrough Bismuth Doped Fiber Amplifier (BDFA) for Enhanced Optical Communication

Dortmund, Germany – March 21, 2024 – Innolume GmbH, a pioneer in laser diode technology, proudly announces the launch of its latest innovation, the Bismuth Doped Fiber Amplifier (BDFA), designed to revolutionize O-band optical communication networks.

The BDFA from Innolume is engineered to deliver exceptional performance, catering to the growing demands of high-speed data transmission and network expansion. With its cutting-edge features, the BDFA promises to extend the reach of O-band signals, effectively enhancing the bandwidth of existing fiber infrastructure.

Key Features of BDFA:
Small Signal Gain: Greater than 19dBm @ Pin=-20dBm
Saturated Output Power: Exceeding 16dBm @ Pin=0dBm
Central Wavelength: 1310nm
Gain Bandwidth: 60nm
Noise Figure: Less than 6dB
Package: Modified MSA (Multi-Source Agreement) compliant

The BDFA is set to empower various applications including DCI interconnect, Metropolitan Area Networks (MANs), Passive Optical Networks (PONs), and Private Wide Area Networks (PWANs), enabling seamless integration and enhanced performance across diverse network architectures.

This groundbreaking achievement is made possible by leveraging high-power GaAs Quantum Dot pump laser technology with a wavelength of 1195nm and an impressive optical power of 700mW.

About Innolume GmbH: Innolume GmbH stands at the forefront of laser diode fabrication, with a legacy of over two decades in developing and manufacturing quantum well and quantum dot laser diodes based on InGaAs/GaAs material systems. Catering to diverse market segments including Datacom, LiDAR, Industrial, and Scientific applications, Innolume has earned the trust of over 100 customers worldwide.
Innolume is a registered trademark of Innolume GmbH. All other trademarks mentioned herein are the property of their respective owners.

Visit Us at OFC: We invite you to explore the future of optical communication with Innolume at OFC, Booth 5251, where our experts will be delighted to demonstrate the capabilities of the BDFA and discuss how it can elevate your network infrastructure.

Media Contact: Innolume GmbH Contact Person: Sven Rueger Phone: +49(0)23147730-200 Email: contact@innolume.com

Discover the next-generation of optical amplification with Innolume’s BDFA. Experience unrivaled performance and reliability for your network needs.

OFC 2024 San Diego

Learn about Innolume’s new Quantum Dot products at OFC 2024!

Next event in our schedule is OFC exhibition in San Diego! Glad to see you at out booth 5251

We’ll present latest Quantum Dot product innovations:
• High-power, high-temperature DFB for optical transceivers delivering over 200mW of power with 20% PCE at 100°C
• Highly efficient comb lasers with 8 – 64 channels for DWDM communication
• High power optical amplifier delivering 1.5W of CW power at 80°C for uncooled FMCW LiDAR systems

26 – 28 March 2024

San Diego, California, United States