Español

Coherent Company Announces the Launch of High Power Non Cooled G10 Pumped Laser Module for Submarine and Ground Applications

705
2024-03-23 10:21:42
Ver traducción

Coherent, a leading supplier of high-performance optical network solutions, announced today the launch of a new high-power non cooled pump laser module based on the latest G10 series semiconductor laser tube technology. These new modules are specifically developed for high reliability submarine applications as well as single chip and dual chip ground applications.

The new non cooled pump laser module is designed specifically for high-power, high-performance optical amplifiers and amplification ROADM line card applications. The non cooled pumped laser module adopts a compact 10 pin external size, which is market first:
Up to 1000 mW output power, suitable for submarine applications.
Up to 2x700 mW, providing both symmetric and asymmetric options on dual chip platforms.

These non cooling modules support the growth trend of energy-saving networks to achieve sustainable development goals. This reduces network ownership costs by reducing overall power consumption and eliminating many thermal and power management devices associated with traditional cooling lasers.

"The company released its first non cooled pump laser module in 2004 and its first dual chip module in 2011, making it a leader in non cooled and dual chip technologies," said Dr. Beck Mason, Executive Vice President of Telecommunications. Our latest G10 pump chip supports the successful development of our high-power non cooled pump laser modules. Combining a wide range of active and passive component product combinations, Coherent provides a leading solution portfolio for submarine and ground amplifier designers.

The certification work for the new single chip and dual chip ground modules will be completed by mid-2024. The samples have been launched and will begin mass production by the end of 2024.

Source: Laser Net

Recomendaciones relacionadas
  • Duke University: Laser imaging holds promise for early detection of risky artworks

    Compared to Impressionist paintings taken 50 years ago, upon closer inspection of Impressionist paintings in museums, you may notice some strange things: some are losing their bright yellow hue.Taking the dramatic sunset in Edward Munch's masterpiece "The Scream" as an example. The once bright orange yellow parts of the sky have faded to off white.Similarly, in his painting "The Joy of Life", Henr...

    2024-05-14
    Ver traducción
  • The Mysteries of Atmospheric Chemistry: Transient Absorption Spectroscopy Study Using FERGIE

    backgroundDr. Daniel Stone's research team from the University of Leeds in the UK is primarily focused on the study of oxidation reactions in the atmosphere and combustion processes. Dr. Stone is particularly interested in the chemical reaction processes of active substances that can control atmospheric composition and fuel combustion processes, such as hydroxide (OH), peroxide (HO2), and Crigee i...

    2024-03-06
    Ver traducción
  • Photon chips help drones fly unobstructed in weak signal areas

    With funding from the National Science Foundation of the United States, researchers at the University of Rochester are developing photonic chips that use quantum technology called "weak value amplification" to replace mechanical gyroscopes used in drones, enabling them to fly in areas where GPS signals are obstructed or unavailable.Using this quantum technology, scientists aim to provide the same ...

    2023-10-28
    Ver traducción
  • Stuttgart University researchers develop a new high-power 3D printed micro optical device for compact lasers

    Researchers from the Fourth Institute of Physics at the University of Stuttgart have demonstrated the feasibility of 3D printed polymer based micro optical devices in harsh laser environments.This study was detailed in the Journal of Optics, outlining the use of 3D printing technology to directly manufacture microscale optical devices on fibers, seamlessly integrating fibers and laser crystals int...

    2024-01-09
    Ver traducción
  • 2D photoelectric neuron array can achieve broadband and low loss optical nonlinearity accessible to ambient light

    Light can calculate functions during propagation and interaction with structured materials, with fast speed and low energy consumption. The use of all optical neural networks for general computing requires an optical activation layer with nonlinear dependence on the input. However, existing optical nonlinear materials either have slow speeds or very weak nonlinearity at the level of natural light ...

    2024-03-20
    Ver traducción