繁体中文

Eoptolink launches optical transceivers for immersion cooling

493
2024-03-26 14:12:09
查看翻譯

Eoptolink Technology has expanded its product portfolio to meet the new market of optical transceiver modules operating in environments using immersion cooling.

The Eoptolink EOLO-138HG-5H-SYMR is an optical transceiver for the 800G OSFP DR8, which can be completely immersed in a 2-phase liquid cooling environment. The EOLO-138HG-02-SYMR is an 800G OSFP DR8+. This transceiver has fiber optic tail fibers that can be connected to non flooded infrastructure. Immersion cooling solutions are a growing niche market as they significantly reduce the energy required to cool data center equipment, thereby lowering operating costs. At the same time, the working temperature of network devices and their sub components is lower, which prolongs their service life and reduces the failure rate.

"We are delighted to showcase our 800G OSFP DR8 module for immersion cooling at OFC," said Supriyo Dey, Vice President of Business Development at Eoptolink Technology. As the growing demand for computing power drives power consumption and cooling in data centers, server and GPU infrastructure is infiltrating immersive cooling. Immersive cooling is not a new technology, but now may be a good time to break through.


In the past few years, data centers and artificial intelligence/ML optical devices have been driven by cost per bit reduction, which has led to the widespread adoption of unsealed design methods. But these methods are not suitable for immersion cooling environments. "We had to redesign our optical solution from scratch," said Dirk Lutz, an engineer at Eoptolink Technology. We have redesigned the optical engine and solved technical challenges while maintaining cost parity. Now, we are proud to be able to achieve immersive cooling for 800G interconnect applications.


The on-site demonstration of the OSFP 800G DR8 module will be held at Eoptolink booth # 3127 at OFC 2024 in San Diego, California.

Source: Laser Net

相關推薦
  • Multinational research team achieves breakthrough in diamond Raman laser oscillator

    Recently, the team led by Professor Lv Zhiwei and Professor Bai Zhenxu from Hebei University of Technology, in collaboration with Professor Richard Mildren from Macquarie University in Australia and Professor Takashige Omatsu from Chiba University in Japan, successfully achieved direct output of Raman vortex optical rotation with large wavelength extension in a diamond Raman laser oscillator. This...

    02-27
    查看翻譯
  • Trumpf announces four personnel changes

    Recently, global laser giant Germany's Trumpf announced four personnel changes, namely Claudio Santopietro as the head of intelligent factory consulting and automation, Kevin Cuseo as the head of software sales, Julian Schorpp as the product manager for automatic bending products, and Adam Simons as the head of additive manufacturing for Trumpf North America.According to relevant information, Clau...

    2024-11-26
    查看翻譯
  • Combined spectral lasers can unlock the potential of laser plasma accelerators

    A team of researchers in Berkeley Lab's Accelerator Technology and Applied Physics (ATAP) division has developed a new technique that combines fiber lasers of different wavelengths to generate ultra-short laser pulses. The research is in the journal Optics Letters.This work could advance the development of laser plasma accelerators (LPA), which have the potential to push the frontiers of high-en...

    2023-08-04
    查看翻譯
  • TAU Systems upgrades the University of Texas desktop laser to a peak power of 40 terawatts

    TAU Systems, a manufacturer of ultra fast compact laser plasma accelerators, announced today that it has successfully upgraded the existing desktop terawatt laser (UT 3) at the University of Texas to a new and improved performance that provides power for compact particle accelerators. The upgraded UT 3 driver laser can now generate ultra short pulses with a peak power of 40 terawatts.This upgrade ...

    2023-08-21
    查看翻譯
  • High Resolution Visible Light Imaging of Large Aperture Telescopes

    The deformable mirror used in adaptive optics can instantly correct the static wavefront aberrations and atmospheric turbulence wavefront disturbances of the optical system by changing its surface. This enables the optical system to automatically adapt to changes in the environment and maintain optimal performance. It is widely used in high-resolution astronomical observations, laser atmospheric t...

    2023-10-31
    查看翻譯