Fiberstamp Technology: 100G QSFP28 DWDM1 O-Band Silicon Photonics

Feb. 26, 2025
Fiberstamp's color X 100G QSFP28 DWDM1 O-BAND silicon optical transceivers can address new data center interconnection demands.

Fiberstamp offers color X 100G QSFP28 DWDM1 O-BAND silicon optical transceivers based on a 150Ghz O-BAND DWDM Grid, single-wave 100G PAM4 silicon optical modulation technology platform. The company has integrated silicon photonics technology with traditional advantages to create non-coherent DWDM transmission solutions for 100G data center interconnection (DCI) networks. A Duplex LC interface is adapted to provide 16 wavelengths for selection to achieve 1600G total bandwidth on SMF dual fiber for DCI interconnection applications. It can also achieve 30km transmission under the support of an SOA optical amplifier (10km transmission without SOA) without the need for a dispersion compensation DCM module. This optical transceiver's power consumption is less than 3.5W. Compared with coherent DWDM, this scheme has the advantages of low cost, low delay, low power consumption and easy deployment.

JUDGE'S COMMENT: "With its Color X 100G QSFP28 DWDM1 O-BAND silicon optical transceiver, Fiberstamp is giving data center operators an alternative method to route 100G traffic."

Sponsored Recommendations

Dec. 9, 2024
As we wind down 2024, Lightwave’s latest on-topic eBook will examine the hot topics for 2025. AI is at the top of the minds of optical industry players supporting...
April 10, 2025
The value of pluggable optics in open-line systems is also becoming more apparent. This webinar describes this trend and explores how such modules can best be employed. Register...
March 12, 2025
Join us for an engaging discussion with industry experts on the intersection of AI and optics. Moderated by Sean Buckley, editor-in-chief of Lightwave+BTR, this panel will explore...
May 30, 2024
Discover the revolution of pluggable transceivers in our upcoming webinar, where we delve into the advancements propelling 400G and 800G coherent optics. Learn how these innovations...