Techwin China

800G QSFP-DD Transceiver for High-Speed Data Center Connectivity

Techwin’s 800G QSFP-DD Transceiver delivers ultra-fast, high-bandwidth optical connectivity for next-generation data centers, AI computing, and cloud networking applications. Designed for superior transmission performance, low latency, and energy efficiency, this advanced optical transceiver ensures reliable 800G data communication and seamless integration in demanding hyperscale networking environments.

800G QSFP-DD Transceiver

Features

Applications

Techwin 800G QSFP-DD transceiver is designed for next-generation data center and AI network applications, delivering ultra-high bandwidth and reliable performance. This 800G DR8 optical module utilizes advanced PAM4 modulation technology with 8×100G channels, enabling a total transmission rate of up to 800Gbps.

The QSFP-DD 800G optical transceiver features a hot-pluggable form factor and supports transmission distances of up to 500m over single-mode fiber (SMF), making it ideal for high-density interconnects in modern cloud infrastructure.

With low power consumption, high port density, and compatibility with IEEE 802.3 standards and QSFP-DD MSA, the Techwin 800G optical transceiver module ensures efficient and scalable deployment. It is widely used in data centers, high-performance computing (HPC), AI clusters, and cloud networking environments.

FAQ

What is the 800G OSFP DR8 optical transceiver?

The 800G OSFP DR8 is a high-speed optical transceiver designed for 800G Ethernet applications. It utilizes eight parallel optical lanes to deliver ultra-fast data transmission over single-mode fiber, making it ideal for hyperscale data centers, AI clusters, and cloud networking environments.

An 800G QSFP-DD Transceiver and an 800G OSFP DR8 module both support 800G data rates, but they use different form factors and thermal designs. The OSFP form factor generally offers enhanced power handling and cooling capabilities, making it suitable for next-generation high-performance networking applications.

It’s commonly deployed in data center interconnects, cloud computing platforms, high-performance computing (HPC) environments, and AI-driven networks. It provides the bandwidth and scalability needed to support rapidly growing data traffic demands.

Yes. It’s designed to meet industry standards and support high-speed Ethernet connectivity in modern data centers. It enables efficient network upgrades while maintaining interoperability with compatible switches, routers, and optical networking equipment.