10GBASE-SR SFP+ Duplex LC 850nm 300m OpticalTransceiver

The 10G SFP+ SR optical transceiver is a high-performance optical module designed for short-range data transmission over multimode fiber. Operating at a wavelength of 850nm, it supports data rates up to 10.31 Gbps and is ideal for applications requiring high-speed connectivity within data centers, enterprise networks, and storage area networks. Compliant with SFF-8431 and SFF-8432 standards, it ensures compatibility with a wide range of networking equipment

Parameter

Part NumberGL10-MM850SRC/ITx Power
(dBm)
-7.3~-1
ProductSFP+ SRSensitivity
(dbm)
≤-11.1
Max Data Rate10.3GbpsDistance300m
Wavelength850nmConnectorDuplex LC
Laser Type
(TX/RX)
VCSEL/PINTemp0~70 ℃/-40~85℃

Telecommunications
High-Performance Computing (HPC)
Storage Solutions
Enterprise Networks
Data Center Connectivity

Hot-Pluggable SFP+ Form Factor

Compliant with SFF-8431 and SFF-8472

Maximum Distance of 300m

LC Duplex Connector

RoHS Compliant

FAQ About 10GBASE SFP+ SR optical transceiver

What is the difference between a 10G SFP+ SR transceiver and an LR transceiver?

The main difference between the 10GBASE SFP+ SR transceiver and the LR (Long Range) transceiver lies in their transmission distance and application. The 10G SFP+ SR (Short Range) transceiver is designed for high-speed data transmission over short distances, typically up to 300 meters on multimode fiber. In contrast, the LR transceiver is optimized for longer distances, typically up to 10 kilometers on single-mode fiber. The SR is ideal for short-range applications like data centers, while the LR is suited for long-range connectivity needs.

How does the 10G SFP+ SR transceiver work in 10Gb Ethernet networking?

The 10G SFP+ SR transceiver is specifically designed for 10Gb Ethernet networking, providing high-speed data transmission over multimode fiber. It operates at a wavelength of 850nm, allowing it to transmit data at speeds of up to 10.31 Gbps over distances of up to 300 meters.

Can a 10G SFP+ SR transceiver be used in Storage Area Networks (SAN)?

Yes, the 10G SFP+ SR transceiver is fully compatible with Storage Area Networks (SAN). It supports 10Gb Ethernet and Fiber Channel applications, enabling high-speed connectivity between storage devices and servers. With its ability to transmit data over short distances, it’s well-suited for SAN environments where rapid data access and efficient communication are required.

What makes an affordable 10G SFP+ SR optical transceiver a good choice for small businesses?

An affordable 10G SFP+ SR optical transceiver offers a cost-effective solution for small businesses looking to upgrade their network infrastructure without breaking the budget. These transceivers provide reliable 10Gbps data transmission over short distances, making them an excellent choice for businesses that need high-speed networking for local area networks (LAN) or data centers. Despite their affordability, they don’t compromise on performance, ensuring reliable, low-latency connectivity for various business applications.

How do I install a 10G SFP+ SR transceiver in my network switch?

Installing a 10G SFP+ SR transceiver in a network switch is straightforward. First, ensure that your network switch has an available SFP+ port. Next, carefully insert the transceiver module into the port, ensuring it clicks into place securely. Connect your multimode fiber cable to the LC duplex connector on the transceiver. After installation, the network switch should automatically recognize the module, and you can begin using it for high-speed data transmission. Refer to the specific switch model’s manual for any additional configuration steps.

What are the benefits of using the best 10G SFP+ SR transceiver for 10Gb Fiber Channel?

The best 10G SFP+ SR transceiver for 10Gb Fiber Channel offers significant benefits, especially for data-intensive applications. It provides reliable, high-speed data transmission, enabling fast communication between servers and storage systems. This type of transceiver supports high throughput and low latency, making it ideal for environments where real-time data transfer is crucial.

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