High-Speed Data Transfer Solution
Enhance your network performance with our 10G Single-mode SFP+ Optical Transceiver, offering reliable connectivity up to 10km with a center wavelength of 1310nm. Compact and easy to install, this module features LC connectors and a PC or UPCC ceramic ferrule for seamless integration into your network setup. Trust in our 10 years of experience as a leading supplier of quality networking equipment for all your connectivity needs.
Product Specification
Connector type
|
LC
|
Optical fiber type
|
SMF
|
Form factor
|
SFP+
|
Transmission rate [bit/s]
|
10G
|
Target transmission distance [km]
|
Single-mode fiber (G.652) (with diameter of 9 μm): 10 km
|
Application standard/Type
|
10GBASE-LR
|
Working case temperature [°C(°F)]
|
0°C to 70°C (32°F to 158°F)
|
Type of the end face of the fiber ceramic ferrule
|
PC or UPC
|
Center wavelength [nm]
|
1310
|
Overload power (AVG) [dBm]
|
0.5
|
Maximum Tx optical power (AVG) [dBm]
|
0.5
|
Minimum Tx optical power (AVG) [dBm]
|
-8.2
|
Minimum extinction ratio [dB]
|
3.5
|
Rx sensitivity (OMA) [dBm]
|
-12.6
|
Product Display
Efficient, High-performance, Reliable
High-speed Data Transmission Efficiency
The 10G Single-mode SFP+ Optical Transceiver, with a center wavelength of 1310nm, offers a transmission rate of 10Gbps over a distance of up to 10km on single-mode fiber. Featuring a PC or UPCC end face fiber ceramic ferrule, this transceiver ensures reliable performance with a minimum extinction ratio of 3.5dB. With a compact SFP+ form factor and compatibility with 10GBASE-LR applications, this optical module is ideal for high-speed data transmission in networking environments.
Material Introduction
The 10G Single-mode SFP+ Optical Transceiver is made with high-quality materials to ensure optimal performance. The transceiver features a LC connector type and single-mode fiber (G.652) for a transmission distance of 10km. With a center wavelength of 1310nm, this module also has a working temperature range of 0°C to 70°C (32°F to 158°F), making it suitable for a variety of networking environments.
FAQ
Email: Lilicheng0510@163.com