QNAP TRX-10GITSFPP-SR 10GbE SFP+ Module, 850nm, SR, up to 300m, industrial temperature range
Form Factor : SFP+
Data Rate : 10GbE (10 Gigabit Ethernet)
Wavelength : 850nm
Transmission Distance : Up to 300m
Connector Type : LC Duplex
Optical Mode : Multimode Fiber (MMF)
Operating Temperature : -40°C to 85°C (industrial-grade)
This QNAP optical transceiver is specifically engineered for environments that require high-speed, reliable data transmission. Supporting data rates of 10 Gigabits per second (10GbE), it utilizes the SFP+ (Small Form-factor Pluggable Plus) standard, making it suitable for modern high-bandwidth network infrastructure. Its short-range (SR) capability allows for robust performance, especially in environments where space and distance are limited.
Optical Specifications
Operating at a wavelength of 850nm, the transceiver uses multimode fiber to achieve optical communication. This enables data transfers over distances of up to 300 meters (approximately 984 feet), providing flexibility for deployment within data centers, enterprise backbones, or industrial networks. The 850nm wavelength is optimal for short-range applications and ensures compatibility with a wide range of existing fiber optics.
Industrial Temperature Suitability
One of the standout features of this transceiver is its ability to function reliably in extreme temperature conditions. Designed for industrial environments, it is rated for an operating temperature range from -40°C to 85°C. This ensures uninterrupted performance in both extremely cold and hot conditions, making it ideal for deployment in harsh or outdoor environments where other standard transceivers might fail.
Wide Compatibility
The TRX-10GITSFPP-SR is compatible with a variety of networking devices that support SFP+ 10GbE connections. Its wide-range temperature certification ensures it can be integrated into networks that demand strict environmental tolerance. It is particularly well-suited for industrial switches, servers, or storage appliances that require continuous, high-speed networking under challenging circumstances.