Switch PortThe importance of network flexibility gradually reveals
Switch PortThe importance of network flexibility gradually reveals as the speed of Ethernet increases.. Several important factors like cable, connector and switch port should be taken into account when selecting patch cords for 40G QSFP+ transceivers. For long reach, single-mode fiber is suggested for 40G transmission with the distance up to 10 km. OM3 and OM4, which are usually aqua-colored, are accepted economic solutions for 40G in short distance with lower insertion loss and higher bandwidth.Besides, 40G QSFP+ transceiver with LC interface is also available. (LR stands for long reach and SR stands for short-reach and). Thus, selecting the proper fiber patch cables for 40G network is more difficult and becomes a big issue in 40G migration. To build 40G data centers, you need to select suitable fiber patch cable for 40G QSFP+ Modules. In this case, fan out patch cable with MTP connector on one end and four LC duplex connectors on the other end is suggested (as shown in picture below). To build 40G data centers, you need to select suitable fiber patch cable for.
However, Fiberstore can solve your problems with professional one-stop service including the cost-effective and reliable network designing and 40G products. The quality of these connections can largely affect the reliability and stability of the whole 40G network.How to Select Fiber Patch Cable for 40G QSFP+ Modules?For 40G data rates, the special transceiver module is QSFP+. The answer is yes, but not suggested. But in practical cabling for 40G QSFP+ transceivers, there are more need to be considered.Factors like cable, connector and switch port are important in selecting the right patch cords for 40G QSFP+ transceivers. It’s very common that 40G ports is needed to be connected with 10G port. For this type, patch cable with duplex LC connector should be used. Now there are two interfaces commonly adopted by 40G QSFP+ transceiver and they are MTP and LC. They are closely related to the transmission distance, network flexibility and reliability of the whole 40G network. However, several 40G QSFP+ transceivers like 40GBASE-PLR4 and 40GBASE-PLRL4 have MPO interfaces to support long transmission distance.
Cabling options for 40G network are 40G Safety Stringing Equipment QSFP+ to 40G QSFP+, 40G QSFP+ to SFP+.CableCable is essential for the network performance. Optical signals perform differently when information transforms through the cables with different wavelengths.High density is the most obvious characteristic of 40G transmission, which is largely reflected in the MTP connectors on patch cords used with 40G QSFP+ transceiver. Planning and designing takes a lot of time and may not achieve results good enough. As QSFP+ transceiver uses four 10G channels, MTP cable which uses 4 pairs of fibers with can provide a time-save and stable solution for 40G QSFP+ transceivers. As the speed changes from 1 to 10 Gbps and now increases from 10 to 40 Gbps and even 100 Gbps, data centers develop into more complex systems. When people buy fiber optical patch cords for 40G QSFP+ transceiver, they often ask if a 40GBASE universal QSFP+ transceiver working on wavelength of 850nm can be used with OM1 patch cords. So different optical technologies and cabling infrastructure are required. Two upgraded cables—OM3 and OM4 are suggested for 40G QSFP+ transceivers in short distance. OM1 cable is only suggested for 100 Mb/s and 1000Mb/s transmission.
For short reach, multimode fiber—OM3 (up to 100 meters) and OM4 (up to 150 meters) is suggested for 40G transmission. For 40G data rates, the special transceiver module is QSFP+ (Quad Small Form-Factor Pluggable Plus).Patch cable is very important to 40G network not only because the switch connections necessity, but also because of the transmission principle of the fiber optic signals and the high density trend of 40G transmission. The transmission distance and quality would be limited by using OM1 optical cable with 40G QSFP+ transceiver.IEEE has announced standards for 40G transmission in both long distance and short distance, which are 40GBASE-LR4 and 40GBASE-SR4. This type of QSFP transceiver uses four lanes with each carrying 10G in 1310nm window multiplexed to achieve 40G transmission.Interface is designed for short transmission distance and LC for long transmission distance. Why? As the optical signal transmission distance gets shorter, the data rate increases.ConnectorThe connector type of the patch cords should depend on the interface of 40G QSFP+ transceiver. However, connectivity of 40G is much more complex than ever. As mentioned, QSFP+ transceivers are suggested for 40G, this article will provide as detailed as possible about fiber patch cable selection for 40G QSFP+ transceivers.But how?40G transmission network needs advanced switch, matched patch cords and transceiver modules.
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