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The Difference Between Cat5e vs Cat6 Patch Panel

To build a flexible and tidy cabling system. Patch panels are something we can never forget. The panel enables speedy UTP interconnections to hubs, routers, and other active equipment. Ethernet patch panel on the market comes in various types, such as 24 port patch panel or 48 port patch panel for Cat5e or Cat6 that is shielded or unshielded. So what’s difference between Cat5e Patch Panel and Cat6 Patch Panel? Can I use cat5e rated patch panel with cat6 cabling?

Cat5e vs Cat6 Patch Panel: To Know About Cat5e Patch Panel

Cat 5e patch panels meet the standards of TIA/EIA 568 industry specifications, which can help enhance the network performance in a maximum and keep up with the growing changes in your network. For now, there are many Cat 5e patch panel products that customers can pull off the shelf. Cat5e Ethernet patch panels from reliable supplier like FS are made from steel materials so that they can stand up even the most extreme conditions. With numbers labeled on ports, it’s easy for cable organization. FS Cat5e patch panels are available in 6-port and 8-port module groupings, in 8, 12, 24, and 48-port sizes. The high density panel design can be mounted to standard racks or cabinets, accommodate top, bottom or side cable entry, and also save valuable rack space.

cat5e patch panel

Cat5e vs Cat6 Patch Panel: To Know About Cat6 Patch Panel

As it’s name suggests, Cat6 patch panels is specially designed for Cat6 cabling in 1 Gigabit Ethernet applications. With the help of these patch panels, you can achieve easy management and save data center rack space. They can meet or exceed the TIA/EIA 568 industry specification. All these Ethernet patch panels feature both T-568A and T-568B wiring configurations. Each patch panel terminates with standard 110 termination tools on the rear, which allows quick installations. Panels in FS cover 12, 24, 48, and 96-port configurations. Patch panels can be configured with six or eight port modules.

cat6e patch panel

Cat5e vs Cat6 Patch Panel: Can I Run Cat6e on a Cat5e Patch Panel?

Actually, there isn’t much practical difference in the Ethernet patch panels themselves. But there is a difference in the wire gauge specified between cat5/5e and cat6, and Cat6 wire gauge is typically larger which can be an issue when punching down on a 5e block. That’s to say:

  • When punching down Cat5/5e wire on a Cat6, the Cat5/5e wire is enough smaller that it is possible to get what looks like a good punch, but the insulation on the wire is not actually penetrated or is only partially penetrated by the vampire jaw of the punch block.
  • When punching down Cat6 wire on a Cat5/5e panel, the larger wire can end up bending or even breaking the vampire jaws on the punchdown block.

In both cases, using care and testing each connection, you can usually make it work. If your just doing one panel at home you are probably OK. However it wouldn’t be recommended if doing several panels or working on an enterprise/commercial jobs that you plan to warrant the work.

MTP vs MPO Connector for Dater Center’s High-density Demand

High density has been a hotly contested subject in the world of data centers for years. Today’s cyber world is moving ahead at an incredible speed, we’ve seen an unprecedented the demand for high-speed and high-density in data center. And 40Gb/s and 100Gb/s are more commonplace and now become a trend and hotspot for data-center cabling system. In such a circumstance, we can predict that MTP fiber connector and MPO fiber connector will eventually replace the standards for fiber optics as known.

MTP vs MPO Connector for High Density Needs

High density networking is based on two components. One, being able to have concentrated port density. Two, being able to have large numbers of fibre cores connecting nodes of the network. Most connectors (LC, SC, FC) have one fiber through them. The MTP/MPO connector has been designed as a “multi-fiber” connector. Going through the MTP connector wiki and MPO connector wiki, the MPO connector and subsequent standard were developed in the late 1980’s by the NTT-AT corporation. The MTP by US Conec corporation soon came after that with some additional features like a removable housing, elliptically shaped alignment pins, and the ability to change the connector’s gender. Current MPO connectors now offer these features. The main thing to remember is that the MTP connector adheres to the MPO standard. Therefore, MTP and MPO connectors are interchangeable.

40G-transceiver-with-mtp-and-LC-interface

The MTP connector is the same size as a traditional SC connector. However, the MTP connector has 12 fibers to the SC’s one fibre. This 12 fold increase in density enables a much greater port density at any point on the network. There are also 24 fibre and 48 fibre connectors within the MTP range that are also the same size as an SC connector.

MTP vs MPO for Multi-Fiber Solution

The MPO fiber connector and MTP fiber cable connector can offer up to 12 times the density of standard connectors, providing significant space and cost savings. Due to this fact and its excellent performance in various applications, many manufacturers now offer a wide range of MTP/MPO products, such as MTP / MPO Cable Assemblies, Fanout / Breakout Cables, MTP / MPO Trunk Cables, MTP / MPO Fiber Optic Plug-N-Play Cassettes, MTP / MPO Adapters, MTP / MPO Fiber Optic Loopbacks and etc.

mtp cable assemblies

With its higher port density, MTP/MPO fiber is easier to install – just pull 1 cable with 12, 24, or more fibers for one easy plug-in. Delivers big savings in installation time and cost. And High density MTP/MPO trunk cables can come with up to 288 fibers in a single cable.

Summary

MPO fiber connector and MTP fiber cable connector offer ideal solution to set up a high-density and high-performance data networks with the advantages of time saving and cost saving. Considering the huge benefits it they have brought and their special role in the migration to 40/100 Gigabit Ethernet, MTP/MPO connector will definitely gain more and more popularity among data centers.