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When it comes to using Ethernet cables to build any connection, whether for a home or office, selecting a quality network cable is a confusing job as all wires are not the same. Cat5e, Cat6 or Cat7, which Ethernet cable type should you choose? To work this out, here is what you need to know.

Ethernet cable type

Different Speeds of Ethernet Cable Type

Ethernet cable type has been evolving since the beginning of the Ethernet standard in 1985. Many different Ethernet cable types have been developed, such as Cat5e Ethernet cable, Cat7, etc. They look very similar from the outside, and any of them can be plugged into an Ethernet port, allowing users to have Internet access or interact with shared network resources. However, they are designed with different transmission speeds. The following table lists the different speeds of the Ethernet cable type.

表格

As it can be seen that, as the number of Ethernet cable type gets higher, so does the speed and bandwidth. Cat5e works for 1000Mbps (Gigabit) Ethernet, and it has become the most widely used category on the market. Cat6 Ethernet cable has been improved, including better insulation and thinner wires, which is full-on certified to handle Gigabit speeds. And Cat6 cable is also suitable for 10G uses. Cat6a Ethernet cable is the enhanced version of Cat6, it can support 10Gbps transmission with a higher bandwidth of 500MHz. Cat7 cable is up to 10Gbps, which is more suitable for data centres’ applications. The latest technology Cat8 can be up to 25/40Gbps. It’s more appropriate for professional and commercial installation such as industrial situations or data centres.

Different Designs of Ethernet cable type

Knowing different speeds of Ethernet cable types is not enough when you decide to buy cables, here are another two aspects that also need to be considered.

UTP vs STP

Because all Ethernet cables are twisted, producers use shielding to further protect the cable from interference. This is the direct difference between UTP (unshielded twisted pair) and STP (shielded twisted pair). STP cable is designed to reduce the effect of EMI (electro-magnetic interference). These cables are generally used in places like airports, medical centres or factories. While UTP cables are often installed for home or office uses.

Solid vs Stranded

Solid and stranded Ethernet cables refer to the actual copper conductor in the pairs. Solid cables use a single piece of copper for the electrical conductor, and stranded cables use a series of copper cables twisted together. Solid cables are more durable, which are most often used in permanent installations, with wiring the inside office walls or under floors. On the other hand, stranded Ethernet cables are more flexible and should be used at your desk or anywhere you may be moving the cable around often.

Conclusion

Before setting up an Internet connection, it’s wise to know the different speeds and designs of the various Ethernet cable types. And choose one Ethernet cable type based on your own network need. No matter what your networking needs are, FS is sure to have the suitable category and length Ethernet cables for your connections.



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SFP ports and RJ45 ports are the most common interfaces which are used in Gigabit Ethernet applications. And we complete the fiber to Ethernet or Ethernet to fiber conversion via these ports. How much do you know about SFP ports and RJ45 ports? And do you know how to convert SFP to Ethernet? This article will explain these questions.

What Are SFP Ports?

SFP ports are the input and output interfaces that are able to be hot-pluggable. They are seen in network switches or network interface cards. And SFP port is capable of working with the standards of 1000BASE-SX, 1000BASE-LX/LH, 1000BASE-ZX or 1000BASE- BX10-D/U.

At present, network switches are usually designed with two or more SFP ports, which comply with IEEE 802.3ab standard. Note that in all cases, the SFP transceiver module must be inserted then the SFP ports can work. The ports make it possible for Gigabit switches to connect to the fiber and copper cables, converting SFP to Ethernet or Ethernet to SFP and completing the switching function.

What Are RJ45 Ports?

RJ45 port, which stands for registered jack 45, is the ubiquitous Ethernet style data port seen on switches, routers and network cards, following the 1000BASE-T Ethernet standard. It only supports RJ45 cables like CAT5e, Cat6 with the transmission speed of 1Gbit/s. By far, the most common use of RJ45 port is with Ethernet data connections from computers network cards, wireless access points, network switches and routers in home and enterprises networks. RJ45 ports on a data switch use the built-in design. Connecting two RJ45 copper switches, we just need a Cat5e or Cat6 copper cables. But if we want to convert Ethernet to SFP, an RJ45 SFP transceiver is required.

FS Solutions to Convert SFP to Ethernet

From the above, we have a good understanding of SFP ports and RJ45 ports. They are the interfaces for converting SFP to Ethernet or Ethernet to SFP. But how? Here FS provides two solutions for you.

Solution 1: Using SFP Transceiver Module

As we have mentioned above, the network switches on the market are generally equipped with SFP ports. Thus, under this circumstance, we can use SFP modules to complete the interconnections between switches or servers. Insert the Ethernet SFP module into the network switches, then plug one end of Cat5e or Cat6 cables into the transceivers and the other end is connected with other terminal devices. This figure shows how we can use SFP transceiver for our conversion need.

convert SFP to Ethernet

We can see this is a full solution, covering the following equipment.

Sequence Number
Product ID
Description
11773
Cisco GLC-T Compatible 1000BASE-T SFP Copper RJ-45 100m
70595
3ft (0.9m) Cat6 Snagless Unshielded (UTP) PVC CM Ethernet Network Patch Cable with Transparent Sheath, Blue
69180
24 Ports Cat6 Feed-Through Patch Panel, UTP Unshielded, 1U Rack Mount
69066
3m (10ft) 6 Plug to 6 Plug Cat6 Unshielded PVC CMR (Blue) Pre-Terminated Copper Trunk
29127
S5800-48F4S (48*1GE+4*10GE) High Performance Data Center Switch
20057
Generic Compatible 1000BASE-T SFP Copper RJ-45 100m
Solution 2: Using Ethernet Media Converters

If your switch doesn’t have SFP ports, then you need an Ethernet media converter. It’s a device used to interconnect fiber and copper cables to facilitate communication between them. This device looks like a small box where fiber and copper cables could be plugged in. Here is the SFP to Ethernet converter from FS.COM. It has one RJ45 port and one SFP port. And the mini converter can support 1000Base-X to 10/100/1000Base-T UTP convention. Designed with compact package size, it’s a reliable plug and play converter. Therefore, just plug the fiber and copper cables into the slots and connect the other ends of cables to the terminal devices, ensuring the whole network works properly.

Conclusion

Using SFP transceiver module or Ethernet media converter can help us convert SFP to Ethernet, which can better expand network function. FS.COM offers an extensive choice of full SFP to Ethernet or Ethernet to SFP solutions. Choose FS.COM for the right product to meet your conversion project needs.



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Today, our lives hardly do without Internet communication. We do shopping, letter writing and business all relying on the Ethernet connections both at home and office. And Gigabit Ethernet switch and splitter are the networking devices that are primarily used for connecting different computers or other networking devices. However, they are quite different. Here focus on Ethernet switch vs splitter.

Ethernet Switch vs Splitter: What Are They?

First, let’s figure out the definitions of the two terms.

What Is Ethernet Switch?

An Ethernet switch is a high speed networking device that provides more ports for subnets to connect more computers, printers, cameras and so on in a building or campus. Through the ports, the data switch can receive incoming data packets and redirects the data to their intended destination within a LAN. Usually, an Ethernet switch not only works at the data link layer which is also called layer 2, but also can operate at the network layer (layer 3) or above.

What Is Splitter?

A network splitter acts as the optical power distribution device, like a coaxial cable transmission system. It’s one of the most important passive devices which means it doesn’t need external power except for light. As the name implies that it can split a single Internet connection to create extra connections, as a result the additional or other computers on a network could be connected.

Ethernet Switch vs Splitter: What Are the Differences?

Ethernet switch can be used for networks that include different devices, for example, a computer and a video game console or a printer. In addition, general switch needs a power input so that it can divide an Ethernet signal into various signals, and the signals can operate at the same time. As a result, different devices can be connected by the switch and work simultaneously.

As for Ethernet splitter, there is no need for power input. And splitters need to be used in pairs. It physically splits a single Ethernet connection into two connections. Simply put, if you want to connect two computers in one room and a switch in another room, then you need the splitters. Instead of using two Ethernet cables from one room to another, the splitters can physically split one Ethernet cable into two to connect the computers and the switch. This is the main principle for the issue that how to use Ethernet splitter.

Ethernet Switch vs Splitter: Where to buy?

The following products of Ethernet splitter vs switch are from FS.COM.

S5800-48F4S Switch

This is a 10gb Ethernet switch that has 48×1GbE SFP ports and 4×10GbE SFP+ ports. With a switching capacity of 176Gbps, it supports comprehensive L2 and L3 network management features. The switch offers MLAG, MPLS, IPv4/IPv6, SNMP etc. Designed with the max power draw of 75W and switching capacity of 176Gbps, this switch is ideal for traditional or fully virtualized data center.

Ethernet Switch vs Splitter-switch

Figure 1: S5800-48F4S Switch

Conclusion

As for Ethernet switch vs splitter, we have known how do Ethernet splitters work and how do switch work. Both of them can optimize our network that allow us to work in an efficient and high secure way. Welcome to visit FS.COM to pick your own Ethernet switch and splitter.



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The continuous development of IT and communication equipment has made computers or storage devices an entirely new look. Server rack cabinet also has evolved. In the network industry, a set of standards has been published successively in order to provide a criterion of racking and mounting size for users. Today, in data center of server room, there are various types of computing or networking equipment installed in wall mount server rack or ground standing type. But for home use, we need a home server rack to build our own home server. Here we’ll focus on cheap server rack for home.

Why We Need Cheap Server Rack for Home

As we know, server rack is a cost-effective solution and is important to one’s business. Because it provides a space for vital equipment like fiber optic patch panel that is crucial to the survival of your organization. However, for home use, what is the exact reason.

First, with the technology develops, our homes also become smarter, more and more families consider to use a home server rack to build a more secure and storage network for the IoT in the home. Therefore, they can manage the electronic equipment more efficiently.

Second, people like professional gamers, videographers, designers and others who require substantial processing power want a home server rack to set up a home network for information transmission at a higher and safer path.

How to Choose Cheap Server Rack for Home

Here are some suggestions for choosing a cheap server rack for home.

  • Size. Traditional server racks are just with large metal frames like server rack 42U type. That’s fine in a professional environment. Unlike the data center or server room, server rack for home don’t need such large type. Small server rack like 9U—24U is preferred for home use.

  • Price. Price is always an important factor when buying anything. Luckily, due to the small design, home server racks are much cheaper than the ones in a large data center. But for the people who want a small server rack just for studying or hobby but don’t have enough money, then a used server rack is the right one for them.

Where to Buy a Cheap Server Rack for Home

Finding the right home server rack for building a home server, from reliable quality to the right price may be tricky. Here, FS.COM is the reputable source to buy a home server rack. Because not all installation sites at home are enough, so I recommend you a wall mount server rack.

cheap server rack for home

Figure: Home Server Rack

This 9U wall mount network rack lets you mount your equipment of 19 inch to the wall, in a secure enclosure. It supports 4 post mounting and is designed with a vented glass front door. Made of high quality SPCC cold roll steel material with black coated, it can support a total load capacity of up to 60kg. This wall mount rack makes it easy to install your equipment such as 24 port patch panel or a server rack shelf.

Conclusion

I think the above article will help to choose a cheap server rack for home so as to build your own home server. At FS.COM, you can find lots of different types of server racks. If you need help with picking, welcome to contact us via support@fs.com.



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This is sometimes annoying that the video stops when we are catching up on the most recent You Tube video, or there’s no signal in the kitchen when we want to watch the cooking video. The poor wireless signal is really a headache since people’s life has relied heavily on WiFi today. How will you fix this? Welcome to the new network solution—mesh router systems. Simply put, it consists of several small routers that communicate with each other to provide a seamless wireless network in your house. This is the reason that encourages you switch from a wireless router to a mesh network. So what is a mesh network?

What Is a Mesh Network

Wiki says a mesh network is a local network topology in which the infrastructure nodes (like data switch or bridges ) connect directly and non-hierarchically, in order to efficiently route data to the end users via the nodes. This network enables the network devices that can provide connectivity capabilities like bluetooth or wifi to form a node one after another. Then a dynamic route is formed between each device and the others, and as a result the data can be delivered within the mesh network. When a node in the network topology fails, other nodes that connect with this one will also fail. But luckily, the whole network will still work, because only one connection point is broken which will not affect the other connections. Thus, we often regard the wireless mesh network as a decentralized information network.

example of what is a mesh network

Figure: Example of Mesh Network

Benefits of Using a Mesh Network

What is a mesh network, after figuring out this question, let’s turn to the benefits of a mesh network. Compared with the ordinary Internet which is built on a few centralized access points or Internet Service Providers, mesh network enjoys many benefits.

  • Extremely Reliable and Expandable

The most striking feature of a mesh network is the construction. This means users can add the wireless router in the specified places, thus they can build a new broadband access network just by the existing facilities. It’s convenient to add or remove the wifi mesh nodes. In addition to expand the wifi range, the wifi mesh network can help one’s electronic devices connect the strongest wifi signal automatically when you walk around the room.

  • Support High Demand

In the above part what is a mesh network, we know each additional device in a mesh network is regarded as a node, the mesh topology can support high amount of network traffic. Thus, interconnected devices can send data smoothly.

  • Less Expensive

Traditional networks rely on multiple equipment such as Gigabit Ethernet switch or transceivers to connect users, while mesh network uses the wireless mesh nodes to spread data. Using fewer equipment means it costs less to build a network. A general 10 Gigabit switch will cost you about 2000 dollars, not mention the high-end switches or other network equipment. Also, using a mesh network will help to eliminate the complexity of cables installations.

How to Create a Mesh Network

It’s not enough to learn what is a mesh network and its benefits, we also need to know how to create a mesh network. At present, the main method of wireless access is to set up wifi in the hotspots places. In order to enable wireless access throughout the whole city, technicians have to create network access points as many as possible by numbers of cables or fiber optic cables. Unlike the normal wireless Internet, to form a mesh network, technicians only need to connect one node to a network such as Internet modem or router. Then the connected node will share its Internet connection with the other nodes within its range. Then one after another, more nodes are connected and a bigger mesh network is created.

Conclusion

As for the question what is a mesh network, I believe now you have a clear understanding. A mesh network has a greater range and is much faster and stronger than the normal wifi network. Any question about mesh network, please contact us via our website FS.COM.



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Undoubtedly, patch panels have become an important component in cabling system, since technological advances open the door to a new generation of more efficient and higher performance data centers. According to different ports, patch panels are commonly divided into 24 port patch panel, 48 port patch panel, 96 port patch panel and even more ports. And all the patch panels can provide a simple, neat and easily managed solution for IT technicians. Today, we’ll focus on 24 port patch panel buying guide.

Why We Use 24 Port Patch Panel

As we know, using a patch panel can enjoy many benefits. It can reduce cable congestion, improve flexibility and scalability and save the valuable space in a sever rack. These contribute to the simplification of manual monitoring, testing, routing and other maintenance on cables. Besides, the  24 port patch panel price is more favorable than other patch panel types. And designed in the same size, the ports distances of 24 port type is not as compact as the 48 port or 96 port ones, which is better for cable connections and cable cooling. This encourages people to choose 24 port type instead of the others.

24 Port Patch Panel: Copper or Fiber

As the backbone of a structured cabling solution, patch panels are available in copper and fiber versions. They are designed to connect different cables. Copper patch panel are used to connect the specific cables like Cat5, Cat5e or Cat6, while fiber patch panel is only applicable for single mode or multimode fiber cables with LC, SC connectors. Thus, before we buy 24 port patch panel, we must know what type of cables that used in our network.

24 Port Patch Panel Recommendation

FS.COM offers a wide variety of 24 port patch panel to help address your specific needs.

24 Port Patch Panel Cat5e

This 1U 24 port patch panel Cat5e features RJ45 couplers on both sides of each panel. It uses the removable design of the rear cable manager, which is conducive to uninstall and install. Also, it adopts the design of self-contained cable management tool, and no extra cable management equipment is needed. This Cat5e patch panel is made of SPCC+ABS materials with an operating temperature from -25℃ to 70℃.

 1U 24 Port Patch Panel Cat5e

Figure 1: 1U 24 Port Patch Panel Cat5e

24 Port SC Fiber Patch Panel

This fiber patch panel is applied to connect OS2, OM3 and OM4 fiber cables. Its sleeve material is ceramic, and its color-coded couplers will facilitate quick cable type identifications and permit more accessibility during troubleshooting, installation or redeployment.

Figure 2: 24 Port SC Fiber Patch Panel

24 Port Blank Keystone Patch Panel 

The 24 port blank keystone patch panel is an ideal tool to manage all copper cables like Cat6 or Cat5e, so you can customize your patch panel and create a perfect mix connection based on your specific applications. The lacing bar with sequential port labels integrated into the panel provides easy identification of multiple types of cables, which can manage cables more efficiently. Designed with the SPCC + ABS plastics,  the material is stamped and formed to create a rigid and durable surface capable of withstanding the forces generated while punching down cables to the panel.

24 Port Blank Keystone Patch Panel

Figure 3: 24 Port Blank Keystone Patch Panel

Conclusion

From the above, I suggest if you need to connect copper cables such as Cat5e or Cat6 then choose the 24 port patch panel Cat5e or 24 port patch panel Cat6 type. If your cables are fiber cables, 24 port fiber patch panel is suitable for you. If you want to make the mixed connections, 24 port blank keystone patch panel is the best choice. So if you are ready to buy 24 port patch panel, please don’t be hesitate to visit FS.COM which is a supplier that offers a comprehensive range of patch panels designed to address a variety of needs.



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تاریخ انتشار : جمعه 29 تير 1397 | نظرات ()
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SDN and NFV that have emerged in recent years, are the most aggressive technology in the networking industry. SDN NFV are born to provide new ways to design, build and operate networks. What is SDN? What is NFV? SDN vs NFV, what’s the difference? Here talks about SDN and NFV.

SDN and NFV

Figure 1: SDN and NFV

SDN vs NFV—Definition

What Is SDN

SDN, software defined networking, started from the campus network. It developed to solve the network issue that people had to change the software of their devices when they tried to deploy a new protocol. SDN is a telecommunic ation revolution that separates the control plane of a network from the data plane that forwards one’s network traffic, aiming at creating a centrally managed and programmable network. As an innovative architecture of new network, it provides a way to implement network virtualization.

What Is NFV

NFV, network function virtualization, is developed by dozens of large telecommunication service providers. Often times, it’s difficult for them to accelerate the implement of new network services due to the restrictions of hardware-based appliances. Thus, the goal of NFV is to virtualize the network services such as DNS, caching, etc., and abstract them from the hardware on which they run, and hence they can run in software. NFV is a disruptive technological reform that offers a more open and flexible service deployment for telecom operators’ network architecture.

SDN vs NFV—Difference

From the above, we know SDN and NFV rely on virtualization so that the network design and infrastructure can be abstracted in software. But do you know the difference of SDN vs NFV?

SDN vs NFV example

Figure 2: SDN vs NFV

Basically, SDN abstracts physical devices like data switch or router and makes the controller process to a virtual network control plane. In this way, the virtual control plane will decide the locations for sending traffic. By contrast, NFV is designed to use the standard x86 server to replace the dedicated network devices like the firewall. As a result, the network function is independent from the dedicated devices, which enables the network to develop without extra devices. The table below shows the differences between SDN and NFV.

table

SDN vs NFV—Future Outlook

Since SDN and NFV share the same aims that improve software-based  approaches to create more flexible, scalable and perfect networks to support the increasing business demand, they have become popular in the network industry. And there’s no doubt that SDN and NFV will work together with traditional switches or some other optical equipment in the future. To follow the technological trend, FS.COM has developed SDN switches to satisfy customers’ various needs.

The N5850-48S6Q SDN switch offers 48 SFP+ 10GbE ports and 6 QSFP+ 40GbE ports that support non-blocking exchange. It adopts 1.44Tbps full-duplex switch capability with the operating system of broadcom ICOS, creating a more open installation environment for users. Compared with the traditional switch, this SDN switch separates the data path from the control path, which helps to make a high-level routing decision.

SDN switch

Figure 3: SDN Switch

Conclusion

As regard to SDN vs NFV, we have learned the basic information of them. Also, we recognize that SDN and NFV will make a difference in the future. FS.COM, the supplier of switches such as 10gb switch, 40GbE switch and even 100GbE switch, will keep pace with the innovations of network world.



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LAN is widely used in the network to allow computers to connect with different computers of one limited area like a school, factory or building. While VLAN is functioned as a tool to improve Ethernet scalability. Yet, with regard to VLAN vs LAN, what’s the relationship between them and is there any differences? Hope you can find the answers in this article.

VLAN vs LAN—Definition

What Is LAN

LAN is short for local area network, which can connect multiple computers in one location for sending data among themselves. It can be comprised of two computers in an office or thousands in a company, sharing a network that is closed to outside use. Today, LAN is defined as a single broadcast domain. This means within this LAN, if one broadcasts message, all the others can receive it. Also, functions like file management, printer sharing and working group scheduling can be realized by LAN, which will help to improve working efficiency.

VLAN vs LAN-LAN example

Figure 1: LAN Example

What Is VLAN

As the name implies, VLAN, or virtual LAN, is a type of LAN which improves the capability of a flat LAN. VLAN is the logical separation of LAN that can create several LAN segments in one bandwidth regardless of devices’ physical locations. Thus, technicians can use a fiber switch to segment a LAN into different broadcast domains (VLANs). Because the separations are logical ones, users on different floors of one building or different buildings now can share the same LAN.

VLAN 图

Figure 2: VLAN Example

VLAN vs LAN—Differences

Basically, the need of implementing VLAN is to segment the network, which determines the differences when VLAN vs LAN. Initially, physical LANs mean that all working computers were connected to the same cable or sets of chained hubs. It’s a typically flat LAN. But with the technology develops, the demand of working computers on the LAN also grows. When one user wants to deliver a packet, he may find that the wire is already occupied by others’ packet. To solve this problem, the LAN should be split to eliminate the congestion and load. Only use Gigabit Ethernet switch or bridge can create VLANs. Since they’re logical separations, they can reduce the packet traffic. With a VLAN, it’s possible that working computers connect together on the same physical LAN but unable to communicate directly. The following table shows clearly the differences between VLAN and LAN.

table

Segment LAN into VLANs

Knowing the differences between VLAN and LAN, we know how VLAN and LAN work. As switches are available, FS.COM offers 1GbE switch, 10GbE switch, 40GbE switch and 100GbE switch that support VLAN to optimize your network experience. Here is one S3800-24F4S 24-port Gigabit stackable SFP managed switch for your reference.

This is a layer2+ switch that supports 4 switches stack, 96 Gigabit ports and 8 10G SFP+ ports. The Gigabit Ethernet switch provides a switching capacity of 128Gbps and 4K VLANs. It adopts ARM CPU, a high performance and low power consumption processor, which can meet the needs of 10G network deployment of all enterprises and network operations. In addition, the switch has a good compatibility with all SFP transceivers on the market.

network switch

Figure 3: S3800-24F4S 24-Port Gigabit Stackable SFP Managed Switch

Conclusion

As regard to VLAN vs LAN, it’s’ important to know the differences between them. Then we can use network switches to segment LANs into VLANs to optimize our network. Hope FS.COM will be the best choice when you decide to buy network switches.



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1U rack mount patch panel is generally used within a server rack, unlike the wall mount patch panel that is fixed on the wall. Facing the trends like high density servers and converged infrastructure that has result in amounts of cables in the server racks, rack mount patch panel is the perfect way to solve poor cable management at the source. Now I bet you come here because you have to choose one rack mount patch panel of some sort, but don’t know exactly how. Don’t worry, let’s start at the beginning. Before buying it, we should know why we need the rack mount patch panel.

Why Do We Need 1U Rack Mount Patch Panel

The main reason is that 1U rack mount patch panels have close relationship with cable performance. 1U rack mount patch panel as one tool of 1U cable management is the primary factor in maintaining high circuit performance during cable installation and use. It makes all cables connections in order so as to avoid cables becoming tangled and messy, and all changes can be made at the patch panel. Also, with all connections are made on the equipment, rack mount patch panel can save wear and tear on the ports of expensive equipment like switches, which helps reduce equipment cost.

Factors We Should Consider When Buying 1U Rack Mount Patch Panel

Rack mount patch panel seems a simple product, but there are still some aspects make you wonder. The following are the aspects that should be considered when you shopping one 1U rack mount patch panel.

  • Space and port requirement. Before buying a rack mount enclosure, first determine your requirements of space and ports because patch panels are available in different sizes and types. For standardization purposes, rack mounts are usually 19 inches and given in U units range from 1U to 4U. Make sure you know the height, depth, width and weight of the equipment.

  • Budget. Money always is the unavoidable issue. Establish a budget for the equipment, then you can narrow the buying scope and make the final selection.

How to Choose 1U Rack Mount Patch Panel

FS.COM offers different versions of 1U rack mount patch panel to meet customers’ needs. Here are three products and pick one based on your need.

1U Rack Mount Fiber Enclosure  

This rack mount equipment is made of SPCC material with black coating. It can accept 4 fiber adapter panels of LC, SC ports or 4 MTP modular cassettes, which can connect 96 fibers. The top panel uses the demountable design that allows you to put 4 splice trays or 2 slack spools to manage and protect your cables. The equipment is suitable for small or medium communication room with a favorable price of 68 dollars.

1U Rack Mount High Density Fiber Enclosure

Like the former 1U rack mount equipment, this fiber enclosure uses the same material and also can hold 4 fiber adapters or MTP cassettes, connecting 96 fibers at most. But this high density device adopts a new design of parallel sliding drawer that pulls the drawer out you can manage the cables inside the device, instead of removing the top panel. Another creative design is the semi-transparent design of front door, which makes it more convenient to check the inside cables and protect the cables from the dust. It’s an ideal solution for high density cabling with a price of 89 dollars.

1U Rack Mount Ultra High Density Fiber Enclosure

Featured with 3 independently sliding drawers, this ultra high density equipment can house 12 MTP cassettes or fiber adapter panels. Thus, with the 50% increase in usable density, it can connect 144 fibers in 1U server rack. And the open design of the back can improve the airflow which is beneficial to equipment cooling. This equipment enjoys a higher price of 120 dollars for it’s designed to satisfy the most extreme fiber density demands.

The following table is the comparison of the three products.

 
1U Rack Mount Fiber Enclosure
1U Rack Mount High Density Fiber Enclosure
1U Rack Mount Ultra High Density Fiber Enclosure
Sliding Version
No
 One sliding drawer  Three sliding drawers
Material
SPCC
                  SPCC  Aluminum
Fiber Count
96
 96  144
Price (USD)
                    $68  $89  $120

Summary

If you want to buy a rack mount patch panel with good quality at low price, the 1U rack mount fiber enclosure can satisfy your need. If you prefer to protect cables from dust, the second product is suitable for you. And if you have to deal with ultra high density fibers, choose the last product. Whether you are ready to buy a rack mount patch panel, FS.COM is here to help. Get in touch with us via our website FS.COM.



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1U horizontal cable manager is the ideal solution to manage cables on the front and rear of each 19 inch server rack. Because with the emergence of high density rack-based IT server installation, data communication and cabling that must be processed within the tight rack space. Horizontal cable manager is regarded as the horizontal cable organizer, which can avoid cable damage and failure, ensuring the network operation.

Why Do We Need 1U Horizontal Cable Manager

1U horizontal cable manager is one tool of cable management that matter the whole network system health. It offers a neat and simple way to manage the cables, and simplifies network maintenance and costs. This is the main reason that makes it popular in the data center.

For the technicians who want a clean and orderly work area, they can make the cables go through the 1U horizontal cable manager, creating a clean look for the rack.

For the technicians who have a desire for easy maintenance and low costs, the cable manager can help them protect the cables radius bend and reduce the wear and tear, which decrease the cables expenses in some sense. Besides, it provides easier access to internal rack components, performing easy move, adds and changes to connections, which can greatly save time and money.

How to Select 1U Horizontal Cable Manager

FS.COM offers some styles of 1U horizontal cable management tools with different options of cable support. Choose the appropriate cable management device based on your actual needs.

1U Horizontal Cable Manager With End Rings

This cable manager uses a sturdy SPCC metal construction with a max cable capacity of 70. Due to the design of four D-type rings on the panel and two rings on both sides, it can manage vertical and horizontal cabling at the same time. In addition, the rings can provide cable strain relief for more reliable connections.

1U horizontal cable manager with end rings

1U Single Sided Horizontal Cable Manager With Finger Duct

It’s a solid little cable manager with flexible fingers on the front, which can offer a proper bend radius protection. Although the manager is made primarily from plastic material, it’s extremely tough and has excellent wear resistance. The max cable capacity of this single sided horizontal cable manager is 44. Furthermore, there is a detachable cover on the fingers that can protect the cables from the dust and give you a more professional rack looking.

1U single sided horizontal cable manager with finger duct

1U Blank Rack Mount Fiber Patch Panel With Cable Management Panel and Lacing Bar

It has five rings stand vertically on the front panel. The lacing bar is dismountable that allows users to put it on the front or back of a server rack according to their cable management demand. With the black metal design, it tends to be highly durable which reduces the equipment spending.

1U blank rack mount fiber patch panel with cable management panel and lacing bar

If you want to house the vertical and horizontal cables simultaneously, 1U horizontal cable manager with end rings is an economical choice. If you are in favor of a dustless environment, 1U single sided horizontal cable manager with finger duct can satisfy your requirement. If you want a more flexible cable solution, then choose 1U blank rack mount fiber patch panel with cable management panel and lacing bar.

Manage cables in the server rack with FS.COM 1U horizontal cable manager. These cable management devices are made from the highest quality materials to provide an unique method for the cross connect.



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It’s well known that network technology is changing, but the critical aspect can’t be changed or replaced—patch panel cable management. If the key component is missing, the data transmission will be interrupted and fail to arrive at the destination. Patch panels, as the nerve center of a network system, can ensure the signal to work in ordered and friendly way. But how to install patch panel? And what’s the patch panel installation guide? This article will give you several suggestions.

Types of Patch Panel  

Patch panels are available in copper and fiber cables. And designed with different port types and uses, patch panels from FS.COM are divided into 24 LC fiber port patch panel, 24 port SC fiber patch panel, 48 port LC fiber patch panel and so on, and copper patch panel can fall into 24 port cat6 shielded/unshielded patch panel, 24 port cat5e shield/unshielded patch panel and 24 port blank keystone patch panel. Here, we will take the 48 port LC fiber patch panel as the example to explain the patch panel installation.

48 Port LC Fiber Patch Panel

With the size of 19”×1.73”, this fiber optic patch panel is suitable for installing on the 19 inch server rack. It has duplex LC adapters that allow a two-way data transmission between the connecting devices. The 48 port LC fiber patch panel uses C.R.S powder coating, which is fully in line with national environmental standards, can be placed indoors. High density port design makes it connect 96 OM3 or OM4 fibers at most, which is much more than the 24 port patch panel.

48 Port LC Fiber Patch Panel

Patch Panel Installation Guide

Only follow the right steps can achieve a reliable network. There are two aspects of patch panel installation guide for your reference.

  • Planning. A successful work starts with a good planning. You should figure out the issues, the network speed, distribution location, and cables length. Make sure you know the specification and design of the patch panel installation.

  • Preparation. Preparation work can reduce disconnect time. Prepare the main tools, 1U rack mount fiber enclosure, 48 port LC fiber patch panel and screws. Check the cable length for ensuring the cables that could be long enough to pull. And label the ports to identify different cables, in order to guarantee the technicians to have clear information on what they need to do.

Installation of 48 Port LC Patch Panel in a Server Rack

First, we should install the 48 port LC patch panel in the 1U rack mount fiber optic enclosure. Remove the front panel of 1U rack mount fiber enclosure, then install 48 port LC patch panel and fasten the screw.

Second, fix the equipment in the server rack. And leave some space between the patch panel and other devices, for cables management and future change.

Patch Panel Installation Guide example

Third, try to connect OM3 or OM4 cables to the patch panel in one pull, which helps to protect the bend radius. Comb and bundle the cables, and put them into the patch panel trunking, then cover it with top panels.

Last, don’t forget to clean the work area when you finish the patch panel installation, because the optical fibers are sensitive to dust and dirt. Therefore, try to keep clean when working with fiber optic cables to make them achieve their full performance.

FS.COM offers a vast selection of patch panel installation products and accessories that meet the international standards for supporting your network needs. For more details, please contact us via sales@fs.com.



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It’s well known that server room has become an important indicator of one’s healthy network. Although wireless technology can avoid the possibility of cable clutter when compared with the wired connection, sever rooms still have lots of network cables, fiber optic cables and peripheral wiring. Thus server room cabling nightmare may appear if the big amount of cables on the server rack is disordered. For installers and engineers, it’s important to avoid server room cabling nightmare to ensure a well operated network center.

Reasons to Avoid Server Room Cabling Nightmare

Often times, the server room cabling nightmare is related to crowding and stacking things. For example, new equipment may be piled up around or on the top of the old equipment. Disordered cables look like a big bowl of spaghetti that may wreak havoc on the server environment.

  • It costs you in equipment wear and tear. When the excessive cables and extra equipment are placed together in a server rack, it may result in equipment overheating since the cables block the airflow or ventilation, generating much heat and stress, which may eventually lead to slow-down and even shorten the life of all equipment.

  • It costs you time and money. The fiber cables and power cables will easily become twisted if the cables are not managed well. In turn, this will cost you a large amount of time to dig through the server mess when you want to change the specific or broken cables.

Tips for Organizing Server Room Cabling

To avoid server room cabling nightmare, here are several tips for you to organize the cabling.

  • Make the server room dust-free. Dust not only makes the room look dirty, it also can fall into the hardware and cause equipment failure especially when it piles up inside the hardware vents. Therefore, the heat can’t be dissipated from the equipment which will lead to overheating. Thus, the server room should be cleaned every day to prevent dust accumulation.

  • Apply sound cable management. Poor cable management will not make positive effects on network system, instead, it may cause hardware malfunction. Proper cable management tips contain the colored labels for identifying, suitable fiber optic enclosures for cable managing. In this way, the cables can be protected from winding.

  • Spacing the equipment. When you decide to set up the server room, make sure that you have planed where to place the racks. A suitable distance should be measured between each rack for air dissipation and future expansion. In addition, the location of equipment such as fiber optic patch panel and switches in a rack should be considered.

End Server Room Cabling Nightmare with FS.COM Equipment

There are several equipment from FS.COM to help you maintain a neat and tidy server room, avoiding server room cabling nightmare.

42U Server Cabinet  

42U black server cabinet can accommodate all 19 inch EIA standard networking equipment, providing additional space at the rare for cable management. It consists of several major components, top panel, split side panel, equipment rail, and perforated front door. In the back, it adopts the design of air mesh which allows ventilation and heat dissipation. The cabinet uses SPCC cold roll steel material, firm and durable. It’s the simplest way to handle hundreds of cables.

cabinet for solving server room cabling nightmare

1U Rack Mount Fiber Enclosure

1U rack mount high density fiber enclosure is available for 4 fiber adapters or cassettes that can connect 96 fibers. The body is made of SPCC cold-rolled steel plate, finished with electrostatic powder spraying. It can maximize the use of limited space in a rack to protect and manage fiber cables with easy installation.

fiber optic enclosure

Server room cabling nightmare is the greatest challenge in the network system. To solve this problem, it should be done with the professional network solution supplier FS.COM. For more details, please visit FS.COM.

 



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Data centers are the repositories in today’s online world, and they’re also regarded as the heart that may pump the lifeblood of one’s business. Inside the data center, numerous issues may break the center, so if anything goes wrong, so does the business. Wrong cabling is one of the issues that may be ignored by most people. But with patch panel labels, technicians can simplify troubleshooting and increase management efficiency.

Label Standard

Clear labeling is the groundwork of a professionally installed network system. There is a set of standards named TIA/EIA-606 that aims at fully addressing the administrative demand for telecommunication equipment, cabling system, and other telecommunication infrastructure. For example, the original TIA/EIA-606-A have defined the general administration, but haven’t had specific needs of data center’s design and installation. Another version, TIA/EIA-606-B is backward compatible with the traditional version A, with a purpose of being a universal labeling standard that applies to all types of premises. And in the set of standards, they have explicitly stated that in one building especially the multiple telecommunication spaces, hardware like patch panels, IDC blocks, and copper or fiber cables should be labeled and recorded.

Importance of Patch Panel Labels

Achieving traceability is the main reason for using patch panel labels. Within one server rack, fiber optic patch panel is commonly used for horizontal cable management that acts as the unit to connect and route circuits for monitoring, interconnecting and testing. Patch panel labels include the patch panel identifier. If practical, each port of a patch panel should be labeled. Using patch panel label accelerates the traceability of the relevant cable links. It helps when the technicians need to find the specific cables.

Labels on Patch Panel

Labels can be used for all patch panels. Here is an example, 24 port blank keystone patch panel on FS.COM, which permits users to create a mix connection of voice, data, and video. The empty design of this Ethernet patch panel makes it possible to accommodate various snap-in jacks, so the users can insert cat5e or cat6 adapters based on actual needs. Beyond the empty port, there are white plates where you can paste the adhesive labels to mark the cables. Users can quickly find the specific cable that needs to change or upgrade, increasing working efficiency. Some adhesive labels are also available in FS.COM: P-type and winding type cable label.keystone patch panel

P-type Adhesive Label

FS.COM provides P-type cable adhesive label paper in red color. It’s a simple identification that is resistant to water, oil, and scratch. Besides, it will not generate debonding in a low-temperature environment and easy to peel off.

patch panel labels Winding type Adhesive Label

Winding type cable label from FS.COM uses an easy wrap-around design, providing a clear and simple identification. With the design of non-slip, it can be pasted on patch panels for cables records and placement instructions. For the best practice, all labeling should be visible especially doing the maintenance.

winding type patch panel label

Conclusion

Patch panel labels are the effective-cost solution to solve network operation breakdown. When it comes to modifying, repairing and upgrading anything, labeling makes it convenient for your job. For more input on the data center, get in touch with the experts at FS.COM.



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Server rack is such a useful kit to deploy in the large data centers. Commonly, there are two basic methods to build a structured cabling system. One is to have a patch panel in the rack, and the other one is to use the switch. Both the two methods are beneficial to managing fiber cables. Today, we will talk about the first one, server rack patch panel.

Why Use Patch Panel on Server Rack

The reason is simple: installing patch panel on server rack can make a proper cable management. This is crucial to build a better network system and ensure a well running status as it provides the technological backbone. First, without a patch panel, all cables may be in jumble and increase the risk of cable congestion. It may lead to connection fault and even the losses to the enterprises. Second, disordered cables can cause clogged airflow, which is harmful to hardware safety. We know, all electric devices will generate heat when they run. So it needs more space for air flow to cool. Server rack patch panel is such a good way by managing different port densities and speeds in one high density patch panel, then the valuable rack space is saved. The approach can actually promote the air flow and protect the hardware.

Considerations When Organizing Server Rack Patch Panel

Here are a few facts to consider when you organize sever rack patch panel.

Equipment location. According to the convenience and available space, choose the rack location. Find the cold spots in the room, then place the rack front facing the cold area that can offer the maximum cooling for the hardware. In addition, make sure that there is enough space around to conduct any service.

Manage copper and fiber cables separately. Try to run copper cables on one side and fiber cables on the other side. Thus copper and fiber cables will not mix. Besides, if the cables lay closely, it may cause interference or crosstalk. Managing the cables separately can help to make an easier access to the equipment when it needs to be upgraded or changed.

Best Selections of Server Rack Patch Panel

Server rack patch panel is one kind of horizontal cable management. Traditionally, a majority of data center equipment uses 19 inch wide design. Now I will introduce some equipment from FS.COM for your reference.

45U black server cabinet can accommodate all 19 inch EIA standard networking equipment, like FHD fiber enclosures, MTP cassette, and FHU patch panels. This server rack includes a welded and assembled steel frame construction with a static loading capacity of 3527lbs. The design of perforated doors allows maximum airflow to be drawn through the server cabinet, which is good for maintaining the devices installed on the cabinet.

server rack

The unshielded 24 port blank keystone patch panel is an ideal tool to manage both copper and fiber cables, so you can customize your patch panel and create a perfect mix connection based on your specific applications. This patch panel adopts the design of removable rear cable manager, which is conducive to uninstall and install. And it can be labeled for easy connection identification.

server rack patch panel

All these are good practice of server rack patch panel. When you need to set up a data center, welcome to FS.COM to select the best products for your network system.



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Structured cabling installation is the main part of a flexible structured cabling system that will support different hardware uses and satisfy current and future demands. Since the thousands of forms of online data transfer, and the gathering of business intelligence has made a significant influence on today’s commerce, the companies want reliable and structured cabling installation to hold the infrastructure of data connections. Now, I want to share something about its installation with you.

Importance of Structured Cabling Installation

A proper structured cabling installation gives a universal platform on which you can build the overall information strategy, supporting multiple voices, data and media system, regardless of who manufactures these. In essence, compared with traditional point to point cabling system, the structured cabling system is more neat and organized. It has many benefits for one’s network operations.

Support future upgrade. High bandwidth is the most significant benefit of the structured cabling, which makes it a reliable infrastructure for business data growth. With structured cabling, you can ensure connectivity of the enterprise while business divests into new technological areas and equipment.

Reduce cabling bulk and congestion. The organized and planned cabling system can accommodate smaller diameter trunk cabling, and makes a cleaner cable management.

Reduce installation time and cost. Using a structured cabling system, users just need to plug the equipment cables into the matched sockets when upgrade or change the network. No need to buy additional wires or adapters.

Tips for Structured Cabling Installation

Since the structured cabling is the critical part of one’s network, here are several tips for the proper installation.

Planning comes first. In this stage, you must have a comprehensive understanding of your actual needs, figure out a solution based on the location, cabling types, and the needed equipment. Planning the installation will enable the actual work and operations run more smoothly.

Follow the cabling standards. When you install the cables, please follow the cabling standards because there are standards that have specified the multiple cables for different uses. Following the standards will greatly improve the efficiency of cables and data networks.

Remember the maintenance is important. Once the cables are installed, the maintenance becomes important. Buy a server rack or other equipment to manage and maintain the cables, which will save you lots of money and time in reality.

Choose the Right Equipment for Structured Cabling Installation

Vertical cable management and horizontal cable management are the two methods used in structured cabling installation. Choose the right equipment is the top priority. There is some equipment from FS.COM.

Single sided and dual sided vertical cable manager are available on FS.COM. This 45U 4.9" wide plastic single sided vertical cable manager is designed with flexible fingers to protect cable radius against damage. It can route cables vertically either on the front or back of racks. With a PVC cover, the equipment can avoid the dust and increase service life.

vertical structured cabling

1U 19inch blank rack mount fiber patch panel is commonly used for horizontal cable management. It offers different choices for one’s application by being separated into patch panel, D-rings and lacer bar. This equipment is a cost effective cable management solution used in high density cabling system in data centers and telecommunication rooms.

horizontal structured cabling

From the above, we know structured cabling is the backbone of all business. FS.COM is the "one stop shop" for all cabling installation.



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Patch panel cable management is a common practice in network system. This because technology develops at an unbelievable speed, consequently, today’s server rooms are featured with a large number of different bandwidth-intensive devices, such as clustered storage systems, blade servers, virtualization applications or some other backup devices. These devices are all interconnected via network cables or cable management tools. Besides, it’s known that challenges in server rooms arise not only with trying to pursue the increasing demand of higher performance and flexibility in order to achieve a scalable and manageable cabling infrastructure, but also with evolving cabling industry standards, which sometimes may determine future’s cabling offerings standards for technological growth. To solve those problems, patch panel cable management is a wise choice in the physical plant.

Benefits of Patch Panel Cable Management

Patch panel cable management describes how fiber cables are connected and managed in a patch panel. Fiber optic patch panel is a very popular cable management tool used for wiring fiber cables in an organized way. And a correct patch panel cable management will deliver several advantages, which will enhance one’s network availability.

  • Reduced signal interference. Patch panel makes the cables in their corresponding positions, that means the cables will not interfere with each other. This can greatly reduce the crosstalk and interference between cables and ensure cables’ performance.

  • Improved serviceability. Patch panel allows technicians to recognize which cable should be changed or upgraded easily, minimizing working time and improving safety.

  • Cooler function. Thanks to the fix positions of cables in a patch panel, there is more space within a rack for air flowing. It brings down the whole equipment running temperature.

  • A roadmap for growth. Labels on the patch panel is an effective cable management which gives the direction to technicians to scale and adapt to changes in cabling infrastructure as well as reducing service time.

Tips for Patch Panel Cable Management

Here are several patch panel cable management tips for network installers.

Start with measuring. Remember the adage “Measure twice, cut once”. Measure the cables’ length needed for a patch panel carefully, to avoid messy cabling and expensive cable waste.

Don’t forget the labels. Just take some time to mark clearly on the connection point, which will pay off in the long run.

End with testing. After connecting cables via patch panel, test each cable by using a quality tester. If the test doesn’t pass 100%, reconfigure the cable. Believe me, this step will avoid lots of extra work in the end.

Patch Panel Cable Management Solutions

Patch panels are available in different categories based on various ports and designs. Confused about which one will work for your application? FS.COM is the right way for your cabling design. The following are the two products sold well from FS.COM.

24 port fiber patch panel is the best choice for small LAN cable management. This 24 port LC duplex fiber patch panel with a max cable capacity of 48 OS2 single mode fibers is suitable for 1U high 19 inch frame rack mount or cabinet. The ports are in the upright design with folded sides, providing a cold aisle orientation for cables.

24 port patch panel

Wall mount patch panel is a wise practice in the limited room. This fiber optic wall mount patch panel can hold 4 standard FHD series adapter panels. The max cables capacity of this type is 96 fibers. Equipped with slack spools, strain relief and silica gel stopple, the wall mount patch panel can protect cables bend radius and prevent dust.

wall mount patch panel cable management

FS.COM patch panel cable management tools are ideally designed to store, protect and terminate fiber cables and connectors. Need help with setting up a patch panel cable management? FS.COM is the definitive choice for all your optical fiber needs.



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Rack cabling may be the backbone of one’s information technology operation. All data or signal are delivered by the cables, so maintaining and running the critical circuits that are managed by these cables are of great importance. Any mishandled cables on the key link paths can lead to bad results, such as data transmission errors or performance issues. So how to organize and protect fiber cables? This 1U rack mount enclosure will help you. First, let’s look at the structure of 1U rack mount enclosure.

Structure of 1U Rack Mount Enclosure

Before we properly use fiber optic patch panel, we should have a better understanding of its structure. The following 1U rack mount patch panel is from FS.COM. It can support 4 fiber adapter panels or MTP/MPO fiber optic cassette. The top cover can be removed, which is convenient when installing the adapter or cassette. Inside the enclosure, there is nothing except two fixed screw holes position, which enables users to settle the panels or cassettes. Each rack mount enclosure is shipped with an accessory pack that includes mounting screws, spools, bend radius brackets for proper installation and cable ties for cable management.

1U Rack Mount Enclosure

Devices Used for 1U Rack Mount Enclosure Inside Cabling

There is a video to show clearly how 1U rack mount fiber enclosure inside cabling works. Here, we need 24 fiber optical splice tray, LC fiber adapter panel and spliced fiber pigtail.

Splice tray is a device used with other equipment to hold and protect optical fibers. This 24 fiber optical splice tray is equipped with self-contained slacking and spooling, mechanical splice holder, self-stacking modules with side latches and clear plastic hinged cover, designed to safely route and store optical fiber.

LC fiber adapter panel is designed for use with FHD series rack mount enclosures, providing a good protection for cables.

Fiber pigtails are used in terminating fiber cables through fusion splicing, in order to achieve accurate mounting for precision alignment of fiber optical components.

1U Rack Mount Enclosure Inside Cabling Installation

According to the video, the installation can be divided into two parts, fiber optic splice tray installation and cassette or adapter installation.

Step one, install fiber optic splice tray first. Undoing the screw to remove the top cover. Put 24 fiber optical splice tray into the 1U rack mount enclosure, and align the screws at the screw holes, then use a screw to fix it. Position another splice tray upright the fixed one. The 1U enclosure can hold 4 splice trays. Last, use a cable tie to make sure the fiber cords at the right location.

Step two, install cassette or adapter. Place slack spools over plastic rivets studs on sliding tray in a new 1U enclosure, and use screw to fix slack spools. Then insert LC fiber adapter panels into the enclosure. Unplug dust caps and connect the fiber pigtails. Note that make the pigtails go through the grommet for dust prevention. Finally, close the top cover.

FS.COM developed the 1U rack mount enclosure inside cabling installation to guarantee the smooth operation and efficient cable management of customers’ network. More details, please visit FS.COM.



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Most people know that data amount has grown exponentially due to the increase in mobile computing, the rise of social networks and the spread of information technology into almost all areas of private and work life. And for network operators, they require a structured cabling solution for fiber and copper as well as an efficient analysis and implementation of ongoing capacity expansion. However, someone may be still confused about why a structured cabling solution is essential?

Why We Need a Structured Cabling Solution?

There are four reasons to use a structured cabling solution, bend radius protection, cable routing paths, cable access, physical protection, because these four aspects can directly make influences on network’s performance.

  • Bend radius protection. When fiber bends exceed the specified minimum bend diameter can fracture, resulting in service failure and increasing network operating costs. Thus protecting the bend radius can enhance cables’ long term reliability and reduce signal attenuation.

  • Cabling routing paths. A right path is beneficial for decreasing the probability of bend loss and long term cable failures. So it’s important to make access to individual cables simple and safe.

  • Cable access. A good structured cabling should allow each cable to be plugged in or removed simply without damage. Besides, this will help to maintain bend radius protection.

  • Physical protection. All cables should be protected from accidental or physical damage, otherwise, the whole network may break down.

    structured cabling solution

FS.COM Equipment for a Structured Cabling Solution

FS.COM offers both horizontal cable management and vertical cable management so your network will not behave like a spaghetti bomb exploded near your servers. Here is some equipment you may use for building structured cabling.

  • 45U adjustable open frame rack. It’s typically used for server room and data center rack applications and designed to house 19inch standard mounting device.

  • Cable manager. Vertical cable manager and horizontal cable manager are available. We choose 45U dual sided vertical cable manager that can be used for both front and back cabling. And 1U metal horizontal cable manager with brush strip, it increases overall air flow within cabinet while helping to prevent equipment from overheating. The steel construction and black powder coat finish fights provides durability, resists corrosion. Besides, there are 1U metal horizontal cable manager with 5 D-rings and 1U plastic horizontal cable manager with finger duct, which can provide a large supported area to organize and route cables.

  • Equipment for connecting fiber optic cables such as 1U FHD fiber enclosure, FHU MTP-LC breakout patch panel, FHX ultra high density fiber enclosure. There are different types of fiber optic patch panel with different connectors, port numbers on FS.COM. In addition, standard or customized fiber adapters panels can also be found on FS.COM. You can choose based on your need.

  • Copper cabling equipment includes 1U shielded or unshielded patch panel, and 24 port blank keystone patch panel. These are used for connecting copper cables.

Installation of a Structured Cabling Solution

Here is a video gives a quick look at data center structured cabling solution of fiber or copper system.

First, place the 45U adjustable open frame rack in the spacious room. Then insert the 45U dual sided vertical cable manager to handle the cables vertically.

Second, deal with the fiber optic cables. Install the fiber optic equipment on the rack. Choose the suitable fiber patch panel to connect the matched fiber optic cables. For example, LC fibers should be linked to the LC adapter panel, otherwise, the network can not work.

Third, install the 1U copper patch panel on the rack. Then plug in CAT5e and CAT6 cables in turn. Make the copper cables go through the fingers of horizontal or vertical cable managers. This step aims at protecting cables and perfecting the structured cabling.

A good structured cabling solution helps increase network system performance and improve maintenance and serviceability of cables. With the right tools, you don’t need to worry about how to sort in the maze of sloppy cabling, you can build a network that is flexible enough to reconfigure and upgrade. Hope FS.COM will be your first choice to buy fiber equipment.



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As we know, proper cable management is part of one’s network’s performance and effectiveness. However, do you know what is the most difficult area of cable management? It’s the area on the equipment rack itself. You can manage the overhead cables by mounting them to the superstructure, and use a simple raceway-type solution to deal with the underfloor cables. But how to handle the rest cables vertically? Absolutely, You need a vertical cable manager. Vertical cable manager is used to house and organize fiber and copper cabling for good vertical cable management.

What Is Vertical Cable Manager?

Like the name implies, vertical cable manager is the equipment installed vertically. It can be installed on both sides of a rack or cabinet so that it can be called dual sided vertical cable manager. This kind of vertical cable management makes the utmost of the extra space of rack’s two sides to route fiber optic cables or patch cables effectively, while creating no impact on access to the equipment in the rack.

Dual Sided Vertical Cable Manager

Why We Use Dual Sided Vertical Cable Manager?

Some persons may ask, for cable management, I have selected the fiber patch panel, rack or cabinet to manage cables. Why do I still need to use the dual sided vertical cable manager? Let me answer it, because they are different cable management tools. Fiber optic patch panel is used to manage the equipment through the network cabling system. Data or signal can be delivered within a fiber patch panel, thus the data or signal can reach to the equipment successfully. A rack is the facility storing fiber patch panel, hard disk drivers and some computer correlation equipment. The dual sided vertical cable manager is just applied for tidying cabling which is along the sides of a rack. Remember, this equipment is not related directly with the network.

Using a dual sided vertical cable manager, technicians can snap off fingers, minimize downtime, maximize space, which brings a good network environment.

How to Use Dual Sided Vertical Cable Manager?

Here is a video to show you how the dual sided vertical cable manager works. It takes 45U 4.9" Wide Plastic Dual Sided Vertical Cable Manager from FS.COM as an example. This product uses an oval hole design, making it easy for front-to-back cable routing. Flexible fingers on both sides ensure optimum cable radius not to damage cables. And to protect cables from damage or dust, the cable manager uses a PVC cover. After knowing the features of the product, let’s see how it works.

First, install the dual sided vertical cable manager. Put the plastic cable guide part on a flat surface. Then place the other cable guide over the connector brackets and press firmly until fully seated.

Second, position the cable manager next to the rack. Use the inserted brackets mount the vertical manager solidity to the rack. You can couple two 22.5U sections together. After that, insert each door into the hinges and press it tightly until it quickly settles.

Last, route cables through fingers of the dual sided vertical cable management.

Conclusion

Dual sided vertical cable manager is the compact and versatile solution in the server room or data center. With rich experience in this realm, FS.COM is engaged in offering best and excellent quality products of vertical cable management.



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In cabling system, patch panel is used for cable management. But how? In short, when the patch cables are connected with telecommunication equipment, they have to go through the adapters in the patch panel to achieve the wiring function. Here, patch panel functions as the protector of cables or pigtails. Commonly, patch panel can be divided into different categories according to different ports, 12 port patch panel, 24 port patch panel and 48 port patch panel. And for small LAN network, the best option is 24 port patch panel especially the 24 port blank keystone patch panel.

What Is 24 Port Blank Keystone Patch Panel

24 port blank keystone patch panel, also known as the unloaded patch panel, is one option of 24 port copper patch panel. Typically, instead of the pre-positioned connectors design, it adopts the design of 24 individual empty holes which allow users install the connectors based on their own needs to link different copper cables. The empty holes are called keystone jacks that can be terminated to the cables such as shield or unshield CAT5e or CAT6, and then quickly inserted into the patch panel. This type of patch panel is designed to support the distribution of voice, data, and video for commercial or residential applications. FS.COM offers 24 port unshielded blank keystone patch panel, it’s suitable for any standard 19 inch relay rack, cabinet or wall bracket. With a flat style and clear port number, cable management becomes easier. And its removable cable manager will allow users to fix cables simply.

Reasons to Use Blank Keystone Patch Panel

Compared with the traditional patch panel, blank keystone patch panel enjoys several advantages, which actually encourage people to choose blank keystone patch panel.

  • More flexible design. No keystone jack is pre-installed into the blank keystone patch panel, so it can be customized based on specific application. FS.COM 24 port blank keystone patch panel accepts all RJ45 modules, which means technicians will not struggle with the decision whether to use CAT5e or CAT6 when they need the versatility of running different types of networking cable on one project. The blank keystone accommodates a wide variety of easy to snap-in modules, making configuration flexibility.
  • Better cost-effectiveness. The special design and easy installation make a low initial investment cost. Use one blank keystone patch panel, users can connect CAT5e and CAT6 simultaneously without buying theCAT5e patch panel and CAT6 patch panel. Besides, with pre-labeled ports and write-on areas on the front, the blank keystone patch panel helps trace and identify cable runs to stay in order.

Install 24 Port Blank Keystone Patch Panel for Ethernet Cabling

First, prepare the equipment. No extra tools are required except the essential equipment, 24 port blank keystone patch panel, CAT5e and CAT6 RJ45 insert modules.

Second, to fit one’s need, choose the proper quantity of different RJ45 modules. Then insert them onto the 24 port blank keystone patch panel one by one.

Third, screw the assembled 24 port blank keystone patch panel in a 19 inch rack. Plug the CAT5e cables into the CAT5e coupler keystone insert module and insert CAT6 cables into the CAT6 module, then handle the cables in sequence.

Last, take a visual inspection of the equipment to make sure everything works well.

Conclusion

24 port blank keystone patch panel provides connectivity for RJ45 insert modules data services, playing an important role in supporting the cloud. For your convenience, FS.COM offers different types of blank keystone patch panel to help technicians finish your networking project on budget and on time.



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تاریخ انتشار : چهار شنبه 23 خرداد 1397 | نظرات ()
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The world changes continuously, and data network has advanced much faster than anyone can keep up. Technicians are tired of dealing with the messy network, and may feel extreme anxiety about the inability to make an organized and structured cabling environment. Fiber optic enclosures are the glue that can connect cables together for delivering data or voice to multimedia and network services like LAN, WAN and ADSL. FS.COM 1U rack mount fiber patch panel cabling solution is the ideal method for easy cable management, including 1U patch panel, FHU 1U 24 port patch panel, and 1U lacer panel and lacing bar.

Function of Rack Mount Fiber Patch Panel

Rack mount fiber patch panel, as a cabling solution, can manage cables easily and connect the cabling distribution areas. This helps pave a way for a neat optical network approach. Often times, it’s used for connecting and disconnecting equipment. Therefore, a rack mount fiber patch panel is the key component for uptime, speed, performance and so on. In addition, with lots of ports in close proximity of the patch panel, cables here can be routed, labeled and monitored, offering a convenient routing option for IT staff.

cabling system

Cabling Solution Works With Fiber Patch Panels  

It’s no doubt that each successful project needs adequate preparation. So once you decide to set up a structured cabling system, it’s time to get right cabling component. Now, here are cabling solution tools offered by FS.COM for your reference.

1U rack mount fiber enclosure is designed with 1.55 SPCC steel rack and can hold up to 4 fiber adapter panels (FAPs) and MTP cassettes, allowing for 96 fiber cables installation with simple plug-n-play design.

FHU 1U 24 port patch panel serves as standard 1U 19 inches rack with high quality steel adapter. It’s ultra high density but with the correct spacing between the insert parts, for easy deployment. It can connect 96 fiber cables.

1U lacer panel and lacing bar provide multiple choices for your application by being separated into patch panel, d-rings, lacer panel and lacer bar. Together with FHD adapter panels and patch cords, it can make the end-to-end solution.

Installation Steps of 1U Rack Mount Fiber Patch Panel Cabling Solution

After preparing the tools, we should start to install. Cable installation can be a finicky thing. Therefore, to avoid potential network errors and reduce costly mistakes, here are steps for your reference.

  • Install 1U rack mount fiber enclosure. Place the mounting brackets at the desired position on the rack. Insert pre-terminated fiber optic cassettes into the enclosure as shown. Once mounted, fully seat fasteners to secure the cassettes.
  • Install FHU 1U 24 port patch panel. According to the video, first remove the front panel of the rack mount fiber enclosure, then mount FHU 1U adapter panel onto it. Tighten the screws to make sure it has been installed safely. At last, mount the tool on the rack.
  • Install 1U lacer panel and lacing bar. Use screws to fix the tools on the rack, placing the 1U metal lacer panel in front and put the lacer bar at the back. Then place the adapters on the lacer panel.

Finally, plug the fiber cables you need, and use zip ties to fasten the cables. A structured cabling system is completed. If installed properly, one system will last at 10 years and support 2 or 3 generations of fiber equipment.

 

 

 

Conclusion

1U rack mount fiber patch panel cabling solution is easy to install, which can actually manage the cables in an organized way. FS.COM offers a variety of patch panels with good quality to help your network achieve optimum performance. We are always focusing on providing products with superior performance and better services for our customers.



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As we know, with the development of technology and the improvement of the computing capacity of hardware, people’s requirements for better network is growing higher and higher. However, as men pursue the goals of high density and capacity in a network, cable management may get out of control. High density fiber optic enclosures are the key to achieving a high density and economical cable solution. FS.COM provides a series of FHD fiber patch panel to help technicians to make up a better data center. Today, we will introduce this type, 1U FHD rack mount enclosure.

What Is Rack Unit?

Some people may not aware of what the “1U” actually means. U is short for rack unit, which is created by Electronic Industries Alliance. It’s used for measuring the height of a computer or network device and designed to fit into a standard of 19 or 23 rack. One U equals 1.75 inches(44.45mm). Rack equipment or hardware takes the design of rack mounted, and is produced in multiples of 1.75 inches, like 1U, 2U or 4U. Racks are able to hold devices of those sizes.

FHD Rack Mount Enclosure

FHD rack mount enclosure is designed in 1U, 2U 4U sizes with high density, which can store, organize and manage fiber terminations, connections, and patching in all applications. Due to the different designs of rack units, the various rack mount enclosures hold different amount of fiber cables. For example, 1U FHD fiber enclosure can connect as many as 96 fiber cables, while the most connectivity of 2U FHD product is 192 and the 4U is 288. Usually, rack mount enclosure is mounted onto 19" and 23" standard relay racks. There are two kinds of rack mount enclosure, one is the slide-out type and the other contains a removable cover.

Features of FHD Rack Mount Enclosure

FHD rack mount enclosure can hold a panel enclosure and modular HD cassette, which allows users to integrate devices of 10Gb, 40Gb or even 100Gb speed seamlessly and easily. Compared with the standard enclosure, the product 1U rack mount HD enclosure uses the double spring latches. This new type of symmetrical door latch can divide force evenly when open the door. The acrylic door has been re-thickened that will provide top protection for the entire enclosure. In addition, in order to make it easy of assembling and dissembling the drawer by the buckle, this product takes more stable slide rail. It employs the black powder coated SPCC rugged heavy-duty steel housing, which contributes to enhancing the service life and preventing housing scratches and rust. With the increased port density in 1U of rack space, the FHD rack mount enclosure supports up to 96 fiber cables. And this allows technicians to increase density and upgrade technology without changing the existing equipment. With a wonderful design and proper size, 1U FHD rack mount enclosure provides a modular system for managing fiber connection.

Conclusion

FHD rack mount enclosure offers an efficient and reliable solution of high density interconnects and cross-connects. FS.COM is dedicated to providing global customers with the outstanding, standards-compliant products and services.



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با سلام.به دنیای لوکس بلاگ و وبلاگ جدید خود خوش آمدید.هم اکنون میتوانید از امکانات شگفت انگیز لوکس بلاگ استفاده نمایید و مطالب خود را ارسال نمایید.شما میتوانید قالب و محیط وبلاگ خود را از مدیریت وبلاگ تغییر دهید.با فعالیت در لوکس بلاگ هر روز منتظر مسابقات مختلف و جوایز ویژه باشید.
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