August 25, 2014

Fiber optic cables are suitable for carrying transmission

Automobile substantial rate, significant holding potential along with smaller sized preservation fees, fibers optic wire can be slowly updating the regular water piping insert. Fibers optic wire supplies increased weight for you to electromagnetic sounds via generators, Where To Buy Optical Fiber specially electrical power cords.

Fibers optic cords are generally well suited for holding indication in the two prolonged along with small mileage to plug community mobile phone devices, wire cpa networks, business plant life, university or college campuses, power firms along with place of work complexes.

Although fibers optic wire technique is incredibly corresponding on the water piping insert technique, OM4 fiber optic cable can be the application of lighting as being a indication channel throughout fibers optic cords. Fibers optic wire devices perform in partnership with water piping insert devices. A new transmitter is utilized in one particular stop in the fibers optic wire technique for you to come files returning upon your fibers optic collections. Your transmitter welcomes the knowledge while coded electric pulses via water piping insert, after that it functions along with transposes these people straight into similar lighting pulses employing ILD (injection-laser diode) as well as BROUGHT ABOUT (light-emitting diode). Your lighting pulses are going to be funneled in the fibers optic channel by the contact. A new source of light in close proximity to infrared wavelength involving 850nm is utilized pertaining to quicker program plans along with 1300nm pertaining to extended mileage in adjustable method fibers. Even though in single-mode fibers, lighting of around 1300nm is utilized pertaining to quicker mileage along with 1500nm pertaining to extended mileage.

A new rule named "total interior reflection” claims any time your viewpoint involving chance meets an essential price, Plastic Optical Fiber are unable to get rid of your wine glass along with alternatively the idea bounces last. This specific rule makes possible your indication involving data employing lighting pulses inside fibers optic collections.

Your key in the fibers optic wire includes quite natural along with crystal clear product to the uncomplicated depiction involving lighting. Generally wine glass is utilized because key in the fibers optic wire. On the other hand plastic-type material may also be used because key pertaining to small long distance indication. Your wine glass in the fibers optic wire is actually often made out of natural silica along with resources similar to chalcogenide, fluorozirconate along with fluoroaluminate that happen to be well suited for extended wavelength infrared purposes.

Fibers optic wire operates as being a guidebook on the lighting derived from one of stop in the wire on the various other. Your transmitter transports your source of light while Don and doff pulses and they are converted to digital camera 0s along with 1s with the lighting vulnerable phone with the various other stop. The strength of your lighting can be sluggish immediately after journeying some long distance which enable it to always be focused by making use of repeaters.

Really the only negative aspect involving fibers optic wire will be the substantial fees as compared with your water piping insert. On the other hand using improvement throughout engineering it can be turning out to be more affordable after a while. Fibers wire can be labeled straight into single-mode, multi-mode along with plastic-type material optical fibers (POF).

Single-mode wire is usually acknowledged with the labels single-mode optical wavelength, mono-mode optical fibers along with uni-mode fibers. The idea is composed of one follicle wine glass fibers using height starting from 8. 3 for you to 10 microns the other method involving indication. Your somewhat slim height makes it possible for merely one method for you to propagate normally 1310nm as well as 1550nm. Single-mode cords are generally providers pertaining to larger bandwidths when compared with adjustable method fibers, nevertheless have to have your lighting to get involving slim spectral wider. It can be traditionally used throughout purposes wherever files can be always be routed in distinct frequencies.

Though single-mode wire can be costlier when compared with adjustable method cords, but it really gives a larger indication charge and also a long distance 50 periods bigger than your adjustable method cords. Your distortion caused by your overlapping involving lighting pulses is actually taken away throughout single-mode fibers optic cords automobile smaller key along with one lighting say. The minimum method could propagate at the wavelength normally inside variety of 1300nm for you to 1320nm throughout single-mode fibers optic cords.

Multi-mode wire carries a height bigger than your single-mode cords starting from 50 microns for you to 100 microns. The idea transports files in data transfer rates (10Mbps for you to 100Mbps) in (275m for you to 2000m) mileage. Distributed evenly lighting dunes take a trip in many walkways inside key involving Fibers optic wire involving normally 850nm as well as 1300nm. The standard diameters in the key are generally 50, sixty two. 5 along with 100 microns. Your negative aspect involving multi-mode wire will be the distortion involving indication in extended mileage on account of a number of walkways involving lighting, producing decrease of data.

The application of fiber-optics ended up being granted immediately after 1970 while Corning was able to develop a wine glass fibers using 20dB/km decrease of files. It turned out determined and then that this optical fibers may be used by telecommunication indication if your wine glass inside fibers optic wire can be so natural that this attenuation can be below 20dB/km. Fibers optic wire ended up being over the counter mounted throughout 1977.

The application of fibers optics features greater speedily after a while along with is considered the central source involving telecommunication sector. Fibers optic wire can be speedily updating your water piping insert throughout most aspects of the globe. Several companies similar to wire firms get included his or her wire technique using fiber-optics even though have developed a new fiber/coaxial a mix of both, which in turn let the integration involving fibers optic wire using coaxial wire with the neighboring spots. Business plant life, place of work complexes, educational facilities, colleges and universities include the number of labels that will commonly employ fibers optic wire of their LAN devices. Fibers optic wire can be becoming more popular throughout electrical power firms pertaining to keeping track of his or her electrical power grid along with transmission devices.

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August 14, 2014

Fiber Optic Cable Constructions Outlines

Fiber optic cables are available with a wide variety of constructions to match the unique requirements of virtually any AV installation. These cables may contain just one fiber or hundreds of fibers and may be designed for indoor or outdoor applications. now we mainly examines outlines which cable constructions are appropriate for each topology.

Indoor Simplex and Duplex Cables

A simplex fiber optic cable, contains a single, tight buffered fiber surrounded by aramid yarn strength members. At the center of the cable, the 125 um glass fiber is surrounded by a 250 um buffer coating. A 900 um secondary buffer is added for additional protection. The aramid yarn is made from Kevlar, the same material used by law enforcement and the military for body armor. It provides additional protection and strength for pulling. A 2mm to 3mm outer jacket surrounds the yarn and buffered fiber for a final layer of protection. As mention simplex fiber optic cable, we have to recommend you 10G OM4 simplex fiber optic cable from fiberstore. As shown in following picture.

Multimode OM4 fiber optic cableis the highest level of multi-mode fiber optic cable that you can use. The om4 multi mode fiber cable has the highest bandwidth possible and therefore can be used in networks where an overwhelming or extreme amount of data transfers will take place. The multimode om4 fiber, or om4 wire, will definitely support all of your businesses data needs.

A duplex zip-cord fiber optic cable, as shown in Figure 12, consists of two simplex fibers that are bound together, and can be easily separated by pulling apart. Each buffered fiber is surrounded by aramid yarn strength members and a jacket. A thin strip of jacket material down the middle holds the two fibers together.

Since most AV signals travel along one or two fibers, simplex and duplex cables are the most common fiber optic cables used in AV systems. They are used as patch cords and are often installed in horizontal spaces between telecom or equipment rooms and work areas. Available in both riser and plenum rated varieties, they can be installed within walls, under raised floors, and in air return spaces. The small size and light weight make these cables easy to pull. The individually jacketed and buffered fibers enable easy field termination, and provide durability for routine handling.

Indoor Multi-Fiber Cables

A breakout fiber optic cable contains multiple simplex cables within a common outer jacket as shown in Figure 13. The simplex fibers are bundled around a central dielectric element for additional strength. The outer jacket can be stripped back using an integrated rip cord to expose the simplex fibers for stripping and termination. Once terminated, the individual fibers can be plugged directly into a patch panel or terminal equipment. The jacketing material can be riser or plenum rated for installing in walls or air return spaces.

Breakout cables are used anywhere multiple fibers must be run from one point to another. Since each fiber is protected by strength members and a jacket, breakout cables are often used in horizontal spaces between work areas and a telecom or equipment room. They are also used within the building fiber backbone for connecting the telecom room to the equipment room in a hierarchical topology. Breakout cables can be used between patch panels or plugged directly into equipment.Bulk 9/125 Singlemode Fiber Optic Breakout Cable save up to 30% off in fiberstore now. Our breakout cable is OFNP, plenum rated so it can be placed in ceilings and other plenum air spaces. This series features a single outer jacket which surrounds and protects the individually jacketed fibers within. Our bulk fiber optic cable is compatible to international and industrial standards, we are China manufacturer and China supplier of good price bulk fiber optic cables.

breakout indoor cable

Plastic Optical Fiber(POF)

Plastic optical fiber is a type of optical fiber that uses polymethylmethacrylate (PMMA) as the core material that allows the transmission of light. POF is often called consumer optical fiber as it is a low-cost optical fiber alternative that is easier to use than glass optical fiber. It sustains a data transfer speed of 2.5GB/s, which isn’t as fast as glass optical fiber, but is much faster than traditional copper wire.

In comparison to traditional optical fiber, PoF is much larger in diameter which results in lower data rates making it most suitable for high bandwidth signal transmission over short distances. Unlike glass, plastic fiber can easily be cut and bent to fit in hard-to-reach places and the larger core also allows for slightly damaged fiber to work. POF products are most commonly used in medical, automotive, home networks, as well as digital audio and video interfaces. Our Plastic Fiber Optic Cable is constructed of a single acrylic monofilament and are most efficient when used with visible red status indicator light sources.A wide range of fiber optic tips are available.

Fiber optic cables provide unique advantages in an AV system, particularly in secure and long distance applications. Choosing the proper cable depends upon the number of fibers required, installation location, topology, and the overall design of the system. Cable constructions are available for both indoor and outdoor applications to provide a solution for virtually any AV system. Color coding provides an easy identification method for multi-fiber cables.

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August 12, 2014

10GbE Cables In Network Cabling

There are two basic cable types available for 10GbE applications: copper and fiber-optic cables. As interface speeds increase, expect increased usage of fiber optic cables and connectors for most interfaces. At higher Gigabit speeds (10Gb+), copper cables and interconnects generally have too much amplitude loss except for short distances, such as within a rack or to a nearby rack. This amplitude loss is sometimes called a poor signal-to-noise ratio or simply "too noisy”

Fiber-optic cables

There are two general types of fiber optic cables available: single-mode fiber and multi-mode fiber.

* Single-mode fiber (SMF)—typically with an optical core of approximately 9 μm (microns), has lower modal dispersion than multi-mode fiber and can support distances of at least 10 Km and as high as 80-100 Km (Kilometers) or more, depending on transmission speed, transceivers and the buffer credits allocated in the switches.

* Multi-mode fiber (MMF)—with optical core of either 50 μm or 62.5 μm, supports distances up to 600 meters, depending on transmission speeds and transceivers. Meter-for-meter, single-mode and multi-mode cables are similarly priced. However, some of the other components used in single-mode links are more expensive than their multi-mode equivalents.

Meter-for-meter, single-mode and multi-mode cables are similarly priced. However, some of the other components used in single-mode links are more expensive than their multi-mode equivalents.

When planning data center cabling requirements, be sure to consider that a service life of 15 to 20 years can be expected for fiber optic cabling, so the choices made today need to support legacy, current and emerging data rates. Also note that deploying large amounts of new cable in a data center can be labor- intensive, especially in existing environments.

There are different designations for fiber-optic cables depending on the bandwidth supported.

* Multi-mode: OM1, OM2, OM3, OM4
* Single-mode: OS1

OM3 and OM4 are newer multi-mode cables that are "laser optimized” (LOMMF) and support 10GbE applications. OM3 and OM4 fiber optic cable are also the only multi-mode fibers included in the IEEE 802.3ba 40G/100G Ethernet standard that was ratified in June 2010. The 40G and 100G speeds are currently achieved by bundling multiple channels together in parallel with special multichannel (or multi-lane) connector types. This standard defines an expected operating range of up to 100m for OM3 and up to 150m for OM4 for 40GbE and 100GbE. These are estimates of distance only and supported distances may differ when 40GbE and 100GbE products become available in the coming years. See the Connector Types section below for additional detail.

Newer multi-mode OM2, OM3 and OM4 (50 μm) and singlemode OS1 (9 μm) fiber-optic cables have been introduced that can handle tight corners and turns. These are known as "bend optimized,” "bend insensitive,” or have "enhanced bend performance.” These fiber-optic cables can have a very small turn or bend radius with minimal signal loss or "bending loss.” The term "bend optimized” multi-mode fiber (BOMMF) is sometimes used. OS1 single-mode fiber optics are used for long distances, up to 10,000m (6.2 miles) with the standard transceivers and have been known to work at much longer distances with special transceivers and switching infrastructure. Each of the multi-mode and single-mode fiber optic cable types includes two wavelengths. The higher wavelengths are used for longer-distance connections.

Indoor vs. outdoor cabling

Indoor Cable is suitable for indoor building applications. Outdoor cables, also known as outside plant or OSP,are suitable for outdoor applications and are water (liquid and frozen) and ultra-violet resistant. Indoor/outdoor cables provide the protections of outdoor cables with a fire-retardant jacket that allows deployment of these cables inside the building entrance beyond the OSP maximum distance, which can reduce the number of transition splices and connections needed.

Fiberstore offers an extensive line of off the shelf bulk fiber optic cable to address your fiber installation needs. We stock 62.5/125, 50/125, and 9/125 bulk fiber optic cable in simplex, duplex (zip cord), breakout, and distribution styles.

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August 11, 2014

About the fiber optic cables parsing in anatomy

There’s a lot of emphasis within the government sector with the AV industry on using optical fiber because of its ability to prevent, or otherwise deter, security intrusions. Optical fiber also eliminates some other problems inherent in twisted-pair cable, including near-end crosstalk (NEXT) and electromagnetic interference (EMI).

While fiber optic cable itself is cheaper than an equivalent duration of copper cable, fiber optic cable connectors and the equipment needed to install them have typically been more expensive than their copper counterparts. By having an increased emphasis on protecting digital information, however, optical fiber is becoming more cost-competitive over the last few years. Armored Fibre Cable in Fiberstore is also popular.

The ability of fiber optic cable to meet the evolving needs of government AV/IT end users is a good reason behind integrators to know a little more about it. Outdoor Fiber Optic cable is common used in our daily life. Here is a look at the anatomy of a fiber optic cable.

Basic Construction of a Fiber Optic Cable

A fiber optic cable consists of five main components: core, cladding, coating, strengthening fibers, and cable jacket.

Basic Construction of a Fiber Optic Cable

Core: This is the physical medium that transports optical signals from an attached light source to a receiving device. The main is a single continuous strand of high-purity glass or plastic whose diameter is measured in microns (lower than the diameter of a human hair). The larger the core, the more light the cable can carry, which correlates to a higher data transfer rate.

Cladding: It is a thin layer that's extruded over the core and can serve as the boundary that contains the light waves (more about this later), enabling data to travel through the length of the fiber.

Coating: It is a plastic coating within the cladding to reinforce the fiber core, help absorb shocks, and provide extra protection against excessive cable bends. This doesn't have any effect on the optical waveguide properties, though.

Strengthening fibers: These elements help protect the core against crushing forces and excessive tension during installation. The types of materials can range from Kevlar, to wire strands, to gel-filled sleeves. Sometimes light-absorbing glass is added between your fibers, to prevent light that leaks out of one fiber from entering another. This reduces cross-talk between your fibers.

Cable jacket: This is the outer layer, or sheathing, from the cable. Its purpose is to protect the cable from environmental hazards, including construction work, fishing gear, as well as sharks, which are often attracted to the electrical fields created by signal conductors to repeaters.

Now there is a good news that I think you need to know, Fiberstore is doing with 30% discount of the price on fiber optic cables and if you want to buy Fibre Optic Cable, Fiberstore is your best choice.

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August 06, 2014

Fiberstore Cisco Compatible SFP+ Modules Are on Hot Sale

As we know, Transceiver SFP+ is the updated version of the Transceiver SFP, it supports the data rates of up to 10G/s fiber channel and Ethernet applications. Compared to the XENPAK and XFP modules, SFP+ makes more circuitry to be implemented on the host board. Now, 10G Ethernet is becoming the interconnect of choice in data centers for providing important improvement of bandwidth, latency, scalability, reliability and application performance.

10G SFP+ module is multi-functional fiber optical transceivers for 10G/s data transmission applications at 850nm, 1310nm, and 1550nm. The SFP+ transceivers are suitable for data com and storage area network (SAN/NAS) applications based on the IEEE 802.3aa and fiber channel standards.

Key Features of 10G SFP+:Compliant with MSA SFP+ Specification SFF-8431Built-in Digital Diagnostic FunctionOperating data rate up to 11.3Gb/s;10G Ethernet compliance;Average Output Power:-6~-1dBmPower Dissipation<1.0WOperating Case Temperature Standard : 0℃to +70℃

Fiberstore supplies different kinds of 10G SFP+ fiber optical transceivers, including SFP+ 10km, SFP+ 20km, SFP+ 40km, CWDM SFP+, DWDM SFP+, BiDi SFP+, and series of Compatible Brands such as Cisco compatible, Juniper Compatible, HP compatible SFP plus transceivers. And the Cisco 10G SFP+ modules among the hottest ones.

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Cisco SFP-10G-SR
The Cisco SFP-10G-SR module supports a link length of 26m on standard FDDI-MMF. Using 2000MHz*km MMF (OM3)can reach up to 300m link lengths and 4700MHz*km MMF (OM4), up to 400m link lengths are possible.

Cisco SFP-10G-SR-X
The Cisco SFP-10G-SR-X is a 10GBASE-SR module for extended operating temperature range. and the other functions are the same as Cisco SFP-10G-SR.

Cisco SFP-10G-LRM
The Cisco 10GBASE-LR SFP Module supports link lengths of 220m on standard FDDI grade MMF. To ensure that specifications are met over FDDI-grade, OM1 and OM2 fibers, the transmitter should be coupled through a mode conditioning patch cable.

Cisco SFP-10G-LR
The Cisco 10GBASE-LR SFP Module supports a link length of 10km on standard SMF.

Cisco SFP-10G-LR-X
The Cisco SFP-10G-LR-X is a multirate 10GBASE-LR, 10GBASE-LW and OTU2/OTU2e module for extended operating temperature range. It supports a link length of 10km on standard SMF.

Cisco SFP-10G-ER
The Cisco 10GBASE-ER Module supports a link length of up to 40km on standard SMF.

Cisco SFP-10G-ZR
The Cisco SFP-10G-ZR is a multirate 10GBASE-ZR, 10GBASE-ZW and OTU2/OTU2e module. It supports link lengths of up to about 80km on standard SMF. This interface is not specified as part of the 10G Ethernet standard and is instead built according to Cisco specifications.

Fiberstore, known as a leading supplier of Cisco compatible SFP, offers a great variety of Cisco compatible SFP+ modules and it can customize the completely Cisco compatible 10G SFP+ transceiver according to our customers’ requests. And now there is a great news that Fiberstore is doing with 30% discount of the price on 10G SFP+ modules, if you want to know more information welcome to enter into our store.

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August 04, 2014

Why SFP Modules are Very Popular in the Telecommunication Industry?

SFP transceivers(small form-factor pluggable) are modules act for connecting the electrical circuitry from the module using the optical or copper network, popular for both telecommunication and knowledge communications applications. The SFP transceiver isn't standardized by official standards body, but instead is per a multi-source agreement (MSA) between competing manufacturers.

Advantages

The SFP was created after the GBIC interface, and allows greater port density (quantity of transceivers per cm across the edge of a parent board) compared to GBIC, which is why SFP can also be known as mini-GBIC.

SFP transceivers are anticipated to perform at data speeds as high as five gigabits per second (5 Gbps), and perhaps higher. Because SFP modules can be simply interchanged, electro-optical or fiber optic networks could be upgraded and maintained more conveniently than continues to be the case with traditional soldered-in modules. Instead of replacing a whole circuit board containing several soldered-in modules, just one module can be taken off and replaced for repair or upgrading. This could result in a substantial financial savings, both in maintenance as well as in upgrading efforts.

Types

SFP Transceivers have a diverse range of detachable interfaces to multimode/single-mode fiber optics, that allows users to decide on the appropriate transceiver based on the required optical range for that network. SFP transceivers are very different types dealing with different wavelength for a number of kinds of distances. Signal transmitting rate of those modules vary from 100Mbps up to 4Gbps or even more, working distance of those SFP transceiver modules could be from 500 meters to 100 kilo meters, working wavelength of various SFP modules are usually 850nm, 1310nm and 1550nm, there's also CWDM type SFP transceivers available. For instance, SX SFP use 850nm for optimum 550 meters, LX SFP use 1310nm for optimum 10km, ZX SFP could reach 80km.

There's also Copper SFP Transceiver with copper cable interfaces, which permit a host device designed primarily for optical fiber communications also to communicate over unshielded twisted pair networking cables. Modern optical SFP transceivers support digital diagnostics monitoring (DDM) functions, also referred to as digital optical monitoring (DOM). This selection gives users the opportunity to monitor the real-time parameters of SFP, for example optical output power, optical input power, temperature, laser-bias current and transceiver supply voltage. DOM function for SFP is optional, it help users detect real-time SFP working status.

Applications

SFP interfaces a network device motherboard (for any switch, router, media converter or similar device) to some fiber optic or copper networking cable. SFP transceiver supports communications standards including SONET, Gigabit Ethernet, Fiber Channel along with other communications standards. Additionally they allow the transport of fast Ethernet and gigabit Ethernet LAN packets over time-division-multiplexing-based WANs, along with the transmission of E1/T1 streams over packet-switched networks.

Fiberstore provides several types of SFP fiber optic transceivers, including single mode SFP, multimode SFP and Copper SFP, with assorted working wavelength and processes. We also supply CWDM SFP(including different wavelengths, such as CWDM-SFP-1570, CWDM-SFP-1590, CWDM-SFP-1610), DWDM SFP and cisco sfp 10g fiber transceivers. The compatible SFP brand transceivers we provide include Cisco sfp transceiver, HP sfp transceiver, 3Com sfp, Juniper sfp, Foundry sfp, Extreme sfp, Netgear sfp, Force10 sfp, etc. There is a good news is that Fiberstore is making with 30% discount of the price on most fiber optic products and if you have some needs, welcome to visit our Fiberstore.

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August 01, 2014

Cisco GLC-SX-MM/GLC LH SM Transceiver Compatible 1000BASE-SX SFP Transceiver Module

SFP(Small Form-Factor Pluggable Plus) fiber transceiver modules make the fiber optic network or fiber-Ethernet network easier to upgrade or maintain, users can replace a single SFP module during the process instead of replace the whole board with many modules on it. SFP transceivers are different types working with different wavelength for various kinds of distances. SX SFP use 850nm for max 550 meters, LX SFP use 1310nm for max 10km, ZX SFP could reach 80km. There is also copper SFP that use a RJ45 interface. DOM function for SFP is optional, it help users detect real time SFP working status SFP transceiver is an innovative, next-generation transceiver module.

Cisco SFP Modulesis also hot plugable, it is an upgraded version fiber optic transceiver, it represents the trend to be smaller and more flexibility. Cisco Compatible SFP includes a wide range of the transceivers with different working wavelength and distance. In the following list I will introduce you some information about GLC SX MM Transceiver and GLC LH SM Transceiver. (Related products in: CWDM-SFP-1590, CWDM-SFP-1610)

GLC SX MM Transceiver

Cisco GLC-SX-MMis 1000Base-SX SFP fiber optic transceiver for multimode fiber and it works at 850nm wavelength. GLC SX MM SFP is hot swappable module that fit for Gigabit Ethernet port or slot and link the port with the network, whose interface is dual LC for optical. GLC SX MM is about 1.3 cm x 5.7 cm x 0.9 cm in dimension, and 75g in weight. The GLC SX MM transceivers are compatible with SFP Multi-Source Agreement (MSA), 1000Base SX standard for Gigabit Ethernet and SFF-8472.

The GLC SX MM transceiver consists of three sections: a VCSEL laser transmitter, a PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit. All modules satisfy class I laser safety requirements. The GLC SX MM SFP transceivers are high performance, cost effective modules supporting data-rate of 1.25Gbps and 550m transmission distance with MMF.

GLC LH SM Transceiver

Cisco GLC-lH-SM SFPfiber optic transceiver working at 1300nm wavelength, GLC LH SM is suit for both multimode optical fiber and single mode optical fiber, it is small size transceiver with LC interface and it is hot swappable, easy to use, no need further configuration. GLC LH SM is used in Gigabit network and its max working distance is 10km over SMF or 550meters over MMF, data transfer rate at 1Gbps and it works based on IEEE 802.3z standards. The GLC LH SM transceiver consists of three sections: a FP laser transmitter, a PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit. All modules satisfy class I laser safety requirements. SFP fiber optic transceivers are upgraded version of its former GBIC transceivers, Cisco SFP transceiver adopt LC interface and its size is only about half of GBIC, thus Cisco SFP fiber transceivers fit for dense installations.

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July 30, 2014

Cisco displays the hybrid wireless network prod

Cisco will exhibit intelligent software and small cellular hardware kind of new products within this week's MWC exhibition, the item will allow network operators to easier extend wireless network itself. We provide you with the news, the sale of CISCO GLC-SX-MMD offers.Cisco recently the acquisition of a number of small mobile technology company, will likely be held in 25 days this month's MWC exhibition, Cisco has launched a brand new Quantum software product mix, display the acquired achievements.Many product portfolio using a small cellular hardware device, that's made to result in the wireless network providers to raised network data for growth analysis and monetization, Cisco said, "this might make the mobile network data to get better." The data from 3G, 4G and WiFi network, reaches mobile or fixed network connection, real-time data generated among users.Based on Cisco said, this season to 2017, mobile data traffic will grow 13 times. By 2017, you will observe devices to gain access to network, including cell phones and machine to machine communication connection.Using Quantum software, wi-fi providers possess a more profound knowledge of their own network of knowledge, to be able to obtain better network programmability, and network service quality. Providers can abstraction and research to the data better, to provide users with satisfactory service, and grow their own 3G, 4G, WiFi and small cellular hybrid network.Quantum network abstraction suite Quantum software within the product mix, might have towards the company to have an instant a network abstraction layer, enabling it for the collection of data within the network, as well as the data were gathered and coordination; Quantum strategy kit could be a measure for providers, network regardless of the sort of server management, monetization and customization platform; Quantum analysis suite allows providers more conveniently using the real-time data and historical data to build up strategies, which supplies visualization analysis and programmable interface; wide area network coordinated suite provides a convenient control over network traffic along with the capacity from the tool for providers, to boost the network efficiency, reduce the cost of.Cisco cellular hardware small should better accessibility network, it will help such as Verizon wireless carrier and AT&T wi-fi providers to facilitate the introduction of its network.Additionally, Cisco may also exhibit ASR 901S router inside the MWC exhibition. Obviously, if you would like Cisco GLC-lH-SM SFP, you are able to follow the link.MWC: Cisco displays the hybrid wireless network products.6be5dc6f9395c41a0dbc80bf66307615.image.5

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July 29, 2014

Special Instructions of Cisco SFP Transceivers

The Cisco SFP transceivers are designed to change the serial electric signals to the serial optical signals which mainly maintain gigabit Ethernet, includes fiber channel and SONET/SDH, it provides a beneficial way, adopt the method of resolution in the university campus, data center, metropolitan areas, ring networks and store web site.

Ethernet converter net from one end to another in order to let more systems with different thread accurately corresponding associated Ethernet cable. This is likewise being used within the similar set up once there are several computers functioning with varying types of technology. In addition, optical fiber cable can defy from any type of electronic equipment, mobile phones and wireless complex which usually don’t like with the traditional Ethernet, such equipment which was exposed loses the signal interference. In this case, as converted into optical fiber Ethernet, because it provides a quick and excellent signal. The SFP is by the maritime safety administration or from IBM, lucent, Siemens, ample/TYCO and Infineon Multi-source is unqualified, this is the main content of the network vendor management. The SFP transceivers have the following advantages:

1. For reasons of that you can insert, optical fiber interface, still can modify on the end pace of the creation of the card.

2. It is able to accommodate a lot of connector interface or a combination of LX SFP and SX.

3. Since the basket of SFP transceiver is placed in the PCB in order to accept stated, it can reduce the additional program, thereby reducing the costs. As a result, it made it easier to reconfigure and replacement.

4. Because of optical element, SFP transceivers enhanced reliability. It allows the use of higher the temperature.

Cisco SFP is interchangeable, in addition to its flexibility, from a wide range of Cisco project. It can be used with Cisco 1000BASE-TX, 1000BASE-SX, 1000BASE-LX/LH, 1000BASE-EX, 1000BASE-ZX, or 1000BASE-BX10-D/U in a port through the port joint.
Cisco SFP modules need to connect the one-piece structure to another, because it plays an important role in the most commonly used information technology business.

The SFP transceiver modules are generally hot-pluggable I/O devices that can easily get plugged into the module sockets. The transceiver efficiently connects the electrical circuitry of the module to the copper or optical network. Users can utilize any combination of SFP transceiver modules that the Cisco transceiver device assists. The only thing to take note here is that every port should match the wavelength requirements on the other end of the cable and that the cable should not exceed the concerned cable length in order to ensure consistent communication. It is recommended that users utilize the SFP transceiver Cisco modules only on the Cisco instrument. Every single Cisco SFP transceiver module assists the Cisco quality identification that enables a Cisco router or switch to identify and authenticate that the transceiver module is examined and approved by Cisco. Now I introduce SFP-10G-ZR compatible with Cisco devices in Fiberstore. it is cheaper than Cisco company. The SFP-10G55-80-CO series single mode transceiver is small form factor pluggable module for duplex optical data communications of 10G. This transceiver offers the same function with Cisco SFP-10G-ZR and it is fully compatible with Cisco devices. It is with the SFP+ 20-pin connector to allow hot plug capability.This module is designed for single mode fiber and operates at a nominal wavelength of 1550 nm.

zr.550x550

Fiberstore was founded in 2001, our focus is to provide high quality fiber interface, SFP compatible modules, GBIC LAN and WAN networks and related products. Fiberstore believes that the road to success is through excellence and customer service. And now Fiberstore in order to feedback customer of their comings, it is making with 30% discount of the price, it you want know more information about these fiber optical transceivers welcome to visit our Fiberstore.

Article Source: http://www.fiber-optical-networking.com/

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July 25, 2014

MPO and MTP Connectors For Plug-n-Play Systems

Today's Data Centers are critical to the IT infrastructure of most large enterprises. Thanks to their quick-connect design, Plug-n-Play (PnP) fiber systems are becoming the prevalent choice for modern Data Centers. With Plug-n-Play, installation is fast and easy, and network downtime is minimized during expansions, scheduled maintenance, and emergency restoration procedures.The mainstays of modern PnP Systems are the relatively new multi-fiber connectors that allow for the interconnecting of several fibers at a time in a very dense footprint.

MPO stands for "Multi-Fiber Push On” and was originally designed by NTT. The design is based on the MT (mechanical transfer) ferrule. It is defined by the Telecommunications Industry Association's (TIA) Fiber Optic Connector Intermateability (FOCIS 5) document, the TIA 604-5B Standard, and internationally by the IEC-61754-7 standard. The MTP connector is the "latest-generation MPO” connector with flaws fixed and features added in order to improve reliability and performance. Some improvements include lower insertion loss, the possibility of restoring the tip by polishing it and the use of interferometers for better quality control(2).The MTP's superior performance allows for optical insertion losses of 0.5dB or less. Figure 1 shows superior mechanical test performance results, another of the clear advantages of the MTP connector.

MTP

Both connectors are intermateable, meaning it is possible to connect an MTP to an MPO and vice-versa. Each connector will support a number of fibers, the most common being 12, while some versions are available with 24 fibers or even more. However, one should consider whether the space savings and easy connection convenience provided by connectors terminating more than 12 fibers will potentially impact reliability. Servicing a single fiber that may have been damaged will require the disconnecting of all other fiber channels linked through that connector. MTP and MPO connectors have guide pins to ensure proper fiber alignment and minimize optical insertion loss.These pins are present on the "male” connectors only. However, MTP connectors can be easily converted from "male” to "female” by removing the pins and, conversely,"female” to "male” by adding the pins.

Fiberstore has announced the release of a full suite of MPO MTP products designed to support the next generation of high-density fiber networks in data centers. The new product group includes MPO MTP Fiber Optic Cables, trunk assemblies, fan-out assemblies and related distribution hardware.

Fiberstore series rackmounted patch panel is designed to manage and house easy-plug MTP/MPO to LC fiber cassette modules, for connecting plug-and-play pre-terminated high density MTP / MPO Fiber cabling system.This solution contributes to greater network availability that especially suitable for SAN, LAN and Data Center applications. Each easy-plug MPO MTP cassette is accommodated with a 12/24-fiber MTP / MPO based fiber assemblies, and pre-loaded with LC adapters in different fiber modes for your choices.

Fiberstore High Fiber Count Plug-and-Play Trunks provide the backbone cabling for the TrueNet Plug-and-Play system. These high count fiber trunk cables come pre-terminated with highdensity MTP/MPO connectors on both ends and provide an easy and efficient way to pull large numbers of fibers at one time to help in the rapid deployment of the TrueNet Plug-and-Play system either in the data center or Local Area Network (LAN). Each fiber trunk cable has custom breakouts designed to work with ADC TrueNet Plug-and-Play connectivity. The Fiberstore High Fiber Count Trunks can simply be plugged into any plug-and-play cassette in the optical distribution frame or fiber enclosure which eliminates the need for on-site fiber termination and preparation. Data Centers host expensive equipment and process very sensitive information for networks that must be always available.This level of reliability imposes stringent requirements on a Data Center's infrastructure. A Data Center manager must be able to quickly perform adds, moves, and changes, as well as restorations in case of an outage. A very good analogy is a racecar making a pit stop and being serviced as quickly as possible. In a data center hosting mission critical applications, every second also counts. Therefore, the ability to quickly connect new equipment or service existing equipment is crucial. To accomplish this "quick-connect” capability, the fiber optics industry formulated a new de facto fiber standard, sometimes referred to as "Plug-n-Play” (PnP), based on an existing philosophy already adopted by many vendors in the computer industry. PnP systems are based on trunk cables, cassettes, harnesses, etc, which are comprised of pre-connectorized fiber optics elements.

Another solution for achieving quick connection is the use of multi-fiber connectors. By connecting several fibers at once, the installer or administrator saves a considerable amount of time. Since the time to connect a 12-fiber MTP connector is the same as to connect a single fiber connector (also called a discrete connector) one can make the same number of connections in roughly 1/12th the time. A common data center can easily reach 1,000 fiber terminations or more. Consequently, the time-savings can be significant. Because PnP systems also allow for pre-engineered solutions, it is possible to determine cable lengths during the planning phase and, therefore, order only what is needed.This not only helps saving money on fiber infrastructure but also helps to alleviate cable congestion under the raised floor. Since one of the main issues data center administrators have to face is cooling increasingly dense computing infrastructure, the use of a preengineered PnP system also helps to optimize cold air distribution. As previously mentioned, the building blocks of a PnP system are cable trunks, harnesses, PnP modules (often called cassettes), patch cords (also called jumpers) and accessories such as patch panels and enclosures. Multi-fiber connectors are present in virtually all these elements, and, along with small form factor connectors such as the LC, allow for reducing the "real estate footprint”in the data center.A solution using MTP and small form factor connectors can be almost twice as dense as a solution using previous generation optical connectors.Therefore, more floor space is left available for mission-critical equipment such as switches, routers, servers and storage.

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July 24, 2014

MTP/MPO System Solutions - High Density Connectivity in the Data Center

MPO/MTP system solutions are steadi-ly gaining in significance. Data centers in particular have a great need for compact and flexible plug-and-play systems that are pre-measured and preterminated at the factory. MPO/MTP system solutions allow users to achieve complete end-to-end cabling in keeping with the new standard for data centers. In the IEEE 802.3 standard, 40 Gb/s and 100Gb/s were defined with MPO connector technology. The crucial factor is the insertion loss and return loss of the components. Controlled production processes and ultra-precise end-face geometry are needed to satisfy these tough requirements. With the MPO/MTP multi-fiber system, a data center is well-equipped for future transmission rates of 40 and 100Gb/s.

Benefits of deploying modular, high-density optical solutions, such as MTP-based connectivity (including MTP Fiber Optic Cables assemblies, breakout modules and breakout harnesses) in a structured wiring architecture include 50% cable-tray space savings, 80% improvement in deployment time, and 70% bulk-cable reduction in cabinets and racks. A modular, high-density solution deployed in a structured wiring topology can easily scale to hundreds of thousands of ports and significantly reduce the time to conduct MACs in the data center, thus reducing operational costs.

So now, we have the means to cope with future growth and churn in the data center. Now, let’s address the issue of keeping this modular high-density structured cabling system in place to handle future higher-data-rate applications. In addition to manageability and scalability, a benefit to deploying a modular, high-density MPO-based cabling system is the available migration path to increased data rates. With some consideration of performance specifications, the infrastructure can easily migrate to future higher-data-rate technologies, such as parallel optics, which will be used in 32-, 64-, and 128-Gigabit Fibre Channel; and 40- and 100-Gigabit Ethernet. In fact, by deploying an optical cabling system that meets InfiniBand 12X-QDR (120-Gbit) cable skew performance requirements of = 0.75 ns and distance specifications, the same infrastructure that is carrying serial transmission today can be easily migrated to transmit parallel-optic InfiniBand signals.

To mitigate this issue and increase the lifecycle of an optical-cabling infrastructure, deploy high-quality low-loss optical components. Low-loss MPO Fiber Trunk Cable, breakout harnesses, modules and jumpers minimize channel insertion loss and enable the cabling infrastructure to easily migrate to future higher data rates.

For example, 8-Gbit Fibre Channel will support a distance of 100 meters using OM3 fiber and a connector budget no greater than 2.4 dB. If an MPO mated pair has a maximum insertion loss of 0.5 dB, and each MTP-to-LC breakout module wasspecified at a maximum insertion loss of 0.75 dB, then theresulting maximum connector loss in the channel will be 2.75 dB. This exceeds the recommended maximum 2.4 dB connector loss budget of 8-Gbit Fibre Channel at 100 meters, thereby reducing the supportable distance at 8-Gbit Fibre Channel; however, if low-loss components were specified into the same cable plant at 0.5-dB maximum insertion loss per MTP-to-LC breakout module and 0.35-dB maximum per MTP mated pair, then the resulting maximum connector loss in the channel will be 1.85 dB, providing support of 8-Gbit Fibre Channel beyond 100 meters.

As previously discussed, TIA-942 addresses the use of ZDAs as part of the recommended topology for datacenters. Implementing a distributed zone solution reduces pathway congestion and facilitates the implementationof MACs common in the data center environment. Implementing a zone topology can increase the number of connection points in a given channel. Using components with low-loss performance enables zone connectivity without sacrificing distance capabilities due to channel insertion loss. Additional methods to implement zone distribution with reduced channel insertion loss include using components that are optimized for the architecture. Solutions that offer a combined MPO-based trunk assembly and breakout module can eliminate connector pairs while still offering the flexibility of zone cabling, thereby reducing total channel insertion loss. Now we introduce some MTP/MPO assemblies when you are solving MTP/MPO system.

MTP high density cabling solutions utilizes MPO (multi fiber push on) ferrule providing connection of 12 or 24 fibers. MTP provides superior physical and optical characteristics than standard MPO for precision alignment with spring loaded mechanism and guide pins. They have a removable adaptor that mates female connectors to a male connector with specially designed guide pins for orientation and maintaining polarity along the channel. The Micro-core cables used in factory terminated MTP fiber cable assemblies give 65% reduction in cable size from traditional fiber cables. Pre-connected MTP solution with 24 core LC duplex adapters offers 72 LC terminations in 1U rack space and 288 LC terminations in 4U rack space using modular patch panels.

MTP Patch Panels are scalable modular which are designed for high density Gigabit Ethernet Applications.They are used for terminating backbone cables at the Main Distribution Area (MDA) and Horizontal Distribution Area (HDA). MTP Patch Panels are available with 1U and 4U, suitable for standard 19” racks. 1U MTP Patch Panel can accommodate up to three MTP Cassettes, giving a high connectivity of 72 LC fiber terminations in it. 4U MTP Patch Panel can accommodate up to 12 MTP Cassettes, resulting in a maximum of 288 LC terminations per panel.

Fiberstore offer a wide range of MTP/MPO product including MTP and MPO trunk cables, MPO and MTP cassettes, MTP and MPO harness (breakout) cables. MTP/MPO Cable assemblies are fully compliant with IEC Standard 61754-7 and TIA 604-5. All MTP and MPO assemblies can be customize. More details, please call us or send an email to our customer services.

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July 17, 2014

Plug-and-Play MPO Solutions In Fiber Cabling

As enterprises implement more fiber optic cabling to support bandwidth and storage requirements in the data centre and backbone infrastructures, fiber termination methods are under intense scrutiny. Data centre managers need to understand the key performance, installation, management, and cost considerations surrounding primary fiber termination methods. Each method has its own pros and cons, and the need has never been greater for comprehensive information to help data centre managers make the right choice for their environment. In this white paper, you will learn the about the pros and cons of the following fiber termination methods:

•Preterminated Plug-and-Play MPO Solutions
•Factory-Terminated Pigtails with Splicing
•Field Termination

The MPO connector is a high-density, multi-fiber connector that typically terminates 12 fibers in one connector approximately the same size of a one SC-style fiber connector. MPO Cassette include an MPO interface on one side broken out to12 individual fiber interfaces on the other side. These cassettes can be deployed in an optical distribution frame for higher density applications or in fiber panels to connect the main distribution area (MDA) to the equipment distribution area (EDA) in the data center. Plug-and-play trunk cables are round 12-fiber cables that are preterminated in the factory with MPO connectors on both ends. These trunk cables are purchased in predetermined lengths and are typically easier to manage than traditional ribbon cables. They can be quickly connected to the MPO plug-and-play cassettes at the cross-connect or interconnect in the MDA, EDA, or other areas of the data centre. This method eliminates the need for on-site fiber termination and splicing. Consequently, customers can rapidly complete fiber connections in high-density applications.

MPO-Cassettes

Advantages to plug-and-play MPO solutions include:

• Reduced Labor Cost
Less time is required for plug-and-play installation vs.splicing or field termination. Less expertise and resources are required of installation staff.

• Enhanced Performance
MPO connectors are factory terminated and tested in a clean environment with comprehensive quality control processes and documented test results that correspond to serial numbers stamped on each assembly.

• Better Manageability and Density
MPO cassette offer the highest density for fiber connections, maximizing space savings in the data centre. They are easily deployed in a cross-connect scenario for better cabling management.

• Better Prepared for Beyond 10-Gigabit

40-Gbps and 100-Gbps speeds on multimode fiber will likely require parallel optics where data is transmitted and received over multiple fibers. MPO connectors are more prepared for this technology because they already encompass multiple fibers.

Disadvantages to plug-and-play MPO solutions include:

• Inreased Material Cost

Plug-and-play MPO solutions are typically more expensive than other options.

• Higher Return Loss and Insertion Loss

The additional mated pair increases the return loss and insertion loss. Insertion link loss with MPO solutions can account for an addition 0.5dB per cassette, requiring careful planning of the loss budget.

• Limited Access to Individual Circuits

With MPO Fiber Trunk Cable, individual circuit access to backbone cabling is limited. However, when used in a cross-connect scenario, individual circuits should not need to be accessed once installed.

• Pedetermined Lengths Required

MPO trunk cables are made to order in predetermined lengths, so lengths and lead-time must be part of the planning process. In addition, measurements need to be exact or slack storage will be required.

fiber trunk cable

Fiberstore MPO Cassette provides seamless plug-and-play structured cabling solution especially suitable for high density data center environment. By integrating with Fiberstore Plug-and-play rackmount enclosure, it connects between the MPO interfaces on the backbone trunk cable to the generic LC interface that will directly link to the equipment.

The cassette is designed with a user friendly snap-in modular style, pre-installed with factory-terminated and factory-tested 12- or 24-fiber MPO to LC assembly with assured best performance on optical loss. The convenient plug-and-play feature offers a flexible, quick-deployment solution with maximum reliability and durability, which offers a simple and efficient choice in optimizing your network system.

Fiberstore manufactures a wide range of MTP/MPO products including MPO/MTP fiber cables, MTP/MPO Harness Cable, MTP/MPO trunk cable, MTP/MPO cassettes. Multi fiber ferrule connections used in high-density backplane and Printed Circuit Board (PCB) applications in data and telecommunications systems. High density MTP/MPO trunk cables with up to 144 fibers. The MPO Cable connector offers up to 12 times the density of standard connectors, providing significant space and cost savings.

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July 14, 2014

Fiber Transmissions at Higher-speed Ethernet

When moving to 40/100GbE, the most important difference in backbone and horizontal multimode applications is the number of fiber strands. 40GBASE-SR4 uses 4 strands to transmit and receive for a total of 8 strands. 100GBASE-SR10 uses 10 lanes to transmit and receive for a total of 20 strands. SMF remains a 2-strand application and although the fiber is less expensive, SMF optics and electronics can be 10x more expensive. In data centers and backbones, it may be possible to have 8 or 20 individual strands of fiber. However, those strands may take disparate paths from one end to the other and this can cause delay skew (known as bit skew) resulting in bit errors. For this reason, the 40/100GbE standards are written around fiber optic trunk assemblies that utilize a MPO or MTP multi-fiber array connector. In these assemblies, all strands are the same length. Also referred to as "parallel optics," this construction minimizes bit/delay skew, allowing the receive modules to receive each fibers information at virtually the same time.

MPO (Multi-fiber push-on) and MTP (Mechanical Transfer Push-on) are available in both 12 and 24 strand termination configurations used at the end of a trunk assembly. The MTP design is an improved version of the MPO Cable. The patented MTP connector is a ruggedized version with elliptical shaped, stainless steel alignment pin tips to improve insertion guidance and reduce guide hole wear. The MTP connector also provides a ferrule float to improve mechanical performance by maintaining physical contact while under an applied load. MPO MTP trunks also support for the 10GBASE-SR/SX applications although only two fiber strands are used. In this case trunks are connected to cassettes and/or hydra assemblies, which break out the multiple fibers into two-strand connections (typically LC or SC).

MPO Cabling

The second difference in high-speed fiber configurations is polarity. For 2-strand applications such as 10GbE transmission, managing polarity is as simple as reversing the strands somewhere over the channel. This is true if the channel is constructed of individual strands or is part of a trunk assembly. In trunk assemblies, which have historically been 12-strand, there are three suggested polarity methods in the standards (as shown in the following table).

As shown above, 2-strand application polarity managing is relatively easy. When migrating from 2-strand to multi-strand parallel optics, it is important to note which polarity method was selected to assure that the correct assemblies are purchased for higher speeds. All polarity methods can be converted from 2-strand to 12-strand applications.

40G

It is important to note that these polarity methods are suggested in the standards, not mandated. However, the mandate does state that a polarity method should be established and maintained throughout all fiber channels, mapping the transmit strand from one end to the receive strand at the other. This does not change for higher fiber count transmissions, with the exception that more strands are involved. To better visualize the transmission for multistrand applications, consider the following diagrams:

40GBASE-SR uses 8 strands of a 12-strand MPO/MTP Fiber Trunk Cable, (4 to transmit and 4 to receive). The middle 4 strands in the MPO/MTP connector remain dark. The interface on equipment will accept an MPO/MTP array connector rather than a traditional LC.

100GbE has three approved methods for transmission including one 24-strand (shown left) or two 12-strand trunks either "over and under" or "side-by-side" (shown right- Side-by-side configuration is not shown). The transmission uses 10 strands to transmit and 10 to receive leaving the outer unused strands dark. It is also possible to connect two 1- strand trunks via a "Y" assembly that converts two 12-strand trunk assemblies to one 24-strand assembly. Polarity must also be considered regardless of the method chosen and supported by the electronics.

The new MTP cables can bridge legacy 1Gbps/10Gbps networks over to 40Gbps/100Gbps networks, and can act as the trunk line on a network backbone. Since a single fiber cable can connect up to 24 devices, fewer cables are needed, cutting down on installation labor. The high-density, small form factor also saves space and improves air flow. With its push-pull release mechanism, the MTP connector is easy to engage and disengage.

FiberStore provide a wide range of MTP/MPO products including single mode or multimode MPO and MTP fiber cable. High density MTP/MPO trunk cables with up to 144 fibers in a single cable. Fiberstore also offer wide range of MTP MPO cassette. The standard cassettes can accommodate 12 and 24 port configurations. Different sizes of cassettes are available. Available in all fibermodes and connector options. Custom Options available including MPO MTP taps and MTP/MPO Silitter combinations.

Aritcle source from: http://www.cables-solutions.com/fiber-transmissions-at-higher-speed-ethernet.html

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July 09, 2014

Low-loss Connectivity For Multifiber Applications

Optical insertion loss budgets are now one of the top concerns among data center managers, especially in today’s large virtualized server environments with longer-distance 40 and 100 gigabit Ethernet (GbE) backbone switch-to-switch deployments for networking and storage area networks (SANs). In fact, loss budgets need to be carefully considered during the early design stages of any data center—staying within the loss budget is essential for ensuring that optical data signals can properly transmit from one switch to another without high bit error rates and performance degradation.

low-loss-multifiber-connectivity

With the length and type of the fiber cable and number of connectors and splices all contributing to the link loss, data center managers are faced with the challenge of calculating each connection point and segment within their fiber channels. Multi-fiber push on (MPO) or mechanical transfer push on (MTP) connectors are rapidly becoming the norm for switch-toswitch connections due to their preterminated plug and play benefits and ease of scalability from 10 to 40 and 100 gigabit speeds. Unfortunately, typical MPO MTP module insertion loss may not allow for having more than two mated connections in a fiber channel, which significantly limits design flexibility and data center management. Low loss, rather than standard loss, MPO/MTP connectors better support multiple mated connections for flexibility over a wide range of distances and configurations while remaining within the loss budget.

MTP LC

Typical MPO/MTP connectors, which are required for 40 and 100 GbE eployments have insertion loss values that range from 0.3 dB to 0.5 dB. Typical LC multimode fiber connectors have loss values that range from 0.3 dB to 0.5 dB. While better than the allowed 0.75 dB TIA value, typical connector loss still limits how many connections can be deployed in 10, 40 and 100 GbE channels. For example, with an LC connector loss of 0.5 dB, a 300-meter 10 GbE channel over OM3 fiber can include only three connectors with no headroom. Having just two or three connections prevents the use of cross connects at both interconnection (MDA) and access switches (HDA).

Due to improvements in connector technology and manufacturing techniques, Fiberstore has succeeded in lowering the loss to 0.20 dB for MTP connectors and to 0.15 dB (0.1 dB typical) for LC and SC connectors, well below the industry standard of 0.75 dB and loss values offered by other manufacturers.

For 10 GbE, Fiberstore low loss LC fiber jumpers offer a loss of 0.15 dB (typical 0.1 dB) and Fiberstore low loss plug and play MTP to LC or SC modules offer a loss of 0.35 dB (typical 0.25 dB). For 40 and 100 GbE, MTP to MTP pass-through adapter plates and MTP fiber jumpers offer a loss of 0.2 dB. These lower loss values allow data center managers to deploy more connection points in fiber channels, enabling the use of distribution points or cross connects that significantly increase flexible configuration options.

Figures 6, 7 and 8 shows some example scenarios for deploying cross connects in 10 GbE and 40/100 GbE channels over OM3 and OM4 fiber using Fiberstore low loss fiber connectivity. In Figure 6, all changes are made at the cross connect with LC fiber jumpers. The switches remain separate and the permanent MTP trunk fiber cables need only be installed once. The cross connect can be placed anywhere within the channel to maximize ease of deployment and manageability.

MTP Trunk Cable

Figure 7. shows an OM3 40/100 GbE channel with six Fiberstore low loss MTP-MTP pass-through adapter plates and low loss trunks. This scenario offers 0.4 dB of headroom and provides even better manageability and security. All changes are made at the cross connects via MTP fiber jumpers, switches remain separate, and the MTP trunk cables need only be installed once.Once again, the cross connects can be located anywhere in the data center for maximum flexibility. This allows for one-time deployment of high fiber-count cabling from the cross connect at the interconnection switch to the cross connect at the access switch. Adding additional access switches can be accomplished with short fiber runs from the cross connect.

If the loss budget does not permit deploying six MTP to MTP adapters, one option is to deploy MTP to LC or MTP to MTP jumpers from the cross connect to the equipment, depending on the equipment interface. For example, if using OM4 fiber to extend the channel distance to 150 meters, up to five Low Loss MTP-MTP pass through adapters can be deployed.10 Gigabit Ethernet (10GbE) introduces a challenging 2.6-dB insertion loss limit on OM3 fiber cabling. This tight limit has led some industry observers to suggest it is not possible to meet the standard using regular, as opposed to low-loss, MTP cassette. Some have also suggested it is not possible to run fiber cabling the full 300-meter distance specified in the 10GBase-S standard when using MTP cassettes, whether those cassettes are standard or low-loss.

The TIA-568-C.0 standard allows for a maximum 2.6-dB insertion loss and 300-meter length with OM3 fiber cabling systems. While manufacturers frequently submit their copper cables for third-party testing to verify performance that meets or exceeds applicable standards, they typically have not had fiber cabling systems, including OM3, tested. This lack of independent verification can leave designers and operators of OM3 fiber networks uncertain what the true parameters are in designing premises applications.

For example, the maximum insertion loss for MTP-LC cassettes or modules as stated in the TIA specification is 1.5 dB. An unusually complicated–but not extreme–configuration might consist of four cassettes with a total of eight mated pairs. If each of these cassettes was at the headroom limit, then the insertion loss of 6.0 dB would exceed the allowable limit. Some vendors have addressed this possibility by offering low-loss cassettes. These cassettes typically come at a cost premium of approximately 50% over standard cassettes.

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July 07, 2014

Fiber Transport System Modular Panel-mount Connectivity

The most obvious benefit of the structured trunking system is the large reduction in the number of fiber optic cables under the raised floor. The smaller number of cables makes documenting what cables go where much easier. Better documentation means that tracing a fiber-optic link is much easier during problem determination and when planning for futrue growth.

A less apparent and often overlooked benefit of a structured system is its ability to make future data center growth implementation much easier. With a structured system installed, channels, and control unit I/O ports are connecte by MTP Trunk Cable to patch panels in the CPL. All the connetions between the equipment are made with short jumper cables between the patch panels in the CPL. When new equipment arrives. It is connected to patch pannels in the CPL also. Then, the actual reconfiguration takes place in the CPL by moving short jumper cables between the patch panels, not by moving long jumper cables under the raised floor.

The first FTS implementation solution is called modular panel-mount connectivity. This uses MPO TO MPO Cable to connect to the CPL.

The modular panel-mount boxes are designed so that you can changes the port type in the panel-mount box by unplugging the trunk and changing the modular inserts in the box.

Benefits:

* MTP-to-MTP trunks connect quickly to the panel-mount box.
* The connector type in front of the panel-mount can be easily changed.
* Panel mount capacity can be customized.

The second FTS implementation solution is called coupler plates connetivity. It uses MTP-LC duplex trunk cables to connect to the CPL.

The LC duplex small from factor optical connector is the standard for FTS connectivity, eliminating the need for multiple connector types at patch panels and for patch cables. By standardizing on a connector with a proven history of reliability, the different optical fiber connectors used in equipment do not create a management problem when a system configuration used in equipment do not create a management problem when a system configuration must change. The LC-duplex supports termination of both sizes of multimode fiber and single mode fiber. As a result, CPL patch panel connections and patch cables are easily mangaged and differentiated by their color. There are two key benefits:

* CPC port order at the panel mount is independent of the harness that plugs in at the CPC.
* Single connector type at the CPL

The MTP coupler brackets provide the mechanical support to connect the harness MTP connectors to the MPO Connector. They are directly mounted on CPC frames.

The maximum density of fiber trunk cables is 144 fiber, which use 12 Fiber MTP connectors on the CPC trunk cable end. The Trunk cables run under the raised floor and connect the harnesses in the CPC to the panel-mount box in the Central Patching Location.

Fiberstore manufactures and distributes a wide range of MTP MPO products including single mode or multimode MPO and MTP fiber cable, MPO Fiber Cassette and MTP Cassettes.High density MTP/MPO trunk cables with up to 288 fibers in a single cable. Fiberstore provides a very supportive customer service program for our clients when using our wide selection of products

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July 04, 2014

Signal Crossover in Fiber Optic Systems With MPO Cables

Ribbon cables terminated with MPO connetors present some challenges when it comes to maintaining the correct signal crosssover in a segment consisting of multipe fiber optic srands. The ANSI/TIA-568-C.3 standard provies a set of "Guidelines for Maintaing Polarity Using Array Connetors" that decribe three types of MPO-to-MPO array cables, defined as Types A, B, and C. These cables are used to provide three different methods for maintaining a crossover connection. Method A is prefferred method, and is based on Type A MPO Fiber cables.

Figure 17-6 shows a Type A straight through ribbon cable with 12 fibers terminated in MPO connetor. A Method A backbone link is cabled "straight through", terminating in the cabling system patch panel. One end of the link will have a straight through patch cable, connetion from the patch panel to the Ethernet interface. The other end of the link will have a crossover cable connecting to the Ethernet interface. The guidelines recommend keeping all of the crossover patch cables at one end of the link, to keep the system as simple as possible and help the installer to avoid connecting the wrong type of patch cale.

MPO Fiber

The guidelines also show Method B and Method C, which are two methods for providing a crossover patch built into the MPO backbone cables themselves. Given the complexity of these approaches and the difficulty of implementing them correctly, they are both rarely used.

As you can see, there are a variety of approaches to managing the signal crossover for the 12-fiber and 24-fiber systems needed to support 40 and 100 Gb/s Ethernet. For the best results, make sure you know which method your site is using in the cabling system, and order the correct MPO cable types to make the connections and achieve the signal crossover. Note that some vendors provide special MPO connectors that make it possible to change connector gender and polarity(crossover) in the field, which coulde be a handy way to resolve MPO-to-MPO connectivity issues.

To provide an introduction and basic information to readers, this section begins with a presentation of the components needed for a parallel optical MPO connection.

MPO connectors contact up to 24 fibers in a single connection. A connection must be stable and its ends correctly aligned. These aspects are essential for achieving the required transmission parameters. A defec-tive connection may even damage components and or cause the link to fail altogether.

MPO cables are delivered already terminated. This approach requires greater care in planning in advance but has a number of advantages: shorter installation times, tested and guaranteed quality and greater reli-ability.

Fiber trunk cables serve as a permanent link connecting the MPO modules to each other. Trunk cables are available with 12, 24, 48 and 72 fibers. Their ends are terminated with the customer's choice of 12-fiber or 24-fiber MPO connectors.

trunk fiber optic cables

Harness cables provide a transition from multi-fiber cables to individual fibers or duplex connectors.The 12-fiber harness cables available from R&M are terminated with male or female connectors on the MPO side, the whips are available with LC or SC connectors.

Harness cable

Fiberstore supply MTP MPO fiber cables, MTP Cassette and MPO Cassette. MTP MPO cables are available in 4,8,12, 24, and 48 fiber array configurations. Many additional options and combinations are available. All fiber optic cables are customizable.

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