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Gigabit Ethernet has been regarded as a huge breakthrough of telecom industry by offering speeds of up to 100Mbps. Gigabit Ethernet is a standard for transmitting Ethernet frames at a rate of a gigabit per second. There are five physical layer standards for Gigabit Ethernet using optical fiber (1000BASE-X), twisted pair cable (1000BASE-T), or shielded balanced copper cable (1000BASE-CX). 1000BASE-LX and Cisco 1000BASE-SX SFP are two common types of optical transceiver modules in the market. Today’s topic will be a brief introduction to 1000BASE-LX and 1000BASE-SX SFP transceivers

1000BASE in these terms refers to a Gigabit Ethernet connection that uses the unfiltered cable for transmission. "X" means 4B/5B block coding for Fast Ethernet or 8B/10B block coding for Gigabit Ethernet. "L" means long-range single- or multi-mode optical cable (100 m to 10 km). “S” means short-range multi-mode optical cable (less than 100 m)

1000BASE-SX

1000BASE-SX is a fiber optic Gigabit Ethernet standard for operation over multi-mode fiber using a 770 to 860 nanometer, near infrared (NIR) light wavelength. The standard specifies a distance capability between 220 meters and 550 meters. In practice, with good quality fiber, optics, and terminations, 1000BASE-SX will usually work over significantly longer distances. This standard is highly popular for intra-building links in large office buildings, co-location facilities and carrier neutral internet exchanges. 1000BASE-SX SFP works at 850nm wavelength and used only for the purposed of the multimode optical fiber with an LC connector. 1000BASE-SX SFP traditional 50 microns of multimode optical fiber link is 550 meters high and 62.5 micron fiber distributed data interface (FDDI) multimode optical fiber is up to 220 meters. Take EX-SFP-1GE-SX as an example, this SX fiber transceiver supports DOM function and the maximum distance of the SX SFP is usually 550 m. The 1000Base-SX standard supports the multimode fiber distances shown in table 1

1000BASE-LX

Specified in IEEE 802.3 Clause 38, 1000BASE-LX is a type of standard for implementing Gigabit Ethernet networks. The "LX" in 1000BASE-LX stands for long wavelength, indicating that this version of Gigabit Ethernet is intended for use with long-wavelength transmissions (1270-1355 nm) over long cable runs of fiber optic cabling. 1000BASE-LX can run over both single mode fiber and multimode fiber with a distance as high as 5 km and 550 m, respectively. For link distances greater than 300 m, the use of a special launch conditioning patch cord may be required. 1000BASE-LX is supposed mainly for connecting high-speed hubs, Ethernet switches, and routers together in different wiring closets or buildings using long cabling runs, and developed to support longer-length multimode building fiber backbones and single-mode campus backbones. Brocade E1MG-LX-OM is Brocade 1000BASE-LX SFP, this LX single-mode transceiver operates over a wavelength of 1310nm for 10 km.Please visit:www.oemfibers.com



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تاریخ انتشار : پنج شنبه 27 شهريور 1399 | نظرات ()
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What's SFP-10G-SR

Cisco SFP-10G-SR SFP+ transceiver is compliant with the 10GBASE-SR trendy. It’s miles warm-swappable input/output tool which permits a 10 Gigabit Ethernet port to hyperlink 300m in a fiber optic network. The SFP-10G-SR offers clients a huge sort of 10 Gigabit Ethernet connectivity options for statistics middle, company wiring closet, and carrier issuer delivery programs

Due to the fact it really is hot-swappable and MSA compliant, the Cisco SFP-10G-SR transceiver may be plugged immediately into any Cisco SFP+ based transceiver port, without the need to power down the switch. This functionality makes actions, add-ons, and exchanges short and painless. these modules also characteristic virtual Optical tracking (DOM) functionality which allows for tracking of the sign electricity, the temperature of the SFP, and the transceiver voltage

The SFP-10G-SR 10GBase-SR module supports link lengths up to 300 meters on multimode fiber. The SFP-10G-SR requires at least OM3 fiber

What is SFP-10G-LR

SFP-10G-LR is generally standard for a Cisco 10GBASE-LR SFP+ module. Cisco SFP-10G-LR supports popular single-mode fiber with a link distance of 10 kilometers. The SFP-10G-LR is usually compliant with the 10GBase-LR trendy and supports up to 10 km of single mode fiber with a 1310 nm laser. LR additionally has no minimum distance, so it is also suitable for short distances on single mode fiber. This 10GBASE-LR SFP+ transceiver module transmits data at speeds of up to 10 gigabits per second, making it ideal for connectivity needs in large data centers, enterprise wiring closets, large campus and metro area networks

SFP-10G-SR vs SFP-10G-LR , What's the Similarity and difference

SFP-10G-SR is particularly used for the short distance 10G application over multimode fiber, while SFP-10G-LR is ideal for long reach 10G Ethernet link over single mode fiber, After the evaluation, have you known the similarity and difference between SFP-10G-SR vs SFP-10G-LR , Do you know how to choose the SFP+ module for your network? It definitely relies upon on your real needs. As a reliable SFP+ transceiver supplier dealer, OEMfibers is your best choice for Cisco compatible SFP-10G-SR, SFP-10G-LR SFP+ modules. please visit www.OEMfibers.com



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تاریخ انتشار : چهار شنبه 26 شهريور 1399 | نظرات ()
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Product overview

The Cisco 100GBASE CFP modules offer customers 100 Gigabit Ethernet connectivity options for data center networking, enterprise core aggregation, and service provider transport applications

Features and benefits

Main features of Cisco 100GBASE CFP modules include

Supports 100GBASE Ethernet

Hot-swappable input-output device that plugs into an Ethernet CFP port of a Cisco switch or router

Provides flexibility of interface choice

Supports "pay-as-you-populate" model

Supports Digital Optical Monitoring (DOM)

Supports the Cisco quality identification (ID) feature that enables a Cisco switch to identify whether the module is certified and tested by Cisco

Cisco CFP-100G-LR4

The Cisco 100GBASE-LR4 CFP module supports a link length of 10 kilometers on standard single-mode fiber (SMF, G.652). 100 Gigabit Ethernet signal is usually carried over four wavelengths. Multiplexing and demultiplexing of the four wavelengths are managed within the device

Cisco CFP-100G-SR10

The Cisco 100GBASE-SR10 CFP module supports link lengths of 100 meters and 150 meters respectively on laser-optimized OM3 and OM4 multifiber cables. It primarily allows high- bandwidth 100-gigabit links over 24-fiber ribbon cables terminated with MPO/MTP-24 connectors. It can also be used in 10 x 10 Gigabit Ethernet mode along with ribbon to duplex fiber breakout cables for connectivity to ten 10GBASE-SR optical interfaces. Maximum channel insertion loss allowed is respectively 1.9 dB over 100m of OM3 cable or 1.5 dB over 150m of OM4 cable

Cisco CFP-100G-ER4

The Cisco 100GBASE-ER4 CFP module can support link lengths up to 40 kilometers on standard duplex single- mode fiber (SMF, G.652) terminated with SC/PC optical connectors. 100 Gigabit Ethernet signal is definitely carried over four wavelengths. Multiplexing and demultiplexing of the four wavelengths are managed within these devices. The Cisco 100GBASE-ER4 CFP module meets the IEEE 802.3ba requirements for 100GBASE-ER4 performance and also supports Digital Optical Monitoring (DOM) of the transmit-and-receive optical signal levels



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The CFP module is a hot pluggable form factor designed for optical networking applications. CFP is usually acronym from 100G (C = 100 in Roman numerals; Centum) Form factor Pluggable. As name suggests, CFP is introduced to serve as optical transceiver for 100G interfaces. There are several CFP types introduced - CFP, CFP2 and CFP4, but let’s begin with general CFP architecture. General CFP architecture of CFP divides in two parts - Electrical interface interacting with equipment line card interface and optical line interface

From equipment line card electrical interface aspect CFP has several “M-Lines” with are working 10Gbps speed and separate management interface used for clock & signaling data. If CFP is definitely working 100GBase-LR4 mode, then it has 10 x 10Gbps M-Lines, if 40GBase-LR4 mode, then 4 x 10Gbps M-Lines. So called “Gear Box” is electrical 10:4 Mux/DeMux module aggregating up to 10 M-Line interfaces in maximum 4 N-Line interfaces. In case of 100GBase-LR4 each N-Line speed can be 25Gbps and in case of 40GBase-LR4 N-Line speed is 10Gbps. Each N- Line is converted to optical signal with different wavelength and all four wavelengths are transmitted to CFP line interface using built in passive optical multiplexers

CFP form factor is oldest from CFP family and it has current MSA (Multi Source Agreement) Rev 1.4. It can support both - 100GBase-X and 40GBase-X, and it’s general principle is certainly following

CFP electrical interface for 100G transmission is called CAUI - C (it again represents Roman Centum for 100G) Attachment Unit Interface. CAUI interface was standardized by IEEE802.3ba - Annex 83A, defining that CAUI interface is a parallel electrical interface with each lane running at a nominal rate of 10.3125 Gbps

The 802.3bm standard was approved. The 802.3bm standard specifies four-lane chip-to-module and chip-to-chip electrical specification (CAUI-4). In new version of CAUI-4 interface are 4 M-Lines, each running speeds 25.78 Gbps for 100G Ethernet and 27.95 Gbps for SONET/SDH OTU4.Know more:www.oemfibers.com



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Let’s apply this model to the cost of optic transceivers. There are only so many transceiver companies with the manufacturing, engineering, and quality control to make the world go round: Avago, Finisar, and Lumentum (formerly JDSU). So when a networking company is trying to sell you an optic, it’s typically one of these three

Let’s dissect the Cisco SFP-10G-SR transceiver module, which lists for $1000 (I’m sorry, $995)

Cisco doesn’t make cables or optics, so they go to the people who do. Instead of relying on one ODM, they use two, and another two for their telco line, for price guarantees and supply assurances. So how much does a 10GB SFP+ SR optic cost? It turns out around $85 + some margin, bringing the cost to $95

However, Cisco doesn’t want some ODM’s name on the part. They want the Cisco logo on the part, along with the Cisco logo on the finish cap, some branding on the ESD wrapper, tissue paper, stickers, etc….(ok, ok, no tissue paper or stickers, but you get my point)

This re-branding now brings the part to over $600. Bring in the distributors: $800. And now, the resellers: $1000. Meaning, if Cisco sells this part at MSRP, it makes $500 in profit on a $100 part

What if we bought this product directly without the OEM rebranding? $95 plus distributor + reseller yields $150 with 2-day free shipping on OEMfibers.com



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100GBASE-SR4 VS 100GBASE-SR10: Form Factors Comparison

CFP is the typical representative form factor of 100GBASE-SR10. It is specified by a MSA (Multi-Source Agreement) between competing manufacturers. The CFP was designed after the SFP (Small Form-Factor Pluggable) interface, but is significantly larger to support 100 Gbps, using 10 x 10Gbps lanes

QSFP28 may be the latest 100G form factor. QSFP28 utilizes four 25G electrical lanes each to aid the latest 100/50/25G transceivers and interconnects. Thus, it is the representative form factor of 100GBASE-SR4

100GBASE-SR4 VS 100GBASE-SR10: Size Comparison

Transceivers with Cisco QSFP-100G-SR4-S and 100GBASE-SR10 interface respectively correspond to QSFP28 and CFP. Thus they have a significant difference in size.CFP is much larger than QSFP28. Obviousely, CFP is not much suitable for high density applications. In contrast, QSFP28 increases front-panel density and decrease power and price per bit

100GBASE-SR4 VS 100GBASE-SR10: Cables & Connectors Options

Both 100GBASE-SR4 and 100GBASE-SR10 optics use laser optimized multimode fiber (OM3/OM4) for transmission. But 100GBASE-SR4 optics (such as Cisco 100G-QSFP28-SR4) uses a 12-fiber standard QSFP MPO/MTP cable for connectivity (4 Tx and 4 Rx, each lane providing 25 Gbps of throughput) while 100GBASE-SR10 optics use a 2×12-fiber or 24-fiber strand MPO/MTP cable for connectivity (10 Tx and 10 Rx, each lane providing 10 Gbps of throughput)

Because optics with 100GBASE-SR4 and Cisco CFP-100G-SR10 interface can be respectively breakout to 4×25 Gbps and 10×10 Gbps, it is easy to upgrade from 25GbE/10 GbE to 100 GbE using MPO/MTP to LC harness cable.Know more:www.oemfibers.com



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MGBSX1 :1000BASE-SX SFP transceiver

MGBSX1 is a hot pluggable 1000BASE transceiver invented by Cisco. The 1000BASE-SX standard optics are developed to support lower cost multi-mode fiber runs in horizontal and shorter-length backbone applications. The MGBSX1 transceiver offers the ability to tap into faster networking speeds using fiber optic cabling. It supports dual data-rate of around 1 Gbps, with its operating temperature ranging from 32º to 158ºF (namely, 0º to 70ºC). The industry-standard Cisco Small Form-factor Pluggable Gigabit Interface Converter is a hot-swappable input/output device that plugs into a Gigabit Ethernet port or slot, linking the port with the network. The NGBSX1 SFP is compatible with the IEEE 802.3z 1000BASE-SX standard and operates on 50 micrometer multimode fiber links up to 550m and on 62.5 micrometer FDDI-grade multimode fibers up to 220m. More importantly, installing this module is as easy as sliding it into an accompanying port on a compatible Cisco switch.

MGBLH1 :1000BASE-LH SFP transceiver

MGBLH1 is also a 1000BASE SFP transceiver. However, it differs from MGBSX1 in that LH stands for long haul. Many vendors use LH for certain SFP modules, this SFP type is similar with the other SFPs in basic working principle and size. However, LH isn’t a Gigabit Ethernet standard, yet works with 1000BASE-LX standard. The MGBLH1 transceiver module provides a low cost high-performance connection. Compliant with specifications of SFP transceiver MSA specification, 1000BASE-LH SFP operates a distance up to 70km over single-mode fiber. Cisco MGBLH1 1000BASE-LH SFP covers a link length of 40km that make itself perfect for long-reach application. Morever, The MGBLH1 transceiver provided by OEMfibers is individually tested on a full range of Cisco Linksys equipment and passes the monitoring of OEMfibers.com intelligent quality control system

The large diameter core of multimode fiber increases the light reflection created as light travelling. Because of the high dispersion and attenuation rate with the multimode fiber, the quality of the signal is usually reduced over long distances. Therefore, the MGBSX1 transceiver is typically used for short distance, data and audio/video applications in LANs. Oppositely, MGBLH1 can be applied to long distance transmission. However, the actual distance will vary based on fiber plant and operating environment



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تاریخ انتشار : پنج شنبه 20 شهريور 1399 | نظرات ()
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There are a variety of resources to have the most out of technology budget, especially when it involves find the Cisco 1000BASE-T SFP modules either for brand new, refurbished, or carefully used. What exactly are the best methods to see them for a more inexpensive price

Online Retailers

Trusted online retailers with warehouses not merely provide consumer-side purchasing with modules and networking hardware, they may also be a very important asset to all or any types of companies seeking to spend less overall on gear. There are trusted online retailers that provide almost as high as 90% discounts and price reductions. You need to be cautious with regards to certain warehouses because they may have huge savings however the parts might be used or not of the best quality

Certified Sellers

Certified sellers, or re-sellers, may offer completely new or refurbished modules with great prices. Besides, they have professionals who might help you with all your technology questions and ensure that you obtain the very best deal

Third-Party Companies

In fact, there are various third party vendors to manufacture compatible SFP modules , such as for example OEMfibers.com. Many individuals are confused about whether I will use 3rd party SFP modules. Most "alternative party" transceivers are created and assembled in exactly the same plants assembling officially-branded transceivers. There is nearly no huge difference between the official Cisco transceiver and a third-party plug, apart from the branding and about 2 hundred to some thousand bucks. And today, using third party SFP modules appears to a growing number of popular, as much 3rd party SFP module suppliers are providing top quality and reliable third party SFP modules with low prices. Besides, third-party SFPs is often as reliable as official OEM products



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تاریخ انتشار : سه شنبه 18 شهريور 1399 | نظرات ()
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What will be the characteristics of using 25G high-speed cable and 25G active optical cable 

1.25G SFP28 DAC high speed cable

25G high-speed cable can support transmission rates as high as 25Gbps, which is greater than traditional copper cables

25G active fiber optic cable for 25G and 10G Ethernet, high-capacity IO and SFP+ interfaces, data center and rack-to-rack connectivity

2.25G SFP28 AOC active optical cable

25G active fiber optic cable is one-half and one-quarter of the 25G high-speed cable, so 25G active fiber optic cable is a lot lighter than 25G high-speed cable; no tools upgrade is necessary, 25G active optical cable has up to 25G 25Gbps throughput; 25G active optical cable offers better transmission performance and bit error rate, BER can reach 10-15; 25G active optical cable provides lower transmission power on the machine link

25G DAC high speed cable and 25G AOC active cable application

25G high-speed cables are mainly utilized in switches/routers/HBAs, servers and data storage devices, 40Gbs/100GBS Ethernet, and Fibre Channel

25G active fiber optic cable for 25G and 10G Ethernet, high-capacity IO and SFP+ interfaces, data center and rack-to-rack connectivity



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تاریخ انتشار : پنج شنبه 13 شهريور 1399 | نظرات ()
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In addition to the above three main technical parameters, the Juniper EX-SFP-10GE-LR gets the following basic concepts, which just need to be understood briefly

 Laser category: The laser is the core device in the optical transceiver. It injects current in to the semiconductor material and emits laser light through the photon oscillation and gain of the resonant cavity. At the moment, the mostly used lasers are FP and DFB lasers. The difference between them is that the semiconductor materials and resonant cavity structure will vary. The cost of DFB lasers is a lot more costly than that of FP lasers. Optical transceiver with a transmission distance of significantly less than 40KM generally use FP lasers; The optical transceiver with a transmission distance ≥40KM generally use DFB lasers

 Loss and dispersion: Loss may be the lack of light energy because of the absorption, scattering and leakage of the medium when light is transmitted in the optical fiber. This portion of the energy is dissipated at a certain rate as the transmission distance increases. The generation of chromatic dispersion is principally due to the unequal speed of electromagnetic waves of different wavelengths when propagating in the same medium, which in turn causes the various wavelength components of the optical signal to reach at the receiving end at differing times because of the accumulation of transmission distance, leading to pulse broadening and inability to tell apart the signal value. Both of these parameters mainly affect the transmission distance of the optical transceiver. In the actual application process, the link loss of the 1310nm optical transceiver is generally calculated at 0.35dBm/km, and the hyperlink lack of the 1550nm optical transceiver is normally calculated at 0.20dBm/km, and the calculation of the dispersion value Very complicated, generally limited to reference

 Transmitting optical power and getting sensitivity: Transmitting optical power refers to the output optical power of the source of light at the transmitting end of the optical transceiver, and receiving sensitivity identifies the minimum received optical power of the optical transceiver at a particular rate and little bit error rate. The units of the two parameters are dBm (meaning decibel milliwatt, logarithmic form of power unit mw, the calculation formula can be 10lg, 1mw is changed into 0dBm), which are mainly utilized to define the transmission distance of the merchandise, different wavelengths, transmission rates and The optical transmitting power and getting sensitivity of the optical transceiver of the transmission distance changes, as long as the transmission distance could be ensured

The service life of the optical transceiver: the international uniform standard, 7X24 hours of uninterrupted work for 50,000 hours (equal to 5 years

 Optical fiber interface: HP J9151A Modules are all LC interfaces, GBIC optical transceiver are SC interfaces, and other interfaces consist of FC and ST

 Working temperature: 0~+70℃; storage temperature: -45~+80℃; working voltage: 3.3V; working level: TTL/PECL/CML/LVDS.Learn:www.oemfibers.com



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تاریخ انتشار : سه شنبه 11 شهريور 1399 | نظرات ()
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First, the guts wavelength: unit nanometer (nm), currently there are three main types

 850nm (MM, multi-mode, low priced but short transmission distance, generally only 500M could be transmitted

 1310nm (SM, single mode, large loss during transmission but small dispersion, generally used for transmission within 40KM

3) 1550nm (SM, single-mode, low loss but large dispersion during transmission, generally used for long-distance transmission above 40KM, and may directly transmit 120KM without relay at the farthes

Second, the transmission rate: refers to the amount of bits (bits) of data transmitted per second, in bps. There are currently four commonly used: 155Mbps, 1.25Gbps, 2.5Gbps, 10Gbps, etc. Transmission rates are usually downward compatible, so 155M optical modules are also called FE (100M) H3C SFP-XG-T , and 1.25G optical modules are also known as GE (Gigabit) optical modules, which are the most used modules in optical transmission equipment. Furthermore, its transmission rate in the optical storage system (SAN) is 2Gbps, 4Gbps and 8Gbps;

Third, transmission distance: identifies the distance that optical signals can be directly transmitted without relay amplification, in kilometers (also called kilometers, km), optical modules generally have the following specifications: multi-mode 550m, single-mode 15km, 40km, 80km And 120km and so forth.Know more:www.oemfibers.com



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According to the operating temperature, optical modules can be divided into commercial and industrial grades, among which commercial optical modules are the most widely used. But in fact, different application environments need to select the optical module of the corresponding temperature level, otherwise it is easy to cause the temperature of the optical module to be abnormal and affect normal use. So how to make the right choice among common commercial and commercial optical modules

•Commercial-grade optical modules are suitable for indoor data center computer rooms-because the internal interconnection of the data center requires a relatively small operating temperature range for the optical modules (national policy stipulates that the indoor temperature of the computer room must be controlled at 22±2°C); and the optical modules are reliable The performance requirements are not high, therefore, commercial-grade optical modules could be selected for indoor data center computer rooms

•Industrial-grade optical modules are ideal for industrial Ethernet and 5G fronthaul-Industrial Ethernet has a large operating temperature range and requires higher safety and reliability. In order to ensure the normal operation of optical modules, it is best to choose industrial-grade optical modules. At the same time, in the 5G bearer optical module white paper, it really is mentioned that the 5G fronthaul AAU side optical module involves outdoor applications. The outdoor temperature is variable and the working environment is relatively harsh. Therefore, industrial-grade optical modules with better performance are required

Industrial-grade optical modules are manufactured in strict accordance with commercial standards, with larger temperature difference, higher stability and lower power consumption, and meet the network connection requirements of industrial Ethernet

In addition, the incompatibility between the selected optical module and the device is also one of the reasons. Before purchasing optical modules, I did not fully understand the optical module information supported on the equipment (such as switches, fiber optic transceivers, etc.), such as for example speed, model, etc.; or using Huawei switches but purchased other brands of optical modules (such as Juniper EX-SFP-10GE-T , Brocade etc.), learn more: www.oemfibers.com



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100G CFP modules offer connectivity options for a wide selection of service provider transport, data center networking, and enterprise core aggregation applications. The basic info of CFP-100G-SR10 and Cisco CFP-100G-LR4 module is provided below

CFP-100G-SR10 Module

CFP-100G-SR10 is an IEEE standardized CFP module supporting link lengths of 100 m and 150 m respectively on laser-optimized OM3 and OM4 multifiber cables. It primarily enables high-bandwidth 100-gigabit links over 24-fiber ribbon cables terminated with MPO/MTP-24 connectors. It can also be used in 10 x 10 Gigabit Ethernet mode along with ribbon to duplex fiber breakout cables for connectivity to ten 10GBASE-SR optical interfaces. CFP-100G-SR10 interface serves as a more cost-effective solution, which is optimized for data center application and is limited to short distances

CFP-100G-LR4 Module

CFP-100G-LR4 is standardized by IEEE using standard LC dual fiber interface with single-mode cable, but working four optical wavelengths each direction (1295.56 nm, 1300.05 nm,1304.59 nm, 1309.14 nm) and muxing/demuxing of these wavelengths happening inside CFP module. Each wavelength is usually running at 25.78 Gbps and it is possible to accomplish up to 10 km. Compared to CFP-100G-SR10, CFP-100G-LR4 delivers much better reach for long-haul applications, but at a cost premium

Comparison Between CFP-100G-SR10 and CFP-100G-LR4

In this section, we’re trying to figure out the difference between Cisco CFP-100G-SR10 and CFP-100G-LR4 from the perspective of connectors and cabling used on each. For connectors, 24-fiber MPO/MTP connector is definitely for CFP-100G-SR10 module while dual SC/PC connector for CFP-100G-LR4. Note that only patch cords with PC or UPC connectors are supported. The cabling specification and features for CFP-100G-SR10 and CFP-100G-LR4 are presented on OEMfibers.com



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You may find that a compatible SFP transceiver can not work successfully in the branded switch. This is often not caused by the defective compatible SFP transceiver, but by improper behavior. The following are several guides for you to correctly use a compatible SFP module

Check your transceiver module and device port

Some transceiver modules are easy to be mixed because of the similar appearances. For example, SFP and SFP+. SFP delivers 1Gbps of data and SFP+ supports the data rates up to 10 Gbps. Having the same size, an Cisco GLC-SX-MM module can fit seamlessly into the SFP+ port on the switch and vice versa. If you insert an SFP+ module into an SFP port, they will still work but the transmission speed will be limited at 1 Gbps. On the contrary, there will be no connection when an SFP module is inserted into an SFP+ port

Ensure that the SFP modules have the identical wavelength at either end

It is known to us that the SFP module is used for data transmission. The transmission process is definitely that the electrical signals from one side are converted into optical signals, then the lights are transmitted through the fiber and can be changed into electrical signals on the other end of the SFP module. To ensure this process, the SFP modules at either end should have an identical wavelength. So, you’d better look at the specifications of the SFP modules carefully

Choose the correct fiber type

Choosing the correct fiber type can be a major factor to make sure the SFP compatibility as well. So, you have to verify the fibers on both ends of the SFP modules, which should become the same type. The standardized colors on the outer jacket of fibers will help you identify them. What’s more, remember using the corresponding fiber cables

Ensure both ports are compatible with the SFP module

It is important that the ports on your devices can accept the SFP modules you want to use. As mentioned above, some brands are not appropriate for the SFP modules from other vendors. Even when using the compatible SFP modules, you’d better check the standards of ports firstly



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تاریخ انتشار : چهار شنبه 5 شهريور 1399 | نظرات ()
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X2 to 10G SFP+ connectivity solution and X2 and SFP+ direct connectivity solutions, OEMfibers offers three solutions

Required equipment: X2 optical transceivers,X2 to SFP+ converter, 10G SFP+ optical transceivers, fiber jumper

Solution 1

X2 optical module is utilized at one end, X2 to SFP + converter and 10G SFP + optical module are combined at the additional end, and SC-LC optical fiber jumper connection can be used between your two ends

Solution 2

One end uses X2 to SFP + converter and 10G SFP + optical module combination, the various other end also uses X2 to SFP + converter and 10G SFP + optical module mixture, which are linked by LC-LC optical fiber jumper

According to advertise feedback scheme 2, the application form could be more extensive. The main reason is normally that the input cost of scheme 1 in long distance transmission project is a lot greater than that of scheme 2

Solution 3

Direct Connection Scheme between X2 Module and SFP+Module,If the X2 and SFP + modules are single-mode, a single-mode jumper is necessary. If it's multi-mode, make use of multi-mode jumper. The premise is by using optical modules with the same transmission wavelength and distance



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تاریخ انتشار : سه شنبه 4 شهريور 1399 | نظرات ()
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Fixed wavelength SFP+ remain on the market and not way too many problems within make use of. So you might feel puzzled about choosing DWDM tunable SFP+ or fixed wavelength SFP+ as tunable SFP+ is more costly. The next will let you know why you need tunable optics

First, save cost. With the development of optical communication systems, the shortages of fixed-wavelength laser steadily revealed. Conventional DWDM SFP+ may lead high costs. The amount of wavelengths in DWDM 50GHz has already reached the hundreds. Then spare modules of each laser ought to be prepared for protection of the machine because you don’t know which module will breakdown and it’s difficult to predict the number of stock in specific channels. Therefore you need to buy variety of DWDM SFP+ modules with fixed wavelengths. As the tunable optics are configured with different DWDM wavelengths in a single module. You can pick the best wavelength you will need predicated on your optical fibre communication environment. DWDM Tunable SFP+ are usually used as “spare-optics” to save lots of you cost

Second, flexible network management. When owning a DWDM network with plenty of nodes, for example, up to 80 different wavelengths, management is actually a nightmare. You need to prepare handful of Cisco SFP-10G-T-S Optical Transceiver of every wavelength and perhaps in various locations. Field engineers might not access network nodes as quickly as you want. Thus DWDM tunable optics will be a great choice. Tunable optics could possibly be configured for a particular wavelength to aid bandwidth adjustments as needed in the optical network

Third, ideal for huge network capacity. As the development of increasing network transport, 400G or 1T will be the trend. Then 400G and 1T transmission formats are anticipated to be heavy rather than fit within 50GHz spacing. These potential new data rate formats require that channel spacing is flexible, that your OTN system can adjust to new rates and can re-arrange channel spacing to discover place for new rates in it. DWDM Tunable optics will double the amount of channels supported in this transceiver module. Upgrading to 50GHz channel spacing doubles the capability potential in Enterprise and Metro networks.Learn:www.oemfibers.com



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تاریخ انتشار : دو شنبه 3 شهريور 1399 | نظرات ()