Showing posts with label QSFP-40GE-LR4-10. Show all posts
Showing posts with label QSFP-40GE-LR4-10. Show all posts

Monday, 8 January 2018

Differences Between PLC Splitters and FBT Coupler

by Fiber-MART.COM
FBT Coupler and PLC splitter Tech
 
PLC Splitter
 
Planar Lightwave Circuit (PLC) splitter, PLC splitters are used to distribute or combine optical signals. It is based on planar lightwave circuit technology and provides a low cost light distribution solution with small form factor and high reliability. Planar lightwave circuit (PLC) splitter is a type of optical power management device that is fabricated using silica optical waveguide technology to distribute optical signals from Central Office (CO) to multiple premise locations.
 
FBT Coupler
 
Fused biconical taper,this is traditional technology to weld several fiber together from side of the fiber.
 
2. Comparison between FBT and PLC.
 
PLC splitter
 
SpliSplit Ratio (Max): 1*64 splits
Eveness: Can split light evenly
Size: Compact size
 
FBT coupler
 
Split Ratio: 1*8 splits
Eveness: Eveness is not very precise
Size: Big size for multi splits
 
TDL (Temperature Dependent loss)
 
Due to the manufacturing process and to the sensitivity of the fused region and of the splices integrated in the device, Fused coupler manufacturers have to specify also the TDL value. for a 1×2 Fused coupler, a typical value is +/10.15dB for a temperature range from -5 to +75 centigrade . At the first sight, it could look good, but we have here again to take into account the cascading effect. To make the comparison with 1×8 PLC splitter we have to multiply 0.15 by 3 (3 1×2 for each arm) to finally obtain 0.45dB.
 
PLC splitter works from -40 to 85 centigrade with a typical TDL of out +/- 0.25dB (-5 to 75 centigrade:+/-0.15dB)
 
Please note that this TDL effect is already included in the Max. insertion loss specifications available on data sheets.
 
PDL (Polarization dependent loss)
 
An lon-exchange PLC splitter shows a PDL much less than 0.2 dB independently from the split-ratio. A 1×2 fused coupler PDL ranges from 0.1 to 0.15dB.Also in this case, we have to cascade discrete 1*2 Fused coupler to obtain the desired split-ratio, Then also PDL will be increased.
 
A 1×8 fused coupler will show up to 0.45dB PDL, what is more than the double of a 1×8 PLC splitter.
 
Reliability
 
As previously explained, to fabricate  1×8 fused coupler, you need 7discrete 1×2 couplers and 6 splices. The risk of failure of a device, normally calculated by parameter called FIT(failure in time), is typically low for a single 1×2 fused coupler, but in the case of a 1×8 fuse fused coupler ,it has to be at lease multiplied by 7 and in addition to add the risk associated to the massive presence of splices in the circuits. As everybody knows, a splice is a potential failure point in a system to be minimized a s much as possible.At the contrary, a PLC splitter knows only 2 critical  points: input and output
 
People take advantage of fiber optic splitter that will send or simply combine optical signals in a good many products, which include FTTH solution, or anything else. Once in a while contain a challenge: Will certainly Make the most of PLC Splitter or FBT Coupler?
 
When you undertake compare, came across undertake compare meant for tools within the same exact split-ratio.
 
The figure 1 shows the insertion loss plot of a standard 1×8 PLC splitter from 1250 to 1650 nm. You can observe the maximum insertion loss including the water-peak in E band region(1360 to 1460 nm) and also the excellent uniformity out of this plot.
 
Typical value is 9.8dB for insertion loss and 0.5dB for uniformity.
 
A 1×2 fused coupler insertion loss plot is showed in the figure 2.if you analyze the operating wavelength range from 1250 to 1650 nm as for PLC splitter you will still find an overall good performance level. But that’s a single 1×2 fused coupler, so you are not comparing the same devices.
 
The 3rd plot represents the insertion loss spectral behavior for 1×8 fused coupler. To fabricate a 1×8 fused coupler device each arm have to be manufactured using 3 cascaded (spliced) 1×2 couplers. it means that the “worst” arm could show 10.8dB insertion loss max and the uniformity will be 3dB.

Friday, 1 December 2017

A FASCINATING USE OF FIBER OPTICS

Fiber optics are used in a variety of ways to improve people’s lives. One such way is the recent development of a handheld fiber optic probe that’s used to diagnose cancer. Utilizing an ultrafast laser, this probe can perform multiple nonlinear imaging techniques without the need for tissue staining. In other words, it’s a cleaner, easier, more efficient way to check people’s tissues to reveal cancer and/or other diseases.
 
If this sounds like something from Star Trek, where a probe was used to scan a person for internal problems, that’s pretty much where technology is headed, with a big nod to those who work with fiber optics to “make it so.”
 
Instead of taking a bit of tissue from a person (with a biopsy) and then sending that tissue to a pathologist who stains it to look for cancer cells under a microscope, fiber optics makes it possible to literally diagnose cancer “on the spot.” This saves time, obviously. It also helps surgeons figure out cancerous versus healthy tissue during surgery.
 
The probe that checks for cancer is quite small– picture a ballpoint pen! Interestingly, the diameter of the handheld device, which is currently 8 millimeters in diameter, could probably be made even smaller in the future.
 
Essentially, the new probe functions like a mini microscope. It uses near-infrared lasers to allow doctors to get a true view of what’s going on inside people’s tissues. Because of fiber optics, the probe’s size is quite small compared to previous generations of devices meant to do similar things. Fiber allows for thousands of light guiding elements making an endoscopic approach easy.
 
Currently, this new probe is set to be tested on animals. Eventually it will be tested on patients in a clinical setting.
 
If you ever watched Star Trek and marveled at the idea of a doctor using some sort of handheld device to literally look underneath the skin and discover what’s going on, it looks like Star Trek was onto something decades before it actually came true in reality.

Tuesday, 20 June 2017

40GBASE-LR4 QSFP+ 1310nm 10km Transceiver for SMF

40GBASE-LR4 QSFP+ 1310nm 10km Transceiver for SMF

by Fiber-MART.COM

QSFP-40GE-LR4-10

40GBASE-LR4 QSFP+ Transceiver
Fiber-Mart 40GBASE-LR4 QSFP+ Module supports link lengths of up to 10km over a standard pair of G.652 single-mode fiber with duplex LC connectors.The 40 Gigabit Ethernet signal is carried over four wavelengths. Multiplexing and demultiplexing of the four wavelengths are managed within the device.It combines the higher density attractions of parallel modules with some of the key advantages normally associated with SFP+ based modules. It is intended for use short reach applications in switches, routers and data center equipment where it provides higher density and lower cost when compared with standard SFP+ modules.

Key Features

  • QSFP+ MSA, SFF-8436 compatible
  • Up to 10km over a standard pair of G.652 single-mode fiber with duplex LC connectors
  • Four 10Gbps CWDM channels in the 1300nm band: 1271, 1291, 1311, 1331
  • DFB and PIN monitor photodiodes array for transmitter section
  • Highly compact: savings of 60% on edge and board usage compared to four comparable SFP+ modules
  • Electrically hot-pluggable
  • Compliant to the IEEE 802.3ba(40GBASE-LR4)
  • Single 3.3V Power Supply and Power dissipation < 3.5W
  • Digital Diagnostics Monitoring Interface.
  • Operating Case Temperature: 0℃~+70℃

Applications

  • 40GBASE-LR4 Ethernet links
  • Infiniband QDR and DDR interconnects Client-side
  • 40G Telecom connections
  • High-speed interconnects within and between switches, routers and transport equipment
  • Server-Server Clusters, Super-computing interconnections
  • Proprietary backplanes
  • Interconnects rack-to-rack, shelf-to-shelf, board-to-board, board-to-optical backplane

QSFP+ Interface

10km Transceiver for SMF

Packaging

  • Antistatic bag
  • Packed on pallets in a box(Default Customer Options)
  • Specific Labels as Request
  • Seperate white Box for each transceiver

OEM and ODM

Combining our extensive design and engineering capability in optical transceiver industry, with our competitive advantages from integrated manufacturing capability, internal supply chain, and cost competitive and scalable operation infrastructure, Fiber-Mart provides OEM, ODM, and contract manufacturing service to world leading customers with our manufacturing facilities in China.We are also mainly engaged in providing complete sets of optoelectronic device solutions to gain more brand extensions and influence for Fiber-Mart in the world.
  • OEM/ODM order is available
  • We can supply QSFP-40GE-LR4-10 according to your requirements, and design QSFP-40GE-LR4-10 label and packaging for your company. We welcome any inquiry for customized 40G QSFP+ transceiver optical transceiver.

Order Procedure

Please contact us with any special requirements you may have, we can help you create a custom solution to meet almost any application. Our engineer will review the project and provide a quotation within 1-2 business days.
a. Email (sales@fiber-mart.com) us a rough sketch to a detailed drawing.
b. Our engineer will review the project and provide a quotation within 24 hours.
c. We can arrange production as low as 1 piece and as high as 1,000 pieces in 1~4 business days once an order is placed.

Shipment

International Express: Fedex, DHL, UPS, TNT and EMS.If you have another preferred carrier, please notify us in advance.
FedEx Overnight: It will take 1-3 business days (weekends and holidays excepted) for delivery.
DHL: It will take 2-4 business days (weekends and holidays excepted) for delivery. For Spain, Italy, Brazil and some other countries, items will take longer time to arrive due to customs clearance period.

Save Cost By Buying 40G QSFP+ transceiver From Original Manufacturer Fiber-Mart Directly.

Fiber-Mart is an professional manufacturer supplier of 40G QSFP+ transceiver . All of our 40G QSFP+ transceiver are tested in-house prior to shipping to guarantee that they will arrive in perfect physical and working condition. We guarantee 40G QSFP+ transceiver to work in your system and all of our 40G QSFP+ transceivers come with a lifetime advance replacement warranty. If you have questions about 40G QSFP+ optics, please feel free to contact us at sales@fiber-mart.com.

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