Showing posts with label DWDM multiplexer. Show all posts
Showing posts with label DWDM multiplexer. Show all posts

Tuesday, August 2, 2016

Profitability of the Optical Component Business Improved Last Year and It May Set a New Record in 2016

The average profitability of optical passive component and module suppliers was very close to zero over the last 5 years, despite strong demand for optics. Compared to every other level of the industry supply chain, profitability of the optical component manufacturers was the lowest by far.
Financial reports of several suppliers of optics started to show signs of improvement over the last 2-3 quarters. The average profitability of optical component and module vendors was 2% in 2015, compared to a loss of 1% in 2014. There is a good chance for reaching 5-7% profitability in 2016-2017 and setting a new record. The highest profitability achieved so far was 5.5% in 2010, preceded by more than ten years of heavy losses.
Net profit margins in the optical components value chain
May 25, 2016 News_Release_Profitability of the Optical Component Business Improved Last Year and It May Set a New Record in 2016
Source: Public financial reports
Several component vendors restructured their businesses in 2013-2014 and these efforts are starting to pay off now. Accelink, Applied Optoelectronics, Coadna, Neophotonics and Oclaro reported significant improvements in financial performance. Acacia joined the list of publicly traded vendors recently and holds the record with a 17% net margin for 2015. Finisar’s profits started to improve in the second half of 2015 and we expect this trend to continue.
However, the average profitability is likely to stay in the single digits for a while. This industry is very competitive and it is likely to remain so for the next several years. Demanding customers, shorter product lifecycles and investments required to support development of new products are a heavy burden for suppliers. There are close to 40 vendors in the race to offer 100GbE optics to the cloud companies building mega-datacenters. Not many of these vendors will be successful in the long term, but they will continue to put pressure on the profitability of larger publicly traded companies in the industry.
Many start-up companies, betting their future on supplying high-speed optics to cloud vendors, develop products based on silicon photonics and expect that this new technology will give them a sustainable cost advantage. LightCounting’s report on Integrated Optical Devices offers detailed analysis of the opportunities for silicon photonics technology, and recognizes the potential advantages of this technology. However, we expect that a majority of high-speed Ethernet optics used in mega-datacenters will still be based on more established InP and GaAs based optics even in 2021.
Despite all the risks, developing new manufacturing technologies offers a path to sustainable competitive advantage and long-term profitability. Silicon photonics holds a promise for being such a technology. High-valued acquisitions of silicon photonics companies and the recent IPO of Acacia offered much needed success stories for investors. However, the risk remains high. Many other vendors, starting just to ship silicon photonics based products now, will have to prove themselves in 2016-2018.
DK Photonics – www.dkphotonics.com  specializes in designing and manufacturing of high quality optical passive components mainly for telecommunication, fiber sensor and fiber laser applications,such as 1064nm High Power Isolator,1064nm Components, PM Components, (2+1)x1 Pump Combiner,Pump Laser Protector,Mini-size CWDM,100GHz DWDM,Optical Circulator,PM Circulator,PM Isolator,Fused Coupler,Mini Size Fused WDM.

Thursday, July 30, 2015

Field-Terminated Fusion Splice-On Connector-North American Market Forecast

According to ElectroniCast, the quantity of field-terminated fiber optic splice-on connectors in North America will increase at an explosive annual rate of 41.9% …
ElectroniCast Consultants, a leading market research & technology forecast consultancy addressing the fiber optics communications industry, today announced the release of a new market forecast of the consumption of field terminated fiber optic fusion splice-on connectors in North America.
Fusion_Splice_on_Connector
Field terminated fiber optic fusion Splice OConnectors (SOC) are installed for rapid repairs or for limited space situations where pre-terminated fiber cabling may be difficult, such as when the cable assembly needs to pass through small openings such as conduit.  The splice-on connectors are an option when the precise length of the optical fiber link is not pre-determined and a field-installed termination solution is required, such as in Fiber to the Home (FTTH) and other communication applications.
Last year, 306-thousand field-terminated fiber optic fusion splice-on connectors were installed in non-OEM applications in North America.  The number of connectors is forecast to increase at an explosive rate of 41.9% per year, reaching 2.49 million units in 2020.  Market forecast data in this study report refers to consumption (use) for a particular calendar year; therefore, this data is not cumulative data.
The Telecommunications application category is forecast to maintain the leadership in relative market share through the year 2018, until the Premises Networks application category is set to capture the lead.  Telecommunication use is forecast for 35.5% annual growth in quantity (2014-2020), mainly driven by access optical fiber deployment.  The Cable TV application is also driven by the use of connectors for FTTH (Home) and FTTB (Building/MDUs – Multiple Dwelling Units).
The market forecast segments the connectors by single-mode and multimode optical fiber, as well as into the following types: MPO, LC, FC, ST, SC, and other.  The use of single mode fiber optic field-terminated fusion splice-on connectors in North America is forecast to increase from 173.8-thousand units in 2014 to 1.49 million in 2020.  Multimode fiber is best suited for use in short lengths, such as those used in datacom and specialty networks and in 2020, multimode connectors are expected to reach 1-million units.
“In 2014 in North America, 4.3-thousand new fusion splicers were brought into Premises Datacom, and the use of field terminated fusion splice on connectors is a major market driver for the use of fiber optic fusion splicers used in premises network applications, the data center (DC) and longer link length datacom cable installations,” said Stephen Montgomery, Director of the ElectroniCast market study.
“The SOCs are emerging as a viable alternative to pre-terminated fiber optic cables (pigtail and cable assemblies/ patch cords).  Also, based on primary research interviews with network planners and installers, we are finding that field terminated fusion splice-on connectors are rapidly being accepted as a go-to solution.  With SOCs, communication network technicians can install reliable cable links with exact lengths, eliminating cable shortness or excess slack that is typically a result with the pre-terminated cable solution,” Montgomery added.
Tags: CWDM Multiplexer, DWDM Multiplexer,19" rack mount chassis CWDM, ABS plastic box, CWDM MUX/DEMUX Module,  LGX CWDM Module,8CH CWDM Module, 16CH CWDM Module

Wednesday, July 15, 2015

The Modern Data Center – Modular Data Center

The modern data center is a complex place. The proliferation of mobile devices, like tablets and smartphones, place an ever-increasing pressure on the IT departments and data centers. End-user and customers’ expectation levels have never been higher and the demand for data shows no sign of slowing down. Data center managers must manage all of these elements while also remaining efficient and keeping costs under control. So where does the data center go from here?Modular Data Center
One thing I have noticed in the evolution of the modern data center is that the facilities are gaining importance; improving energy efficiency and IT management have come to the forefront. Maximizing the organization’s resources is vital, and that means delivering more to facilities and equipment without expending more on staffing. IDC forecasts that during the next two years, 25 percent of all large and mid-sized businesses will address the power and cooling facility mismatches in their data centers with new IT systems and put a 75 percent cap on data center space used. So there again is the crucial challenge of doing more and innovating while keeping budgets and spend under control.
Another key part of the next generation data center mix is automation. Today’s data center manager is engaged in sourcing the right automation tools that will help them manage energy consumption and add new technology without disrupting normal operations. These are a few of the key challenges in the modern data center—so data center managers and IT departments must find ways to address them.
Where does the Data Center Go Next?
At the heart of data center evolution is the information technology sector’s rapid rate of change. Many new products and services must be implemented with much less time to value, and data centers need to be agile enough to assess and accommodate them all. If you examine enterprise data centers, then you might observe the ways that cloud computing and hyperscale innovations are displacing traditional enterprise systems, with new paradigms pioneered by innovators like Amazon and Google. With new options being developed, enterprises now have to chart strategies for cloud computing, including public, private or hybrid cloud. Gauging where the technology will go next is difficult to tell. Will the traditional vendors, such as Cisco and EMC, prevail or will new paradigms from Nutanix or Simplivity disrupt and displace these traditional data center dominators?
The race is on to manage the rapid rate of change while also staying agile, meeting end-user expectations and managing costs. For example, data center managers must handle the level of capacity their data center requires while ensuring they don’t overspend on unused capacity. This is where the focus on data center design comes into play.
Taking the Data Center Forward
These specific needs and challenges that the modern data center faces require working with the right tools and solutions. Modular, purpose-built data center infrastructure allows organizations to develop data center services based on need—when capacity rises and where capacity is needed. For example, we’ve observed in Singapore that most data centers operate slightly above 2.1 Power Usage Effectiveness (PUE). This means that companies spend more on cooling their data center rather than on operating and powering the IT equipment. It is a simple challenge—drive efficiency without impacting operations. You want to drive PUE down to approximately 1.06, regardless of where you need to operate, and reap huge energy savings while better serving customers. If done right, there is a positive environmental impact.
Changing the paradigm of the traditional data center enables organizations to reap these rewards. Assessing and establishing business objectives that reflect what is possible, rather than what always has been or what is easier and more comfortable, has led to innovative services and new business models that reset the competitive standards for everyone. Better PUE is a mandatory step in this process. The PUE journey continues as evidenced by Amazon, which had recently taken to harnessing wind to power its data centers. Modular data centers will play a major part in this PUE journey, thanks to more efficient use of energy and greater flexible support for resiliency and compute density.

Wednesday, June 3, 2015

How much do you know about CWDM Multiplexer and DWDM Multiplexer

CWDM multiplexer and DWDM multiplexer are two main products of WDM multiplexer. The full name of WDM, CWDM and DWDM are wavelength division multiplexing, coarse wavelength division multiplexing and dense wavelength multiplexing respectively. How much do you know about them? If you have no idea, the following introduction will help you a lot.
In the very first place, let's get to know what the WDM is. Based on a single fiber optic transmission, many optical signals that are loaded with information and have different wavelengths can be synthesized into one single beam by WDM multiplexer. Then, a special communication technology will be adopted to separate those optical signals at the receiving terminal. On the basis of WDM technique, the CWDM device and DWDM device are two popular products in the current market.
CWDM device
When it comes to the CWDM multiplexer, first of all, it provides service for metropolitan area network access layer, whose working principle is in line with WDM multiplexer. However, it simplifies the structure largely. For example, the filter film layer number of CWDM is just 50, while the WDM is as many as 200 layers. That is to say, the rate of finished products has been improved and the cost has been reduced largely. Besides low cost, the CWDM device is also advantageous in small volume, small power consumption, convenient maintenance and large transmission capacity. The laser device in the system doesn't need semiconductor refrigerator and temperature controller, which can lessen the power consumption obviously. However, the CWDM also has shortcomings. For instance, developing and simplifying the optical transceiver module and optical component is urgent to be solved.
DWDM device
As to the DWDM multiplexer, comparatively speaking, it makes the best use of fiber-optical bandwidth and enhances the message capacity of cellular system, which is well-known for simple dilatation and stable performance. Integrated system and open system are two dominant application systems of DWDM multiplexer, which are based on different wavelength conversion technologies. No matter which system is adopted, the free-running 1510nm wavelength will be chosen to carry OSC or optical supervisory channel so as to transmit information. Such an OSC is a comparatively independent subsystem, which offers maintenance and management information.
The last question is what advantages WDM technique has when compared with traditional transmission methods. Generally speaking, it includes such aspects as making best use of low-loss wave band, transmitting several optical signals in one optical fiber, good flexibility, low investment cost, excellent system reliability and fast and convenient recovery.

Tags: CWDM Multiplexer, DWDM Multiplexer,19" rack mount chassis CWDM, ABS plastic box, CWDM MUX/DEMUX Module,  LGX CWDM Module,8CH CWDM Module, 16CH CWDM Module

Friday, September 6, 2013

40/100GbE MPO FIBER OPTIC CONNECTOR – NORTH AMERICA MARKET FORECAST


According to ElectroniCast, 12-fiber single mode MPO connector consumption value will increase 141% per year through 2016…
ElectroniCast Consultants, a leading market research & technology forecast consultancy addressing the fiber optics communications industry, today announced the release of their annual market forecast of the North American consumption of MPO Fiber Optic Connectors used in 40 and 100GbE communication links.
In 2006, the IEEE 802.3 working group formed the Higher Speed Study Group (HSSG) and found that the growth in bandwidth for network aggregation applications was outpacing the capabilities of networks employing link aggregation with 10 Gigabit Ethernet. (The standard was announced in July 2007 and was ratified on June 17, 2010).
Applications such as video, virtualization (cloud computing), switching/routing and convergence are driving the need for bandwidth expansion. We continue on the path of gradually developing of growth (and change) from 1G to 10G to 40G and 100G. For data center (DC) environments operating at 40GbE or 100GbE, fiber optic cabling is generally recommended because its reach supports a wider range of deployment configurations compared to copper solutions.
The capability to choose increased speed will enable networks to play with the 10GbE resources to the access layer allowing 40/100GbE to handle traffic at the aggregation and core layers. In this market research report, ElectroniCast Consultants provides their 2011-2016 forecast and analysis of MPO fiber optic connectors used in North American 40/100GbE optical communication networks.
The 10GbE movement into the data centers will continue; however, “future-proofing” is continuing with an accent (40/100G), which is driven by significant broadband expansion demands, especially in regards to network productivity and operating expenses (OPEX costs).
According to ElectroniCast, 12-fiber multimode MPO patchcord dominate the North American (Mexico, Canada and the United States) 40/100GbE MPO connector marketplace in 2012; however, 12-fiber single mode MPO connector consumption value will increase at the fastest pace of 141% per year through 2016.
According to ElectroniCast, 12-fiber multimode MPO connectors currently dominate the North American 40/100GbE MPO connector marketplace, based on consumption value…
40 and 100 GbE MPO Connector Value

North America Market Share (%) in 2012, by Type

mpo patchcord
(Source: ElectroniCast Consultants)
DK Photonicswww.dkphotonics.com specializes in designing and manufacturing of high quality optical passive components mainly for telecommunication, fiber sensor and fiber laser applications,such as PLC Splitter, WDM, FWDM, CWDM, DWDM, OADM, Circulator, Isolator, PM Circulator, PM Isolator, Fused Coupler, Fused WDM, Collimator, Optical Switch and Polarization Maintaining Components, Pump Combiner, High power isolator, Patch Cord and all kinds of connectors.

Wednesday, July 24, 2013

Compact CWDM Mux/DeMux Module offer performance, economic advantages

CWDM systems are advised a bargain another to DWDM systems. They booty advantage of low-cost, uncooled broadcast acknowledgment (DFB) lasers and beneath acrimonious amicableness multiplexing and demultiplexing components.
Individual CWDM filters about are adapted to accept at atomic a 13-nm-wide flattop passband, with baby passband ripple and aciculate ashen skirts, centered on 20-nm spacings on the ITU amicableness grid. The blanket challenges for a CWDM thin-film clarify (TFF) are far beneath than those of its DWDM cousins, authoritative them beneath big-ticket to manufacture. In addition, with best applications defective alone four to eight amicableness channels in the abreast approaching for the metro/access markets, account administration of clarify types is easier than in the DWDM situation, which added enhances the cost-effectiveness advantages of CWDM components.
Without axiological abstruse changes, the optical blueprint and packaging requirements for multiplexing apparatus become cogent back they are asked to accumulate clip with the changes acquired by a system-design about-face to CWDM. Added specifically, CWDM multiplexing apparatus face the afterward challenges:
•Small basal admeasurement so that a multichannel CWDM band card-integrating assorted amicableness transceivers with a multiplexer in a distinct module-is possible.
•Low admittance accident that minimizes or eliminates the charge for amplifiers.
•Excellent temperature-dependent achievement and believability so they can be acclimated in amoral environments.
Two capital CWDM multiplexer candidates are in the exchange to abode these challenges: those based on bottomward three-port TFF accessories and those based on free-space bottomward of TFFs or what can be alleged the bunched CWDM (CCWDM) package.
Image
Figure 1 shows both approaches. A three-port clarify for a accurate CWDM amicableness access consists of a lens to accumulate the optical axle from a accepted port, a TFF of that amicableness access to canyon or reflect the axle based on its amicableness contents, and a additional lens to refocus the transmitted axle to a chiral port. The TFF alone axle will be bounced off the clarify and accomplished the aforementioned aboriginal lens, but it will be refocused to the absorption port.
Figure 1. The free-space bunched CWDM technology provides both abate bore admeasurement and beneath loss.
To accomplish a CWDM multiplexer, several three-port filters are cascaded in such a way that anniversary filter’s absorption anchorage is affiliated to the consecutive filter’s accepted port. The affiliation amid two apparatus is through a cilia splice. Due to the limitations from the minimum angle ambit of a cilia circuit, the ambit of the packaging cassette cannot be bargain significantly. In fact, air occupies best of the accepted CWDM amalgamation space, which about comprise 110×80×12-mm housings absolute the three-port filters and their abutting fibers.
A CCWDM approach, however, yields a added bunched anatomy factor. Adjacent channels are cascaded, not through a beefy cilia avalanche band-aid but rather in free-space, beneath collimated axle conditions. By removing the fibers central the accessory cassette, the CCWDM box ambit are alone 41×28×8.7 mm, or a aggregate 10 times abate than the accepted approach.
To abate or annihilate the use of optical amplifiers in a CWDM system, it is analytical to abbreviate the admittance accident of a CWDM multiplexer. The basis causes of CWDM accessory accident are collimator-to-collimator coupling accident and clarify loss. Since the three-port cascaded clarify access uses almost alert the cardinal of collimating pairs than the CCWDM approach, it has intrinsically college admittance loss, abnormally in the case of ample access count.
The affliction admittance accident amid channels of an n-channel three-port CWDM and CCWDM can be estimated as Σ(ILcollimator)n+Σ(ILfilter,R)n-1 +ILfilter,T and ILcollimator+Σ(ILfilter,R)n-1 +ILfilter,T, respectively. Added specifically, a three-port CWDM about uses GRIN lens collimators admitting the CCWDM usually uses C-lens-based collimators to ability continued alive distance. In either case, the applied brace collimator accident is about 0.2 dB. However, the absolute cardinal of collimators is beneath in the CCWDM, consistent in a lower all-embracing collimator loss. Clarify absorption accident is about beneath 0.005 dB to accomplish chiral abreast requirements of 30 dB. Clarify chiral accident is about beneath 0.15 dB to accommodated absorption abreast requirements of 15 dB.
By appliance the blueprint above, it can be apparent that the three-port cascaded clarify access can action 0.97- and 1.79-dB affliction admittance losses for four-channel and eight-channel multiplexers, respectively, while the CCWDM access delivers 0.37 and 0.39 dB for the aforementioned two cases beneath the aforementioned assumptions, respectively.
It should be acicular out that for a CCWDM module, the best accident achievement could alone be accomplished back all pairs of collimators are altogether akin (i.e., back the axle waist for anniversary brace of collimators can overlap). In the ideal case, an n-channel CCWDM needs n+1 altered types of collimators, which is not applied for accumulation production. In reality, one or two types of collimators are accumulated on one substrate.
Thus, some collimator pairs do not accommodated the ideal action of absolute matching, arch to college losses than what is quoted above. Figure 2 shows archetypal admittance accident distributions of a three-port cascaded clarify eight-channel CWDM multiplexer and its CCWDM analogue at allowance temperature. CCWDM-based accessories display an boilerplate accident of 0.82 dB, while their three-port counterparts accept an boilerplate of 2.1 dB.
Image
Figure 2. Since they crave beneath collimators, bunched CWDM modules ache from beneath accident than their cascaded clarify counterparts.
Another important aspect accompanying to the admittance accident is the channel-by-channel accident profile. For abounding arrangement applications, it is abominable for altered amicableness channels of abstracts to abate abnormally forth a chiral line. Thus, compatible admittance accident amid channels is about required.
From the accident admiration discussed above, ample non-uniform losses are built-in to the three-port cascaded devices. In the eight-channel situation, for example, the differences can be up to 1.5 dB. To boldness this issue, the bald channels accept to be akin one by one, and added chiral attenuations are added at cilia splices and/or chiral channels, arch to added production-cycle time.
CCWDM devices, however, accept abundant lower collimator accident accumulation; this advantage gives added adequate and added compatible accident control. Accord distributions of absolute eight-channel CCWDM accessories are about 0.4 dB. For CCWDM, collimator mismatching is the capital agency of accident difference. Accord can be bigger by designing in added collimator types.
Many CWDM metro/access networks are now advised after temperature ascendancy measures. The deployed acquiescent and alive apparatus charge be able to assignment in ambient temperatures about alignment from -5° to +65°C. New “industrial temperature” blueprint accept requirements as astringent as -40° to +85°C. Maintaining about positions amid the optical subcomponents beneath these desperate temperature changes is a cogent packaging challenge.
Different optical layouts amid the three-port clarify cascaded architecture and the CCWDM aftereffect in altered packaging approaches, and the accident aberration behavior is not the aforementioned amid them. In the three-port cascaded clarify multiplexer, the centralized cilia splices accord little to temperature-dependent accident (TDL). Anniversary basal three-port filter, with a brace of pigtails, GRIN lenses, and a filter, however, is a above contributor to TDL. Added specifically, for an eight-channel case, the alone clarify absorption access accident variations boss the multiplexer’s all-embracing bore TDL. This accident is apprenticed mainly by the adherence of a filter, lens, and complect fixation scheme. Baby and annular bonding surfaces are the capital account of temperature instability.
A CCWDM device, however, uses a altered optical approach. The collimators and filters are affirmed on a accepted substrate, fabricated of metal or glass, appliance an adapted adhesive and abating process. Unlike the three-port filter, area the clarify is absorbed by its bland blanket surface, a CCWDM clarify is army through a asperous clarify sidewall. The bonding backbone is abundant greater in the CCWDM case than in a three-port filter, which finer minimizes reflected axle tilting-the ascendant agency for all-embracing TDL for the device. Additionally, anniversary collimator in the CCWDM alone has a distinct cilia pigtail.
Image
Figure 3 shows a allegory of archetypal TDL after-effects for a three-port cascaded clarify accessory and a CCWDM-based eight-channel multiplexer. Both TDL curves display beeline behavior, in accordance with the antecedent analysis. The abruptness of the ambit for the three-port cascaded clarify access is steeper than that of the CCWDM, advertence the absorption channels of three-port accessories are added acute to ambient-temperature changes.
Figure 3. Bunched CWDM accessories appearance beneath acuteness to temperature than three-port cascaded modules because their architecture minimizes reflected axle tilting.
Manufacturing a adequate CCWDM accessory demands accurate ascendancy of accomplishment processes. Fortunately, such action ascendancy does not crave essentially altered methods than bearing a accepted three-port filter. Accomplishment ascendancy archive again appearance affable accustomed distribution, with an boilerplate accident of about 0.85 dB and accepted aberration of 0.096 dB. Assuming the accident blueprint for a archetypal eight-channel CCWDM to be 1.3 dB, which is already abundant added adequate than the 2.5 dB for a archetypal three-port cascaded clarify device, again the Cpk (process adequacy index) amount is 1.67, advertence a abiding accomplishment process.
Once an optical arrangement has been installed, the account activity becomes a above concern. Telcordia GR-1209-Core and GR-1221-Core specify a adjustment to simulate absolute activity altitude appliance assorted distinctively advised analysis procedures. These tests are about advised applicative to component-level devices, like the three-port filters. The archetype for casual all these abstracts is a <0.5-dB admittance accident change. Telcordia additionally specifies a module-level artefact achievement and believability through GR-63-Core, although its testing altitude are about admired as beneath astringent than GR-1221-Core. Today, best passive-product suppliers artlessly analysis their accessories through GR-1221-Core, with some called module-level testing done beneath abundant beneath acrimonious conditions.
However, the absoluteness is that for a distinct three-port filter, it is not actual difficult to accommodated the GR-1221-Core tests by assuming a <0.5 dB admittance accident change. But a avalanche of eight such three-port filters that alone anesthetized GR-1221-Core tests may accept a best admittance accident change up to 4 dB, a action that is not adequate by any arrangement integrator. To agreement the all-embracing admittance accident change charcoal aural 0.5 dB during the account activity of a multiplexer, the alone three-port filters’ believability has to be far added adequate than accepted testing specs require.
For CCWDM modules, the multichannel affiliation is done at the accessory akin and on a accepted substrate aural the package. Proper action methodologies and accurate ascendancy accomplish accredit accomplishment after-effects in which all seven testing categories are able-bodied aural the GR-1221-Core-specified pass/fail criteria. In fact, the greatest admittance accident change amid samples subjected to the seven testing areas is 0.29 dB for the eight-channel case. Statistically speaking, for a three-port cascaded clarify bore to authenticate this akin of believability testing results, the alone three-port filter’s GR-1221-Core testing belief has to be set several times tighter than accepted levels.
Image
The Table shows a arbitrary of the CCWDM against a accepted three-port cascaded clarify multiplexer for an eight-channel application. It is bright that the CCWDM technology not alone offers a added bunched package, but additionally lower loss, added adequate uniformity, greater ecology stability, and a added reliable band-aid to accepted arrangement requirements than its acceptable counterparts.

Monday, July 22, 2013

DWDM multiplexer and CWDM mux


As the DWDM mux/demux & CWDM mux/demux goods are playing an even more and more important role inside the data transmission field, today organic beef focus on the key options that come with DWDM mux and CWDM multiplexer first.
100G_32ch DWDM Module
100G_32ch DWDM Module
16CH CWDM Mux Module
16CH CWDM Mux Module
As everybody knows, DWDM which represents Dense Wavelength Division Multiplexing was created to multiplex DWDM channels into one or two fibers. This sort of products could make the optimum usage of your existing fiber optic infrastructure in an ideal way. It puts multiple signals together and sends them simultaneously along a fiber, simply with transmissions happening at different wavelengths, and also this turns an individual fiber to the virtual equal of a handful of fibers. It is really a good and also the most reasonable solution to date that will meet our increasing desires of large data transmissions. And also by using the impressive DWDM technique, it will transmit greater than 40 connections of numerous standards, data rates or protocols more than one common fiber optic link. For the DWDM products, the DWDM mux products combine several data signals into one for transporting on the single fiber as the DWDM demux (demulitplexers) separate the signals on the opposite end. Each signal reaches a different wavelength, they cooperate with each other perfectly.
The common configuration of DWDM mux is 4, 8, 16 and 32 channels. These DWDM modules passively multiplex the optical signal outputs from 4 or maybe more electronic devices, send on them an individual optical fiber and then de-multiplex the signals into separate, distinct signals for input into electronic devices in the opposite end with the fiber optic link.
The DWDM mux products always own these following features.
1.Low insertion loss and high isolation.
2.Simple to install, requires no configuration, and disassembles easily to clean.
3.Fully transparent at all data rates and protocols.
4.Completely passive, no power required, no cooling and so on.
And for the CWDM multiplexer, the core of CWDM Module application will be the passive mux/demux unit. The most popular configuration is 4 , 8 ,16 channels. Available in 19″ Rack Mount or LGX module package. Optional wide band port for existing 1310nm or 1550nm port is available to multiplex using these CWDM Channels. As well as our CWDM Transceiver series or perhaps the wavelength converter series, the bandwidth with the fiber can be employed in the economical way. The CWDM multiplexer is always be employed to improve your fiber capacity easily and quickly.
As the very best Chinese fiber optic products supplier, DK Photonics provides lots of this sort of products which are reliable and economical. If you may well not find it on our website (what we upload is the mux & demux inside a device), you can call us to customize it to suit your needs. For standalone multiplexers, it could increase dual fiber link capacity up to 18 channels and could be combined with a lot of the CWDM GBIC, SFP, XFP, X2, XINPAK, SFP modules. It’s also super easy to make use of and install, and also have some common features because the DWDM mux. Now it’s prepared to do the job, please do not hesitate to make contact with us. Thank you for visiting contact the DK Photonics representatives for more information if you need good quality and cost-effective DWDM mux and CWDM multiplexer products.