1/24/2019

The advantages of CCWDM

CCWDM is a compact CWDM, Compact Coarse Wavelength Division Multiplexer. The CCWDM modules is the perfect means for adding capacity to your fiber optic network without installing additional fiber.
The main difference between CWDM and CCWDM is that the CWDM system uses a low-cost, no-refrigerated distributed feedback (DFB) laser, while the CCWDM collimator and filter are soldered on a common substrate, and the cascade structure is different.
A three-port filter for a particular CWDM wavelength channel consists of two lenses and a TFF of that wavelength channel to pass or reflect the beam based on its wavelength contents. Each filter’s reflection port is connected to the subsequent filter’s common port. The filters are connected by a fiber connector, which is a CWDM multiplexer.
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CCWDM is more compact. Adjacent channels are cascaded, not through a bulky fiber cascade solution but rather in free-space, under collimated beam conditions.
The principle is to use an input lens to focus the optical signals of the wavelengths λ1, λ2…λn on the first filter; the optical signal with the wavelength λ1 passes through the first filter and is coupled to the first output lens. In the first output fiber, the optical signal of wavelength λ1 is separated; the remaining optical signals are reflected by the first slide to the next slide for optical signal separation; and so on, until all signals are separated. The coupling between the wavelength channels is achieved in the form of zigzag lines of light.
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Based on the above principles, CCWDM has the following advantages:
  1. Small package size
Due to the limitations from the minimum bend radius of a fiber circuit, the dimensions of the packaging cassette cannot be reduced significantly.In fact, most of the space in the box is unused. CCWDM’s adjacent channels use parallel beams to cascade in free space instead of using optical fibers. Without the fiber used for cascading, the size of the CCWDM package can be greatly reduced. The standard 4CH CWDM has a size of 80×60×12 mm, and the CCWDM module of HYC Company has a size of 50×27×7.7 mm, which is about 1/4 of the standard CWDM package size. It can be widely used in high density environments.
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  1. Low insertion loss
Because CWDM and CCWDM adopt different packaging methods, the factors that cause loss is also different. The main factor affecting CWDM insertion loss is the coupling loss and filter loss between the collimator and the collimator. Due to different cascading modes, CWDM uses twice as many collimators as CCWDM, which inevitably leads to a large loss of CWDM, especially when the number of signals is large.
  1. Good stability
Compact CWDM devices are less temperature sensitive than CWDM. The main reason is that the construct of CCWDM reduce the tilt of the reflected beam.CCWDM is connected with a rough filter side, the bonding force is much larger than that of CWDM, which effectively reduces the tilt of the reflected beam. The reflected beam tilt is the most important factor in the TDL of the device. For example, HYC Company 4CH CCWDM module has an operating temperature range of -40℃ to 85℃ and can be adapted to various environments.
  1. High expandability
The CCWDM is available in 4/8/10 channels with an extended port channels, and can be expanded for more channels.
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In addition, CCWDM has the characteristics of good temperature stability and high reliability compared with traditional CWDM. Due to its small package size, ultra-low optical path loss and temperature, CCWDM modules are widely used in wavelength division multiplexing systems, passive optical networks, and broadcast cable TV networks.

1/16/2019

Synergy Research: Hyperscale Data Center Count Jumps to 430

New data from Synergy Research Group shows that the number of large data centers operated by hyperscale providers rose by 11% in 2018 to reach 430 by year end. The US still accounts for 40% of the major cloud and internet data center sites.
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Among the hyperscale operators, Amazon and Google opened the most new data centers in 2018, together accounting for over half of the total. The companies with the broadest data center footprint are the leading cloud providers – Amazon, Microsoft, Google and IBM. Each has 55 or more data center locations with at least three in each of the four regions – North America, APAC, EMEA and Latin America.
“Hyperscale growth goes on unabated, with company revenues growing by an average 24% per year and their capex growing by over 40% – much of which is going into building and equipping data centers,” said John Dinsdale, a Chief Analyst and Research Director at Synergy Research Group. “In addition to the 430 current hyperscale data centers we have visibility of a further 132 that are at various stages of planning or building. There is no end in sight to the data center building boom.”

1/11/2019

High Density MPO Connector Available for 400G

With the widespread deployment of data centers, the demand for 400G solutions is growing. The rapid increase in the number of network links in the data centers can cause the data center of conventional fiber cabling to become cramped and difficult to manage.  To solve this problem, data centers must obtain ultra-density to accommodate all the cabling used in the cabling. The MPO connector is designed to meet this high bandwidth requirement and meet the 400G high-speed transmission requirements.

MPO (Multi Push On) is a multi-core fiber connector type. It usually has 12 core fibers arranged in a row. A MPO connector can supports one or more rows of fibers. MPO connectors support higher bandwidth and higher density applications with 12 to 48 fiber count, which also can reach 72 or 96 in some limited applications.
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MPO has many fibers in a single connector, so it reduces the amount of time required to connect fibers. Same size as SC connector, MPO connector can accommodate multi optical fibers, providing the same times the density. This flexibility basically gives you a backbone cabling system that can be adapted to any technology change or connector change in the future.

This HYC’s MPO connector, comes with SM,SMLL,MM,MMLL,8C,12C, 24C,regular force spring, high force spring for your choice. Its patented push-pull tab design provides quick and easy connection, and is also well-suited for high-density, high-traffic applications. The Push-pull tab offers maximum accessibility in high density installations; install or remove with one hand without needing additional tools.
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Many applications are pursuing the high bandwidth throughput, therefore using high-density patching is inevitable. MPO connector has been widely used in data centers, telecom network, Ethernet network, and Optical communication equipment.

1/04/2019

High Density Solution - LC Uniboot Connector

With the increasing demand for data center and bandwidth, effective cable management is a real issue. How to build more optical fiber cables in limited space is becoming a challenge for data center managers.
For data center managers, convenient management and space saving are really important in high-density cabling. LC Uniboot connector is especially designed and manufactured for better airflow and cable management in high density applications.What are the benefits of LC Uniboot connector?
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Compact design to save space
Combining two fibers into a single jacket can save up to half the patching cable space compared to traditional LC duplex fiber patch cords.
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Push-pull tab design
For data center administrators, it can be challenged to insert and disconnect patch cords especially in a high density environment. The push-pull tab design of LC Uniboot connector makes for easy removal of the assembly without disturbing the neighbouring ports, which offers maximum accessibility in high-density installations. With this design, the technician is able to finish the installing and removing procedures with only one hand and no additional tool are needed. What’s more, half-surround tab end avoid the cable ganged each other.
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Easy Polarity Revisable
The traditional LC connector uses two jumper independent connections. If you want to change the polarity of the transmission and reception, you need to change the entire wiring system. It is difficult to do that and prone to failure. The uniboot option includes a reversing polarity feature that provides quick and easy polarity changes in the field. Polarity changes can be made in the field quickly, without the use of tools, to the correct fiber mapping polarity.
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The compact design and easy polarity reversible function of the LC Uniboot Connector makes managing cable systems simpler.