7/26/2019

Do you know MUX and DEMUX in WDM?

Wavelength Division Multiplexing(WDM) is one of the most common way of using wavelengths to increase bandwidth by multiplexing various optical carrier signals onto a single optical fiber. It combines a series of optical carrier signals with different wavelengths carrying various information and coupled to the same optical fiber for transmission at the transmitting end. At the receiving end, optical signals of various wavelengths are separated by a demultiplexer. This technique of simultaneously transmitting two or many different wavelengths in the same fiber is called wavelength division multiplexing, or WDM. Depending on the direction of the transmitted signal, WDM can be used for multiplexing or demultiplexing.
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MUX
The main function of the combiner MUX is to combine multiple signal wavelengths into one fiber for transmission. At the transmitting end, the N optical transmitters operate on N different wavelengths respectively, and the N wavelengths are separated by appropriate intervals, which are respectively recorded as λ1, λ2, … λn. A multiplexer combines these optical wavelengths into a single-mode fiber. Since optical carrier signals of different wavelengths can be regarded as independent of each other (regardless of fiber nonlinearity), multiplexing transmission of multiple optical signals can be realized in one optical fiber. Through multiplexing, communication carriers can avoid maintaining multiple lines and effectively save operating costs.
DEMUX
The main function of DEMUX is to separate the multiple wavelength signals transmitted in one fiber. In the receiving part, the optical carrier signals of different wavelengths are separated by a Demux and further processed by the optical receiver to restore the original signal. A multiplexer (Demux) is a device that reverses the processing of a multiplexer.
Performance parameters
Multiplexer/demultiplexer devices (MUX/DEMUX) are key components in WDM that affect the performance of the entire system. What are the main performance parameters of the multiplexer/demultiplexer?
  • Working band
    Working bands of the multiplexer/demultiplexer. For example, there is three bands of 1550 wavelength: S-band (short-wavelength 1460~1528nm), C band (conventional band 1530~1565nm), L band (long-wavelength band 1565~1625nm).
  • Number of channels & channel spacing
    The number of channels is the number of channels the device has to send information. This number can range from 4 to 160 with design enhancements adding more channels. The normal channels are 4, 8, 16, 32, 40, 48, etc. Channel spacing is the center-to-center difference in frequency between neighboring channels. It can be used to prevent inter-channel interference.
  • Insertion loss
    Insertion loss is the attenuation caused by the insertion of wavelength division multiplexers (WDM) in an optical transmission system. The attenuation effect of wavelength division multiplexer directly affects the transmission distance of the system. In general, the lower the insertion loss, the less the signal attenuation.
  • Isolation
    Isolation refers to the degree of isolation between individual channel signals. High isolation values can effectively prevent crosstalk between signals and cause distortion of the transmission signal.
  • Polarization dependent loss(PDL)
    Polarization-dependent loss is the maximum deviation in insertion loss across all input polarization states.
In addition to the above, there are of course other performance parameters that affect the multiplexing/demultiplexing devices, such as operating temperature, bandwidth, etc. Generally, a multiplexer and a demultiplexer are combined into a single device allowing the device to process both incoming and outgoing signals. Or a single output of a multiplexer can be connected through a single channel to a single input of a demultiplexer. But mostly is the combined and complex devices for both directions transmission.
HYC Co., Ltd, a leading WDM manufacturer over 19 years, offers a series of WDM/CWDM/DWDM/FWDM/CCWDM modules. You can know more details of WDM MUX/DEMUX at www.hyc-system.com
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7/19/2019

HYC Supply WDM Series for 5G Networks

With the rapid development of 5G networks, the demand in long-distance and large capacity bandwidth increased rapidly. It is an important requirement for the bearer network in the 5G era to increase network capacity through bandwidth increasing and to have the ability to smoothly expand bandwidth in the future. HYC has launched a series of WDM modules based on 5G network applications.
The LAN WDM LGX module of HYC is a wavelength division multiplexing technology based on TFF (thin film filter), which is suitable for central office terminal (COT) and remote terminal (RT). This LAN WDM uses zero-dispersion wavelength to make the optical signal more flat and stable in the transmission process and avoid signal crosstalk; 800GHz channel space enables customers to have more channel choices and increase the transmission capacity of zero-dispersion wavelength. It has low insertion loss, high isolation, and wide operating temperature(-40 ~ +85 ℃).
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DWDM has 100 GHz, 200 GHz channel spacing, which is suitable for long-distance, large-capacity trunk network, or ultra-large capacity MAN core nodes. This 5G DWDM module is designed for central office terminal (COT) and remote terminal (RT), with LGX or ABS packages. The common configuration is 4, 8, 12 and 16 channels. Custom extension (EXT) port and OTDR port for 4G networks are also available upon request.
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5G is moving toward maturity and large-scale deployment. The application of passive WDM technology can flexibly meet the requirements of 5G base station construction, greatly save the optical fiber resources, and increase broadband by several times or even dozens of times to meet the ultimate needs of users.

7/12/2019

DWDM for Fiber Optic Capacity Expansion

Dense wavelength-division multiplexing (DWDM) is the most popular WDM technology with telecommunications and cable companies because of its ability to handle so much data. It helps to expand the capacity of an existing fiber optic backbones and get it ready for 5G deployments.
How do DWDM works? It combines and transmits multiple signals of different wavelengths simultaneously on the same fiber. For example, if an optical fiber has a capacity of 2.5 Gb/s, DWDM can multiplex 8 OC-48 signals into a single optical fiber, which can expand the optical fiber capacity from 2.5 Gb/s to 20 Gb/s. The common configuration is 4, 8, 16, 32 and 40 channels. Currently, because of DWDM, single fibers have been able to transmit data at speeds up to 400Gb/s.
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Wavelength spacing
The most difference between CWDM and DWDM is the spacing of wavelength which causes the number of wavelength or channels that can be used. That’s the difference between “Coast” and “Dense”. CWDM channels each consume 20 nm of space. Instead of the 20 nm spacing in CWDM, DWDM uses either 50, 100 or 200 GHz spacing which allows many more wavelengths to be packed onto the same fiber. The common channels of CWDM are 8 to 18, while DWDM can even up to 40 channels.
Long distance
Compared with CWDM, DWDM is designed for long-haul transmission with its tighter wavelength spacing. With the help of EDFAs(Erbium Doped-Fiber Amplifiers) to boost the strength of the signal, DWDM systems can work over thousands of kilometers.
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With 5G on the way, service providers need to get the most bandwidth out of their current fiber networks.  DWDMallows carriers to get the most out of their valuable fiber assets.  Expansion is easy to achieve without the need to change or replace the existing network.

7/05/2019

SC Secure Lockable Connector For Highly Sensitive Applications

Introducing HYC new SC secure lockable connector designed to prevent unauthorized access or changes.
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These SC secure lockable connectors are used in a variety of highly sensitive applications such as military, government and financial where multiple operation groups may exist. Once the connector is locked, it can only be removed with the matching color key. Five coloured locking options are available for the connector with matching coloured keys, which is designed to suit various network applications. It gives you design flexibility and provides fast and easy network identification. Each color connector corresponds to a key. Improper plugging and unplugging can be avoided by unauthorized users with the access to the networking room. It is the keyed to prevent network interruption or error.
It is very important to ensure fiber connectivity’s stably and security in large volume traffic areas that are accessed by multiple people. There is some environments where contains different independent networks for multiple managers or departments. The secure lockable connectors help to reduce the risk of accidental cross-connections and unauthorized changes.
These SC secure lockable connectors are fully compatible with Industry Standard SC adapters. And it has 2.0/3.0mm cable types for the most demanding network performance.
The dust cap also has a lock function to prevent access to unused ports. Port protection plugs are used to lock out ports from unauthorized access or tampering. Access to empty or unassigned ports can be prevented with the use of color locking dust cap.
Prevent unauthorized or accidental disconnects or cross-connections to help you manage your network. By using SC secure lockable connector, networks can effectively be limited to certain groups, access levels in a co-location environment. By using the SC secure lockable connector, the networks can effectively be limited to authorized groups or access levels in a collaborative network environment. Different colored connectors and keys are easy to be identified during cable installation and maintenance which saves lots of time.
HYC Co., Ltd(HYC)is a national Hi-tech optoelectronics company engaged in R&D, manufacture, and marketing of fiber optical products. Providing professional product and service for fiber connectivity, WDM, PLC splitter, and high-density datacom cabling. HYC products and solutions widely applied in 4G/5G, Data Center and Cloud Computing industry, etc.
http://www.hyc-system.com
sales@hyc-system.com