HUAWEI OPTIX OSN 6800 PDF

Ethernet communication between the boards fails, the board icons on the T turn gray boards unreachable to the T , and no exceptions occur on the boards of the slave OptiX OSN subrack. NE software version: 5. The SCC board is faulty. All the boards are faulty with a small probability. The EFI board is faulty with a small probability. Power off the AUX board and then power on it to restart.

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If supervision is required at the receive and transmit ends, you can configure the OPM8 boards at each end for supervision. Monitoring function Detects optical power of each wavelength and reports the standard wavelength and optical power to the SCC board. Monitors the optical power of each channel. Figure 1 Functional modules and signal flow of the OPM8 board Signal Flow The 1x8 optical switch selects one channel of optical signals from the board it is connected to, and sends the channel to the optical power monitor module.

After being analyzed and converted, the optical power value is sent to the control and communication module through a data interface. Module Function 1x8 optical switch Selects one channel of optical signals from the accessed eight channels of optical signals for optical. Optical power monitor module Monitors channel optical power and wavelength information and reports the data to the driving and control module.

Driving and control module Instructs the 1x8 optical switch to select one channel of optical signals for spectrum analysis. Control and communication module Controls board operations. Controls the operations on each module of the board according to CPU instructions. Collects information about alarms, performance events, working states and voltage detection from each functional module on the board. Communicates with the SCC board. Power supply module Converts the DC power supplied by the backplane into the power required by each module on the board.

Specifications include optical specifications, dimensions, weight, and power consumption.

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Huawei OptiX OSN6800

If supervision is required at the receive and transmit ends, you can configure the OPM8 boards at each end for supervision. Monitoring function Detects optical power of each wavelength and reports the standard wavelength and optical power to the SCC board. Monitors the optical power of each channel. Figure 1 Functional modules and signal flow of the OPM8 board Signal Flow The 1x8 optical switch selects one channel of optical signals from the board it is connected to, and sends the channel to the optical power monitor module.

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Huawei OSN 6800

Application As a type of optical amplifier unit, the OAU1 board amplifies optical signals at the transmit end or receive end. The total wavelengths range from nm to nm. Supports the system to transmit services over different fiber spans without electrical regeneration. Actual gain includes the noise, and the value is bigger than that of nominal gain. Online optical performance monitoring Provides an online monitoring interface. A small number of optical signals can be output to the spectrum analyzer or spectrum analyzer unit through the interface to monitor the spectrum and optical performance of the multiplexed signals with no service interruption. Adding or dropping one or more channels or optical signal fluctuation does not affect the signal gain of other channels.

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Huawei Optix OSN 8800 and Optix OSN 6800 Platforms Release 5.51.08.38

Best price Huawei OSN wireless qudio transmitter receiver. Huawei dwdm equipment OSN Uonel will quote all destination charge prior once we have confirmed order. Dynamic optical layer With the dynamic optical layer, the OptiX OSN supports multi-dimensional crossconnection of wavelengths and transmits services quickly over wavelengths, reducing the costs on O-E-O conversion. This enables uniform carrying of any services over one wavelength and therefore improves wavelength utilization to a great extent. A Multi-System Geochemical Approach for. Multi-dimensional grooming refers to wavelength grooming in multiple transmission directions.

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