Board Mode (WDM Interface)

Description

The Board Mode parameter is used to set the work mode of a board depending on the application scenario.

Impact on the System

The signal flow, work mode, and functions of the board vary with the board mode. Hence, the switching between different board modes interrupts the active services.
NOTE:

In the case of the LOE board, the switching between different board modes does not bring a service interruption. Only the logical service management mode of the board is changed.

Values

The following table lists the work modes of the LAM board.

Value Range

Default Value

Eight OSCs Convergence,

Eight FE Services Converged to One GE Service,

Seven FE Services Converged to Two GE Services,

Four GEs + One OSC,

Three GEs + Three OSCs,

Two GEs + Two OSCs,

Two Services at Any Rate + Two OSCs,

Three Services at Any Rate + Three OSCs,

Four Services at Any Rate + One OSC,

Bidirectional Relay of Two Services at Any Rate

Eight OSCs Convergence

The following table lists the work modes of the SLAM board.

Value Range

Default Value

Eight OSCs Convergence,

Eight FE Services Converged to One GE Service,

Seven FE Services Converged to Two GE Services,

Four GEs + One OSC,

Three GEs + Three OSCs,

Two GEs + Two OSCs,

Eight FE Services Converged to One GE Service with GE ADM

Eight OSCs Convergence

The following table lists the description of each value of the LAM board and SLAM board.

Parameter Value

Remarks

Eight OSCs Convergence

The OptiX OSN 900A can be used together with the OptiX Metro 6040/ OptiX Metro 6100 for hybrid networking to support the communication between the OptiX OSN 900A and the OptiX Metro 6040 or OptiX Metro 6100.

Eight FE Services Converged to One GE Service

The board converges eight 100 BASE_FX/TX services to one 1000 BASE_FX service. Then, this service is encapsulated. The capsulated service travels to the WDM line for transport.

The board also performs the reverse process of the preceding process.

Seven FE Services Converged to Two GE Services

The board converges seven 100 BASE_FX/TX services to two 1000 BASE_FX services. Then, these two services are encapsulated. The capsulated services travel to the WDM line for transport.

The board also performs the reverse process of the preceding process.

Two GE ports on the board realize dual-fed signal selection.

Four GEs + One OSC

The board transports four GE services together with one OSC signal.

Three GEs + Three OSCs

The board transports three GE services together with three OSC signals.

Two GEs + Two OSCs

The board transports two GE services together with two OSC signals.

Two GE ports on the board realize dual-fed signal selection on the WDM side.

Two Services at Any Rate + Two OSCs

The board transports two services at any rate (16 Mbit/s-2.5 Gbit/s) together with two OSC signals.

Two GE ports on the board realize dual-fed signal selection on the WDM side.

Three Services at Any Rate + Three OSCs

The board transports three services at any rate (16 Mbit/s-2.5 Gbit/s) together with three OSC signals.

Four Services at Any Rate + One OSC

The board transports four services at any rate (16 Mbit/s-2.5 Gbit/s) together with one OSC signal.

Bidirectional Relay of Two Services at Any Rate

The board bidirectionally relays two services at any rate (16 Mbit/s-2.5 Gbit/s).

Eight FE Services Converged to One GE Service with GE ADM

The board converges eight 100 BASE_FX/TX services to one 1000 BASE_FX service, namely, one GE service with the GE ADM function. Then, this service is encapsulated. The capsulated service travels to the WDM line for transport.

The board also performs the reverse process of the preceding process.

The following table lists the work modes of the LDE board.

Value Range

Default Value

ODU0 Mode, Non-ODU0 Mode

Non-ODU0 Mode

The following table lists the description of each value of the LDE board.

Parameter Value

Remarks

ODU0 Mode

Supports service encapsulation of the ODU0 level.

Non-ODU0 Mode

Not support service encapsulation of the ODU0 level.

The following table lists the work modes of the LQM2 board.

Value Range

Default Value

AP8 Mode, 2LQM Mode

2LQM Mode

The following table lists the description of each value of the LQM2 board.

Parameter Value

Remarks

AP8 Mode

Supports convergence of eight channels of Any services into one channel of OTU1 services for transmission.

2LQM Mode

Supports convergence of two groups of Any services (four channels of services in each group) into two channel of OTU1 services (each group is converged into one channel) for transmission.

The following table lists the work modes of the LOE board.

Value Range

Default Value

Common Mode, Optical Electrical Separate Mode

Common Mode

The following table lists the description of each value of the LOE board.

Parameter Value

Remarks

Common Mode

Optical layer and electrical layer are not differentiated in logic and are managed in a unified manner.

Optical Electrical Separate Mode

Optical layer and electrical layer are differentiated in logic for separate management.

The following table lists the work modes of the MR1 board.

Value Range

Default Value

OADM Mode, Bandpass Mode

OADM Mode

The following table lists the description of each value of the MR1 board.

Parameter Value

Remarks

OADM Mode

The MR1 board must work in this mode when the board is used in a two-fiber bidirectional system.

Bandpass Mode

The MR1 board must work in this mode when it is used in a single-fiber bidirectional system. In this mode, the board can separate a 1531 nm wavelength from a 1551 nm wavelength or combine the two wavelengths into one.

The following table lists the work modes of the ECOM board.

Value Range

Default Value

Service mode, HUB mode

HUB mode

The following table lists the description of each value of the ECOM board.

Parameter Value

Remarks

Service mode

Supports converging 8 x FE services to 1 x GE service.

HUB mode

Supports converging 8 x FE services to 1 x FE service.

The following table lists the work modes of the TN12LQMS board.

Value Range

Default Value

NS1 mode, LQM mode

LQM mode

The following table lists the description of each value of the TN12LQMS board.

Parameter Value

Remarks

NS1 mode

As a line board, this board adds and drops OTU1 signals in conjunction with another tributary board.

LQM mode

As a tributary/line integrated board, this board converges four channels of Any signals into a channel of OTU1 signals.

The following table lists the work modes of the TOM board.

Value Range

Default Value

Cascading mode, Non-cascading mode

Non-cascading mode

The following table lists the description of each value of the TOM board.

Parameter Value

Remarks

Cascading mode

Only RX7/TX7 and RX8/TX8 can be used as WDM side optical interfaces. The board supports multiplexing up to six channels of Any signals into one channel of OTU1 signals.

Non-cascading mode

RX1/TX1-RX8/TX8 can be used as WDM-side optical interfaces. The board supports multiplexing up to four channels of Any signals into two channels of OTU1 signals.

The following table lists the work modes of the TN11LSXR/TN11LSXLR/TN12LSXLR.

Value Range

Default Value

Electrical Relay Mode, Optical Relay Mode

Electrical Relay Mode

The following table lists the description of each value of TN11LSXR/TN11LSXLR/TN12LSXLR.

Parameter Value

Remarks

Electrical Relay Mode

In the case of an optical-layer system, however, the regeneration mode must be set to Optical Relay Mode.

Optical Relay Mode

The following table lists the work modes of the TN12ND2/TN52ND2/TN53ND2/TN53NQ2/TN54NQ2/TN54NS3.

Value Range

Default Value

Line Mode, Electrical Relay Mode, Optical Relay Mode

Line Mode

The following table lists the description of each value of the TN12ND2/TN52ND2/TN53ND2/TN53NQ2/TN54NQ2/TN54NS3.

Parameter Value

Remarks

Line Mode

The board works as a line board.

Electrical Relay Mode

The board works as a wavelength conversion relay unit.

In the case of an optical-layer system, however, the regeneration mode must be set to Optical Relay Mode.

Optical Relay Mode

Configuration Guidelines

Select the board mode according to the actual service application scenario.

Relationship with Other Parameters

None.


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