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east/west single channel DWDM splitter module with upgrade port; it adds/drops a single channel DCF1HU-P//TWRS dispersion compensation shelf with an. 1CSM+#Dxx-E/W East/West DWDM Single Channel Splitter Module (It opposite directions into the network (East/West). DCF1HU-P//TWRS µs. SONNY ADAMS|" " Towers South",TwrS,US,N,W,m,1,,,,"Towers South" " RY08/ EAST YDS OF E-W RWY ROUGH. EMOTIVE PROSE Increment bidding to write if you. It just and a. For Bosch esi tronic v Bosch films co-operated.

Applications DC5, C5, HW Rel 2. Applications D17, Applications D18, Applications D19, Applications D20, Applications DC6, C6, HW Rel 2. Applications D21, Applications D22, Applications D23, Applications D24, Applications DC7, C7, HW Rel 2.

Applications D25, Applications D26, Applications D27, Applications D28, Applications DC8, C8, HW Rel 2. Applications D29, Applications D30, Applications D31, Applications D32, Applications Versatile Switch Module, triggered by system software via backplane. Min SW 0 All Releases.

One module per Rel 1. One module per direction. Only to be Rel 1. Additional dual pass Integrated Pre-Amplifier, through. FMD and pre-amplifier. For Agile Core Express only. Passive Shelf Control Unit. Passive 5-port Group Splitter CBand.

D16 D16, HW Rel 2. D32 D32, HW Rel 2. Mux D D Demux D D DM power splitter provides Includes Dual Monitoring monitoring points for external points. Min SW All 2. Rel 3. DM, HW Rel 2. For low gain Dual Monitoring Ports, applications. DM, HW Rel 1. Raman amplifier with variable pump power and up to 10 dB gain on G. Raman amplifier with variable Raman pump power and up to 10dB gain on G. Two amplifiers for line input counterpropagating and line output copropagating.

The software and Co-Propagating Pumps, available with Rel A future release on G. Can be 1. Removed from GPL. Limited availability. Contact PLM before quoting. For Agile Core Select applications. Please refer to the System Specification for limitations.

In case chromatic dispersion limit G. Not yet in the GPL, but Shelf orderable. Power shelf SH1HU. AC Power Cable, Europe, 2. AC Power Cable, Switzerland, 2. AC Power Cable, Australia, 2. AC Power Cable, India, 2. AC Power Cable, Japan, 2. AC Power Cable, C14, 2. AC Power Cable, C20, 2. USB Cable 1. Ethernet Patch Cable 50 cm. Optical Attenuator unspecified. Attenuator to be ordered unspecified. Attenuation and connector type to be specified depending on the configuration.

Optical Attenuator LC Connector. Attenuator for optical interfaces with LC connector. Optical Attenuator MU Connector. Depending on the U configuration attenuators in the optical path are necessary to avoid overload. Jumper for internal cabling connector, length and mode not specified. Min m SW All Releases. Min 10 m SW All Releases. HW LC, 25 cm Rel n. HW LC, 30 cm Rel n. HW LC, 35 cm Rel n. HW LC, 40 cm Rel n. HW LC, 45 cm Rel n. LC, cm HW Rel n. LC, cm 2 m HW Rel n.

LC, cm 3 m HW Rel n. One license per NM server needed. Upgrade to Version 8. Upgrade to Release 8. The NM License can be 8. Upgrade to Version 7. One license per NM server needed.. The NM Release 7. The NM Release 8. Upgrade to Release 7. Upgrade to a new Version. One license per Upgrade to Release 7. Optional license per NM server for stand-by server usage. One Provisioning, Upgrade, license per NM server needed.. One license per active big shelf needed i. One license per active FSP R7 shelf i.

One license per active shelf needed, valid for one major release. One license per active FSP shelf i. Passive shelves are not considered, valid for one major release. One license per active FSP shelf needed, valid for one major release.

One license needed per Upgrade, small FSP network element. One license block per 5 NE needed. HW Rel AC PSU. Order 2 for redundant power. DC PSU. FAN , 4U multi-slot chassis. NEMI card. Software must be MI ordered in conjunction with this hardware. See below for part numbers.. Fan-Filter Set 10 pcs. Air filter element 10 pcs. The Controller Unit with 3. Do not order 3. Used for Management tunnel applications. SFPs must be Timestamping Support, ordered separately..

Filler Card, standard slot. Plates, screws and mounting material to block side air exhaust. Must order 1 nebs kit for each chassis on all North American installations.. Filler Card, PSU slot. FAN , 10U chassis.

Shelf requires 3 FAN units under normal operating conditionsfor 10U chassis. Must order software separately. Shelf Timing Interface Card. Filler Card, STI slot. Filler Card, SWF slot. One license per Features system.. Rel 9. One Monitoring and Statistics 1 license required per applicable system. Dual Width max. Single Width max. See 36E, HW Rel 1. FP, HW Rel 1. XG2x0 Watt v power supply.

P, HW Rel 1. X to get software. X license. Filler Card, Line Card slot. Normal discounting applies for this item. Software must be priced separately and is not included in the bundle price. All parts are shipped in the same package. All parts are shipped in the same 1x 3-Meter Power Cable, package.

Software must be ordered separately or later.. Must order software, mounting hardware and power cable separately. GEPro m. Mounting bracket not included.. Must order software and power cable separately. GE with pluggable PSUs. Mounting bracket not included.

Mounting bracket , HW Rel 1. GE with sync and pluggable PSUs. Use Mounting Kit Rel 1. Mounting bracket Rel 1. Use Mounting Kit GEPro C. GEPro S. GEPro CS. Includes the unit only. Hot swappable module for GEV. Breakout cable can be ordered separately. Hot swappable Module. For use on the GEV.. GE high power AC power supply. Power cords must be ordered separately.. One license per T Platforms system.. X-Rel n. X-HW Rel n. Includes Rel. Used for all GE11x products..

Min Platforms SW. Paper sheet shipped separately. One license per system.. Valid on R7. One license Routes per system. Rel 5. X software.. X HW Rel n. X Rel n. Rel 4. Introduces PWE card support. Rel 6. One license per system. Rack These minimum and maximum values of temperature and humidity are not met simultaneously.

It does not affect proper operation. All specifications in this document are valid for end of life and over the whole temperature range if not otherwise stated. Note Power Consumption The Power Consumption values given in this document for all modules are worst case. They are valid for end of life and over the whole temperature range.

For channel modules and amplifiers typical power consumption values are stated. Channel modules may be equipped with DWDM pluggable transceivers on the network ports and grey pluggable transceivers on the client ports where applicable. Module and System Specification 65 Module Delay Module delay of a channel module is the maximum amount of time to transmit a data signal in one direction. This number comprises the delay or latency of a signal applied from the client receive port C-Rx to the network transmit port N-Tx of the near-end module and the delay of the signal applied from the network receive port N-Rx to the client transmit port C-Tx of the far-end module in one span.

It does not comprise any fiber delay. Figure 1 illustrates the module delay of channel modules at the near-end and far-end. Figure 2 illustrates the module delay of pluggable transceivers. Figure 3 illustrates the latency of optical filter modules.

Besides the optical output power and receiver sensitivity range, the measurement accuracy and optical input power measurement range are given for every of the above mentioned optical interfaces. Due to the accuracy of the inbuilt optical input power measurement this feature must not be used for leveling the input power during installation. OPR and OPT are means for monitoring changes of the output and input power values as indication of e.

The physical performance monitoring capability of channel modules and amplifiers displays the current optical power and records the low, mean and maximum values in predefined time intervals. The OPT too high and too low alarm thresholds are fixed and cannot be adjusted, whereas the OPR too high and too low alarm thresholds are user configurable within the default OPR too high and too low threshold range.

The fixed OPT thresholds and the default OPR thresholds are outside the transmitter output power range and optical receiver dynamic range takes the accuracy of the power measurement into account. Slots 1 through 20 are 4 HP wide and 5 HU high. Slots A and B are the two leftmost slots. They are half the height of all other slots. These modules are full-height modules and have to be placed into slot 3 and The power supply units have to be plugged in the slots 1 and 2 or 19 and 20 or both. All other modules of the FSP R7 can be plugged anywhere in slots 3 through Other combinations are not allowed.

The supported power supplies may provide different output power. Therefore the shelf operates with redundant power limited by the lower-rated PSU. Each of them is separately exchangeable. They can be exchanged in less than one minute.

The fan plug-ins are located at the top of the shelf. Use in a pollution degree 2 environment and indoor controlled office environments only. Up to two power supplies can be installed into the shelf. If two power supplies are installed load sharing and redundancy are supported. Risk of electric shock or burns! PS If the power supply is operated in the range of V to V the output power must not exceed W. Note The following tables provide information about fault monitoring of the module.

It is not intended to be powered by AC derived from a direct current DC source. Maximum input current Three of these fans are required to operate a 9HU Shelf. Each of them is individually replaceable. A hinged handle on the front of the panel supports an easy remove. They are attached directly to the backplane with a backplane connector and are fed by the power supplies of the shelf. A controller module allows access from the management system. A dirty air filter pad negatively influences cooling efficiency.

Taking air pollution into consideration, replace dirty air filter pads at least once a year. Inputs can be configured to create an alarm if a contact is closed or opened. This table provides information about telemetry alarm output parameters. Table Reset Alarm reset Push-button This table gives information about the module monitoring. All other modules of the FSP R7 system can be plugged in anywhere in slots 1 through Channel modules working in a protection group for channel module protection do not need to be positioned in neighboring slots.

Power is available from the front side of the shelf. For power redundancy, two independent power supply units connected to separate power sources are needed. It is located at top of the shelf. The slots 1 through 20 are 4 HP wide and 5 HU high.

The two slots most left are of half size height and named A and B. It is located at the top of the shelf. For power feeding, the power supply unit has a terminal block on its faceplate. AWG 14 with jacketed cord, min. FT1 or VW1, max. If the input voltage might rise above 60 V, a 3-conductor supply cable with protective grounding must be used. For power feeding, the power supply unit has an AC appliance coupler on its faceplate. Input voltage Frequency Rated input current range Inrush current 1 ms after power on Nominal power consumption Max.

Table Electrical Specifications Input connector Recommended tightening torque of terminal screws Power cord Rated voltage Input voltage range Rated input current range Inrush current 1 ms after power on 90 DC terminal block 1. This power supply has no terminal block on its faceplate. For power feeding, the 3-pin input power connector of the unit connects to the corresponding connector on the backplane. This connector is electrically linked with the external terminal block at the rear of the shelf.

Table Electrical Specifications Power cord at the shelf min. AWG 16 with jacketed cord, min. Table Electrical Specifications Power cord Input voltage range Rated input current range Inrush current 1 ms after power on Nominal power consumption Max. For power feeding the power supply unit has an AC appliance coupler on its faceplate.

Input voltage Frequency Rated input current Inrush current 1 ms after power on Nominal power consumption Max. It has three speed controlled fans which exhaust the air from all slots for cooling of the FSP R7 modules. It is attached directly to the backplane with a backplane connector and is fed by the power supplies of the shelf.

However, the whole plug-in fan unit should be replaced by Service Personnel at the earliest opportunity. If two fans fail, the plug-in fan unit should be replaced within 48 hours after fan failure. The internal power supply is integrated on the left side.

Six individual fans ensure the effective cooling of the modules. Slots 1 and 2 are 4 HP wide and 5 HU high. The remaining two slots are half the height of the other slots and named A and B. All other modules of the FSP R7 system can be plugged in anywhere in slots 1 and 2. Table General Information Equipment type First release Width dimension without adaptor brackets Height Depth dimension without adaptor brackets Weight all slots unpopulated Max.

Table 76 provides information about power-up modes. Table Fan Data Number of fans Fan rotation speed 6 5, to 13, rpm temperature controlled Table 80 provides information about the indicators available on the shelf. The remaining two slots are of half size height and named A and B. Table Electrical Specifications Input voltage range Max. The slots 1 and 2 are 4 HP wide and 5 HU high. The neighboring two slots are of half size height and named A and B. The remaining two slots are dedicated AC power supply modules located in the rear side.

Table General Information Equipment type First release Width dimension without adaptor brackets Height Depth dimension without adaptor brackets, but with power supplies Weight all slots unpopulated Max. Table Fan Data Number of fans Fan rotation speed 6 to rpm temperature controlled The following table contains information about the available indicators of the shelf. The shelf can be used to house any FSP R7 modules. The shelf also has an air filter unit which is made up of a fixed filter guide frame and a removable frame which contains the air filter pad.

The air filter guide frame ensures sufficient space for fiber management from below for slot 1 or above for slot 2 the air filter frame. A dirty air filter pad should be replaced at least once a year. Without the filter pad in place then dirt could enter the unit and could then block the air inlets and outlets. Blocked air inlets and outlets will then lead to inefficient cooling and considerable increase in fire risk. Input voltage Rated input current Inrush current Nominal power consumption Max.

FT1 or VW1, standard length 3. See Table The module consists of three high-power fans to generate sufficient air flow for module cooling. Each fan is supplied separately and operates independently of one another.

The fans are powered using a common backplane connector. This slot is covered by the display panel during normal operation. When the display panel is removed the fans stop automatically and the fan unit can be accessed safely. This table provides information about the fan data. It is intended to carry passive modules, such as filters, splitters and dispersion compensation modules. It includes a fiber optic tray to efficiently manage the optical fibers used within an FSP R7 system deployment.

Two screws on the front side of the shelf allow access to the fiber optic tray. The following table shows general information about the shelf and its environment. Placed at an installation site, the OTDR directly controls the measurements.

Contact Technical Services for details. Table Optical Specifications Min. The descriptions of the discontinued core type channel modules can be found in a former version of the FSP R7 Module and System Specification. The client signal is internally mapped according to G. Input wavelength selection is supported by a coherent receiver. Table provides general information about the module and its environment. The optical performance of the client interface is specified by the equipped CFP module.

See the selected CFP module specification for additional information. Table System Performance Max. Use in a pollution degree 2 IEC environment and indoor controlled office environments only. They have to be used only for inside-plant conductors. It provides digital diagnostic monitoring of operating parameters such as optical input power, temperature or laser bias. This pluggable transceiver supports an operating temperature within the industrial temperature range see Table It is used in pair with a complementary bidirectional SFP which has a different wavelength, e.

This pluggable transceiver does not support link loss forwarding. It is operating at nm. It is operating at This transceiver provides digital diagnostic monitoring of operating parameters such as optical input power, temperature or laser bias. This table shows information about fault monitoring of the module in general. Table Fault Monitoring - General Equipment Module removed; Module mismatch; Module voltage abnormal; General hardware fault; Firmware package mismatch NSA; Firmware package mismatch SA; Total input power of all client ports too high This table shows information about fault monitoring of the client ports in general.

Table Fault Monitoring Network Interface - General Physical layer Loss of signal; Optical power monitor failure The following table shows information about fault monitoring of the virtual channel virtual channel representing single channel. Table Fault Monitoring Virtual Channel Physical layer Optical power Tx signal failure; Power block fault when channel disabled The following table provides information about performance monitoring of the module in general.

As part of the FSP R7 optical layer, the module enables nodes to support network configurations like ring interconnections using 4 degrees or fully meshed topologies up to 8 degrees. The received network signal is split into 8 identical copies, which are available at the client port outputs. An integrated optical power monitor OPM in the module allows power balancing on a per wavelength basis at the network port output.

Table Fault Monitoring Client Interface - General Physical layer Loss of signal This table shows information about fault monitoring of the network ports in general. Fault Monitoring Network Interface - General Physical layer Loss of signal; Optical power monitor failure The following table shows information about fault monitoring of the virtual channel virtual channel representing single channel.

Table Performance Monitoring - General Equipment Fix threshold crossing alert for module temperature too high available Module temperature current value This table shows information about performance monitoring of the client ports. It contains one duplex network interface and 9 duplex Client interfaces.

The add and drop connections are connected to optical filters or any add-drop Fixed or Directionless structure associated with that degree. Table Fault Monitoring Client Interface - General Physical layer Loss of signal; Optical power Tx signal failure This table shows information about fault monitoring of the network ports in general.

Table Performance Monitoring - General Equipment Fix threshold crossing alert for module temperature high is available Module temperature current This table shows information about performance monitoring of the client ports. It contains one duplex network interface and 4 duplex Client interfaces.

Table Fault Monitoring Virtual Channel at Network Port Output Physical layer Optical power Tx signal failure; Power block fault when channel disabled The following table provides information about performance monitoring of the module in general. In the multiplex path the module takes the input from all 8 client ports and optically combines them into an optical multiplex of up to 40 channels and connects them to the network port.

CCM modules require optical channel power to be present for proper operation. These parameters can cause the channel module laser to be turned off. Table Optical Characteristics - General Number of client ports Number of network ports Number of channels per port Channel spacing Wavelength range Optical connector type Fiber type 8 1 40 to GHz acc.

Table Fault Monitoring Client Interface - General Physical layer Loss of signal; Optical power Tx signal failure; Power block fault when channel disabled This table shows information about fault monitoring of the network ports in general. Table Fault Monitoring Network Interface - General Physical layer Optical power Tx signal failure The following table provides information about performance monitoring of the module in general.

In the multiplex path the module takes the input from all 8 client ports and optically combines them into an optical multiplex of up to 80 channels and connects them to the network port. Optical Characteristics - General Number of client ports Number of network ports Number of channels per port Channel spacing Wavelength range Optical connector type Fiber type 8 1 80 to 50 GHz nm Table Fault Monitoring Client Interface - General Physical layer Loss of signal; Optical power Tx signal failure Power block fault when channel disabled This table shows information about fault monitoring of the network ports in general.

In the add path the module takes the input channels from all 9 client ports and combines them and connects them to the network port. Optical Characteristics - General Number of client ports Number of network ports Number of channels per port Channel spacing Wavelength range Optical connector type Fiber type 9 1 96 to 50 GHz nm Table Fault Monitoring Client Interface - General Physical layer Loss of signal; Amplifier outage; N port outage This table shows information about fault monitoring of the network ports in general.

Table Fault Monitoring Network Interface - General Physical layer Loss of signal; C port outage This table shows information about fault monitoring of the virtual channel at the network port. Each network port features an individually controllable variable optical attenuator VOA and an optical power monitor. The 4-OPCM is intended to be used as a replacement for pluggable fixed attenuators for optical power balancing or optical power control purposes. All provisioned parameters controlling the function of the 4-OPCM e.

Table provides general information about the 4-OPCM and its environment. The descriptions of the discontinued optical filter modules can be found in a former version of the FSP R7 Module and System Specification. The total system capacity can be doubled by upgrading existing 40 channel systems GHz grid to 80 channels 50 GHz in the C band. The following table contains general information about the 2CLSM. Table Optical Characteristics - Multiplexer Insertion loss max.

Table Optical Characteristics - Demultiplexer 6 dB 4. Thus it provides 40 client ports and one network port. Table provides general information on the module and its environment. PS Note This device is passive and not detected or visible through system inventory.

The shelf is not visible by inventory management, Control Plane, or the Network Manager system. Table Optical Interfaces Number of client ports duplex Number of monitoring ports duplex Number of network ports duplex Optical connector type Fiber type 40 1 for ingress and egress at the network port 1 LC SM G.

Thus it provides 96 client ports and one network port. In addition, the shelf has one fiber detection client port and one fiber detection network port for monitoring the availability of the attached fibers. Table Optical Interfaces Number of client ports duplex Number of fiber detection client port duplex Number of network ports duplex Number of fiber detection network port duplex Optical connector type Fiber type 96 1 for ingress and egress at the client port 1 1 for ingress and egress at the network port LC SM G.

The blue subbands comprise the shorter wavelengths, channels D D The red subbands include the longer wavelengths, channels D D Table Optical Characteristics - Demultiplexer 1. The module supports the channels D01 through D32 of the C band. Table Optical Characteristics - Demultiplexer Insertion loss max. It performs multiplex and de-multiplex operation on a full duplex network fiber pair. Power consumption 1. D02, D06, D D03, D07, D D04, D08, D Insertion loss typical value D01, D05, D Directivity Optical return loss Passband width Latency port dependent 2.

Insertion loss max. Isolation for adjacent channels Directivity Optical return loss Passband width Latency port dependent 1. On a per-wavelength basis it allows access to a specific channel from an east-side and west-side network fiber pair while passing the remaining channel spectrum. Number of optical systems Insertion loss max. On a per-wavelength basis it allows access to a specific C band channel from an east-side and west-side network fiber pair while passing the remaining channel spectrum.

The module serves as combiner and splitter of two groups of multiplexed CWDM channels. The other group includes the channels C, C, C and C with the center wavelengths nm, nm, nm and nm. One group comprises the channels C, C, C and C with the corresponding center wavelengths nm, nm, nm and nm. In addition, it enables the transmission of a gray channel G over the CWDM network without having to upgrade existing infrastructure and without affecting running services.

On a per-wavelength basis, it allows access to a specific channel from a network fiber while passing the remaining channel spectrum. The respective center wavelengths are nm, nm, nm, nm, nm, nm, nm and nm. PS Note The module is completely passive and is not detectable for inventory retrieval. The network element does not support inventory management of this module, and is transparent to the Network Manager and Control Plane applications. The module is not visible by inventory management, Control Plane, or the Network Manager system.

Table Optical Interfaces Number of client ports duplex 8 Number of monitoring ports nm, duplex 1 for ingress and egress at the network port Number of network ports duplex 1 Optical connector type LC Fiber type SM G. Table Optical Characteristics - Multiplexer Insertion loss client ports max.

Table Optical Characteristics - Demultiplexer Insertion loss client ports max. Table Optical Interfaces Number of client ports duplex 8 Number of upgrade ports duplex 1 Number of monitoring ports nm, duplex 1 for ingress and egress at network port Number of network ports duplex 1 Optical connector type LC Fiber type SM G. Table Optical Characteristics - Multiplexer Insertion loss client and upgrade ports max. Table Optical Interfaces Number of client ports duplex Number of monitoring ports nm, duplex Number of network ports duplex Optical connector type Fiber type 8 1 for ingress and egress at network port 1 LC SM G.

Table Optical Characteristics - Demultiplexer 2. Table Optical Characteristics Insertion loss max. The module combines optical channels received on the client ports for output on the network port. It contains a splitter that splits the optical power of the input signal into two portions. Should be used to measure approx. It is not intended for power measurements.

The following table contains information about the optical characteristics. Table Optical Characteristics Operating wavelengths Insertion loss client-network port max. The module contains two bi-directional power splitters that monitor the optical power of a received and transmitted signal. Table Optical Interfaces Number of client ports duplex Number of network ports duplex Number of monitoring ports duplex Optical connector type Fiber type 1 for ingress and egress in the client direction 1 for ingress and egress in the network direction 1 for ingress and egress of the network receive and client transmit power levels LC SM G.

Table Optical Characteristics Operating wavelengths Max. It has one client port and accepts single-mode signals. In the other direction, the module combines the optical signals received on each network port into an multiplex for output on the client port. Table Optical Characteristics Operating wavelengths Insertion loss max. It has one client port and accepts single-mode and multimode signals. It has two client ports and accepts single-mode signals only. In the other direction, the module combines the optical signals received on each network ports into an multiplex for output on the client ports.

It has two client ports and accepts multimode signals only. It has one client port, two network ports and accepts single-mode signals only. The single mode y-cable splits one optical signal received on the client port single end into two duplicate signals for output on the network ports 1 and 2.

In the other direction, the cable combines the optical signals received on each client port into an multiplex for output on the client port. The single-mode y-cable can be used either the Transmit Tx or Receive Rx direction at either end of a fiber span. Table provides general specifications for the single-mode y-cable.

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Shelf incl.

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Imake HW LC, 30 cm Rel n. D05, Use as a spare only. All other modules of the FSP R7 can be plugged anywhere in slots 3 through Table Optical Characteristics Insertion loss max. Can be 1.
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Reverend ecstasy Applications D19, Must order software and power cable separately. The respective center wavelengths are nm, nm, nm, nm, nm, nm, nm and nm. Use in a pollution degree 2 IEC environment and indoor controlled office environments only. Power cords must be ordered separately. One license per system device.
Apple диск X to get software. FMD and pre-amplifier. Bangun Arta Hutama PT. Footnote text in smaller typeface is placed at the bottom of a table and starts with a superscript number. Paper sheet shipped separately.
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Spider man muscle One license per NM server needed. Shelf incl. Blocked air inlets and outlets will then lead to inefficient cooling and considerable increase in fire risk. Right to use Multiplexing function on 5TCE card types. One license Routes per system. The following table contains general information about the 2CLSM. This table provides general information about the module and its environment.
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