03_ct11333en40gla5_lte flexi multiradio 10 bts installation review

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CT11333EN40GLA5 eNodeB Installation Review 1

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LTE Flexi Multiradio 10 BTS Installation Review

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CT11333EN40GLA5 eNodeB Installation Review 1 CT11333EN40GLA5 eNodeB Installation Review 2 CT11333EN40GLA5 eNodeB Installation Review 3 CT11333EN40GLA5 eNodeB Installation Review 4 CT11333EN40GLA5 eNodeB Installation Review 5 Before you start If cable entries are installed, remove them. If preferred, you can connect the DC input cable (see steps 2 to 3 and 8 to 12) before installing the FPFD. Steps 1 Remove the FPFD dummy unit as follows: a) Undo the screws holding the FSMx core in place. b) Pull out the core. c) Remove the three screws holding the FPFD dummy unit in place. g Leave the other dummy units in place if you are not installing any other optional submodules. CT11333EN40GLA5 eNodeB Installation Review 6 2 Remove the DC screw terminal cover. 3 Loosen the screw terminals with an Allen key. CT11333EN40GLA5 eNodeB Installation Review 7 4 Remove the rubber plugs on the core and the FPFD. CT11333EN40GLA5 eNodeB Installation Review 8 5 Insert the connection card to the slot on the FSMx core. The connection card for the FPFD looks identical with the transmission sub-module connection card. Make sure you are inserting the correct card. 6 Align the FPFD with the guide pin on the FSMx core, and push the FPFD in place. CT11333EN40GLA5 eNodeB Installation Review 9 7 Fix the FPFD with 3 x M5x25 screws (included in the accessory bag) and tighten to 4.0 Nm. 8 Strip the DC input cable as needed. The cable size range for the DC input cable is 4 to 25 mm2 and the outer cable diameter 4.5 to 10 mm. 9 Take the two cable glands off and thread your DC input cable through the glands. Use lubricant if necessary. If using a thin cable, you can utilise just one of the two cable inlets if preferred. CT11333EN40GLA5 eNodeB Installation Review 10 10 Replace the cable glands with the DC input cable routed through them. 11 Insert the DC input cable to the screw terminals and tighten them to 6 Nm with an Allen key. CT11333EN40GLA5 eNodeB Installation Review 11 12 Tighten the cable glands.13 Replace the DC screw terminal cover. CT11333EN40GLA5 eNodeB Installation Review 12 14 Route the DC input cable between the FPFD and dummy unit or transmission submodule (depending on your configuration). 15 Re-insert the module core and fix the screws. CT11333EN40GLA5 eNodeB Installation Review 13 Purpose Flexi Multiradio Outdoor System Module core (FSMF/G) has an integrated Gigabit Ethernet and optical Ethernet transport interface available on the front panel, however, if more or other Ethernet interfaces are required then install an optional transmission sub-module (FTIF). The sub-module is also mandatory in co-location cases when a backhaul connection or synchronization is done via time-division multiplexing (TDM). Before you start The System Module has to be powered off before installing or replacing the transmission sub-module. If cable entries are installed, remove them. Steps 1 Remove the FTIF dummy unit as follows: a) Undo the screws holding the FSMx core in place. b) Pull out the core. c) Remove the four screws holding the FTIF dummy unit in place. g Leave the other dummy units in place if you are not installing any other optional submodules. CT11333EN40GLA5 eNodeB Installation Review 14 2 Remove the rubber plugs on the core and the transmission sub-module. 3 Insert the connection card to the slot on the FSMx core. The transmission sub-module connection card looks identical with the connection card for the FPFD. Make sure you are inserting the correct card. CT11333EN40GLA5 eNodeB Installation Review 15 4 Align the transmission sub-module with the guide pin on the FSMx core and push the sub- module in place. 5 Fix the transmission sub-module with 4 x M5x25 screws (included in the accessory bag) and tighten to 4.0 Nm. Do not reuse dummy unit screws. CT11333EN40GLA5 eNodeB Installation Review 16 6 Re-insert the module core and fix the screws. CT11333EN40GLA5 eNodeB Installation Review 17 Steps 1 Remove the dummy unit as follows: a) Remove the side flange. b) Remove the middle flange between the dummy units. c) Pull out the dummy unit. g Leave the other dummy units in place if you are not installing any other optional submodules. CT11333EN40GLA5 eNodeB Installation Review 18 2 Insert the extension sub-module. CT11333EN40GLA5 eNodeB Installation Review 19 3 Fix the middle flange back in place between the extension sub-module and the remaining dummy unit. Make sure you install the middle flange as shown in the below figure. Tighten the screws as follows: Dummy unit (plastic): 0.8 Nm Metal parts: 2.4 Nm 4 Fix the side flange back in place. Tighten the screws to 2.4 Nm. CT11333EN40GLA5 eNodeB Installation Review 20 The Installation of the second FBBx would be done accordingly. CT11333EN40GLA5 eNodeB Installation Review 21 CT11333EN40GLA5 eNodeB Installation Review 22 1 Route the DC power cable through the cable entry. CT11333EN40GLA5 eNodeB Installation Review 23 2 Remove the IP boot. 3 Loosen the screw terminals of the DC in port on the FSMx front panel. CT11333EN40GLA5 eNodeB Installation Review 24 4 Strip the DC power cable and wrap tape around the exposed wires in order not to break the IP boot. CT11333EN40GLA5 eNodeB Installation Review 25 When using a thick cable, the narrow end of the IP boot can be removed. See figure Removing narrow end of IP boot below for details. Note that you can insert only one DC cable with a diameter of max. 20 mm to the IP boot. Minimum cable diameter is 6 mm. CT11333EN40GLA5 eNodeB Installation Review 26 4. Strip the DC power cable and wrap tape around the exposed wires in order not to break the IP boot 5. Insert the taped end of the DC power cable to the IP boot. 6. Remove the tape. CT11333EN40GLA5 eNodeB Installation Review 27 7. Insert the DC power cable to the screw terminal and make sure that the polarity of the wires is correct. Connect the wires to the V48N- and V48RTN+ connectors according to the markings on the cable. 8. Tighten the screw terminals to 5.0 Nm. Make sure that the DC power cable is not bent to the left or right in order to avoid tension to the DC input terminals. 9. Fix the IP boot in place and fix the screw. Tighten to max. 2.0 Nm. 10. Install the cable entries. 11. Fix the cable entry screws. 12. Fix the DC power cable to the side of the module casing with cable ties. CT11333EN40GLA5 eNodeB Installation Review 28 1 Remove the IP seals from the relevant optical cable connectors in both System and RF Modules. When pulling out the IP seal, bending it to any direction is only allowed for a maximum length of 2 mm. When the IP seal has come out 2 mm out of its slot, only use axial force to complete the IP seal removal. 2 Remove the protective cap from the optical transceiver and push it in the System Module. Make sure you insert the optical transceiver as shown in the above figure. Once the optical transceiver is inserted, flip the latch up. CT11333EN40GLA5 eNodeB Installation Review 29 CT11333EN40GLA5 eNodeB Installation Review 30 CT11333EN40GLA5 eNodeB Installation Review 31 Choose one of the four cables listed below: External synchronization input: Sync Cable F (FTSF 472509A) Sync Cable G (FTSG 472576A) Powering and controlling GPS equipment: GPS cable assembly 30 m (FTSE 472510A) GPS cable assembly 100 m (FTSH 472577A) Connect the other end of the cable as follows: If your cable is a FTSF, connect it to the Sync Out port of the second FSMG/F in your configuration. If your cable is a FTSG, connect it to the Sync Out port of FSMC/D/E. If your cable is a FTSE/H, connect it to the GPS antenna. CT11333EN40GLA5 eNodeB Installation Review 32 CT11333EN40GLA5 eNodeB Installation Review 33 CT11333EN40GLA5 eNodeB Installation Review 34 CT11333EN40GLA5 eNodeB Installation Review 35 CT11333EN40GLA5 eNodeB Installation Review 36 CT11333EN40GLA5 eNodeB Installation Review 37 CT11333EN40GLA5 eNodeB Installation Review 38 CT11333EN40GLA5 eNodeB Installation Review 39 CT11333EN40GLA5 eNodeB Installation Review 40 CT11333EN40GLA5 eNodeB Installation Review 41 No function (neutral): Pushing the SET button outside the selection phase does not do anything. Entering selection phase (neutral): Pushing the SELECT button enters or resumes the selection phase. Starting at the leftmost position (RF1) the LED starts blinking in blue color (blue color is not used for any other kind of signaling). With each additional push on the SELECT button the blinking position moves forward from the left to right position in a circular way. The selection phase ends automatically after three seconds when no button has been pushed within this time frame. Changing output state: Pushing the SET button during the selection phase toggles the selected (blinking blue) output state. As long as the selection phase is active you can toggle the output state with each push on the SET button. When toggling the output state to ON the selection phase is extended to five seconds to give the user enough time to toggle to OFF again (in case of target device malfunction). Restrictions: The SET push button can be re-routed to the System Module. This allows the System Module to judge over the ON/OFF functionality via the push button. Default setup is no re-routing. Via priority controlling in FPFD it can be prohibited to alter an output state via the push button when a higher priority access line has taken over the control for a specific output. Default setup is all access lines have the same priority level. Only implemented or detected outputs can be selected via the SELECT button.