Installation Instructions Model NIC-C
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1 nstallation nstructions Model Network nterface Card NTRODUCTON The Model from, is a card that provides HNET/XNET and CAN network communication within and between enclosures. The HNET/XNET network can be wired either Class-B/Style or Class-X/ Style. For HNET one is required in each enclosure. Each (HNET or XNET) occupies one HNET address. See Table for restrictions on the location of equipment on the HNET and XNET. When configured for XNET, the provides communication between FireFinder XLS/Desigo Fire Safety Modular/Cerberus PRO Modular systems, as well as the NCC or Desigo CC in an XNET network. MXL systems may also reside on the same XNET. All events occurring in the FireFinder XLS/Desigo Fire Safety Modular/ Cerberus PRO Modular will be displayed at the NCC or Desigo CC. Additionally, these events may be acknowledged and the system can be reset via the NCC or Desigo CC. Events initiated by FireFinder XLS/Desigo Fire Safety Modular/Cerberus PRO Modular members can cause output state changes (inter-panel logic) in other FireFinder XLS/Desigo Fire Safety Modular/ Cerberus PRO Modular panels. nter-panel logic between FireFinder XLS/Desigo Fire Safety Modular/ Cerberus PRO Modular and MXL is not available. One configured for XNET is required in each FireFinder XLS/Desigo Fire Safety Modular/Cerberus PRO Modular system connected to XNET. This must reside in the same enclosure as the PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0- U (Cerberus PRO Modular). Additionally, the NCC-GL is supported where display and control of an individual XLS/Desigo Fire Safety Modular/ Cerberus PRO Modular system is required. The NCC-GL must be connected to the XNET network. The connection to HNET is not supported. Figure Network nterface Card The CAN network is also supported by. t can be isolated within a given enclosure or extended external to the enclosure. External CAN networks require either an RN, OCM- or SM- in the remote enclosure. The CAN address of the does not need to be set. A single provides either HNET or XNET. The CAN interface is available regardless of the HNET/XNET selection. P/N -00- Building Tec echnologies Division
2 The supervises each network to insure proper operation. Any faults that are detected by the are reported to the PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular) for annunciation. n addition, the has diagnostic LEDs that indicate which faults have been found. ndividual LEDs are included for HNET/XNET Loop A and Loop B faults, as well as an LED for complete failure of the HNET or XNET network or the CAN network. The can also be configured to perform ground fault detection on both networks. Features The isolates short circuit faults to each individual segment of the HNET/XNET network. f a short occurs, only the segment of wire between the two s is affected. n a Class-B/Style system the network will be divided into two sections. Communication in each of the sections will continue. For a Class-X/Style network, the fault will be detected and the network will continue to operate as a single network. An HNET/XNET network monitoring jack is included for connection of diagnostic tools. This jack is located on the front bezel. The supports the LCM-/SCM-/FCM-/OCM-/SM- CAN modules. LEDs are visible through the front bezel to indicate the configuration. All switch selectable options are displayed here. This allows for easy confirmation of the configuration settings. The is compatible with the XNET Bridge. Refer to the XNET Bridge installation instructions, P/N -000, for more details. PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular) (HNET) Global PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular) (XNET) SSD / SSD-C / SSD-REM SSD-NTL / SSD-C-NTL HNET Class-B/Style lass-x/style XNET C Class-B/Style Class-X/Style Y Y Y N Y N RPM Y N Y = Allowed, N = Not Allowed Not allowed on this network. When installed in a REMBOX/REMBOX, otherwise Yes. Class-B/Style = ULC DCLB Class-X/Style = ULC DCLC n Canada, ULC S requires that all interconnecting data communications links for networks be wired DCLC (style ) except for dedicated network communication to annunciators. Table Module Placement At The End Of a HNET Or XNET Network OPERATON Network supervision is accomplished through passive monitoring of the network signals. No additional bandwidth is required. Each continuously monitors all networks for activity and reports any problems to the PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular). n some cases, a reset at the PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular) is required to clear network troubles. P/N -00-
3 Controls and ndicators The front panel of the contains one reset switch, fifteen LEDs, one network port and three HNET address switches as shown in Figure. A reset switch is located on the top of the front panel. Pushing the reset switch reinitializes the operation. The LEDs follow the reset switch and their functions are defined as follows: POWER (Green) Normally ON. When illuminated, indicates that power for the is applied to the card. CARD FAL (Yellow) Normally OFF. When illuminated, indicates that the card microprocessor has failed. CAN FAL (Yellow) Normally OFF. When illuminated, indicates that all CAN modules connected to the are not communicating. HNET FAL (Yellow) Normally OFF. When illuminated, indicates that the HNET communication with the has terminated and the card goes into degrade mode. XNET FAL (Yellow) Normally OFF. When illuminated, indicates that the XNET communication with the has terminated. GND FAULT (Yellow) Normally OFF. When illuminated, indicates that the has detected either a negative or positive ground fault on its network. LOOP A FAL (Yellow) Normally OFF. When illuminated, indicates that the has detected a trouble on Loop A (open circuit or short circuit). LOOP B FAL (Yellow) Normally OFF. When illuminated, indicates that the has detected a trouble on Loop B (open circuit or short circuit). ACTVE NETWKS: CAN (Green) Normally OFF. When illuminated, indicates that the CAN network is enabled. ACTVE NETWKS: HNET (Green) When illuminated, indicates that the HNET network is enabled. ACTVE NETWKS: XNET (Green) When illuminated, indicates that the XNET network is enabled. CLASS-X/STYLE (Green) When illuminated, indicates that the HNET/XNET is configured as Class-X/Style (see Pre-nstallation - S on page ). P/N -00-
4 CLASS-B/STYLE (Green) When illuminated, indicates that the HNET/XNET is configured as Class-B/Style (see Pre-nstallation - S on page ). ENABLED (Green) When illuminated, indicates that ground fault detection is enabled (see Pre- nstallation - on page ). DSABLED (Green) When illuminated, indicates that ground fault detection is disabled (see Pre- nstallation - on page ). Three rotary dial switches at the bottom of the front panel are used to set the HNET network address of the. PRE-NSTALLATON The following components must be set prior to inserting the card into the CC- (refer to Figure ): S, Ground Fault Detection Control: Press the lever down to enable ground fault detection. Move the lever to the up position to disable ground fault detection. (Refer to Figure.) t is recommended to enable ground fault detection on ONLY one in the system. (One for HNET and if used, one for XNET.) f multiple s have ground fault detection enabled, multiple troubles will be reported to the PM/PM-/PM- (XLS), FCM0-U (Desigo Fire Safety Modular), FCM0-U (Cerberus PRO Modular) when a ground fault is present. n all cases at least one must have ground fault detection enabled. S, Options: Position : Network Selection - Set this switch to the ON position for HNET. Set to the OFF position for XNET. Position : Network Style - Set to ON for Class-B/Style. Set to OFF for Class-X/Style. Position : CAN Network enable- Set to ON if CAN network is used. Set to OFF if CAN network is not used Position : Future Use - Set to OFF. S, Reset Switch: Momentarily Closed switch that when pressed will initiate a hard reset to the (similar to a cold boot). NCC-F-HNET-VNT Jumper Settings: NETWK When Class-B/Style wiring is used for an ADDRESS NCC-F-HNET-VNT application, remove jumper P except on the that is connected to the NCC-F card. When Class- X/Style wiring is used for an NCC-F-HNET- VNT application, remove jumpers P and P except on the that is connected to the NCC-F card. S RESET SWTCH NETWK PT S, S, S P P S On P P S 9 PN DN PLUG CONNECT P/N -00- Figure Switch Location
5 HNET S, S, S, Network Address Switches: Set the three-digit HNET network address for the using the three rotary dial address switches located near the bottom of the front panel. (Refer to Figure for the location of the switches.) The address for the must be the same as the address selected for it in the Zeus Programming Tool. To set the address, turn the pointers on each of the three dials to the numbers for the selected address. For example, if the address is, set the pointer for the HUNDREDS dial to, set the pointer for the TENS dial to, and set the pointer for the ONES dial to. The range of allowable addresses is from 00 to (leading zeros must be used). WRNG Remove all system power before installation, first battery then AC. (To power up, connect the AC first, then the battery.) All HNET/XNET field wiring to the is connected to the terminal blocks of the CC- card cage slot in which it is installed. The CAN bus is connected internally to the CC- backplane. For CAN modules located on the inner door inside the same enclosure as the connect to P on the CC- using cable CCL. For CAN modules located outside the enclosure connect to TB on the PSC-. See Figures, and. nternal Repeaters The provides an electrical repeater for each HNET/XNET pair. The diagram in Figure shows the wiring for each pair. Be sure to connect the pairs following the proper polarity. Do not cross the A and B pairs. Removing the from the CC- will break the network. Removing power from the does not break the network. To Connect the HNET or XNET. Loosen the screw of the terminal by turning it counterclockwise.. nsert the wire into the side of the terminal block.. Tighten the screw of the terminal block by turning it clockwise. The supports Class-B/Style (DCLB) and Class-X/Style (DCLC) HNET/XNET wiring. Check the Zeus configuration for the proper network Style (refer to Figures and ). The screw terminals can accommodate one - AWG or two - AWG. B B B B A A A A TERMNAL BLOCK ON THE CC-/CC- APAR REPEATER BPAR REPEATER Figure nternal Repeaters P/N -00-
6 . No EOLR required.. AWG min., AWG max feet (. ohms) max. per pair between CC-s/CC-s. Unshielded twisted pair.μf max. line to line Shielded twisted pair.μf max. line to line.μf max. line to shield. Terminate shields at one end only.. Power limited to NFPA 0 per NEC 0. CC- terminals 9 - are not connected and can be used to tie shields together.. Positive or negative ground fault detected at <0K ohms on pins -. PAR A SUPERVSED 9 0 SEE NOTE FRST ONE SLOT OF CC- 0 9 SEE NOTE ONE SLOT OF CC SEE NOTE LAST ONE SLOT OF CC- Figure Class-B/Style (ULC DCLB) Network Wiring. No EOLR required.. AWG min., AWG max (. ohms) feet max. per pair between CC-s/CC-s. Unshielded twisted pair.μf max. line to line Shielded twisted pair.μf max. line to line.μf max. line to shield. Terminate shields at one end only.. Power limited to NFPA 0 per NEC 0.. CC- terminals 9 - are not connected and can be used to tie shields together.. Positive or negative ground fault detected at <0K ohms on pins -. PAR A SUPERVSED 9 0 SEE NOTE FRST PAR B SUPERVSED ONE SLOT OF CC- 9 0 SEE NOTE ONE SLOT OF CC- 9 0 SEE NOTE LAST ONE SLOT OF CC- Figure Class-X/Style (ULC DCLC) Network Wiring P/N -00-
7 OFF ON PAR A SUPERVSED TB NCC-F P P TB PSC- RESET POWER MODULE FAL CAN FAL H - NET FAL GND FAULT V FAL V A FAL HUNDREDS - TB P FRST (ONE SLOT OF CC-/CC-) P (ONE SLOT OF CC-/CC-) P LAST (ONE SLOT OF CC-/CC-) HNET BATTERY O TB P9 TB P GND Figure NCC-F-HNET-VNT Class-B/Style Wiring TENS ONES N H EOLR 0 OHMS, /W, % P/N 0-00 EOLR 0 OHMS, /W, % P/N 0-00 SEE NOTE DO NOT SEE NOTE DO NOT SEE NOTE DO NOT 0-PN RBBON CABLE FROM PSC- 0-PN RBBON CABLE C 0-PN RBBON CABLE C CC- CC- CC-. EOLR required.. AWG min., AWG max feet (. ohms) max. per pair between CC-s/CC-s. Unshielded twisted pair.μf max. line to line Shielded twisted pair.μf max. line to line.μf max. line to shield. Terminate shields at one end only.. Power limited to NFPA 0 per NEC 0. CC-/CC- terminals 9 - are not connected and can be used to tie shields together.. Positive or negative ground fault detected at <0K ohms on pins -.. Remove jumper P from all s in this wiring configuration except on the that is connected to the NCC-F card. P/N -00-
8 OFF ON EOLR 0 OHMS, /W, % P/N 0-00 PAR A SUPERVSED PAR B SUPERVSED EOLR 0 OHMS, /W, % P/N 0-00 TB NCC-F P P TB PSC- RESET POWER MODULE FAL CAN FAL H - NET FAL GND FAULT V FAL V A FAL HUNDREDS - TB P FRST (ONE SLOT OF CC-/CC-) P (ONE SLOT OF CC-/CC-) P LAST (ONE SLOT OF CC-/CC-) HNET BATTERY O TB P9 TB P GND Figure NCC-F-HNET-VNT Class-X/Style Wiring TENS ONES N H DO NOT DO NOT DO NOT DO NOT SEE NOTE DO NOT SEE NOTE DO NOT SEE NOTE DO NOT 0-PN RBBON CABLE FROM PSC- 0-PN RBBON CABLE C 0-PN RBBON CABLE C CC- CC- CC-. EOLR required.. AWG min., AWG max feet (. ohms) max. per pair between CC-s/CC-s. Unshielded twisted pair.μf max. line to line Shielded twisted pair.μf max. line to line.μf max. line to shield. Terminate shields at one end only.. Power limited to NFPA 0 per NEC 0.. CC-/CC- terminals 9 - are not connected and can be used to tie shields together.. Positive or negative ground fault detected at <0K ohms on pins -.. Remove jumpers P and P from all s in this wiring configuration except on the that is connected to the NCC-F card. P/N -00-
9 PAR A SUPERVSED PAR B (OMT F STYLE ) SUPERVSED TO ADDTONAL NM-Rs, NM-Ws, NCC-Fs s 9 0 SEE NOTE ONE SLOT OF CC- Figure Connecting To An XNET (MUST BE N SAME ENCLOSURE AS THE PM/ PM-/PM- [XLS], FCM0-U [DESGO FRE SAFETY MODULAR], FCM0-U [CERBERUS PRO MODULAR]) NCC-F LOCATED NSDE NCC/ DESGO CC/VNT NOTE: F THE NCC/DESGO CC/VNT S LOCATED AT THE END OF THE XNET NETWK, NSTALL EOLR P/N 0-00 ACROSS TERMNALS & AND &.. No EOLR required for.. The screw terminals can accommodate one -AWG or two -AWG.. From the NCC-F to NM-R, NM-W or NCC-F: 0 Ohms max. per pair. Unshielded twisted pair -.μf line to line Shielded twisted pair -.μf line to line,.μf line to shield. From the NCC-F to : 000 feet (. ohms) max. per pair between CC-s/CC-s. NM-R / NM-W MOM- TB TB Unshielded twisted pair.μf max. line to line Shielded twisted pair.μf max. line to line.μf max. line to shield. Use twisted pair or twisted shielded pair.. Terminate shields at one end only.. Power limited to NFPA 0 per NEC 0.. CC- terminals 9 - are not connected and can be used to tie shields together. 9. Positive or negative ground fault detected at <0K ohms on pins -, - of the. 0. Each pair independently supervised.. Maximum voltage V P-P.. Maximum current ma during message transmission. MOM-XMP TO PSC- TB TO COMPANON NM-M V V RET TB - MOM- TB NM-M NM-W EOLR P/N (SUPPLED WTH NM-W) A PAR B PAR (OMT F CLASS-B/ STYLE (ULC DCLB)). Refer to NM-W nstallation nstructions, P/N for NM-W setup and NM-M setup and wiring instructions.. No EOLR required at the.. All wiring power limited to NFPA 0 per NEC 0.. Class-B/Style Bridge shown. For Class-X/ Style, a second NM-W/NM-M is required.. The and the NM-W /NM-M must be in the same enclosure.. Positive or negative ground fault detected at <0K ohms on pins -. A PAR B PAR 9 0 TB Figure 9 Wiring The To An XNET Bridge 9 P/N -00-
10 To Connect the nternal CAN Bus. nstall the CCL cable into P of the CC- in the upper left corner of the enclosure.. nstall the other end of the CCL cable into the first CAN module on the inner door.. Observe the location of the CAN termination devices. nstall one CAN terminator P/N 0- in the last CAN module on the inner door. nstall the 0 Ohm CAN termination resistor P/N 0-00 into TB 0 and on the PSC-.. The may be installed into any open slot of a CC-. To Connect the External CAN Bus. Loosen the screw of the terminal by turning it counterclockwise.. nsert the wire into the side of the terminal block. Tighten the screw of the terminal block by turning it clockwise.. Observe the location of the CAN termination devices. nstall one CAN terminator P/N 0- in the last CAN module on the inner door. f no CAN modules are installed on the inner door inset the CAN terminator into P of the CC- where the is installed.. nstall the second CAN terminator in the last CAN module in the remote enclosure.. The may be installed into any open slot of a CC-. Figure 0 CAN Wiring - Single Enclosure 0 P/N -00-
11 RESET POWER MODULE FAL CAN FAL H - NET FAL GND FAULT V FAL V A FAL RESET POWER MODULE FAL CAN FAL H - NET FAL GND FAULT V FAL V A FAL H H N GND N GND 0 9 RN P P 0 LVM 9 P TB AWG min., AWG max.. ohms max. for CAN network.. Use twisted pair or twisted shielded pair.. Power limited to NFPA 0 per NEC 0.. All field wiring supervised. REFER TO SNGLE ENCLOSURE WRNG DAGRAM FG. P P TB PSC- CAN CAN - 0 TB CLASS-B/ STYLE (ULC DCLB) SHELD CONNECTON PONTS TB TB TB TB P S OCM- S TB P P TB TB SM- LCM- SCM- LCM- SCM- CAN TERMNAT P/N 0- FCM- P P BATTERY AC V TB P TB _ P9 _ TB TB NCLUDED N CAN TERMNAT KT (SHPPED WTH THE ) Figure CAN Wiring - Single Remote Enclosure REFER TO SNGLE ENCLOSURE WRNG DAGRAM FG. CLASS-B/ STYLE (ULC DCLB) P P CAN CAN - 0 TB PSC- BATTERY TB. AWG min., AWG max.. ohms max. for CAN network.. Use twisted pair or twisted shielded pair.. Power limited to NFPA 0 per NEC 0.. All field wiring supervised. AC SHELD CONNECTON PONTS TB P TB _ P9 _ CAN SHELD CONNECTON PONTS CAN TB TB TB TB TB TB TB TB TB TB CAN N CAN OUT CAN N CAN OUT P P RN P P RN 9 0 LVM V LVM V TB P 9 0 P P TB P S OCM- S OCM- S S TB TB TB TB P P TB TB P P TB TB SM- SM- LCM- SCM- LCM- SCM- LCM- SCM- LCM- SCM- FCM- P P CAN TERMNAT P/N 0- FCM- NCLUDED N CAN TERMNAT KT (SHPPED WTH THE ) P P Figure CAN Wiring - Multiple Remote Enclosures P/N -00-
12 REFER TO SNGLE ENCLOSURE WRNG DAGRAM FG. CLASS-B/ STYLE (ULC DCLB) P P PSC- RESET POWER MODULE FAL CAN FAL H - NET FAL GND FAULT V FAL V A FAL BATTERY TB CAN TB 0 AC _ TB P TB H N GND _ P9 _. AWG min., AWG max.. ohms max. for CAN network.. Use twisted pair or twisted shielded pair.. Power limited to NFPA 0 per NEC 0.. All field wiring supervised. S OCM- S V V RETURN SHELD (OPTONAL) CAN CAN SHELD S OCM- S Figure CAN Wiring - Remote Enclosure Without An RN S OCM- S TB TB TB TB P SM- P LCM- SCM- LCM- SCM- CAN TERMNAT P/N 0- FCM- NCLUDED N CAN TERMNAT KT (SHPPED WTH THE ) P P The screw terminals can accommodate one - AWG or two - AWG. NSTALLATON The plugs perpendicularly into one slot in the CC- card-cage via two 9-pin DN connectors and can occupy any slot in the card cage. (Refer to Figure.) nsert the card into the card guides rightside up (lettering on the front panel is legible) Slide the card in until the card edge connectors contact the receptacles on the motherboard. Verify that the DN connectors of the card and the card-cage aligned properly. The card can only plug in one direction to the card cage, if it does not align, DO NOT FCE the card. Figure nstalling The Place thumbs on the front panel adjacent to the captive screws and gently apply even pressure on the card until the connectors seat in the receptacles on the motherboard. Secure with the captive screws. ELECTRCAL RATNGS nput Power Output Power V Back Plane Current 0mA Each HNET/XNET V peak to peak max. Screw Terminal V Current 0 And CAN Network Pair ma max. (during msg transmission).v Back Plane Current 0 V Standby Current 0mA P/N -00-
13 Cyber security disclaimer Siemens products and solutions provide security functions to ensure the secure operation of building comfort, fire safety, security management and physical security systems. The security functions on these products and solutions are important components of a comprehensive security concept. t is, however, necessary to implement and maintain a comprehensive, state-of-the-art security concept that is customized to individual security needs. Such a security concept may result in additional site-specific preventive action to ensure that the building comfort, fire safety, security management or physical security system for your site are operated in a secure manner. These measures may include, but are not limited to, separating networks, physically protecting system components, user awareness programs, defense in depth, etc. For additional information on building technology security and our offerings, contact your Siemens sales or project department. We strongly recommend customers to follow our security advisories, which provide information on the latest security threats, patches and other mitigation measures. P/N -00-
14 For CE applications in Cerberus E00 systems refer to nstallation nstruction A0-A-B (English) or A0-A-A (German). Florham Park, NJ Siemens Canada, Ltd. North Service Road East Oakville, Ontario LH 0H Canada Siemens AG BT DE FS SYS D-9 München P/N -00- Document D AV09
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