Siemens SIM-16 Supervised Input Module, Installation Instructions

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Installation Instructions SIM 16 Input Module Model SIM 16 Supervised Input Module from Industry Inc is a remotely located general input module It provides sixteen input circuits remote system monitoring Each input can be programmed as supervised dry contacts or unsupervised general purpose input The has two Form C relays The relays and the inputs programmable using the Zeus Programming Tool SIM 16 is mounted in an enclosure that is remotely from the Main Panel Communication between SIM 16 and the NIC C Network Interface Card is the Control Area Network CAN bus Up to 99 can be used with a single NIC C SIM 16 has two 10 position rotary switches that used to set the board address on the CAN which is a of the NIC C time a change of state of the input is detected a CAN message is sent to the NIC C A CAN from the NIC C directed to the SIM 16 controls Form C relays 5 6 5 6 Address Switches Set the board address for SIM 16 using both of the ten position rotary located on the board See Figure 1 Each of addresses must be a sub address of the NIC C must be the same as the addresses assigned in the Programming Tool 1 Supervised Input SIM 16 may be installed in a REMBOX When using REMBOX 2 or 4 mount the in one module space on a REMBOX2 MP P N 500 634211 or REMBOX4 MP 500 634212 using the four screws provided Refer to REMBOX2 MP REMBOX4 Installation Instructions P N 315 034211 Up to 4 SIM 16s will fit in a REMBOX2 to 8 SIM 16s will fit in a REMBOX4 315 034060 6 Industry Inc Technologies Division to Figures 2 6 all system power before installation first battery then AC To power up the AC first then the battery SIM 16 module is a node in the CAN bus SIM 16 can be installed with or without an RNI Connect the CAN bus 24V as shown in Figures 2 and 3 to 99 CAN modules in any combination can be connected to the CAN of each NIC C SIM 16 module is shipped with one CCS cable connections for SIM 16 modules are shown in the following table CAN bus requires a 120S termination at each end of the loop Refer to the NIC C Instructions P N 315 033240 for details about CAN termination CCS RNI P4 5 6 5 6 5 6 5 6 5 6 5 6 5 6 5 6 TERMINATOR 110 134215 WITH NIC C CCL 2 CAN Bus Connections With An RNI Industry Inc Technologies Division 315 034060 6 All wiring supervised All wiring power limited to 70 per NEC 760 Wiring for TB1 and TB2 is 18 min 12 AWG max Wiring for TB3 and TB4 is min 16 AWG max CAN network max line 15S Refer to the NIC C Instructions P N for CAN termination 3 Wiring Without An RNI Contacts are unsupervised 1A max 24VDC resistive All wiring must remain the enclosure or 20 feet in rigid Wiring for TB1 and TB2 is 18 min 12 AWG max Wiring for TB3 and TB4 is min 16 AWG max 4 Relay Connections PSC 12 PSX 12 TB3 ANY REGULATED LIMITED POWER LISTED FOR PROTECTIVE USE V V RET PSC 12 TB1 NIC C 315 033240 WIRING DETAILS 2 1 RATINGS Industry Inc Technologies Division 315 034060 6 5 Supervised Input Wiring 16 All inputs supervised All inputs power limited to 70 per NEC 760 Wiring for TB1 and TB2 is 18 min 12 AWG max Maximum distance 500 feet SIM 16 to supervised the Zeus Programming select supervised for supervised input Supervised and unsuper inputs may be mixed a single SIM 16 1 16 are program All inputs unsupervised All inputs power limited to 70 per NEC 760 Wiring for TB1 and TB2 is 18 min 12 AWG max All inputs must remain the enclosure or 20 feet in rigid the Zeus Programming select unsupervised for unsupervised input Supervised and unsuper inputs may be mixed a single SIM 16 1 16 are program 2 6 PLACES WITH SIM 16 5 9 PLACES 1 2 5 6 9 16 6 Unsupervised Input Wiring CE applications in Cerberus E100 systems refer to Instruction A24205 A334 B844 English or A24205 A334 A844 German Industry Inc Technologies Division Park NJ Building Technologies Ltd Safety Security Products Kenview Boulevard Ontario L6T 5E4 Canada Geb Co oHG M 315 034060 6

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