Revision 3.1 March IP Door Controller. P/No: IPD INSTALLATION MANUAL OVERVIEW

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1 Revision 3.1 March IP Door Controller P/No: IPD INSTALLATION MANUAL OVERVIEW General information. The Concept IP Door Controller provides an advanced network solution for fully Integrated Access Control, Security and Building Automation systems. This product combines a special Concept Control Module, two 2-Door Access Modules and a separate 2Amp Power Supply board in a single Inner Range Extra large, low-profile enclosure. This hardware configuration caters for all the I/O and processing requirements for Access Control, Alarm Monitoring and Automation functions for up to 4 Doors and 10 Areas. Two additional Access Modules can also be connected to provide up to 8 Doors and Programmable Site Code is supported. NOTE: Earlier versions of this product did not include the 2Amp Power Supply. While the IP Door Controller provides a convenient solution for small Sites, it is also ideal for large Sites and Multi-Site systems where many of these units can be networked and managed as a single integrated system by Insight System Management Software. Identification. (Press MENU, 2, V when not logged on) 128k Version. (10,000 Cards) 512k Version. (48,000 Cards) i) PIC Options string on 2nd line of the System Info screen: POpts: POpts: ii) The Options Micro Chip Type (U14): CEPIC_13 (V1.16 or later.) CEPIC_14 (V1.18 or later.) ADDITIONAL FEATURES The Controller provides 16 general purpose Zone Inputs, Siren and Strobe outputs. Optional add-on Boards can be fitted to provide another 8 general purpose Auxiliary outputs. The on-board modem and Serial Port also allow the Controller to communicate with the Management PC and/or a Central Monitoring Station via other paths including Dialer, RS232 and GSM modem. User Terminals can also be connected to provide PIN Code functionality and additional User operations (e.g. Card+PIN) and feedback as required. 128k Version: Up to 4 LCD Terminals. 512k Version: Up to 8 LCD Terminals and up to 2 Touchscreen Terminals. SYSTEM CONFIGURATION AND MANAGEMENT. Insight Software. This product is normally programmed and managed using the Insight System Management Software V2.1 or later. Insight allows secure local &/or remote connection and provides facilities for system programming, control and event logging. It also incorporates dynamic graphics capabilities, sophisticated monitoring, alarm handling and report generation facilites. Licensing. The IP Door Controller is recognised by Insight Software as a special type of Panel allowing up to 15 Controllers to be connected without requiring any Panel Licences. Licenses for additional IP Door Controllers are available at a much lower cost than normal Panel licenses. This allows Insight to accommodate large numbers of these Controllers with minimal Licence costs. UPGRADES. Upgrade to 512k IP Door Controller. A 512k IP Door Controller Upgrade kit (995016P14) can be purchased to provide 48,000 Cards and 4000 Review events. Note: 48,000 Cards only available in V6.0 or later. V5.6 to 5.7 supports 32,000 Cards. This kit is used to replace the Memory chip (U10) and Options Micro Chip (U14). See Note 2 below. Crossgrade/Upgrade to Concept Access An IP Door Controller can be converted to a Concept Access 4000 if further expansion is required, by fitting the appropriate Memory Upgrade kit. (i.e.changing the RAM & Options Micro Chip) e.g k Memory/Options Chipset k Memory/Options Chipset. NOTES: 1) You will need to ensure that Insight has adequate Panel licensing to support the upgraded Panel. 2) Panel programming will be lost when you change the Chips. To retain the programming, ensure that the Panel and Insight data is synchronized before performing the upgrade. Then, after upgrading and re-establishing communications with Insight, download the programming back into the Panel. Some programming may not be downloaded if the number of items in the IPDoor configuration is greater than the number available in the new configuration. INSTALLER PIN CODE. The Default Installer PIN Code is 01 and should be changed by the Installer as soon as programming commences. ADDITIONAL INFORMATION. Comprehensive information on the Modules and programming options utilized in this product can also be found in the following documents: -Type 2 Control Module and Two Door Access Module Installation Manuals. -Concept Access 4000 Programming Applications and Reference Manual Inner Range Pty. Ltd. Part No: IPD

2 2 Concept IP Door Controller. Installation Manual. Contents Parts List...2 Memory Configuration...2 Module Numbering...2 Installation And Safety Instructions Input, Output & Reader Wiring Door Access Module Link Settings...6 LAN Connections Diagnostic LEDs And LCD Terminal Fault Messages...8 Programming Summary...9 Control Module PCB Layout Door Access Module PCB Layout...11 Specifications...12 Parts List Metal Equipment Enclosure containing: - Concept Access 4000 Control Module with Ethernet UART board and Transformer. - 2 x 2-Door Access Module PCBs. - 2 Amp Power Supply board and Transformer. - Associated Power Supply, LAN and Earth wiring looms. - Battery bracket. Installation Manual. (This document) 2A Power Supply Installation manual. In countries where the Mains input cable is not pre-fitted, the following parts are also supplied: - Sufficient mounting screws to assemble all parts to the housing. Installation Kit containing: - 5 x 8 Way plug-on screw terminals. - 5 x 6 Way plug-on screw terminals. - 8 x 3 Way plug-on screw terminals x 2 Way plug-on screw terminals. - 2 x Battery connection cables. - 3 x Jumper Links 0.1 (Spare) - Tamper switch bracket. - Tamper switch. - 2 x 6.3mm Quick Connect connectors for Tamper switch. - 2 x 0.5 Amp Fuse Fast Blow. M205 (Spare Reader Fuses) - 1 x 1.0 Amp Fuse Slow Blow. M205 (Spare AC Mains Fuse) - 1 x 2 Amp Fuse Fast. M205 (Spare Detector/LAN/Siren Fuses) - 1 x 5 Amp Fuse Fast. M205 (Spare Pwr Supply Battery Fuse) - 4 x 1N4004 Diode. (Connect in reverse polarity across locks) - 30 x 2k2 End-of-line resistors. (red-red-black-brown-brown) - 30 x 6k8 End-of-line resistors. (blue-grey-black-brown-brown) Memory Configuration The IP Door Controller only supports the IP Door Memory Configuration. This configuration is Factory set. IP Door Memory configuration summary. See Memory Configurations in the Programming Manual for full details. Item 128k 512k Item 128k 512k Users with PIN &/or Card 4,096 4,096 Review Events Card Only Users 5,904 43,904 Reader Modules 4 4 Total Cards 10,000 48,000 LCD Terminals 4 8 User Types Touchsreen Terminals 0 2 TimeZones Analogue Modules 0 1 Holidays Mini Expander Modules 0 1 Doors 8 8 LAN Power Supply Modules 0 4 Areas Other Module Types 0 0 Module Numbering The Reader Module numbers in this assembly are preset in the Factory to Numbers 1 and 2. The Module number is set using DIPswitches 1 to 7 and equals n + 1, where n is the binary number set on DIPswitches 1 to 7. Module No: DIPswitch: Binary value: off off off off off off off 2 ON off off off off off off 3 off ON off off off off off 4 ON ON off off off off off

3 Revision 3.1 March INSTALLATION AND SAFETY INSTRUCTIONS Electrical AC Mains Power connection. In countries where the module is supplied without a mains power cord, a suitable mains power cord for connection to the 240V AC Mains supply must be installed by a suitably qualified electrician or technician. 1. Strip 80mm of the sheath from the end of the power cord. Trim 20mm from the ends of the Active and Neutral conductors so that the Earth conductor remains slightly longer. 2. Strip 5mm of insulation from each of the conductors. (If the terminal block has no wire protection leaf, conductive sleeves must be fitted to the exposed ends of the conductors) 3. Feed at least 150mm of the power cord through the AC mains cable entry hole of the chassis. 4. Terminate the power cord in the terminal and fuse block as illustrated in Diagram 1 below. (Note that the Active wire is always connected into the termination nearest to the fuse) 5. Determine the appropriate length of power cord between the terminal block and the cable entry hole. (Approx. 120mm), fit the plastic grommet (supplied) around the power cord and apply pressure to both sides of the grommet to clamp the cable. The grommet can now be inserted into the AC mains cable entry hole. IMPORTANT NOTE: An AC Mains socket-outlet shall be installed near the equipment and shall be easily accessible for connection of the mains power cord. Diagram 1. Chassis Transformer input connection. EARTH Connection to PCB 5mm 20mm Neutral Earth Active (Live) Fuse. 1 Amp M205 (20mm) Power Cord AC Mains cable entry hole & Plastic Grommet. Assembled Tamper switch in the Tamper bracket 80mm 120mm Mounting the Unit. See Diagram Installation environment should be maintained at a temperature of 0º to 40º Celsius and 15% to 85% Relative humidity (noncondensing) 2. IP Door Controllers are supplied in metal enclosures which must be secured to a flat, vertical surface using fasteners through the six keyhole mounting holes in the chassis. 3. When mounting this product onto flammable surfaces, a fire protection backplate MUST BE INSTALLED. 4. The tamper switch bracket must be positioned through the slot in the chassis at the opposite end to the power cable entry, before the lid is secured to the chassis. 5. Orientation of the enclosure MUST be as per either of the illustrations in Diagram 2. If the enclosure is mounted horizontally, two battery brackets will be required. 6. In Order to comply with regulations, the screw provided to fix the cover to the chassis must be tightly secured.

4 4 Concept IP Door Controller. Installation Manual. Installing the Battery. See Diagram 2 below. 1. Pre-assembled Battery cables are provided. These cables are connected to the Battery +B and -B connections on the Control Module and provide 4.8mm Quick Connect terminals for connection to the Battery. 2. Connect the Black Battery cable to the Negative (-) Battery terminal and the Red cable to the Positive (+) Battery terminal. Mounting Surface. Fire Protection Backplate. (Side View) Diagram 2. Tamper switch bracket is fitted in this slot. AC Mains Transformer with Terminal block and fuse. Mounting Holes (x 6). 12V, 7AH Battery locations. AC Mains Transformer with Terminal block and fuse and AC Mains Input. Fitting the Cover. In order to comply with performance regulations, the must be fitted to the chassis and the screw provided to fix the cover to the chassis must be tightly secured. Horizontal Mounting: UP If mounted horizontally, an additional battery retaining bracket will be required as shown.

5 NO COM NC 0V +V Revision 3.1 March Wiring Diagrams ZONE INPUT AND BUTTON WIRING Normally Open Button contact. - 2 DOOR ACCESS MODULE REX / REN / ARM BUTTON INPUTS. Normally Closed Alarm contact. - 2 DOOR ACCESS MODULE REED / TONGUE INPUTS. - CONTROL MODULE ZONE INPUTS, Z1 to Z16. 6k8 2k2 Normally Closed Tamper contact REX1 0V REN1 TNG1 0V REED1 T8/ T9 Detection devices with Normally Open Alarm contacts are wired in exactly the same manner as above. When programming the Zone Input, however, the option to Swap Seal and Alarm conditions must be set to [Y]es. e.g. V C01:Z01 S I X S R A N T Opts -> n n n Y n n n n Lock Wiring Heavy duty Fig. 8 cable (24/0.20 or 14/0.20) recommended for all Power & Lock wiring. LOCK 1 or 2 (X01 or X04*) T2 / T3 EXTERNAL PWR SUPPLY (BATTERY BACKED) - + +VE wired directly to External Power Supply. Power to Un-Lock or Power to Lock - + Lock Strike 1N4004 Protection Diode (supplied) fitted as close as possible to the strike. Cathode (bar) to +VE. Reader Wiring R EADER D 0 R# D1 R# O mron Swipe b rown (Data) red (Clock) HID ProxPoint HID Sensorkey / MiniProx/ThinLine/ProxPro HID Classic Swipe / Insertion / Epic Wiegand (Units may have flying leads OR screw terminals) Motorola Indala green green green Data 0 green whit e whit e white Data 1 whit e + VE GND yello w red red red +VE red green black/shiel d black/shiel d black/shield GND black/shiel d NOTE: The LED control wires provided on Proximity and Wiegand readers can normally be wired directly to the VALID / INVALID / DOTL outputs on the Reader Module. (The dropping resistor is usually built in to the reader) Check information supplied with the Reader for LED control details before connecting. If a dropping Resistor is not provided in the Reader Head, fit a 1.2k Resistor in series with the LED wire. (2 x 2k2 EOL Resistors in parallel will suffice)

6 6 Concept IP Door Controller. Installation Manual. 2 Door Access Module Link Settings READER Omron Swipe HID ProxPoint HID ProxPro HID Sensorkey / MiniProx / ThinLine / ProxPro with keypad (HID5355) HID Swipe/Insertion/Turnstile Wiegand Card Readers Motorola Indala. SlimLine/WallSwitch/PinProx /ValueProx/SecureProx/MasterProx Motorola Indala. Standard/ Medium Range/MasterProx (for 30cm read range) JP2/JP3. Data O/ P JP4/JP5. 12V 12V Mode JP6/JP7. 12V 12V Suppl y NOTE: It is recommended that Readers with wide supply voltage ranges (e.g. 4V to 14V, to 16V, etc.) are powered using the option. LAN CONNECTIONS Refer to diagrams opposite. The 2-Door Access Modules are pre-wired to the Control Module via the 4 wire LAN cables supplied. See Figure 1. If an LCD Terminal needs to be connected for programming, a temporary connection can be made on any of the unused Ancillary LAN connectors. See Figure 1. The Control Module and the 2nd 2-Door Access Module (Reader Module #2) have LAN Termination fitted. CONNECTING ADDITIONAL MODULES TO THE LAN. Additional 2-Door Access Modules and/or any permanent LCD Terminals can also be connected to this LAN using TWISTED PAIR cable. Multi-strand wire is preferred for terminating into the screw terminal connectors. e.g. Category 5 patch cable or RS485/RS422 Data Cable. Using recommended cable types, the additional LAN modules can be installed hundreds of metres from the Control Module. If additional Modules are connected, the LAN Termination scheme will need to be adjusted accordingly. See Figure 2. - With a single daisy-chain cable run, remove the termination link from the 2nd 2-Door Access Module and fit the termination link on the last Module on the cable run. - With multiple cable runs ( star configuration), remove the termination links from the Control Module and the 2-Door Access Module and fit termination links on the Module at the end of the two longest cable runs. Refer to the Installation Guide supplied with the new Module and Installation and Troubleshooting in the Concept Access 4000 Programming Applications and Reference Manual for installation details. SYSTEM EARTHING The System Ground is connected to Mains Earth via the Power cord at the Control Module. The enclosure can be mounted on a grounded conductive surface, providing a secondary ground connection. In some cases a Printer, PC, modem, etc. connected to the Control Module UART board may also provide a connection to earth via the peripheral device. If so, ensure that the peripheral device is powered from the same AC Mains circuit or the RS232 Serial connection is isolated. Ensure that any additional Modules connected to the LAN have NO local connection to Earth. Ensure that wiring, additional hardware or peripherals connected to these modules does NOT provide an Earth connection to the Module PCB.

7 Revision 3.1 March If LAN problems are encountered, see Installation and Troubleshooting in the Concept Access 4000 Programming Applications & Reference Manual. SURGE PROTECTION. If installing additional LAN Modules in multi-building installations and on longer cable runs, shielded cable may be used to provide added protection against voltage surges. Each individual shield should be terminated to a Protective Earth point such as an earth stake or building earth (metal building framework). It is very important to ensure that the shield makes no contact with Negative, Common 0V or any other wiring within the system. Surge protection devices &/or LAN Isolator/s can also be included in a Surge protection scheme to provide additional protection &/or electrically isolate different sections of the LAN at the point where LAN cabling enters/exits each building, or on cable runs that are more exposed to voltage spikes or surges. Connecting Modules to the LAN. Figure 1. Pre-wired LAN. NOTE: +VE connections from two different power supply sources must never be connected together. Ancillary LAN Connectors. CONTROL MODULE Pre-wired LAN Connection to the 2-Door Access Modules. LAN Connection to any additional Modules. See the Module s installation manual for connection details. 2 Door ACCESS MODULE R01 - Powered from LAN. 2 Door ACCESS MODULE R02 - Powered from LAN. Figure 2. Daisy Chain LAN configuration for additional Modules metres max. CONTROL MODULE (Term) READER MODULE READER MODULE (Term) = Termination Link fitted. LCD TERMINAL READER MODULE (Term) IP Door Controller Optional additional LAN Modules (Up to 4 LCD Terminals and 2 additional Reader Modules can be connected)

8 8 Concept IP Door Controller. Installation Manual. CONTROL MODULE FAULT LEDs (LED 13 & LED 14). LED1 LED2 EXPLANATION / REMEDY ON OFF Ram Fault. RAM faulty, in backwards, out by one pin or LK2 not correct. Power off, fit correctly or replace. OFF ON Non-volatile RAM not initialised. Short LK4 to continue. (NOTE: Erases all programming) ON ON Configuration Problem. (RAM Directory) Return options memory chip to Distributor. Fast Flash OFF Hardware Problem. (EEPROM not itialized) Return unit for service. OFF Fast Flash Wrong GAL for NVRAM size. (Illegal Memory size) Contact the Distributor. Fast Flash Fast Flash Wrong GAL for required options. (Illegal option/s) Contact the Distributor. Fast Flash ON Faulty Program chip. (EPROM) Return unit for service. ON Fast Flash Default of installer code not allowed. Contact Installer or return to Distributor for defaulting. Short LK4 or remove and reconnect power to the Control Module to continue with normal operation. Slow Flash OFF PIC Micro not communicating. Return unit for service. OFF Slow Flash Incorrect Micro. Contact the Distributor. Slow Flash Slow Flash Secure Micro Version wrong. Contact the Distributor. Slow Flash ON Lock bits not set. Contact the Distributor. ON Slow Flash Configuration Version problem. See Getting Started Step 1.3a below. Contact the Distributor if this does not rectify the problem. LCD TERMINAL ERROR MESSAGES MESSAGE No Rx Can t Tx Exists Too Big Too Many EXPLANATION / REMEDY Terminal requesting address from Control Module, but no reply being received. Terminal cannot send data because LAN is being held in start condition. Check for A/B reversed. Module number selected already being used by another LCD Terminal. Choose another number. Module number selected is too big for Control Module RAM size. Select a lower Module number. Too many modules on Network for Control Module RAM size. READER MODULE FAULT LEDs RX TX EXPLANATION / REMEDY ON ON Module is un-addressed. OFF ON Module type unknown. Firmware upgrade required to Control Module. Flash ON Duplicate Module. This module number is already in use by a module of the same type. Flash Flash Module number selected is too big for Control Module RAM size. Select a lower Module number. ON OFF Too many modules on Network for Control Module RAM size. IP Door Controller Programming summary 1. Getting Started 1.1 Power up the system and check that any Terminals are operational and default messages are being displayed on the LCDs. 1.2 Check that all Modules installed on the LAN are powered up and communicating with the Control Module. 1.3 Check the Memory Configuration via the system info screen on the LCD Terminal. [MENU, 2 when not logged on] The configuration information should be Ram: 128K-08-xx.xx. 08 represents the IP Door Configuration option. xx.xx is the Firmware Version when the Memory was last defaulted. This Version number must be V5.24 or later and should match the Version of the Firmware currently installed. 1.3a If the Configuration is not 08, the Error Lamps will display L1=ON, L2=Slow Flashing. You will need to Default the Memory to the IP Door configuration by shorting LK4 for 3 seconds. Note that any panel programming will be erased. (Note that Memory Default via MENU, 7, 5, 2 is not allowed in this product) 1.4 Set the current Time and Date. [MENU, 5, 1] 2. Program the Insight Comms Task options. [MENU 7, 3, 1] 2.1 Program the Insight Comms Task Options for the path/s that you require ensuring that the Panel ID programmed matches the Panel ID programmed for this Panel in the Insight software. 2.2 If remote Dial-up communications is required for Insight connection, program an Internal Modem Comms Task. Program the number of Rings to Answer and any of the other options required such as Timed Bypass or an Insight Telephone No.

9 Revision 3.1 March Program the Reader Module/s [MENU 7, 2, 4] 3.1 Check that the Reader Module Purpose is set to Door Control and Assign the Door/s to be controlled by this Module. 3.2 Select any of the Options required [C E X F W N T 2 ] such as DOTL Warning, Tongue Sensing or 2 Door Mode. 3.3 Select the Arming Mode if Reader/s are to be used for turning an Area ON. 3.4 Program the parameters for the first Reader (Rdr 1) and second Reader (Rdr 2) connected to the Reader Module. 4. Program the Doors [MENU, 7, 6] 4.1 Program a name for each Door and assign an Inside and/or Outside Area IF required for Area control, Anti-passback, User Tracking or User counting in Areas. 4.2 Assign a suitable Access Group. This will determine the way in which the Door is controlled. You may need to program additional Access Groups [MENU, 2, 4, 2] if the Default Access Groups do not cover your Door Control requirements. 4.3 Define the Lock Auxiliary for the Door. Rxx:X01 for 1st Door on a Reader Module and Rxx:X04 for the 2nd Door. 4.4 Program the Lock Open Time (Default is 5 secs) and the Maximum Door Open Time (Default is 30 secs). 5. Assign the Reader for User Programming. [MENU, 7, 5, 1] 5.1 Program the Reader Module number to be used for Testing Cards, Enrolling User s Cards (If Direct Entry mode is used) & programming Backup Cards. 6. Program the Site Code/s. [MENU, 2, 5] 6.1 IF cards are to be entered into the system using the Site Code method, at least one Site Code will need to be programmed. Program the Site Code in Hex or Decimal format, program a Card Offset if required and set Site Code Present to Yes. 7. Initialize and Secure the LAN. [MENU, 7, 8, 1] 8. Automated Unlocking and/or Locking of Door/s 8.1 At Specific Times and/or for Specified period/s of Time. Program TimeZone/s. [MENU, 5, 2] 8.2 As a result of any event in the system that can control an Auxiliary. e.g. Keyswitch, Area On/Off, Alarm, etc. Program Calculated Auxiliaries. [MENU, 7, 5, 4] 9. Program the Inputs. [MENU 7, 0] 9.1 Program the Zone Inputs present in your system. 10. Program the Areas. [MENU 7, 1] 10.1 Program the details of each of the Areas required in your system. You will also need to program a Siren List [MENU, 2, 3, 3] if Sirens are required Assign the relevant Zone Inputs to the Area/s using an appropriate Process Group for each Input At least one Area will have System Inputs assigned. There are two ways of assigning System Inputs to Areas. 1) Individually in the same way that Zone Inputs are assigned. 2) Collectively by using the Add System Inputs option via the Area Default procedure. NOTE: Only System Inputs on Modules currently communicating on the LAN will be assigned. Ensure that any of the System Inputs associated with the Access Control Alarms required are assigned to an Area. e.g. Forced Door (Rxx:S03 / Rxx:S05), Door Held Open (Rxx:S04 / Rxx:S06) and Illegal Card (Rxx:S07). 11. Program the Area Lists. [MENU 2, 3, 1] 11.1 Determine the Area/s that different types of Users will be allowed to turn ON and OFF. From this information you can program the Area Lists required [MENU 2, 3, 1]. 12. Program the Door Lists. [MENU 2, 3, 2] 12.1 Determine the Door/s that different types of Users will be allowed to access. From this information you can program the Door Lists required [MENU 2, 3, 2]. 13. Program the User Types. [MENU 2, 2] 13.1 Categorize all the Users in the system into a number of logical (and practical) Types then program each of the User Types required. [MENU 2, 2] You may also need to program TimeZones [MENU, 5, 2] if any User operation is required to be restricted or altered according to specific time period/s 14. Program the Users. [MENU 2, 1] 14.1 User Codes programming may now be done utilizing the User Types just programmed. This may only be necessary to provide the client with a Master User Code that will allow them to program in the rest of the Users themselves.

10 10 Concept IP Door Controller. Installation Manual. THE CONTROL MODULE PCB JUMPER LINK ORIENTATION LED12. AC Supply present. 2. T7 & T9. 16V AC Input & Battery connections. 3. F1. Battery Fuse 5Amp. M205 LED 9. Battery Fuse blown. 4. LED17.On = Battery Charge relay On. (Battery supply above 12.7V) 5. JP1 Port 0. Temporary PC connection. 6. JP2. Expansion Port UART Interface connection. NOTE: Control Module must be powered down when fitting or removing a UART board. 7. LED13 & LED14 (L1 & L2). FAULT LED DIAGNOSTICS. See table on page LK3. Installer Code Default LK4. Initilize RAM (Continue). CAUTION. 9. T11 / JP9. Telecom Line connections. 10. LED 2 to LED 6. Telecom/Port 0 Status LEDs. LED 2. Line Seize Relay Active. LED 3. Dial Indicator. LED 4. Ring Voltage Indicator. LED 5. Telecom/Port 0 Transmit Data. LED 6. Telecom/Port 0 Receive Data. 11. T1 to T4. Zone Inputs. 12. LED15 & LED 16 (RX & TX). LAN Activity LEDs Rx =Receive Data. Tx =Send Data. 13. JP4. Auxiliary LAN connection. For temporary connection of LCD Terminal for diagnostic purposes. 14. F4. LAN POS Fuse. 2Amp. M205. LED7. On = LAN Fuse Fail. 15. T5. LAN connections. 16. T10. Cabinet Tamper input. 17. LK10. LAN Termination. 18. T6. Auxiliary Relay outputs. 19. LK1 & LK8. Link Aux. Relay Common to DET Siren outputs. 21. JP3. Auxiliary Output Expansion Port. 22. F2 & F3. Fuses for Siren 1 and Siren 2. 2 Amp. M LED 10. On = Supply present. LED 11. On = 13V Supply present 24. F5. Fuse for Detector Power. 2 Amp. M205. LED 8. On = Detector Fuse blown. 25. T8. Detector Power connections.

11 Revision 3.1 March THE 2-DOOR ACCESS MODULE PCB X2. Optional External Power Supply connection. 2. T1. LAN, External Power & Tamper Switch Connections. +LAN LAN +ve connection. 0V LAN 0V (-VE) connection. A LAN Data A connection. B LAN Data B connection. SPR. Connect LAN +ve if Module powered from External supply.* +V External Power Supply +VE input. TAMP Tamper Switch input. 0V Ext. Power Supply -VE input. & Tamper switch 0V return. 3. LK1. TERM. Fitted only if this unit is one of the two furthest modules from the Control Module. 4. X1. Ancillary LAN connection. 5. BOOST (JP1). For 12V Readers only. Fit if Voltage at Reader head is < D0 (L4 & L6). Data 0 s Reader #. D1 (L3 & L5). Data 1 s Reader #. 7. JP2/JP3. Reader Data output voltage. / 12V. JP4/JP5. Reader format option. Normally set to. JP6/JP7. Reader Power Supply voltage. / 12V. 8. F2 & F3. 500mA FUSE M T4 & T5. Reader connections. ARM# Button Input for optional Area ON control. 0V Reader 0 Volt (-ve) connection. +VRD Reader Power. D1(CLK) Reader Data or Clock input. D0(Data) Reader Data input. 10. T8 & T9. Input connections. REX # Exit Button Input for Door #. 0V 0 Volt return for Input connections. REN # Entry Button I/P for Door #. TNG 1 Optional Tongue Sense I/P Door #1 OR Zone 6. TNG 2 Optional Tongue Sense I/P Door #2 OR Zone 7. REED 1 Reed Switch Input for Door #1. (Zone 1 I/P) REED 2 Reed Switch Input for Door #2. (Zone 5 I/P) 11. T6 & T7. Auxiliary Output connections. DOTL # Reader # Warn DOTL LED output. (DOTL1 = X07, DOTL2 = X08) VAL # Reader # Valid LED output. (In No LEDs mode: VAL1 = X02, VAL2 = X04 in Single Door mode INV # or X06 in Two Door mode) Reader # Invalid LED output. (In No LEDs mode: INV1 = X03, INV2 = X05) +V +12V supply for Auxiliary Outputs. Connect 1.2kOhm dropping resistor between +V & LED Anode if not already provided in Reader. 12. T2 & T3. Lock Relay Connections. 13. RX (L1). LAN Data Receive & FAULT DIAGNOSIS TX (L2). LAN Data Transmit & FAULT DIAGNOSIS 14. DIPswitch SW1: Switch 1-7. Module number.

12 12 Concept IP Door Controller. Installation Manual. Specifications Control Module Mains Input: Transformer Input Voltage: 240V AC -10% / +10%. 50 Hertz. Transformer Output Voltage: 16. AC. 50 Hertz. Current Consumption: Maximum 500 milliamps from 240V AC Source. Fuse Protection: Separate AC mains input fuse. 1.0 Amp Slow Blow. M205 (20mm) PCB Input: PCB AC Input Voltage: 16 to 18V AC. 50 Hertz. Battery Capacity: 12V 6.5 AH. Sealed Lead Acid Battery. Battery Input Fuse: 5 Amperes. Power Supply Output: Current (Using 3A Transfomer supplied). Total Current Limit 2.2 Amp. Static Controller Current 275mA Maximum Ancillary Current 1.2A NOTES: 1) Max Ancillary Current is the maximum combined current allowed to be drawn from LAN POS and DET+. 2) Battery re-charge times will depend on the remaining current available to the Battery charger after the Static Controller Current and the Ancillary Current are subtracted from the Total Current Limit. To shorten Battery re-charge times, minimise the Ancillary current by using separate Power Supplies for Detectors, etc. 3) See data supplied with detectors and output devices for actual current consumption of items connected to the module. Fuse Protection: Separate 2 Ampere fuses provided for: Siren1, Siren2, LAN Power & Detector Power. 2 Door Access Module Power Supply Input: 11V to 14V DC Current Consumption. 60mA standby. 210mA max. with lock relays & LED outputs all active. (NOT including Reader current.) NOTE: Allow 50 to 120mA for small Prox Reader (~10cm range) Allow 120 to 180mA for standard Prox Reader (~15cm range) These values are general approximations. See information supplied with Reader for actual current consumption. Lock Relay Contact Rating:5 30VDC. Fuse Protection: 500mA (LAN +VE, T5 +VE and T3 +VE) Total combined current required by devices connected to these 3 +VE terminals must not exceed 400mA. Mechanical Specifications ALWAYS REPLACE FUSES WITH THE SAME FUSE TYPE AND VALUE! Dimensions: Length: 705 mm. Width: 360 mm. Depth: 85 mm. Weight: 12.5 k.g. (Includes mains transformers, battery and cover.) Designed & manufactured in Australia. Disclaimer: 1. The manufacturer &/or it s agents take no responsibility for any damage, financial loss or injury caused to any equipment, property or persons resulting from the correct or incorrect use of the system or it s peripherals. The purchaser assumes all responsibility in the use of the system and it s peripherals. 2. While every effort has been made to ensure the accuracy of this manual, the manufacturer assumes no responsibility or liability for any errors or omissions. Due to ongoing development, this manual is subject to change without notice.

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