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MCT82M-IO-HR Operating Manual Rev. D.doc 

  

22.06.2021 

 

6/17 

 

 

Alarm A = 2,2 kΩ 

 

Alarm B = 5,6 kΩ 

Response time 

Response time parameter defines minimal impulse time on the input which triggers the input. Each input can 
be configured individually in range of 50 to 5000 ms within low level configuration (VISO v2 or RogerVDM). 

Tamper detector 

Built-in tamper (sabotage) detector 

enables detection of unauthorized opening of device’s enclosure as well 

as  detachment  of  the  enclosure  from  wall.  The  detector  is  internally  connected  to 

the  terminal’s  input.  It 

does  not  require  low  level  configuration  or  any  additional  installation  arrangements  but  it  is  essential  to 
mount front panel in such way as the tamper detector (fig 4) would firmly press the back panel. The detector 
requires  high  level  configuration  which  consists  in  assignment  of  the  function 

[133]  Tamper  Toggle  o

n  the 

level of a 

Main Board

 of a controller in VISO software navigation tree.  

Outputs 

The  terminal  offers  2  transistor  open  collector  type  outputs  (15V/150mA  rated)  and  1  relay  output  with 
NO/NC  contacts  (30V/1.5A  DC/AC  rated).  Electric  parameters  such  as  polarity  are  configured  within  low 
level configuration (VISO v2 or RogerVDM). Function are assigned to outputs within high level configuration 
(VISO). Multiple functions with different priorities can be assigned to the same output at the same time. 

Identification 

By default the terminal reads serial numbers (CSN) of MIFARE cards but it is possible to program cards with 
own  numbers  (PCN)  in  selected  and  encrypted  sectors  of  card  memory.  The  use  of  PCN  prevents  card 
cloning and consequently it significantly increases security in the system. More information on MIFARE card 
programming is given in AN024 application note which is available at 

www.roger.pl

. 

The  technical  characteristics  of  the  device  are  guaranteed  for  RFID  cards  supplied  by  Roger.  Cards  from 
other sources may be used, but they are not covered by the manufactures warranty. Before deciding to use 
specific  Roger  products  with  third-party  contactless  cards,  it  is  recommended  to  conduct  tests  that  will 
confirm satisfactory operation with the specific Roger device and software in which it operates. 

2.

 

I

NSTALLATION

 

Table 4. Screw terminals 

Name 

Description 

+12V 

12VDC power supply 

GND 

Ground 

RS485 bus, line A 

RS485 bus, line B 

COM 

REL1 relay common contact 

NC 

REL1 relay normally closed contact 

NO 

REL1 relay normally opened contact 

IN1 

IN1 input line 

IN2 

IN2 input line 

IN3 

IN3 input line 

IO1 

OUT1 output line 

IO2 

OUT2 output line 

 

Summary of Contents for MCT82M-IO-HR

Page 1: ...Roger Access Control System MCT82M IO HR Operating Manual Product version 1 0 Firmware version 1 1 18 or newer Document version Rev D ...

Page 2: ...n key bell 3 parametric EOL inputs 2 transistor outputs 1 relay output RS485 interface Tamper protection Screw terminals Power supply The terminal requires power supply voltage in range of 11 15VDC It can be supplied from MCX2D MCX4D expander of MC16 PAC KIT from MC16 access controller e g TML output or from dedicated power supply unit The supply wire diameter must be selected in such way that the...

Page 3: ...p The matching resistors terminators connected at the ends of transmitting lines are not required In most cases communication works with any cable type standard telephone cable shielded or unshielded twisted pair etc but the recommended cable is unshielded twisted pair U UTP cat 5 Shielded cables should be limited to installations subject to strong electromagnetic interferences The RS485 communica...

Page 4: ... DO NOT DISTURB Red Requires programming Fig 3 Indicators and function key Note Synchronic pulsing of all four LEDs signifies lost communication with MC16 controller Buzzer The terminal is equipped with buzzer which is used to signal integral functions and it can be additionally programmed with other available functions within high level configuration VISO Inputs The terminal offers 3 general purp...

Page 5: ...t is operated in such way that CA contacts opening is interpreted as triggering of the first input while CB opening is interpreted as triggering of the second input In VISO software DW input type is represented by two independent inputs Each can be used for different purpose and assigned with different function Parametric resistors The same values of parametric resistors are used for all inputs i ...

Page 6: ...onfiguration VISO v2 or RogerVDM Function are assigned to outputs within high level configuration VISO Multiple functions with different priorities can be assigned to the same output at the same time Identification By default the terminal reads serial numbers CSN of MIFARE cards but it is possible to program cards with own numbers PCN in selected and encrypted sectors of card memory The use of PCN...

Page 7: ...t panel Note MCT82M IO HR enclosure consists of front panel and back panel New device is assembled with a standard back panel but additional free of charge extended back panel is included This panel can be used when connection cable has to be hidden and no flush mounting box is available ...

Page 8: ...MCT82M IO HR Operating Manual Rev D doc 22 06 2021 8 17 Fig 5 MCT82M IO HR installation ...

Page 9: ...MCT82M IO HR Operating Manual Rev D doc 22 06 2021 9 17 Fig 6 MCT82M IO HR F installation ...

Page 10: ... s power supply line and RS485 bus are connected directly to the controller The terminal can also operate with MC16 controller using MCX2D MCX4D expanders as in case of M16 PAC KIT series Fig 7 Typical connection diagram for the terminal and MC16 access controller 4 CONFIGURATION The purpose of low level configuration is to prepare device for operation in RACS 5 system In case of RACS 5 v1 system ...

Page 11: ...onfiguration of device from VISO v2 software or remove jumper from MEM contacts to block such remote configuration Programming procedure with RogerVDM software firmware older than 1 1 30 266 1 Connect the reader to RUD 1 interface fig 8 and connect the RUD 1 to computer s USB port 2 Place jumper on MEM contacts fig 4 3 Restart the reader switch power supply off and on or short RST contacts for a m...

Page 12: ... Yes Keypad settings Keypad activated Parameter enables deactivation of keypad Range 0 No 1 Yes Default value 1 Yes Advanced settings Stop card PIN reading when buffer full Parameter enables to reject card PIN reading by device till previous card PIN is transmitted to controller Range 0 No 1 Yes Default value 0 No Card PIN buffer timeout s Parameter defines time for card PIN storing in device buff...

Page 13: ...r where PCN is stored Range 0 39 Default value 1 Application ID AID Parameter defines application ID number AID which indicates sector where PCN number is stored Range 0 9999 Default value 5156 Block ID Parameter defines block number where PCN is stored Range 0 2 to for sectors 0 31 and 0 14 for sectors 32 39 Default value 0 Key type Parameter defines key type used to access sector with PCN Range ...

Page 14: ...s application key number used for file read Range 0 13 Default value 0 Key type Parameter defines encryption key type for Desfire file Range 0 TDES Native 1 TDES Standard 2 3 KTDES 3 AES128 Default value 0 TDES Native Key Parameter defines access key for Desfire file with PCN 3 KTDES key is 24 bytes 48 HEX digits TDES and AES keys are 16 bytes 32 HEX digits Manual addressing Manual addressing proc...

Page 15: ...e jumper on MEM contacts fig 4 3 Restart the device switch power supply off and on or short RST contacts for a moment and orange LED SYSTEM will pulsate 4 Read any MIFARE card 11 times 5 Wait till device confirms reset with long acoustic signal 6 Remove jumper from MEM contacts and restart the device High level configuration VISO The purpose of high level configuration is to define logical functio...

Page 16: ... Two IO1 IO2 open collector outputs 15VDC 150mA max load Tamper protection Enclosure opening reported to access controller Proximity cards 13 56MHz MIFARE Ultralight Classic DESFire EV1 and Plus Reading range Up to 7 cm for MIFARE Ultralight Classic Up to 4 cm for MIFARE DESFire EV1 Plus Distance 1200m maximal cable length for RS485 bus between controller and reader IP Code IP41 Environmental clas...

Page 17: ...IO HR v1 0 06 2018 The first commercial version of product This symbol placed on a product or packaging indicates that the product should not be disposed of with other wastes as this may have a negative impact on the environment and health The user is obliged to deliver equipment to the designated collection points of electric and electronic waste For detailed information on recycling contact your...

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