AccessPRO AccessPRO2 Guide

2.Equipment Installation
Installation and C onnection G uide
1.Cautions
Unlock at power off
Unlock at power on
+
+
-
-
Enlargement of
NC
NO
COM
Diode
Diode
L ock
L ock
+
+
-
-
FR107
FR107
3.Lock Connection
External power supply for electronic lock
p
q
RS-485EXT 1
6
WIEGAND1IN1 IN2 OUT1OUT2WIEGAND 2IN3 IN4 OUT3OUT4
13
POWER
15110 1 2 121313110 121213
Reset
PC
PC
TCP/IP Ethernet
RS485 Ports
Card Reader
1# Controller
2# Controller n# Controller
p
q
RS-485 EXT 1
6
WIEGAND 1IN1IN2OUT1 OUT2 WIEGAND 2IN3IN4 OUT3OUT4
13
POWER
15110 1 2 12 1 313110121 2 13
Reset
p
q
RS-485EXT1
6
WIEGAND1IN1 IN2 OUT1 OUT2 WIEGAND 2IN3 IN4 OUT3 OUT4
13
POWER
15110 1 2 1 2 1 31311012 1 213
Reset
p
q
RS-485 EXT1
6
WIEGAND1IN1 IN2 OUT1 OUT2 WIEGAND2IN3IN4 OUT3 OUT4
13
POWER
151101 2 1 2 1 313110 1 2 1 2 13
Reset
1) TCP/IP Mode:
2) RS485 Mode:
4.Equipment Communication
485-
485+
G N D
485-
485-
485- 485+
485+
485+ G N D
G N D
G N D
Serial Bus
4 3 2 1
4 3 2 1
4 3 2 1
8# Controller
2# Controller
1# Controller
p
q
RS-485 EXT1
6
WIEGAND 1IN1IN2 OUT1OUT2 WIEGAND 2IN3IN4 OUT3 OUT4
13
POWER
15110 1 2 1 2 13131101 2 1 2 13
Reset
p
q
RS-485 EXT1
6
WIEGAND1IN1 IN2 OUT1OUT2 WIEGAND2IN3IN4 OUT3 OUT4
13
POWER
15110 1 2 1 2 13131101 2 1 2 13
Reset
p
q
RS-485 EXT1
6
WIEGAND 1IN1IN2OUT1OUT2 WIEGAND2IN3 IN4 OUT3 OUT4
13
POWER
151101 2 121313110 1 2 1213
Reset
L ock Power
L ock Power
+
+
-
-
1
234
OUT4
Relay Relay
Relay
Relay
1
1
2
2
3
3
4
4
Jumping
Terminals
Jumping
Terminals
Jumping
Terminals
Wet Mode:
OUT8
OUT7
OUT3
1
1
1
1
2
2
2
2
3
3
3
3
4
4
Dry Mode:
Distribution
diagram of the
factory default
jumper cap:
IN
8
IN
4
1
4
2
33
24
1
Enlargement of J24
Factory Default Setting
Terminal Resistance Setting
Terminal resistance setting diagram (The first layer of PCB)
11
22 33
RS485
J24
V er si on 1. 0. 1 D ate: J uly, 20 1 1
Switch
Please notice the following cautions. Mis-operation may lead to personal injury or
1) Do not energize the system before installation is complete. Never carry out installation
2) All peripheral devices must be grounded.
3) It is recommended that all wires run through casing pipes which may by PVC or galvanized
5) It is recommended that card readers and buttons should be installed at height of 1.4m-1.5m
6) It is recommended to use the power supply in case for control panel, and external power
4) It is strongly recommended that the length of exposed part of any connection cable
should not be longer than 4 mm. avoidProfessional clamping tools may be used to
activities when the system is energized.
unintentional contact of exposed wires to avoid short-circuit or communication failure.
supply for each lock.
equipment failure:
ones.
Select two of the elliptical holes on Hang the equipment on the upper
edge of the rear iron cover, and
then press the equipment down.
Push the equipment backward to hang
the entire equipment onto the rear cover.
on the surface for fixing (Which may
be on a distribution cabinet, ceiling
or other weatherproof position).
123
the rear iron cover. Drill two holes
1)The access controller provides lock control output. For a lock which should be open when being energized and be closed
when being de-energized, the “COM” and “ NO” terminals should be used. For a lock which should be open when being
de-energized and be closed when being energized, the “COM” and “ NC” terminals should be used.
3) Each relay may work under the wet mode or dry mode by setting the jumper terminal. If the 12V power
supply inside the access controller uses external power supply, the output of each relay is under the “wet mode”.
2) If the electrical lock is connected to the access control system, you need to parallel one FR107 diode (Equipped
in the package) to prevent the self-inductance EMF affect the system, do not reverse the polarities.
If the external power supply uses potential free contacts, the “dry mode” should be used. please refer to
Instructions for Hardware of C4-200/400Access Controller.
* It is recommended to short 2-3 ports, the output use the “dry mode”, the electronic lock use the external power supply.
R elay output por ts a nd j umper ter mi nals setting (The second layer of PCB)
The PC software communicate with the system through two protocols (RS485 and TCP/IP)
for data exchange and remote management. The communication cable should be away
from high-voltage lines as far as possible. Do not keep the communication cable in parallel
with power cords or bind them together.
RS485 Convertor
3) The recommended bus length of RS485 communication is less than 600 meters.
Notes:
4) When the bus is longer than 300 m, to enhance the stability of communication, it is necessary
1) Internationally accepted RVSP (shielded twisted-pair) wires should be used for communication
to RS485 communication wires should be connected by means ofeffectively avoid interference.
bus cascade connection.
2) Theoretically, in RS485 communication, one bus may be connected with 64 access controllers.
to change J24 on the first layer of PCB (see the figure below) inthe first and the last units (see
unit 8# as shown in the figure above) to short pins 2-3. This method is equivalent to connect
It is recommended to conenct with no more than 16 devices.
with a resistance of 120 ohm.
Lock Ports
1
234
above ground.
AccessPRO2

5.Terminals Connection
1) The auxiliary input may be connected to infrared body detectors, smoke detectors, gas detectors, window magnetic alarms, wireless exit switches, etc.
2) The auxiliary output may be connected to locks, monitors, alarms, door bells, etc.
3) The auxiliary input and the auxiliary output is set with iAccess4.0.
support for ordering machines with GPRS and WiFi functions.
A. Use 2-conducotor power cord
5) Recommened use of wires
B. communication twisted-pair sensor cable (RVVP 8*0.5mm)According to the port you connected, choose the 8,10 conductor cord
C. Use 2-conducotor lock power cord (RVV 2*0.75mm)
D. Use 2-conducotor switch or magnetic power cord (RVV 2*0.5mm)
Notes:
4) GPRS, WiFi and the following items indicated with "*" are optional. Please contact our business representatives or pre-sale technical
Data_Tx-
Data_Tx+
GND
Data_RxTx-
Data_RxTx+
Shield
+12V
GND
Shield
AC Fail
Battery Fail
VCC 12V
GND
D0
D1
Shield
LED_G
LED_R
BEEP
Hold
Card_present
VCC 12V
GND
D0
D1
Shield
LED_G
LED_R
BEEP
Hold
Card_present
Analog_input
GND
Analog_input
GND
Analog_input
GND
Analog_input
GND
NO
COM
NC
NO
COM
NC
NO
COM
NC
NO
COM
NC
Lock 2
Auxiliary Output
Lock 1
Auliliary Output
Magnet 3
Magnet 1
Door Switch 3
Door Switch 1
12V Power Input
Shield Wire
AC Fail Detection
Battery Fail Detection
12VPower Output
12VPower Output
Wiegand Input
Wiegand Input
Shield Wire
Sheild Wire
Green
Green
Red
Red
Beep
Beep
Controlled Reader Hold
Card Present
Card Present
{
{
{
{
{
{
{
{
{
{
{
{
{
{
{
Shield Wire
RS 422 Send
}
RS422 Receive
or RS485 Comm.
}
Controlled Reader Hold
Output
Output
*
*
*
*
*
*
*
p
q
RS-485 EXT 1
6
WIEGAND 1IN1 IN2 OUT1 OUT2 WIEGAND 2IN3 IN4 OUT3 OUT4
13
POWER
151101 2 1 2 1 3131101 2 1 2 13
Reset
Fr ont V iew Fr ont Side V iew
RS-232
IN9 OUT9
IN12IN11
IN10 OUT10 RS-485
1313
1 2
1 2
1 2
12
14
14
*
*
*
TXD232
RXD232
/
GND
Shield
RS 485-
RS 485+
GND
USB
TCP/IP
Analog_input
GND
Analog_input
GND
Analog_input
GND
Analog_input
GND
NO
COM
NC
NO
COM
NC
U Disk
TCP/IP Comm.
RS 232 Send
Auxiliary Input
Auxiliary Input
Auxiliary Input
Auxiliary Input
Auxiliary Output
Auxiliary Output
Shield Wire
RS485 Comm.
RS485 Ground
RS 232 Receive
Idle
RS 232 Ground
*
*
*
*
*
*
A
B
B
C
C
C
C
C
C
D
D
D
D
D
D
D
D
}}
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