Cansec MAP2 User manual

Cutting edge simplicity
MAP2 Elevator Control
INSTALLATION GUIDE
April 2020

MAP2 Elevator Control Page 2 of 16
Installation Guide April 2020 • Rev. 1.0
Table of Contents
Introduction .............................................................................................................................................................. 3
Overview ................................................................................................................................................................... 4
Requirements ........................................................................................................................................................... 4
H1000 Panel Layout ................................................................................................................................................. 5
Elevator Control Configurations and Wirings........................................................................................................ 6
16 Floor Elevator System.........................................................................................................................6
32 Floor Elevator System.........................................................................................................................7
48 Floor Elevator System.........................................................................................................................8
64 Floor Elevator System.......................................................................................................................10
MAP2 and H1000 Control Panel LED Indicators...................................................................................................12
MAP2 PLM Communication................................................................................................................13
MAP2 to H1000 Panel Communication LEDs.......................................................... 13
H1000 EX1000 Communication..........................................................................................................14
H1000 to MAP2 Communication LEDs....................................................................14
H1000 RD8, RD7, RD6 LEDs ...................................................................................14
Connection to the Elevator Controls .....................................................................................................................15
Isolating relays........................................................................................................................................15
Safety ......................................................................................................................................................15
Fire Alarm ..............................................................................................................................................15
Service Override Switch.........................................................................................................................15
Host Communication Wiring ..................................................................................................................................16
Wiegand-Compatible Reader Wiring .....................................................................................................................16
© Copyright 2020 Cansec Systems, Ltd.

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Installation Guide April 2020 • Rev. 1.0
Introduction
The MAP2 elevator controller has been designed to handle access up to 64 floors with the add-on
H1000 panels. In the elevator application, the credential owners simply present their credentials to the
reader mounted inside the elevator cab to gain access to their assigned floors. This prevents access to
unauthorized elevator floors and at the same time allows the building owner to isolate different
organizations that cohabit the same building.
The MAP2 elevator controller is a cost effective solution allowing the building owner to purchase the
correct number of controllers required to control the number of elevator floors. A single MAP2
elevator controller can control up to 16 floors. However, the add-on H1000 panels may be added to
accommodate 32, 48 and 64 floors.
Elevator MAP2 Panel
H1000 Panel
H1000 Panel
H1000 Panel
Floors 1-16
Floors 17-32
Floors 33-48
Floors 49-64
Optional: H1000 Panels
Elevator MAP2 Panel
Elevator MAP2 Panel must be provisioned by Cansec each time an additional add-on H1000 is added

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Installation Guide April 2020 • Rev. 1.0
Overview
The MAP2 elevator control panel and the H1000 panel are designed to interface with the elevator
electronics using the “Form C” relay output contacts of the panels. These relay output contacts make
or break the connection to individual elevator floor buttons. The connection to these buttons is
provided by the elevator company.
The Wiegand Reader (located in the elevator cab) requires 6 conductors which will be connected to the
elevator travel cable used by the elevator. The elevator travel cable terminates in the elevator control
room, and from this location the 6 reader wires will be used to connect to the reader port of the MAP2
Elevator control panel.
The “Form C” relay output contacts of the MAP2 and H1000 panels are designed to switch only low
voltage. An Elevator Relay Interface Box is required to make the actual connection to the floor buttons
in the elevator electronics. The Elevator Relay Interface Box must be supplied by the elevator
contractor. 12 volt relays are to be used in the interface box. The MAP2 and H1000 panels’ output
relay contacts will switch the 12 volt coil of the relay in the interface box.
Under no circumstance is 110/120 or higher voltage to be present in the access control panel (many
elevators use 110Volts AC or DC in the floor button circuitry which is considered a lethal voltage). A
service bypass switch must be installed in the Elevator Relay Interface Box to allow for fire alarm release
of all the floors in the event of a fire alarm and to allow service of either the access control system or
the physical elevator. If a bypass switch is not installed, both technical parties need to be present during
service of either the access control system or the elevator, and that can be quite costly.
Requirements
Wiegand reader mounted inside the elevator cab.
Elevator Relay Interface Box, supplied by elevator contractor.
MAP2 and optional H1000 controllers mounted in the elevator control room.
Refer to reader manufacturer for reader wire specifications.
MAP2 and H1000 relays should be used to switch low DC voltage, e.g. 12VDC.
Optional H1000 V1.1 controller and daughter card EX100 V1.1.
MAP2 Elevator Control Panel
Wiegand Reader
6 conductors
Travel Cable
6 conductors
Elevator Cab

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H1000 Panel Layout

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Installation Guide April 2020 • Rev. 1.0
Elevator Control Configurations and Wirings
16 FLOOR ELEVATOR SYSTEM
This configuration is used when connecting to an elevator system of up to 16 floors. This consists
of one MAP2 elevator control panel.
Create Panel
Define Floor Group
Floor Group Assignment
See First Access Operator Guide for more details

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Installation Guide April 2020 • Rev. 1.0
32 FLOOR ELEVATOR SYSTEM
This configuration is used when connecting to an elevator system of up to 32 floors. This consists
of one MAP2 elevator control panel and one H1000 panel.
MAP2 Elevator Panel
H1000 Panel
RS485 communication wires
Controls floors 1 to 16
Controls floors 17 to 32
See First Access Operator Guide for more details
Create Panel
Define Floor Group
Floor Group Assignment
1. Dipswitch Settings:
OPT1: ON
OPT2: OFF
OPT3: OFF
OPT4: OFF
2. Jumper Setting:
3. Address Setting:
Address set to 1
Create Panel
Elevator MAP2 Panel must be provisioned by Cansec each time an additional add-on H1000 is added

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Installation Guide April 2020 • Rev. 1.0
48 FLOOR ELEVATOR SYSTEM
This configuration is used when connecting to an elevator of up to 48 floors. This consists of one
MAP2 elevator control panel and two H1000 panels.
H1000 Panel 1
H1000 Panel 2
1. Dipswitch Settings:
OPT1: OFF
OPT2: ON
OPT3: OFF
OPT4: OFF
1. Dipswitch Settings:
OPT1: ON
OPT2: OFF
OPT3: OFF
OPT4: OFF
2. Jumper Setting:
2. Jumper Setting:
3. Address Setting:
3. Address Setting:
Panel address is set to 1
MAP2 Elevator Panel
RS485 communication wires
Controls floors 1 to 16
Panel address is set to 1
H1000 Panel 1: Controls floors 17- 32
H1000 Panel 2: Controls floors 13- 48
Elevator MAP2 Panel must be provisioned by Cansec each time an additional add-on H1000 is added

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Installation Guide April 2020 • Rev. 1.0
Create Panel
Define Floor Group
Floor Group Assignment
See First Access Operator Guide for more details

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Installation Guide April 2020 • Rev. 1.0
64 FLOOR ELEVATOR SYSTEM
This configuration is used when connecting to an elevator of up to 64 floors. This consists of one
MAP1 elevator control panel and three H1000 panels.
MAP2 Elevator Panel
H1000 Panel 1: Controls floors 17- 32
H1000 Panel 2: Controls floors 33- 48
H1000 Panel 3: Controls floors 49- 64
Controls floors 1 to 16
RS485 communication wires
Elevator MAP2 Panel must be provisioned by Cansec each time an additional add-on H1000 is added

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Installation Guide April 2020 • Rev. 1.0
H1000 Panel 1
H1000 Panel 2
1. Dipswitch Settings:
OPT1: ON
OPT2: OFF
OPT3: OFF
OPT4: OFF
1. Dipswitch Settings:
OPT1: OFF
OPT2: ON
OPT3: OFF
OPT4: OFF
2. Jumper Setting:
2. Jumper Setting:
3. Address Setting:
3. Address Setting:
Panel address is set to 1
H1000 Panel 3
1. Dipswitch Settings:
OPT1: ON
OPT2: ON
OPT3: OFF
OPT4: OFF
2. Jumper Setting:
3. Address Setting:
Panel address is set to 1
Panel address is set to 1

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Installation Guide April 2020 • Rev. 1.0
MAP2 and H1000 Control Panel LED Indicators
The MAP2 elevator control panel used in 32 to 64 floor elevator configurations uses RS485
communication channel which enables the MAP2 elevator control panel to communicate with the
auxiliary H1000 panels. There are LEDs associated with this communication channel described below.
All panels have 16 output relays, and each of these relays have an associated relay LED which will
illuminate when the relay is activated. These LEDs are labeled OLED1 to
OLED16.
OLED1
OLED16
Create Panel
Define Floor Group
Floor Group Assignment
See First Access Operator Guide for more details

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Installation Guide April 2020 • Rev. 1.0
MAP2 PLM COMMUNICATION
MAP2 to H1000 Panel Communication LEDs
If the MAP2 elevator control panel has been correctly configured as a 32 to 64 floor
elevator system, the two LEDs on the Panel Logic Module (PLM) daughter board will
indicate the RS485 communication to the auxiliary H1000 panels. The PLM LEDs are
labeled TX485 (Green LED1) and RX485 (Red LED2). If no auxiliary H1000 panels are
connected to the MAP2 elevator control panel, the TX485 (Green LED1) will toggle On
and Off. If all the auxiliary H1000 panels are configured and connected correctly, both
TX485 (Green LED1) and RX485 (RED LED2) will toggle On and Off.
TX485 LED
RX485 LED

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Installation Guide April 2020 • Rev. 1.0
H1000 EX1000 COMMUNICATION
H1000 to MAP2 Communication LEDs
The EX100 RS485 of the H1000 communication is indicated by RX485 - LED1 and
TX485 - LED2. The green TX RS485 LED will only toggle when the address of the
Auxiliary H1000 is sent from the MAP2 elevator control panel. When the auxiliary H1000
receives this poll it will send the response to the MAP2 elevator control panel. See previous
section which describes the “MAP2 PLM Communication”
H1000 RD8, RD7, RD6 LEDs
An additional auxiliary H1000 panel setup verification is implemented in this firmware.
Three LEDs are used to indicate what address the auxiliary H1000 panel is set to. These
LEDs near the reader ports RD8, RD7 and RD6 are labeled as RLED8, RLED7 and
RLED6 respectively. Each time the MAP2 elevator control panel communicates to the
auxiliary H1000 panel, one of these LEDs will toggle. If the auxiliary panels have been
correctly configured, the correct LED that will toggle is indicated below:
Auxiliary 1 = RLED8
Auxiliary 2 = RLED7
Auxiliary 3 = RLED6
RLED8
RLED7
RLED6
TX485 LED
RX485 LED

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Installation Guide April 2020 • Rev. 1.0
Connection to the Elevator Controls
ISOLATING RELAYS
For safety and system serviceability the access control system should be isolated from the power
connections of the elevator buttons. An Elevator Interface Relay Box must be used for this
purpose, to prevent high voltage and high voltage spikes from interfering with the access
control system. This Elevator Relay Interface Box must be supplied by the elevator company to
avoid potential liability issues. The Elevator Interface Relay Box must provide isolating relays
which physically isolate the voltage present on the elevator buttons from the H1000 outputs.
It is important to understand that the MAP2 or H1000 panel’s output relays (“Form C”) will be
controlling the coils of the relays in the interface box and that a single shielded single pair must
be used for each relay connection. Multi-pair cable must not be used as inductive voltage spikes
will be passed onto the adjacent wires. These voltage spikes can cause the access control panel
to be intermittent. To eliminate relay coil voltage spikes it is important to place a power diode
(1N4007) right at the coil connection.
SAFETY
If the elevator relay interface box contains 110/220 VAC, it should be labeled outside with
“DANGER High Voltage Contained Inside”. This is important for the safety of personnel
doing maintenance.
FIRE ALARM
In the event that a building fire alarm occurs it is imperative that all floor selector buttons in
the cab are operational. When a fire alarm occurs, the fire alarm panel typically operates a dry
relay contact. In normal operation (No Fire Alarm) this “Form C” relay contact is “Closed”. In
the event of a fire alarm this “Form C” relay contact goes “Open”. This relay is used to
automatically bypass the access control system in the event of a fire alarm so that all floor
selection buttons are operational.
SERVICE OVERRIDE SWITCH
It is advisable to have an Elevator Access Controller Bypass Switch present. This allows the
elevator company an easy means to work on the elevator without requiring the presence of the
company in charge of maintaining the access control equipment. Similarly, if there is a failure
with the elevator access control system, the bypass switch will allow elevator operation until the
access control system is repaired.

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Installation Guide April 2020 • Rev. 1.0
Host Communication Wiring
The MAP2 elevator control panel is equipped with an Ethernet RJ45 jack (see image below) to allow
easy connection for communication with the host.
Wiegand-Compatible Reader Wiring
The elevator reader, which is mounted in the elevator cab, can read a standard 26-bit or Cansec 37-bit
Wiegand proprietary format card or the HID Corporate 1000 format card. The MAP2 panel uses a
small 6 pin keyed connector to terminate the reader wiring. The MAP2 reader connections are labeled
below the reader connectors, as shown below. The 12 VDC power is supplied to the reader through
the reader connector. The MAP2 reader port uses an auto-resettable fuse with a 1 amp maximum
rating. A 6-conductor overall shield wire is required for proper Wiegand reader connection. See the
reader manufacturer for the wire gauge requirement for different reader distances to the control panel.
Connecting Wiegand-Compatible Reader
Connect elevator reader to port RD1 only.
This reader is mounted in the
elevator cab.
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