Vimar 01700.120 By-alarm Installation Manual
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Installer Manual
By-alarm
01700.120
24 zone 120 V~ 60 Hz control panel
Installation Manual
By-alarm
2
By-alarm
Table of Contents
1. By-alarm burglar alarm system
………………………………………………………………………………………………………………………………………………… 5
1.1 System layout ………………………………………………………………………………………………………………………………………………………………………… 5
1.2 System logic ………………………………………………………………………………………………………………………………………………………………………… 6
2. Control unit 01700.120 …………………………………………………………………………………………………………………………………………… 7
2.1 Technical characteristics ……………………………………………………………………………………………………………………………………………………………… 7
2.2 Control unit board …………………………………………………………………………………………………………………………………………………………………… 8
3. Preconfiguring the control unit
…………………………………………………………………………………………………………………………………………………… 9
3.1 Default settings ………………………………………………………………………………………………………………………………………………………………………… 9
3.2 Connections to make ………………………………………………………………………………………………………………………………………………………………… 9
3.3 Operation …………………………………………………………………………………………………………………………………………………………………………… 10
4. Installation
…………………………………………………………………………………………………………………………………………………………………………… 11
4.1 Assembly …………………………………………………………………………………………………………………………………………………………………………… 11
4.2 Device preventing removal of control unit ………………………………………………………………………………………………………………………………………… 11
4.3 Periodic maintenance ……………………………………………………………………………………………………………………………………………………………… 11
4.4 Regulatory compliance …………………………………………………………………………………………………………………………………………………………… 11
4.5 Certification coverage EN 50131 ………………………………………………………………………………………………………………………………………………… 11
5. Power supply unit
…………………………………………………………………………………………………………………………………………………………………… 12
5.1 Cable entry ………………………………………………………………………………………………………………………………………………………………………… 12
5.2 Fuses ……………………………………………………………………………………………………………………………………………………………………………… 12
5.3 Control unit earth connection ……………………………………………………………………………………………………………………………………………………… 12
5.4 Batteries …………………………………………………………………………………………………………………………………………………………………………… 12
5.5 Operating current …………………………………………………………………………………………………………………………………………………………………… 13
5.6 Criteria for sizing the system ……………………………………………………………………………………………………………………………………………………… 14
6. Connecting the devices
…………………………………………………………………………………………………………………………………………………………… 16
6.1 RS 485 serial link …………………………………………………………………………………………………………………………………………………………………… 16
6.2 Connecting 4-wire devices ………………………………………………………………………………………………………………………………………………………… 17
6.3 Connecting 5-wire devices ………………………………………………………………………………………………………………………………………………………… 17
7. Inputs
…………………………………………………………………………………………………………………………………………………………………………………… 18
7.1 Control unit ………………………………………………………………………………………………………………………………………………………………………… 18
7.2 Input expansion modules and radio frequency interface ……………………………………………………………………………………………………………………… 20
7.3 Addressing the input expansion modules and radio frequency interfaces …………………………………………………………………………………………………… 20
8. Outputs
………………………………………………………………………………………………………………………………………………………………………………… 21
8.1 Relay 1 output ……………………………………………………………………………………………………………………………………………………………………… 21
8.2 Relay 2 output ……………………………………………………………………………………………………………………………………………………………………… 22
8.3 CN10 connector …………………………………………………………………………………………………………………………………………………………………… 22
9. PSTN communicator 01708
…………………………………………………………………………………………………………………………………………………… 23
9.1 PSTN communicator 01708 ……………………………………………………………………………………………………………………………………………………… 23
9.2 Inserting the board in the control unit……………………………………………………………………………………………………………………………………………… 23
10. Voice synthesis module 01713.EN
…………………………………………………………………………………………………………………………………………… 23
10.1 Voice synthesis module 01713.EN ……………………………………………………………………………………………………………………………………………… 23
10.2 Inserting the module in the control unit ………………………………………………………………………………………………………………………………………… 23
10.3 Recording synthesis messages ………………………………………………………………………………………………………………………………………………… 24
11. GSM transmitter/receiver module 01706
…………………………………………………………………………………………………………………………………… 25
11.1 GSM module 01706 ……………………………………………………………………………………………………………………………………………………………… 25
11.2 Inserting the module in the control unit ………………………………………………………………………………………………………………………………………… 25
11.3 Inserting the GSM module in the control unit …………………………………………………………………………………………………………………………………… 25
11.4 Connecting the aerial ……………………………………………………………………………………………………………………………………………………………… 26
11.5 Installing the SIM ………………………………………………………………………………………………………………………………………………………………… 26
12. Connector 20478-19478-14478
………………………………………………………………………………………………………………………………………………… 27
12.1 General information ……………………………………………………………………………………………………………………………………………………………… 27
12.2 Operation ………………………………………………………………………………………………………………………………………………………………………… 27
12.3 Connections ……………………………………………………………………………………………………………………………………………………………………… 27
12.4 Addressing the connectors ……………………………………………………………………………………………………………………………………………………… 28
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By-alarm
Table of Contents
13. Control unit hardware reset ………………………………………………………………………………………………………………………………… 29
13.1 Reset button …………………………………………………………………………………………………………………………………………………………………… 29
13.2 DIP-switch SW1 ………………………………………………………………………………………………………………………………………………………………… 29
13.3 Resetting the Codes …………………………………………………………………………………………………………………………………………………………… 29
13.4 General reset …………………………………………………………………………………………………………………………………………………………………… 29
14. Setting the English language ……………………………………………………………………………………………………………………………… 30
15. Interfacing with the By-me system ………………………………………………………………………………………………………………………… 31
15.1 Connection diagram ………………………………………………………………………………………………………………………………………………………… 31
15.2 Integrating with the By-me system ………………………………………………………………………………………………………………………………………… 31
15.3 Local and remote maintenance via the By-alarm Manager software ……………………………………………………………………………………………………… 31
ANNEX ……………………………………………………………………………………………………………………………………………………………… 32
I. Wiring ………………………………………………………………………………………………………………………………………………………………………………… 33
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By-alarm
By-alarm burglar alarm system
1. By-alarm burglar alarm system
1.1 System layout
The By-alarm system consists of a 24-zone control unit (art. 01700.120) to which are directly connected the wired detectors and the outdoor and indoor sirens; the connectors, keypads and any wired or radio expansion modules are instead connected via the specific RS485 bus.
The RS485 bus of the By-alarm system is built to the RS485 electrical standard and is NOT compatible with the By-me bus. The burglar alarm system can in any case be interfaced with the By-me system (for full details, please refer to chapter 15).
RADIO FREQUENCY DEVICES max 100 m max 100 m
01730 Remote control 8 INPUTS
FOR WIRED
DETECTORS
01720 Detector
01715 Siren for outdoor use
01700.120 Control unit
01727 RF Sensor
01729 Interface radio frequency
01723 Detector max 1000 m with linear wiring (in/out) max 600 m with star wiring max 100 m
01705 Keypad max 100 m
19496.B Siren for indoor use
01728 RF detector
01710 Module
OUTPUT expansion units
01709 Module input expansion units
01731 RF DT detector
RS485 bus
Wired connection for alarms/tamper/ masking
Power supply 12 Vdc Electric lock 19386.B Control light 01720 Detector 01721 Detector
01718 Key to transponder
19478.B Connector/Shutter
INSTALLATION TOPOLOGY
CONTROL UNIT
LINEAR : up to 1000 m
(sum of all parts of the laid Bus cables)
CONTROL UNIT
STAR : up to 600 m
(sum of all parts of the laid Bus cables)
The system is star wired to the control unit that, for the wired inputs, acts as a star centre.
The control unit is equipped with:
• wired inputs (zones 1-8) that let you connect the wired detectors directly to the inputs.
• an RS485 bus to which the following can be connected:
- LED backlit keypad with display (art. 01705)
- 4-input expansion module (art. 01709)
- 4-output expansion module (art. 01710)
- 8-input expansion module (art. 01704)
CAUTION:The 8-input expansion module 01704 is compatible with the control unit 01700 having firmware version 1.2 or later; before installing the device, use the keyboard 01705 to check the firmware version of the control unit in the system. Alternatively, check that the tracking code shown on the label of the control unit on which you are installing the device is equal to or greater than XXXXXXXXXX1.02.
- Isolated interface (art. 01711)
- Flush-mounting connector (art. 20478-19478-14478)
- Radio frequency interface (art. 01729)
• connection interfaces to install the following additional modules:
- GSM transmitter/receiver module (art. 01706)
- PSTN communicator (art. 01708)
- Voice synthesis module (art. 01713.EN)
- Interface to Ethernet network (art. 01712)
• connector for programming via PC with By-alarm Manager software through the interfaces and cables (art. 01725)
The control unit is equipped with two relays:
- Relay 1 (dual changeover, of which one potential free and one connected to the 12 V of the power supply) is typically used to command the self-powered outdoor siren
(terminals +S, EXT) and, when fitted, the indoor siren (terminals +S, INT).
- Relay 2 (single changeover, potential free) can be freely programmed depending on the needs of each individual case. Typically it can be associated with the system on/ off status (SET terminal).
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By-alarm
By-alarm burglar alarm system
The inputs are expandable up to 24 using the input expansion modules (art. 01709 and 01704) or via the radio frequency interface (art. 01729) to be connected to the
RS485 bus of the control unit.
The freely programmable outputs are expandable up to 24 using the output expansion module (art. 01710) to be connected to the RS485 bus of the control unit.
When configuring, each bus device must be assigned an ID address; these addresses must be assigned sequentially for each device category, ie:
• Keypads 01705 -> ID= from 1 to n
• Connectors 20478-19478-14478 -> ID= from 1 to n
• 4-input expansion modules 01709, 8-input expansion modules 01704 and radio frequency interfaces 01729 -> ID = from 1 to n
The 4-input expansion modules, 8-input expansion modules 01704 and the radio frequency interface belong to the products for input expansion and so the addresses assigned to the devices of this type connected on the RS485 bus must be sequential and correlated (for full details see par. 7.3).
• 4-output expansion modules 01710 -> ID = from 1 to n
During configuration, you must assign ID=1 to the first device in each category and then continuing sequentially.
Example of addressing a system with control unit 01700.120:
■ 2 keypads 01705 -> ID keypad 1=1, ID keypad 2=2.
■ 3 connectors 20478-19478-14478 -> ID connector 1=1, ID connector 2=2, ID connector 3=3.
■ 1 4-input expansion module 01709 -> ID=1.
■ 1 radio interface 01729 configured with 8 inputs -> ID=2.
■ 1 4-output expansion module 01710 -> ID=1.
Addressing is also performed with the By-alarm Manager software via the Devices menu by selecting the appropriate device category .
1.2 System logic
Area:
The Area is a set of zones (detectors) of the system.
The control unit can manage up to 8 different areas.
Within each area, 3 connection modes (partitioning) are then defined: ON, INT and PAR.
The zones belonging to the area are thus assigned to one or more connection modes.
The system allows a given area to be connected in one (and only one) of the ON, INT or PAR modes; once an area is connected using one of these modes, it can only be disconnected.
Example:
Suppose you have a system consisting of a few zones of outdoor detectors (e.g. volumetric detectors for the garden), some zones with perimeter detectors (such as contacts for windows/roller shutters) and finally a day zone and a night zone with indoor volumetric detectors (e.g. dual technology detectors (art. 20479-
19479-14479)).
You define a single area (in this case it can be considered as the system itself) with the three connection modes:
• ON = all zones (total connection)
• INT = zones with outdoor detectors and perimeter detectors
• PAR = zones with outdoor detectors, perimeter and volumetric detectors for the day zone.
When leaving home you put the area into ON mode (total connection).
When you are at home and you want to protect the outdoor setting you put the area into INT mode (outdoor and perimeter detectors).
When it's bedtime you put the area into PAR mode so as to be able to move about freely in the night zone while the external, perimeter and volumetric detectors of the day zone are all active.
In each case, when the area is connected using any mode, it can only be totally disconnected.
The control unit lines can also be programmed as external arming inputs, both total and partial. The control unit accepts "pulse" commands, that affect the control unit both as regards external arming performed by unbalancing the lines programmed as arming inputs and for those performed by the weekly scheduler integrated in the control unit.
Pulse command.
Momentary unbalancing of a programmed line in one of the arming modes will cause the control unit to switch on; a subsequent momentary unbalancing will bring it back into the OFF state. With this type of command you can control switching on from various points (for example: switch on with the keypad and off with an external command or the scheduler) independently.
In this way any external switch-on command can be used, such as card readers or radio transmitters that will need to have the same level of performance as the control unit and need to be installed with the decoding board inside the control unit enclosure.
By appropriately programming the active outputs, you can control external circuit test signals indicating the bypassed zone and system armed signals indicating an alarm.
User management:
Each user is recognised by the system through a 4 to 6 digit PIN set during the system installation phase.
You can accurately define the operations that can be carried out by each user (for example ON/INT/PAR connection, disconnection) and the areas in which actions can be performed. A zone can belong to more than one area.
The possibility to create several areas, by defining the connection mode (flexible with respect to the zones), and the timely management of user rights make for an extremely flexible system.
Several areas can in fact be used to:
- Manage parts of the system separately using one single control unit; you can configure 2 areas with different zones and define the users who can control any given area.
- Increase the connection modes: more than one area can be defined with the same zones (or zone subsets) and with different connection modes; this increases the total connection modes that are available and that can therefore be linked to the various users.
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By-alarm
Control unit 01700.120
2. Control unit 01700.120
Microprocessor control unit with 8 input lines, expandable to 24 zones, management with the keypad 01705 and with connector 20478-19478-14478, designed for connecting to PSTN communicator 01708 and installing the voice synthesis module 01713.EN and the GSM transmitter/receiver module mod. 01706. The backlit display allows the user to communicate easily and directly with regard to all system management functions.
The PSTN communicator 01708 can manage digital communications of all events, both alarm and technical events, to computers and control centres; the voice synthesis module 01713.EN lets you send all communications, both alarm and technical ones, by voice, combining pre-recorded messages.
The programming can be done in the following ways:
• via pc equipped with By-alarm Manager software that connects directly to the control unit using the interfaces and cables 01725;
• using the facilitated menus of the keypad 01705;
• with two-way connection over the phone line ( this requires the By-me Web Server being installed in the system).
CAUTION: The control unit is supplied already preconfigured for an initial coverage of 6 zones as illustrated in Chapter 3.
2.1 Technical characteristics
Input lines
Areas
Keypads
Connectors:
Outputs
Input modules
• 8, expandable to 24, with single, double or triple balance (with detector masking recognition)
• 1 tamper-proof protection line
• inputs that can be linked to 8 AREAS
• up to 4 can be connected over bus RS485
• direct signalling via LED of the power supply status, system status and circuit test
• No. 4 connectors 20478-19478-14478 that can be connected over bus RS485
• No. 2 separately programmable alarm relays, one of which with 2 positive safety exchanges
• input expansion module 01709 with 4 input lines of single, double or triple balance (with detector masking recognition). The maximum number of modules 01709 that can be installed is 4 (valid data if there are no 8-input expansion modules 01704 and radio frequency interface 01729).
• input expansion module 01704 with 8 input lines of single, double or triple balance (with detector masking recognition). The maximum number of modules 01704 that can be installed is 2 (valid data if there are no 4-input expansion modules 01709 and radio frequency interface 01729).
• radio frequency interface 01729 with 8 or 16 radio zones of single or double balance with management of detector supervision, programmable using the same modes as the standard zones. The maximum number of interfaces 01729 that can be installed is 1 in the case of 16-channel configuration and 2 in the case of 8-channel configuration (valid data if there are no input expansion modules
01709 and 01704).
Output modules
Macro
Codes
• output expansion module 01710 with 4 outputs with programmable voltage free exchange relay (3 A 24 V). The maximum number of modules 01710 that can installed is 6.
• No. 20 macro-instructions with 10 commands each, which can be activated via:
- zone displacement and alarm, system event
- programmable time switch
- user RFA function
• 50 User Codes with programmable function limitation
• 50 Emergency Codes
• 1 Installation Code
Activation
Clock
• 3 activation modes for each Area (ON, INT, and PAR)
• the possibility of external activations with proximity reader in 3 modes for each Area
• by User Telemanagement, guided by voice menu or SMS via the By-phone and By-web apps
• via hourly/weekly programmable time switch in the 3 modes for each Area
• weekly clock with 32 daily operations and exclusion management
• possibility of switching on and off, code and keypad restriction, macro activation
• time and status activation of active outputs
Telephone
Programming
• 16 phone numbers for communication with protocols:
- for communications with standard SIA receivers
- for communications with standard CONTACT receivers
• voice synthesis module 01713.EN
with voice protocol for automatic communication, allowing for all alarm and control unit functions to be sent to private Users
• transmitter/receiver module 01706 for automatic communications that enables sending all the protocols over a GSM network and, via SMS text messages, all the alarm and control functions of the control unit
• using the keypad with simplified menus and error management
• via computer with interactive connection via the By-alarm Manager software for Windows operating systems.
Power supply unit
Battery that can be housed
• 13.8 Vdc 1.5 A actual total with low battery charge and mains voltage failure signalling
• 12 Vdc 7 Ah or 12 Vdc 18Ah flammability class UL94-HB
Environmental cond.
• -10..+40°C
Enclosure
Degree of safety
Ambient class
• Dimensions: 322 x 350 x 115 mm. - Weight: 3.5 kg.
• 2 (EN 50131-3, EN 50131-6)
• II (EN 50131-3, EN 50131-6)
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By-alarm
Control unit 01700.120
2.2 Control unit board
1
S1
S2
1
CN2
LD1
CN1
20
PB1
CN1
CN2
20
CN3
6 5 4 3 2 1
ON
SW1
20
F1 F2 F3 F4 F5
1
CN3
OFF
CN4
CN4
1
OFF BATTERIA
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
L 5
LINEE 5 - 8
L 6 L 7 L 8
RS 485
A B
D
E
CN5
20
CN5
A B C D E F
A: Self-powering battery terminals.
B: Tamper-proof line.
C : Output RELAY 1. Positive safety relays, with double exchange, with 1A capacity each. A voltage free exchange is provided at the output where C is the common, NC is the normally closed exchange and NO is the normally open one; the other one is provided already polarized for connecting the selfpowered sirens and the optional non-self-powered internal sirens.
-/+ : power supply for recharging the batteries of the self-powered sirens; the positive is protected by the 3.15A 250V fuse F3.
+S ext : command positive for the self-powered sirens; it constantly provides a positive which fails in the event of an alarm and is protected by the
3.15A 250V fuse F4.
+S int : power supply positive for the optional non-self-powered sirens; it provides a positive in the event of an alarm and is protected by the 3.15A
250V fuse F4.
D : Output RELAY 2. Non-positive safety relay, with exchange with 1A capacity. The voltage-free exchange is provided at the output where C is the common, NC is the normally closed exchange and NO is the normally open one.
E: Input lines configurable individually or with double or triple balancing; there are also the 12 Vdc power supply outputs for any detectors.
F: RS485 bus line.
• CN1 CN2: Connectors for GSM transmitter/receiver module 01706
• CN3: Connector for configuration interface 01725 or for Ethernet (LAN) network interface for remote supervision/control over IP 01712 combined with the web server 01945-01946.
• CN4: Connector for voice synthesis module 01713.EN
• CN5: Connector for PSTN communicator 01708
• S1: Tear-proof bypassing
• S2: Opening bypassing
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By-alarm
Preconfiguring the control unit
3. Preconfiguring the control unit
The control unit 01700.120 is supplied already pre-configured for an initial coverage of 6 zones (expandable to 24) to make a basic system; the devices for constructing and commissioning this basic system are as follows:
• 1 keypad with display art. 01705;
• 2 dual-technology surface-mounting detectors with anti-masking and anti-crawl detection art. 01721;
• 4 flush-mounting magnetic contacts art. 01820;
• 1 siren for outdoor use art. 01715.
CAUTION: Where there is a need for any configuration other than the default one, use the keypad 01705 or the By-alarm Manager software to view the parameter menu to change the settings according to the relevant installation requirements.
3.1 Default settings
The control unit is configured as follows:
• Configured areas: Area 1
• Name assigned to Area 1: Dwelling
• Zones into which Area 1 has been divided: 6
• Devices linked to zones and their configuration:
Zone No.
Zone name
1
2
3
4
5
6
Entrance door
Window 1
Window 2
Window 3
-
-
7 Day sensor
Linked detector
Magnetic contact art. 01820
Magnetic contact art. 01820
Magnetic contact art. 01820
Magnetic contact art. 01820
-
-
Detector art. 01721
8 Night sensor Detector art. 01721
• Relay 2 of the control unit: System status (Area 1 on)
• Installer code: 123456 (to change the configuration)
• User code: code 1= 111111 (with "administrator" profile)
Type of balancing and resistors
Single - 3k3 Ω
Single - 3k3 Ω
Single - 3k3 Ω
Single - 3k3 Ω
-
-
Triple - 3k3, 4k7, 15k Ω
Triple - 3k3, 4k7, 15k Ω
Detection modes
Delayed (in 30 s, out 30 s)
Instant
Instant
Instant
-
-
Instant
Instant
3.2 Connections to make
The following figures illustrate how to connect the devices for constructing the basic system.
SIREN FOR OUTDOOR USE 01715
TAMPER 12V
T T
ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
01700.120
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
01715
+ –
CM BT T T
3k3 Ω
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By-alarm
Preconfiguring the control unit
MAGNETIC CONTACTS 01820
Single balancing is achieved by inserting a 3k3 Ω resistor in series with the contact.
01700.120
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
01820
3k3 Ω
01820
3k3 Ω
01820
3k3 Ω
01820
3k3 Ω
DUAL TECHNOLOGY DETECTORS 01721
Triple balancing is accomplished by inserting the jumpers linked to the 3k3, 4k7 and 15k resistors on the detector.
01700.120
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
L 5
LINEE 5 - 8
L 6 L 7 L 8
TAMPER
12 V
ALARM
01721
SET TAMPER ALARM
EOL DEOL
MASK
MASK
TEOL
J1
TAMPER
12 V
ALARM
01721
SET TAMPER ALARM
EOL DEOL
MASK
MASK
TEOL
J1
10
3.3 Operation
The control unit's default configuration provides for the following connection modes:
• ON = Total system activation.
• INT = Activation of zones 1, 2, 3 and 4.
• PAR = Activation of zones 1, 2, 3, 4 and 7.
By-alarm
Installation
4. Installation
4.1 Assembly
Fix the metal box to the wall using 4 screws attached to the 6 mm diameter wall plugs in the holes at the top and bottom corners of the rear wall of the box.
4.2 Control unit tear-proof device*
To activate the tear-proof device use the spring supplied and a plug with screw.
Screw the screw in leaving a distance of approximately 10 mm between the wall and the screw head, as shown in the figure.
Slide the spring onto the tear-proof button and fit the metal box to the wall; then remove the jumper S1 .
Insertion of the spring supplied approx. 10 mm
* N.B.: For Grade 2 devices (EN 50131-3) the tear-proof function is optional.
4.3 Periodic maintenance
Periodic maintenance is required for the installed battery in compliance with the above tables.
When suitably programmed, the control unit can communicate the need to change the battery.
If the control unit has not been programmed to send communications relating to battery status, check the state of the battery charge once a year.
4.4 Compliance with regulations
EN 50131-3, EN 50131-6, EN 50131-10, EN 50136-2.
Direttiva BT. Direttiva EMC
Norme EN 60950-1, EN 50130-4, EN 61000-6-3.
4.5 Certification coverage EN 50131
IMPORTANT: For the EN 50131 certification not to elapse, it is necessary to ensure that all the system's devices are protected against tampering:
- see the relevant instructions for the detectors;
- for the expansion modules (art. 01709-01704-01710) and the isolated By-alarm interface (art. 01711), install the boards inside boxes equipped with antitamper and tear-proof devices such as the metal casing of the control unit (art. 01700.120) or of the additional power supply unit (art. 01717.120) or in the tear-proof box (art. 01714);
- if the system requires using additional power supply units (art. 01830), they must be installed in boxes equipped with anti-tamper and tear-proof devices and the input equipped with 3.3 kΩ balancing resistors must be taken to a line of the control unit or to a suitably configured input expansion modules (art.
01709 or 01704).
- for articles 01706 and 01708, the periodic communication must take place every 25 hours. To this end, program the SELF-TEST PERIOD parameter
(Controls/Power Supply menu of the keypad 01705) to a value of 25 and then select the phone numbers for receiving the communication (Phone/Linked events/Self-test menu of the keypad 01705). For further details, please see the control unit programming manual.
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By-alarm
Power supply unit
5. Power supply unit
The control unit's power supply unit is stabilized on 13.8 V dc and delivers a current of 1.5 A.
Mains power supply
Stabilised voltage
Control unit absorption from the mains at 120 V~ -10%
Technical characteristics of the power supply unit with no load
120 V~ (+10%, -10%) 60 Hz rated 13.8 V dc (± 2%) maximum with no load
Control unit absorption from the mains at 120 V~ +10%
Control unit absorption at 12 V dc maximum maximum
51 mA
225 mA
75 mA
240 mA
82 mA
5.1 Cable entry
The mains power supply cables must enter through the hole nearest to the 120 V~ connection terminal block, to which they must be fixed without having been consolidated by soldering and they must have been inserted in advance into an additional sheath in order to ensure double insulation.
The connection to the electric mains must comply with the national plant engineering regulations and, in particular, in harmony with current standards, there must be an overcurrent circuit breaker with a high breaking capacity (1500 A) upstream of the connection to the control unit.
If other holes are used for routing the cables, it is necessary to use cable outlets or junction fittings for pipe or sheath constructed with materials of flammability class HB or higher.
5.2 Fuses
Input fuse 120V~:
F1: F3.15A - 250V
F2: F3.15A - 250V
F3: F3.15A - 250V
F4: F3.15A - 250V
F5: F3.15A - 250V
T 630mA-250V.
Located directly on the mains voltage terminals.
ALTERNATING INPUT
BATTERY POLARITY REVERSAL
POWER SUPPLY FOR THE DETECTORS AND SIREN
COMMAND OF SIREN FOR INDOOR AND OUTDOOR USE
RS485 BUS LINE POWER SUPPLY
5.3 Control unit earth connection
For the earth connection you need to use the specific terminal located under the transformer by the connection of its mains power supply; the cover should also be earthed, using the Faston terminal.
Caution : correct earthing protects the control unit and all its devices from faults caused by electrical and atmospheric discharges and in particular ensures the integrity of the telecommunications network.
12
EARTH CONNECTION
5.4 Batteries
• The batteries used must be the 12 V sealed lead acid type with a minimum flammability class of V2.
• Suitable batteries: 12 Vdc 7.2 Ah or 12 Vdc 18 Ah.
• The cables for connecting the battery are designed for Faston connectors. For the screw connection, the Faston connector must be cut and eyelet terminals must be fixed to the ends of the cables.
CAUTION: DANGER OF EXPLOSION IF THE BATTERY IS REPLACED WITH ONE OF THE WRONG TYPE. DISCARD USED BATTERIES BY FOLLOWING THE
INSTRUCTIONS.
WARNING:
Dispose of batteries in the specific differentiated collection bins.
By-alarm
Power supply unit
5.5 Operating current
The operating current and autonomy in compliance with EN50131 for external loads (guaranteed system autonomy 12h) depends on the battery for self-powering the control unit, according to the table below.
Table 1 - Available current for systems complying to EN50131
Internal battery of 7.2 Ah
Internal battery of 18 Ah
Available current for powering the system
Available current for powering the system
500 mA
500 mA
The maximum operating current for external loads is given in the following table and the maximum time for charging the battery to 80% capacity is 29 hours.
Table 2 - Available current for non-compliant systems
Internal battery of
Internal battery of
7.2 Ah
18 Ah
Available current for powering the system
Current for recharging battery
Available current for powering the system
Current for recharging battery
1,120 mA
277 mA
550 mA
847 mA
Caution: To guarantee compliance to EN50131 standard, it is necessary to keep to the values given in table 1.
Failure to observe the above requirements invalidates the type approval.
IMPORTANT: If the previous requirements are not met it is possible to add to the system an additional power supply unit (art. 01717.120) equipped with an internal battery that enables redistributing the power supply for the devices and thus making the system compliant with EN50131.
13
By-alarm
Power supply unit
5.6 Criteria for sizing the system
This subsection illustrates the flowchart with the criteria to follow for correctly sizing the system in relation to the desired autonomy and the consumption of the devices in the By-alarm system.
START
YES
Available current for expansion modules and detectors < 500mA
Must the system comply with EN50131?
NO
7.2Ah
Size of Autonomy of Battery ?
Available current for expansion modules and detectors
< 1120mA
18Ah
Available current for expansion modules and detectors
< 550mA
YES
Calculation of necessary current to power the system in case of maximum absorption
Available current >
Necessary current ?
NO
Add an additional power supply unit 01717 to the system
7.2Ah
Size of Autonomy of Battery 01717 ?
Available current increases by another 1200mA for each additional power supply unit
18Ah
Available current increases by another 550mA for each additional power supply unit
14
END
CAUTION: To size the system correctly you must always consider the maximum consumption; this condition varies according to the number of devices in the system and the configuration made.
Generally, you should pay attention to the condition of total connection and alarm activated.
By-alarm
Power supply unit
Table 3 - Devices in the By-alarm system and their consumption
Article
01704
Description
8-input expansion module
01705 LED backlit By-alarm keypad with display
01706
01708
01709
GSM transmitter/receiver module
PSTN communicator
4-input expansion module
01710
01711
01712
01713.EN
01715
4-output expansion module
Isolated By-alarm interface
By-alarm interface to the Ethernet network
Voice synthesis module
By-alarm siren for outdoor use
01720
01721
01722
01723
01724
01729
Dual technology By-alarm detector, anti-masking detection, PET immune
Dual technology By-alarm detector, anti-masking and anti-crawl detection
Dual technology By-alarm curtain detector
By-alarm dual technology IP54 curtain detector for outdoor use
By-alarm water detector
By-alarm radio frequency interface
20478-19478-14478 By-alarm connector/partitioning
20479-19479-14479 By-alarm passive infrared and microwave presence detector
20496-19496-14496 By-alarm siren for indoor use
Notes
Display on
Stand-by
On a call
Stand-by
In operation
Max
Each active output increases the consumption by the value indicated alongside
To outputs that are not active
17 mA
15 mA
25 mA
190 mA
10 mA
In an alarm condition (current supplied by the external battery)
While charging the battery
Stand-by
Max
Stand-by
Max
Stand-by
Max
Stand-by
Max
Stand-by
1.5 A
Max with LEDs on
Max with LEDs off
In the phase of reading
With LEDs off
Max
Stand-by
In an alarm condition
Stand-by
60 mA
30 mA
40 mA
30 mA
40 mA
30 mA
-
40 mA
70 mA
60 mA
3.5 mA
80 mA
40 mA
42 mA
20 mA
28 mA
15 mA
110 mA
18 mA
Absorption
18 mA
105 mA
16 mA
350 mA
60 mA
70 mA
18 mA
83 mA
15
By-alarm
Connecting the devices
6. Connecting the devices
6.1 RS 485 serial link
The control unit is equipped with a serial port for connecting the RS485 bus of the devices such as, for instance, the keypads and the input and output expansion modules.
The RS 485 serial link uses the following connection signals:
• Serial power supply + and - at 12 V dc SELV
• Differential signals A and B
• DE direction enabling signal
The DE signal is only needed when the isolated By-alarm interface is inserted in the system for regenerating the RS485 bus signal (art. 01711); in this regard, note the difference between the 4-wire bus (+,-, A and B) and the 5-wire bus (+, -, A, B and DE).
IMPORTANT: Do NOT connect the RS485 bus of the By-alarm system to that of the By-me system. An accidental connection could damage the system.
• The wiring of the RS485 bus can be made with free topology and you can then make all the relevant shunting, however it is recommended to make a direct connection wherever possible.
• The maximum permissible length of the wiring is 600 m (the sum of all the lengths of bus laid out) or 1000 m if using the direct connection.
• The isolator/repeater module art. 01711 lets you expand the RS485 bus to get another 600 m of cable to use for the wiring.
EXAMPLE OF WIRING TOPOLOGY
Direct wiring (in-out) max 1000 m Star wiring max 600 m
16
N.B. Even if the RS485 bus lets you make any kind of topological combination, it is advisable to use those with direct wiring as they provide a higher level of transmission performance.
By-alarm
Connecting the devices
6.2 Connecting 4-wire devices
The various devices can be connected either on the RS485 bus or in parallel with the conductors, respecting the abbreviations on the terminals of the control unit and of the devices, ie:
• + with +
• - with -
• A with A
• B with B
The 12 V dc power supply requires using 0.50 mm 2 conductors and the signals A and B 0.22 mm 2 ; the shielding must be connected to the negative terminal on the control unit side.
For the wiring, it is necessary to use halogen-free shielded cables suitable for installation with Category 1 power cables (U0 = 400 V). The VIMAR connection cable articles to use for the RS 485 serial link and the wired connection of the devices are as follows:
• art. 01733 (2x0.50 mm 2 +2x0.22 mm 2 )
• art. 01734 (2x0.50 mm 2 +4x0.22 mm 2 )
IMPORTANT: The cable shield must be connected only at the end of the control unit or of the additional power supply and connected to the negative terminal of the supply voltage. The connection cables for the By-alarm system are compliant for routing with the power supply cables of the mains voltage; however, we recommend you to lay the connection cables in a dedicated raceway and avoid laying in parallel with the power supply cables and particularly with cables of inverters and loads such as pumps, burners, ballasts, motors, etc., especially for long distances.
RS 485
A B
D
E
CN5
20
6.3 Connecting 5-wire devices
For connecting the 5-wire devices, the same requirements as for connecting the 4-wire devices apply, except for the following:
• The maximum length of wiring for the DE signal is 2 m for all devices except for the keypad (art. 01705) where the maximum length is 600 m.
• The various DE signals of the devices must NOT be connected together but must only be connected to the relevant terminal of the isolated By-alarm interface that can accommodate at most 6 of them.
• It is not possible to connect other devices with a 4-wire connection in the 5-wire stretches of bus.
For all the details, please see the Annex in this manual on wiring.
17
By-alarm
Inputs
7. Inputs
7.1 Control unit
The control unit 01700.120 has 8 input lines, which can be configured individually for single, double and triple balancing. With double balancing it is possible, for each line and with only two wires, to have separate detection of the alarm and of tampering; whereas, with triple balancing it is possible to detect masking of the detectors as well. Each input line corresponds to one zone of the system .
In the same terminal block there are the 12 V dc power supply outputs of any detectors; both outputs are protected by a fuse F3 - 3.15A 250V .
Pay attention not to exceed the maximum absorption contemplated for each single power supply terminal.
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
L 5
LINEE 5 - 8
L 6 L 7 L 8
For the wiring of the wired detectors, it is necessary to use halogen-free shielded cables suitable for installation with Category 1 power cables (U0 = 400 V). The VIMAR connection cable codes to use for the wired connection of the devices are as follows:
• art. 01732 (2x0.22 mm 2 )
• art. 01733 (2x0.50 mm 2 +2x0.22 mm 2 )
• art. 01734 (2x0.50 mm 2 +4x0.22 mm 2 )
• art. 01735 (2x0.50 mm 2 +6x0.22 mm 2 )
• IMPORTANT: The cable shield must be connected only at the end of the control unit or of the additional power supply and connected to the negative terminal of the supply voltage. The connection cables for the By-alarm system are compliant for routing with the power supply cables of the mains voltage; however, we recommend you to lay the connection cables in a dedicated raceway and avoid laying in parallel with the power supply cables and particularly with cables of inverters and loads such as pumps, burners, ballasts, motors, etc., especially for long distances.
• The wiring of the detectors/contacts to the inputs, both directly in the control unit and in the expansion modules, must not exceed 100 m in a residential setting and 50 m in an industrial one.
CAUTION: We do not recommend connecting multiple contacts in series because you would lose the ability to distinguish the contact that may be open or tampered with. This recommendation applies all the more to detectors because, in addition to managing alarm signalling, they also signal tampering and anti-masking
(double or triple input balancing) and this cannot occur if the devices are connected in series on the same input.
• IMPORTANT: The balancing resistors, if not already fitted, must be located in the enclosure of the wired detector.
7.1.1 Anti-tampering
The terminals of the anti-tampering line of the control unit are marked TT. This line is dedicated to anti-tampering for various components in the system (sirens for indoor and outdoor use, etc.) and must be balanced with a 3.3 kΩ resistor (orange, orange, red).
TAMPER
T T
12V
N.B.
: • the anti-tampering line cannot be bypassed via the keypad and, so, must always have the balancing resistor.
• the push-buttons protecting against opening and against tearing the control unit off the wall that are located on the board can be temporarily bypassed by closing the respective jumpers alongside the buttons.
• if multiple devices are connected to the same tamper panel line, all the N.C. contacts must be connected in series and there must only be one balancing resistor of 3.3 kΩ or the sum of the resistors of the single devices must be equal to that value.
18
By-alarm
Inputs
Caution:
• Keying in the Installer Code inhibits every alarm, therefore also all the tamper-proof protections will be blocked.
• Bypassing a line via the keypad bypasses the zone's alarm detection function but not the related tamper-proof protection
7.1.2 Single balancing
When programming the line for single balancing, you need to connect a 3.3 kΩ resistor (orange, orange, red) in series with the normally closed contact. The single balancing configuration manages two different types of alarm and needs a line of the control unit and of the tamper input of the control unit itself; in the case of a tamper alarm, the warning will be generic and it will not be possible to distinguish which device has generated it.
TAMPER ALARM
To the Tamper input of the control panel
To the alarm input of the control panel
7.1.3 Double balancing
When programming the line for double balancing, two resistors must be connected, one of 3.3 kΩ (orange, orange, red) in series with the line and the other of 4.7 kΩ
(yellow, purple, red) in parallel with the alarm contact. This configuration manages two different types of alarm and needs just one line of the control unit; in the case of a tamper alarm, it will be possible to identify the device that generated it.
TAMPER ALARM
3.3 kΩ
To the alarm input of the control panel
4.7 kΩ
7.1.4 Triple balancing
If the detector is equipped with a masking detection output, it is possible to have the control unit recognize this status too; three resistors must be connected, one of
3.3 kΩ that detects tampering (orange, orange, red) in series with the line, another of 4.7 kΩ (yellow, purple, red) in parallel with the alarm contact and another of 15 kΩ (brown, green, orange) in parallel with the anti-masking contact. This configuration occupies just one line of the control unit and manages three different types of alarm.
MASKING TAMPER ALARM
To the alarm input of the control panel
15 kΩ
3.3 kΩ
4.7 kΩ
19
By-alarm
Inputs
7.2 Input expansion module and radio frequency interface
• The input expansion modules 01709 and 01704 are connected to the control unit via the RS485 bus; this enables increasing the number of wired inputs above the 8 present in the control unit.
The modules 01709 and 01704 are respectively equipped with 4 and 8 inputs that are individually configurable for single, double and triple balancing. For the wired connection between the input expansion modules and the detectors, the same considerations given in subsection 7.1 apply.
• The radio frequency interface 01729 is connected to the control unit via the RS485 bus; this enables integrating within the system all the radio devices such as the detectors 01727 and 01728 and the remote control 01730.
Each interface 01729, depending upon how it is configured, can have 8 or 16 inputs.
7.3 Addressing the input expansion modules and radio frequency interfaces
Since both the input expansion modules and the radio frequency interfaces belong to the category of devices that occupy the wired zones that can be managed by the control unit (up to 24), it is necessary to address the lines correctly in relation to the number of modules 01709, 01704 and interfaces 01729 installed in the system.
To address the lines correctly, bear in mind the following:
• There are 8 control unit input lines and therefore the addresses from 1 to 8 are exclusive of these lines (even if some of them are not used).
• The addresses assigned to the input lines of module 01709 or 01704 or interface 01729 thus start from 9 upwards.
• The input lines of modules 01709 or 01704 or the interface 01729 must always have different addresses .
• The addresses of the input lines of modules 01709, 01704 and interface 01729 that are not used must in any case be counted.
• The total addresses of the input lines can reach up to 24.
ADDRESS EXAMPLES
1) Suppose you have a system containing the control unit 01700.120 to which are connected in succession:
- 1 input expansion module 01709;
- 1 radio interface 01729 configured with 8 inputs.
The addresses to assign will be the following:
- ID=1 for module 01709 whose input lines will be 9-10-11-12
- ID=2 for radio interface 01729 whose input lines will be 13-14-15-16-17-18-19-20
2) Suppose you have a system containing the control unit 01700.120 to which are connected in succession:
- 1 input expansion module 01704;
- 1 radio interface 01729 configured with 8 inputs.
The addresses to assign will be the following:
- ID=1 for module 01704 whose input lines will be 9-10-11-12-13-14-15-16
- ID=2 for radio interface 01729 whose input lines will be-17-18-19-20-21-22-23-24
3) Suppose you have a system containing the control unit 01700.120 to which are connected in succession:
- 1 input expansion module 01704;
- 1 input expansion module 01709.
The addresses to assign will be the following:
- ID=1 for module 01704 whose input lines will be 9-10-11-12-13-14-15-16
- ID=1 for module 01709 whose input lines will be 17-18-19-20
4) Suppose you have a system containing the control unit 01700.120 to which are connected in succession:
- 1 radio interface 01729 configured with 16 inputs;
The addresses to assign will be the following:
- ID=1 for radio interface 01729 whose input lines will be 9-10-11-12-13-14-15-16-17-18-19-20-21-22-23-24.
CAUTION: The assigned ID addresses are also those to which reference must be made when the By-alarm Manager software or keypad 01705 are used. For example, if an interface 01729 has been assigned ID=1 and an input expansion module 01709 ID=2, when you enter the menu CONFIGURATION- BUS PRO-
GRAMMING of the keypad you need to key in bus address “1” for the interface 01729 and "2" for the input expansion module 01709.
20
By-alarm
Outputs
8. Outputs
The control unit has two alarm output relays with independent programming.
8.1 Relay 1 output
This is a positive safety relay, with double exchange, with 1A capacity each. A voltage free exchange is provided at the output where C is the common, NC is the normally closed exchange and NO is the normally open one; the other one is provided already polarized for connecting the self-powered sirens and the optional nonself-powered internal sirens.
The following figure illustrates the internal connection of the terminals to the board as described above:
12V
ALLARME RELÈ 1
+S
EXT
+S
INT
NC NO C
-/+: power supply for recharging the batteries of the self-powered sirens; the positive is protected by the 3.15A 250V fuse F3.
+S ext: command positive for the self-powered sirens; it constantly provides a positive which fails in the event of an alarm and is protected by the 3.15A 250V fuse
F4.
+S int: power supply positive for the optional non-self-powered sirens; it provides a positive in the event of an alarm and is protected by the 3.15A 250V fuse F4.
EXAMPLE OF CONNECTING THE CONTROL UNIT WITH THE SIREN FOR OUTDOOR USE 01715
01700.120
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
L 5
LI
01715
+ –
CM BT T T
3k3 Ω 3k3 Ω
N.B
: The siren's BT output can be connected to any input of the control unit or an input expansion module 01704 or 01709 (input L used in the figure).
5
of the control unit has been
21
By-alarm
Outputs
EXAMPLE OF CONNECTING THE CONTROL UNIT WITH THE SIREN FOR INDOOR USE 20496-19496-14496
01700.120
20496-19496-14496
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
T T INT SET
+ –
EXAMPLE OF CONNECTING THE CONTROL UNIT WITH THE SIREN FOR OUTDOOR USE 01715 AND THE SIREN FOR INDOOR USE 20496-19496-14496
01700.120
01715 20496-19496-14496
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
+ –
CM BT T T
T T INT SET
+ –
*
22
*
Jumper D closed on 1 and 2
8.2 Relay 2 output
This is a non-positive safety relay, with exchange with 1A capacity. The voltage-free exchange is provided at the output where C is the common, NC is the normally closed exchange and NO is the normally open one.
ALLARME RELÈ 1 RELÈ 2
NC NO C
8.3 CN10 connector
Spare terminal.
D
E
CN10
By-alarm
PSTN communicator 01708 - Voice synthesis module 01713.EN
9. PSTN communicator 01708
9.1 PSTN communicator 01708
The device is a printed circuit board to be combined with the control unit to which it is to be connected by a flat cable connector, supplied; in this way it will be possible to send any fault or alarm communication over the telephone line.
It can be programmed directly via the keypad connected to the control unit or through the phone line with an interactive connection.
Available communication protocols include:
1) SIA standard for communications with reception equipment.
2) Contact ID for communications with reception equipment.
9.2 Inserting the board in the control unit
Installation
The dialler's board should be secured and locked on the bottom of the control unit enclosure using the spacers, supplied, alongside the control unit's printed circuit board.
The board should be firmly secured with screws on the threaded turret; this ensures adequate electrical continuity between the earth and the negative of the board.
Caution: The trimmers PT1 and PT2 on the digital communicator's board are set in the factory and must not be rotated for any reason whatsoever.
Connections
The following instructions must be followed meticulously: a) Cut off all electrical power to the control unit.
b) Plug the telephone dialler's connector into the recessed connector (CN5) alongside the board of the control unit.
c) Connect the terminals A and B to the external telephone line, upstream of all the telephone devices.
d) Connect the terminals A1 and B1 to the internal phones.
e) Restore power to the control unit by connecting the mains voltage and the self-powering battery of the control unit.
CN10
1
20
CN5
10. Voice synthesis module 01713.EN
10.1 Voice synthesis module 01713.EN
Electronic circuit for managing voice synthesis messages to send over the telephone line; in this way it is possible to send all communications for alarms, faults or failures automatically to any phone number, by means of pre-recorded messages already included in the control unit.
The user can also query the control unit by means of an ordinary telephone to know the status of the lines and alarms, switch the control unit off and on (if enabled), cut off zones and cut them back in, check and change his/her telephone numbers, activate and deactivate the active outputs and activate the macro commands.
10.2 Inserting the module in the control unit
Installation
The voice synthesis board should be inserted directly on the control unit's board by aligning the special connector on CN4 .
1) Insert the board by aligning the module connector with that on the board of the control unit.
2) Gently press until fully seated, locking the board with the special spacers.
1
CN1
20
TELEF LINEA
B’ A’ B A
TELEPHONE
LINE
23
By-alarm
Voice synthesis module 01713.EN
10.3 Recording synthesis messages
Note
The message to be recorded is related only to the user addresses because all possible alarm, fault or failure communications are already pre-recorded and entered in the dialler.
a) Insert a standard telephone appliance with DTMF in the plug of the voice synthesis module.
b) Keying the installer code on the keypad takes you into programming mode.
c) Enter the telephone programming menu: VOICE MESSAGE, choose which message to record and stop at RECORD.
Method 1 - With the phone's keypad d) Lift the telephone's handset and press KEY 8 to activate the record command.
e) From the moment when you press the button, the recording time starts which has a maximum length of 10 seconds; the display of the keypad will also show the passage of time.
f) At the end of the message, press KEY 0 on the phone's keypad; in this way you stop recording.
g) To listen to the message, press KEY 5 on the phone's keypad.
If the recording is not satisfactory, you can repeat the entire procedure, resuming it from point d).
Method 2 - With the keypad 01705 d) Press the ENT button on the control unit's keypad to activate the record command.
e) From the moment when you press the button, the recording time starts which has a maximum length of 10 seconds; the display of the keypad will also show the passage of time.
f) Speak into the phone's microphone and, at the end of the message, press the ENT button again; in this way you stop recording.
g) To listen to the message, go to the programming menu: LISTEN and press ENT.
If the recording is not satisfactory, you can repeat the entire recording procedure, resuming it from point d).
24
By-alarm
GSM transmitter/receiver module 01706
11. GSM transmitter/receiver module 01706
11.1 GSM module 01706
The control unit can be equipped with a GSM module that enables automatically sending all alarm, failure or fault communications to any telephone number, with different methods of communication.
The module inserted directly on the control unit's board enables sending communications with:
- Contact ID standard protocol for digital signalling with reception and surveillance centres.
- SMS text message to mobile phones; the messages, already entered into the module, allow for the communication of any event on the control unit.
- If the voice synthesis module 01713.EN is also installed, it can also signal all events vocally.
The module also lets the User activate the RFA-SMS function, that can be used for telemanagement of the control unit via simple SMS text messages.
11.2 Inserting the module in the control unit
1
1
CN2
LD1
CN1
20
MODULE
TRANSMITTER/RECEIVER
GSM 01706
PB1
20
6 5 4 3 2 1
ON
SW1
20
F1 F2 F3 F4 F5
1
CN3
OFF
CN4
1
OFF BATTERIA
TAMPER
T T
12V ALLARME RELÈ 1
+S
EXT
+S
INT
RELÈ 2
NC NO C NC NO C
12V
L 1
LINEE 1 - 4
L 2 L 3 L 4
12V
L 5
LINEE 5 - 8
L 6 L 7 L 8
RS 485
A B
D
E
CN5
20
VOICE SYNTHESIS
MODULE 01713.EN
11.3 Inserting the GSM module in the control unit
Installation
The circuit of the module 01706 has to be inserted directly on the board of the control unit by aligning the special connectors on CN1 and CN2 .
1) Insert the board by aligning the module connectors with those on the board of the control unit.
2) Gently press until fully seated, locking the board with the special spacers.
25
By-alarm
GSM transmitter/receiver module 01706
11.4 Connecting the aerial
The aerial must be secured outside the enclosure, screwing it tight.
Caution : The aerial must not be left free or the interference generated by the GSM transmission could interact with the operation of the control unit.
11.5 Installing the SIM
In order to prevent potential faults, completely disconnect the power supply to the control unit before inserting the SIM card into the slot.
a) To insert or replace the SIM, you need to open the slider by moving the catch securing it on the bottom to the right.
b) Insert the SIM fully into the slider.
c) Close the slider by lowering it completely and fasten it by moving the catch to the left.
26
By-alarm
Connector 20478-19478-14478
12. Connector 20478-19478-14478
12.1 General information
The connector uses a recognition system with a unique code based on transponder technology to restrict and control access and operation; the reading key, sealed and with no battery, is maintenance free.
Completely integrated with the functions of the control unit, it improves the user friendliness of the systems while keeping unchanged the high standards of safety.
Its operation is guided by audible warnings that facilitate performing the operations correctly, which is confirmed by the luminous signals of the LEDs on the connector.
Reading range
Power supply
Absorption
Conductors
Characteristics
• 0.5 cm.
• 12 V dc (± 20%)
• 20 mA max with LEDs off
• 42 mA max when reading
• min. (2 x 0.50 mm 2 + 2 x 0.22 mm 2 ) shielded
12.2 Operation
The connector senses the approach of a reading key and, after recognizing the user, it verifies the power status, shows the circuit test status with the green LED and the system power status with one of the red LEDs.
A courtesy light indicates, even in the dark, the reading point on which the key must be placed.
N.B. The colour of the courtesy light depends on the residential series installed:
- for the Eikon series, amber ;
- for the Arkè series, blue ;
- for the Plana series, green .
Circuit test
Switching ON
Switching to INT
Switching to PAR
Courtesy light
Switching ON
Keeping the key on the reading point causes the three red LEDs to light up in sequence. When the LED corresponding to the desired arming mode lights up, move the key away to confirm switching on the control unit. If correctly programmed, the LEDs will automatically switch off after approximately 2 seconds.
Switching OFF
Keeping the key on the reading point switches off the red LED corresponding to the active arming mode; as a result the control unit will switch off.
Caution: In the event of a malfunction signalled by the connector, you need to go to the keypads to retrieve the pertinent information.
12.3 Connections
• Up to 4 connectors can be connected to the RS485 bus, taking care to observe the abbreviations on the terminals of the control unit and of the connectors, ie A with A, B with B, etc.
• The power supply requires using conductors of at least 0.50 mm 2 and the shielding must be connected to the negative terminal on the control unit side only.
27
By-alarm
Connector 20478-19478-14478
12.4 Addressing the connectors
The 4 different possible connectors must be addressed with a different address, like any other device connected to the RS485 bus of the control unit.
IMPORTANT: If there is only one connector you must always give it address 1.
To address each single connector you need to follow this procedure: a) Completely power down the control unit.
b) Connect the connectors to the RS485 bus as described above and power up the control unit.
c) Press the RESET button located on the side of the connector.
d) Release the RESET button and immediately afterwards press and hold the PROG button for approximately one second. All the LEDs will light up alternately and the buzzer will emit a long beep.
e) The combination of the lit LEDs shows the current addressing of the connector.
f) Each time the PROG button is then pressed the address of the connector will increase as shown in the table below.
g) Once you reach the desired address, you need to press the RESET button for one second to confirm the programming.
Red ON LED
Yellow INT LED
Blue PAR LED
Green status LED
Courtesy LED
Connector
3
4
1
2
ON
OFF
ON
OFF
ON
INT
OFF
OFF
ON
ON
LED
PAR
OFF
OFF
OFF
OFF
Green
OFF
OFF
OFF
OFF
Courtesy
OFF
OFF
OFF
OFF
Note: You need to choose a possible address, according to the control unit to which the connector is connected.
28
By-alarm
Control unit hardware reset
13. Control unit hardware reset
13.1 Reset button
Pressing the reset button PB1 :
1) Stops any ongoing alarm with the related phone call and cancels all pending phone calls.
2) Does not alter the programming of the control unit in any way.
13.2 DIP-switch SW1
1
OFF
2
OFF
SW1: default position
3 4
OFF OFF
5
ON
6
OFF
13.3 Resetting the Codes
To reset the Codes you need to perform the following procedure: a) Set switch 1 of DIP-switch SW1 to ON.
b) Press and release the reset button PB1 .
1
ON
SW1: position of DIP-switch during the reset procedure
2 3 4 5
ON
OFF OFF OFF
6
OFF c) After approximately 3 seconds the ALARM relay will start to switch on and off.
d) Set the switch 1 back to OFF, as in the original position.
e) Press and release the button again.
1
OFF
SW1: position of DIP-switch at the end of the reset procedure
2 3 4 5
ON
OFF OFF OFF
6
OFF
Performing this reset again causes the following changes to the programming and status of the control unit:
1) The Installer's code and all the User Codes are thus taken back to their default values; the table alongside shows the values of the first 15 codes.
Installer
123456
User 1
111111
User 6
666666
User 11
100000
User 2
222222
User 7
777777
User 12
100100
User 3
333333
User 8
888888
User 13
100200
User 4
444444
User 9
999999
User 14
100300
User 5
555555
User 10
000000
User 15
100400
2) Just one keypad is enabled, the one with the address on one.
3) The telephone is disabled.
4) The control unit is switched off for all the AREAS.
13.4 General reset
For the general reset to the factory values, you need to go into control unit programming mode with the Installer Code and carry out the Default Reset of the dedicated menu.
CAUTION: This operation will take the control unit back to its default configuration in which there is an initial coverage of 6 zones (for full details, please see chap. 3).
29
By-alarm
Setting the English language
14. Setting the English language
To set English on the control unit and on the keypads 01705, carry out the following procedure: a) Set switch 3 of DIP-switch SW1 to ON.
b) Press and release the reset button PB1 .
1
OFF
2
OFF
SW1: position for the English language
3
ON
4
OFF
5
ON
6
OFF
The changes concerning the display of the menus in the set language do not affect the custom names (for example, zone name, area name, system name, etc.).
If you want to replace the custom names with the default names in English, you need to Reset the Programming of the control unit to the default values using the keypad (for details, please see the relevant programming manual).
To set the Italian language, starting from the English one, simply repeat the above procedure by setting switch 3 of DIP-switch SW1 to OFF.
30
By-alarm
Interfacing with the By-me system
15. Interfacing with the By-me system
15.1 Connection diagram
With the Ethernet interface (art. 01712) and the By-me Web Server (art. 01945 or 01946) you can interface the By-alarm burglar alarm system with the By-me automation system.
The burglar alarm control unit (art. 01700.120) interfaces with the web server via a special encrypted communications protocol with an extremely high degree of security; the web server, besides providing the user with the graphic interface for managing the control unit, also performs the function of a gateway towards the By-me system.
The web server, moreover, lets installers access the system remotely via a secure communications channel, using the By-alarm Manager software.
PC with
By-alarm Manager software
LAN
01725
Cable interface
Internet
Connection to Web Server via browser
Tablet and smartphone with By-web app
LAN
Router
LAN
Some diagrams of the By-alarm Manager software 01700.120 Control unit 01712 Ethernet interface 01945 Web Server 21554 Video touchscreen
N.B.: If only the burglar alarm system is present without the By-me one, the connection via PC (on which the configuration/maintenance software is installed) will be made only through the serial link. On the contrary, if the web server is present, the installer can connect the PC to it both remotely and locally.
Two important features are possible with this type of interfacing:
- Integration of the By-alarm burglar alarm system with the By-me home automation system.
- Local and remote maintenance using the configuration software and secure connection via the web server.
15.2 Integrating with the By-me system
The functions of integration between the burglar alarm system and the By-me system are the following:
- Possibility of controlling and supervising the By-alarm system via the Web Servers (art. 01945 and 01946), touchscreens (21511.1, 21554, 21553.1/.2) and the home automation module (art. 01965) for the Arké video entryphone (art. 19558).
With these devices it will be possible to view the system status, connect/disconnect areas according to the privileges of the user PIN entered and view the events/ alarms.
- Possibility of controlling the lights via burglar alarm detectors, ie using the dual technology detectors to control the By-me light groups when the relevant zones are not connected (this function is to be configured on the web server).
- Possibility of using the window contacts to send the standby command to the By-me thermostats (this function is to be configured on the web server).
- Possibility to activate a By-me scenario on the occurrence of an event (connection, disconnection, alarms, etc.) in the intrusion detection alarm system (this function is to be configured on the web server).
- Possibility to use the By-me logic unit (art. 01468) to create logic programs linked to the status of the areas (total or partial connection, alarm).
15.3 Local and remote maintenance via the By-alarm Manager software
The connection with the web server lets you perform both local and remote maintenance operations, with a secure connection, using the burglar alarm system software.
This operation must be enabled by the user via a specific menu on the web server in order for the installer to maintain full control over access to system programming/ maintenance.
31
By-alarm
32
ANNEX
By-alarm
Annex - Wiring
I. Wiring
I.I Indications for correctly making the system earth connection and the Structured Cabling.
For the By-alarm system to work properly it is necessary to pay attention to the system's earth connections, ie:
• avoid installations that generate earth currents circulating in the system;
• star point connected earth conductors and connection of the building to earth at a single point (with system contained within 100 m of laying cables);
• use a structured cabling system if the system's dimensions exceed the safety distances for the use of a star point earth connection.
The structured cabling ensures a correct installation when the star connection of the earth conductors is not feasible; in particular, it is necessary when the system has the following classifications:
• Installations on a single building for system dimensions greater than 100 m such as, for example, apartments on different floors, detached houses, shopping malls and small industrial sheds where multiple additional power supply units (art. 01717.120) are installed.
• Installations distributed over multiple buildings such as, for example, detached houses with outbuildings, factories with multiple buildings and warehouses.
If the system comes within one of the above classifications, it is necessary to galvanically isolate two sections of RS485 bus, using the By-alarm interface art.
01711.
The system's classification then determines the type of insulation needed:
- for Installations on a single building wiring is used with Reverse insulation ;
- for Installations distributed over multiple buildings wiring is used with Double insulation.
The following flowchart gives indications to identify the correct type of wiring according to the system's topology.
START
No insulation
Take the power supply of the
01717 (L, N, PE) directly from the control panel power supply network
NO
Do I need more than one power supply unit to power the expansions on the BUS?
YES
NO
Is the Control
Panel-Power Supply Unit distance greater than 100 m?
YES
Plan for a system with double reverse insulation
NO
Are there to be any external stretches of the BUS with an underground cable?
YES
Plan for a system with double reverse insulation
END
33
By-alarm
Annex - Wiring
I.II Outline for non-insulated multi-power supply wiring
Tamper
3k3 Ω
-
+
18V–
01717.120
-
+
TRANFORMER 40VA IP20
By-alarm DEVICES
-
+
-
+
01700.120
SECTOR A
01717.120
SECTOR B
I.III Outline for reverse insulation wiring.
100 m
01717.120
SECTOR C
01717.120
SECTOR D
01700.120
L
N
PE
34
SECTOR A
01700.120
4 wires
PLAN OF AN INDUSTRIAL SHED CONSISTING OF 4 SECTORS
SECTOR B
01717.120
+ exp
SECTOR C
01717.120
+ exp
5 wires
C8 VR
C12
C15
R13
D6
D7
C14
C11
VR16
VR17
VR13
VR15
R12 R9
D8
D3
D4
D5
C4
C5
R10
R6
R7
R11
R8
R5
R4
C2
R2
C6
VR1
D9
D10
VR6 VR5
ISO_A ISO_B ISO– ISO+ ISO_DE
01711
5 wires
C8 VR VR1
D9
VR6 VR5
D10
D6
D7
D8
D3
D4
C14
C11
C12
C15 R13
VR17
VR18
VR14
VR15
R12 R9
D5
R10
C4
C5
R6
R7
R11
R8
R5
R4
C2
R2
C6
ISO_A ISO_B ISO– ISO+ ISO_DE
01711
SECTOR D
01717.120
+ exp
01711
C8 VR
VR6
VR1
D10
VR5
D6
D7
D8
C14
C11
C12
C15 R13
VR17
VR18
VR14
VR15
R12 R9
D3
D4
D5
C4
C5
R10
R6
R7 R5
R11
R8
R4
C2
R2
C6
ISO_A ISO_B ISO– ISO+ ISO_DE
5 wires
DE2
DE3
DE4
DE5
DE1
DE1
+ –
B A
C8 VR3
VR1
D9
D10
VR6
VR5
VR16
VR17
VR18
VR13
VR14
VR15
R12 R9
D6
D7
D8
D3
D4
D5
C14
C11
C12
C15
R13 R10
C4
C5
R6
R7
R11
R8
R5
R4
C2
R2
C6
ISO_A ISO_B ISO– ISO+ ISO_DE
By-alarm
Annex - Wiring
ANTENNA
01709
01705 max 600 m
C
RELÈ 4
NCNO C
RELÈ 3
NCNO C
RELÈ 2
NCNO C
RELÈ 1
NCNO
01710
ON
SW 1
1 2 3 4 5 6
1
10
CN2
ON
1
SW1
2 3 4
10
1
01700.120
By-alarm control unit
250V
250V
250V
250V
250V
3.15A
3.15A
3.15A
3.15A
3.15A
L
N
PE1
+S INT
+S EXT max 600 m overall max 6 expansion modules
C13
01711
C10
U4
M4
DE6
M3
DE2
M6
VR19
M5
D13
D14
D12
VR11
VR10
VR9
VR4
VR2
VR8
U3
D1 isolated interface
C9
Q1
U1
D11
VR7
U2
C1 R3
C3
C7
VR3
C8
D2
R1
M1
M2VR12 max 2 m
20478
19478
14478
01709
01704
TI MC BC
BATT additional power supply unit
18V–
01717.120
L
N
PE1
N.B. If there are no 8-input modules 01704, the tamper-proof signal with balancing resistance 3.3 kΩ must be carried to a 4-input expansion module 01709.
IMPORTANT:
• Reverse insulation is to be used only for connections inside the same building and when the cables of the alarm system are not underground.
• Do not connect the DE signals of the different devices together, but use the special terminal of the isolated interface 01711.
35
By-alarm
Annex - Wiring
I.IV Outline for reverse insulation double wiring
INSTALLATION DISTRIBUTED
OVER MULTIPLE BUILDINGS
Building 1
Building 2
Building 1
01700.120
Building 3
4 wires
DE1
4 wires
4 wires
01711
DE1
01711
DE1
01711
Building 4
5 wires
Building 2
01717.120
+ exp
5 wires
C8 VR
VR6
VR1
D9
D10
VR5
C14
C11
C12
C15 R13
D6
D7
VR17
VR18
VR14
VR15
R12 R9
D8
D3
D4
D5
R10
C4
C5
R6
R7
R11
R8
R5
R4
C2
R2
C6
ISO_A ISO_B ISO– ISO+ ISO_DE
01711
5 wires
Building 3
01717.120
+ exp
5 wires
VR16
VR17
VR13
D6
D7
D8
D3
D4
D5
C4
C5
C8 VR
VR1
D9
D10
VR6
VR5
R6
R7
R11
R8
R5
R4
C2
C6
C14
C11
C12
C15
R12
R13
R9
R10 R2
ISO_A ISO_B ISO– ISO+ ISO_DE
01711
5 wires
Building 4
01717.120
+ exp
5 wires
C8 VR
D6
D7
VR16
VR17
VR13
VR14
C14
C11
VR15
R12 R9
D8
D3
D4
D5
C12
C15
R13 R10
C4
C5
R11
R6
R7
R8
R5
R4
C2
R2
C6
VR1
D9
D10
VR6
VR5
ISO_A ISO_B ISO– ISO+ ISO_DE
01711
ISO A
ISO B
ISO –
ISO +
C13
U4
M6
M5
D1
D13
D12
D14 VR9
VR4
VR2
VR8
VR11
VR10
VR19
C10
U3
M4
DE6
01711
C9
Q1
D11
VR7
U2
C1
U1
C3
C7
VR3
C8
D2
R3 R1
M1
M3
DE2
M2VR12
+
–
B
A
ISO A
ISO B
ISO –
ISO +
ISO DE
M6
C13
M5
U4
D1
D12
D14
D13
VR9
VR4
VR2
VR8
VR11
VR10
VR19
C10
U3
M4
DE6
01711
C9
Q1
D11
VR7
U2
C1
U1
R3
C3
C7
VR3
C8
D2
R1
M1
M3
DE2
M2VR12
+
–
B
A
36
By-alarm
Annex - Wiring
10
1
01710 relè 1
SW 1
ON relè 2 relè 3 relè 4
RELÈ 1
NC NO C
RELÈ 2
NC NO C
RELÈ 3
NC NO C
RELÈ 4
NC NO C
01700.120
By-alarm control unit
CN2
Building 1
CAUTION: It is not possible to connect other devices on this stretch of bus
01709 in antitamper alarm max 600 m
Building 2
C
RELÈ 4
NCNO C
RELÈ 3
NCNO C
RELÈ 2
NCNO C
RELÈ 1
NCNO
01710
ON
SW 1
1 2 3 4 5 6 1
10
ON
1
SW1
2 3 4 max
600 m overall
M5
M6
C13
D1
D12
D14
D13
U4
01711
C10 DE6
M4
VR19
VR11
VR10
VR9
VR4
U3
VR2
VR8
C9
Q1
U1
U2
VR7
D11
C1 isolated interface
R3
C3
C7
VR3
C8
D2
R1
M3
DE2 antitamper
M2VR12
M1 max 6 expansion modules
M5
M6
C13
VR19
U4
01711
C10 DE6
M4
D1
D13 VR11
VR10
D12
D14 VR9
VR4
U3
C9
VR2
VR8
Q1
U1 isolated interface
C1
U2
VR7
D11
R3
C3
C7
VR3
C8
D2
R1
M3
DE2
M2VR12
M1 max 2 m
01704
TI MC BC
3.15A
3.15A
3.15A
3.15A
3.15A
250V
250V
250V
250V
250V
+S INT
+S EXT
20478
19478
14478
01709
L
N
PE1 additional power supply unit 01830
L N
By-me
01830
POWER SUPPLY UNIT
OUT
120-230V 50/60 Hz
350-260 mA
-5°C ÷ +45°C
Grade 1
Classe II ON
12V
1A
+ Low
Voltage additional power supply unit
18V–
01717.120
+
Lead-acid battery
12V 1Ah
– max 1000 m
L
N
PE2
CAUTION: Do not connect the DE signals of the different devices together, but use the special terminal of the isolated interface 01711.
N.B. If there are no 8-input modules 01704, the tamper-proof signal with balancing resistance 3.3 kΩ must be carried to a 4-input expansion module 01709.
37
01700.120IEN-I 05 1805
Viale Vicenza 14
36063 Marostica VI - Italy www.vimar.com
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