Fermax IP-Fermax IPF-00, IP-Fermax IPF-01, IP-Fermax IPF-00C, IP-Fermax IPF-02, IP-Fermax IPF-01C Installation And Operating Instructions Manual

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IP-Fermax
IPF-00, IPF-01, IPF-02
IPF-00C, IPF-01C, IPF-02C
Installation and operating instructions
Welcome
Congratulation to purchase modern VOIP door entry system “VoIP Door
Phone FermaxIP Fermax. This door entry widely satisfy your needs for
communication to visitors of your company, homes, schools etc… Simply VoIP means Voice over Internet Protocol” – this door entry is connectable to IP network and allows 2 ways of calling. Either P2P (peer to peer) – it means call directly to IP adress of other VOIP device or registrates to SIP server ( as SIP client) and then call phone number. To each button you can assign 5 phone numbers with possibility of progressive or simoultaneous dial.
The IP-Fermax doorphone comes with one or two buttons or no push-button, either with color camera or without camera. The system is modular and can be expanded to up to 200 buttons and equipped with a keypad. The IP-Fermax doorphone is powered by a 12V power supply that can be used to power the door lock or the IP-Fermax can be PoE powered (Power over Ethernet). The features are similar to a hand-free phone. Basic features include the ability to open up to 2 doors with connected electrical locks and easy programming via the WEB interface.
Manual version V3.5 5-9-2016 Valid for firmware – V3.4.xx Alphatech Technologies s.r.o. Jeremenkova 88 140 00 Praha 4, CZ
www.alphatechtechnologies.cz support@alphatechtechnologies.cz
Producer progressively improves features of the unit (firmware). The door entry IP Fermax allows whenever upgrade the firmware by newest version via PC. Latest firmware version you can download from
www.alphatechtechnologies.cz .
Neccessary guides you find at page 69. We recommend always use latest firmware version which brings new features as same as eventual correction of errors of previous versions. At www.alphatechtechnologies.cz you can also find latest versions of user documentation.
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Contents
BASIC DESCRIPTION ....................................................................................... 5
FEATURES ...................................................................................................... 5
USED TERMINOLOGY ...................................................................................... 6
ASSEMBLY OF MODULES ................................................................................ 8
Voice modules without a camera .............................................................. 8
Voice modules with a camera ................................................................... 9
Push button modules and keypad ............................................................ 10
Numeric keypad ...................................................................................... 10
Mechanical parts .................................................................................... 11
MOUNTING OF IP FERMAX ........................................................................... 12
Mounting on the wall .............................................................................. 12
Mounting into the wall ............................................................................ 12
CONNECTION OF IP-FERMAX ....................................................................... 13
IP-Fermax main board .......................................................................... 13
Front panel ............................................................................................. 16
Camera (22) ............................................................................................ 17
Replacement of name cards .................................................................... 17
Power supply - clamp (10) ...................................................................... 18
Micro SD card (4) ................................................................................... 18
CONNECTION OF SWITCHES .......................................................................... 19
PoE power supply source ........................................................................ 21
Code relay (COSW) ................................................................................ 22
Use of door sensors – exit button ............................................................ 22
NUMBERING OF PUSH BUTTONS ................................................................ .... 23
SERVICE OF IP-FERMAX ............................................................................. 24
SIGNALLING OVERVIEW ............................................................................... 24
OVERVIEW OF SIGNALLING .......................................................................... 24
VISITOR AT DOOR ......................................................................................... 24
Push Button press – outgoing call .......................................................... 24
Button press – code lock ......................................................................... 25
Call ......................................................................................................... 25
VISITOR INSIDE BUILDING ............................................................................ 26
Outgoing call .......................................................................................... 26
Incoming call .......................................................................................... 26
VIDEO .......................................................................................................... 27
PARAMETRES PROGRAMMING ................................................................ 28
WEB INTERFACE ACCESS ............................................................................. 28
What you should know ............................................................................ 28
Login ................................ ................................ ................................ ....... 29
CURRENT STATUS ........................................................................................ 30
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Language settings ................................................................................... 31
IP NETWORK SETTING .................................................................................. 31
IP Network setting .................................................................................. 31
SIP setting ................................................................ ............................... 34
WEB server ............................................................................................. 38
BASIC SETTING ............................................................................................. 40
Phone book ............................................................................................. 40
Relays ...................................................................................................... 43
Door sensors ........................................................................................... 47
Setting SNMP .......................................................................................... 48
Time profiles ........................................................................................... 49
Date and time setting .............................................................................. 50
E-mail ..................................................................................................... 52
EXTENDED SETTING ................................................................ ..................... 54
DoorPhone .............................................................................................. 54
Audio setting ........................................................................................... 57
Audio codecs ........................................................................................... 58
Video setting ........................................................................................... 59
Video watching (PopUp programm) ....................................................... 60
Video codecs ........................................................................................... 61
Streaming ................................................................................................ 62
SERVICE ....................................................................................................... 64
Restart ..................................................................................................... 64
Configuration .......................................................................................... 65
Language and style ................................................................................. 66
Style and language preparation .............................................................. 67
Firmware upgrade .................................................................................. 69
Logfile ..................................................................................................... 70
License .................................................................................................... 72
Sound files ............................................................................................... 73
TECHNICAL PARAMETRES......................................................................... 74
ELECTRICAL PARAMETRES ........................................................................... 74
MECHANICAL DIMENSIONS .......................................................................... 74
VIDEO PARAMETRES .................................................................................... 75
Requests .................................................................................................. 76
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Basic description
Features
audio is full duplex with ECHO cancellation phone book for 999 subscribers with 5 tel. numbers for each (max. 200
physicaly buttons + keyboard)
every subscriber has more phone numbers with progressive or simultaneous
calling
Email sending when is unreachable including attachment with pictures 10 time plans with week programm 4 relays. 2 included on board with possibility connect 2 independent locks for
door opening and 2 virtual (webrelays) (for remote control of IP relay or relays synchronization)
Relays system via synchronization allows combination of any mode
(progressive opening, 2 pulses etc..)
10 shared adjustable codes for every relay + every subscriber has own code
for every relay
all versions can use door sensors or exit buttons SNMP usage possibility real time clocks from NTP or SIP server extendable possibilities of buttons functionality, light intensity settings, call
duration restriction, etc...
▪ audio signalling settings, saving own tones or messages ▪ multilanguage support ▪ multilevel loading and configuration refresh ▪ relaible firmware upgrade ▪ loging system with possibility of data saving to MicroSD card (we prepare) picturesas same as video saving possibility to MicroSD card (we prepare) ▪ WEB inerface management ▪ power supply 12V or PoE (Class 0 - 12,95W) ▪ Ethernet – 10/100Mb with standard 10BaseT and 100BaseTx ▪ unit start within 10 seconds ▪ Linux operating system ▪ USB connection of integrated webcamera. Video transmission to webbrowser
- JPEG, video transmission to VoIP phones - stream H.263, H.264
SIP connection P2P or PBX (SIP server) system,switchable in web interface SIP 2.0 protocol , define RFC3261
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Used terminology
Incoming call - Connection between a Brave and a phone made by selecting an option on the phone. The Brave connects the call after set number of rings. The Brave can be programmed from the phone following a connection by inputting a password.
Outgoing call - Connection between the Brave and a phone made by choosing an option on the Brave (i.e. Pressing a button).
External code - Combination of 10 buttons or keyboard keys (after pressing the B symbol or bell symbol) for a relay activation. [External = enter code outside the building]
Internal code - Combination of 10 buttons on phone for a relay activation (by DTMF). [Internal = enter code inside the building].
Code lock - Function for relay connections by inputting a combination of up to 10 buttons or keyboard keys (after pressing the key symbol)
Ethernet is technology which is used to build up local networks (LAN)
LAN - Local Area Network (local network) mark PC network which cover small
geographical area (for example homes, office, etc…).
10Base-T As transmission medium use twisted twoline cable with rate 10 Mbit/s. It used 2pairs of structured cabling from four.
100Base-TX Version with transmission rate 100 Mbit/s, which is named Fast Ethernet. It used 2 pairs UTP or STP cable category 5.
Twisted 2line or also twisted pair is cable type which is used in PC networks. Twisted 2line is created by cables pair which are regularly twisted in the length and after pairs are twisted together.
UTP, Unshielded Twisted Pair
STP, Shielded Twisted Pair
WEB - World Wide Web (WWW, shortly web), is mark for application of http
internet protocol
HTTP (Hypertext Transfer Protocol) is internet protocol design for exchange of hypertex documents in format HTML
USB (Universal Serial Bus) . Modern way of accessories connection to PC
Video codec (compound of word begins coder and decoder“) . Compression
H.263 is derived from MPEG-4, H.264 is coder for format MPEG-4 AVC. MPEG-4 is kind of video compression – decreasement of pictures sequence
data flow
JPEG is standard method of loss making compression used for savings PC pictures
Voice over Internet Protocol (shortly VoIP) is technology allows transmission of digitized voice in body of family protocols UDP/TCP/IP pockets via PC network . It is used for calling via internet, intranet or any other data connection.
TCP/IP contents set of protocols for communication in PC network and it is main protocol of worldwide network Internet.
IP adresa is number which definitely identify network interface in PC network which used IP protocol.
DHCP (Dynamic Host Configuration Protocol) is application protocol from family TCP/IP. It is used for automatic assign of IP adresses to individual computers in PC network. Due this simplify its management
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Internet is worldwide system of mutually connected PC networks
Intranet is PC network similiar to internet but it is „private“. It is designed jsut
for small group of subscribers (for example workers in some company)
PoE (Power over Ethernet) is powering via data network cable.
NTP (Network Time Protocol) is protocol for synchronization of internal PC
clocks
NAT (Network address translation) is a method of remapping one IP address space into another by modifying network address information in Internet Protocol (IP) datagram packet headers while they are in transit across a
traffic routing device
STUN (Session Traversal Utilities for NAT) is a standardized set of methods
and a network protocol to allow an end host to discover its public IP address if it is located behind a NAT.
SIP User Agent - every SIP user agent (phone, software, device) identifies
itself with a string. The syntax of this string is not defined, but a common
practise is „device name + version“
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Assembly of modules
The IP-Fermax doorphone is a modular system, it includes an advanced technology, timeless design. It is easy for installation and operation. The IP-Fermax doorphone is equipped with two switches or it can control two remote IP switches via http commands. It can be PoE powered. You can choose a version with or without a colour camera. The entire system can be expanded to a maximum of 200 push buttons. It can also be expanded by a keypad. The IP-Fermax 1CP201IP doorphone has two push buttons and a colour camera. The IP-Fermax 1AP201IP doorphone has two push buttons, it is an audio version without a camera The IP-Fermax Skyline version is a modular system. The basic IP-Fermax Skyline video module 7421IP contains the main VoIP board, switches, PoE, ETH port and a colour camera. The basic IP­Fermax Skyline audio module 7415IP contains the main VoIP board, switches, PoE, ETH port, it is without a camera. The Fermax Skyline expanding push button modules and a numeric keypad are the Fermax VDS / BUS2 modules. The Fermax Skyline expansion modules are connected with the 6-core Fermax cable, which is always a part of each Fermax Skyline expansion module. The Fermax keypad is automatically detected in the system, it does not need to be programmed. Also it does not matter where the Fermax keypad is connected. The Fermax Skyline VDS / BUS2 push button modules are connected in an independent order of the numbering of the push buttons. The Fermax Skyline push buttons numbering is programmed in the usual Fermax way – by pressing the push buttons in the order from the first to the last (see more details further in the text).
Voice modules without a camera
Basic module Basic modular Skyline module 1AP201 7415IP
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Voice modules with a camera
Basic module Basic modular Skyline module
1CP201 7421IP
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Push button modules and keypad
The Fermax Skyline expanding push button modules and a numeric keypad are the Fermax Skyline VDS / BUS2 modules. The Fermax Skyline expansion modules are connected with the 6-core Fermax cable, which is always a part of each Fermax Skyline expansion module. The Fermax keypad is automatically detected in the system, it does not need to be programmed. Also it does not matter where the Fermax keypad is connected. The Fermax Skyline VDS / BUS2 push button modules are connected in an independent order of the numbering of the push buttons. The Fermax Skyline push buttons numbering is programmed in the usual Fermax way – by pressing the push buttons in the order from the first to the last (see more below). The principle of the connecting the expanding modules (C) is shown in the figure.
Direction A - (input) is the cable leading to the basic (voice) module. Direction B - (output) is the direction to the last module on the bus.
The position and the order of the expanding modules does not affect the numbering of the push buttons. This is done in the programming sequence (so called „push buttons mapping“) when everything is connected.
Numeric keypad
The numeric keypad is the original Fermax Skyline VDS/BUS2 module. It is connected with the 6-core Fermax cable, which is always a part of each Fermax Skyline expansion module. The Fermax keypad is automatically detected in the system, it does not need to be programmed. Also it does not matter where the Fermax keypad is connected. Its presence in the system can be verified on the main Status page in the programming web interface of the doorphone. The keypad is detected with the first restart after the keypad´s connection. The selection is entered by consecutive pressing of the number buttons, the key B (or the Bell sign according to the type of keypad) must be pressed first to enter the password. To hang up the call (to teminate the call), press the key A and the doorphone will hang up at any time. When entering an IP address for P2P direct dialling, use the key B as the dot (.) in the IP address.
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Mechanical parts
All mechanical parts are the original Fermax Cityline (valid for versions
1AP201IP or 1CP201IP only) or the original modular Fermax Skyline series.
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Mounting of IP Fermax
Mounting on the wall
For surface mounting on the wall use the original Fermax Cityline or Fermax Skyline series of mounting boxes. Mounting is done by screwing on the wall, for example with anchors. As an example, the figure shows a surface mounting box for 1 module. Mount the surface box at the correct height of 1,7m above the floor/ground.
Mounting into the wall
For flush mounting into the wall use the original Fermax Cityline or Fermax Skyline series of mounting boxes.
1. Prepare the flush mounting box
2. Principe of connecting flush mounting boxes next to each other. Use the original Fermax joining bolts (ref. 8829) to connect the flush mounting boxes.
3. Mount the flush box at the correct height of 1,7m above the floor/ground.
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Connection of IP-Fermax
The IP-Fermax contains the main board, optionally a camera board in video version. The main board always comes with two push buttons on the board. In the versions 1CP201IP and 1AP201IP both push buttons are used. The modular Fermax Skyline series does not use any of these push buttons on the main board. Only the Fermax Skyline expansion push button modules are used in this case. Number of push buttons depends on the programming (consecutive pressing of all push buttons in the selected order, more details are explained later on). Up to 200 Fermax Skyline VDS/BUS2 push buttons and a Fermax VDS/BUS2 numerical keypad can be connected to the main board. The main board is equipped with two inputs (two door sensors or two exit buttons) and two switches (relays). By using two programmable virtual relays you can control two remote relays via http commands.
IP-Fermax main board
The main board is the same for all models of the IP-Fermax doorphone and it differs only if the camera module is connected or not. There is always a PoE module (according to the norm IEEE802.3af), connector for connecting expansion modules, LED name card illumination, MicroSD card reader slot and two switches (relays).
All functional and connected elements are marked with a number in a
red circle.
1. CPU board (processor module)
2. LED green – powering of the doorphone is alright
3. LED for checking network activity, green = connection of 100M LAN, yellow
= data transfer on LAN
4. Slot for MicroSD card – insert the card before switching on the doorphone
and do not pull it out during the entire operation of the doorphone!
5. DIP switch
1 – always on (used for factory service only) 2 – off, when it is „on during the start, then a default
IP address 192.168.1.250 and a default style are set. Name is admin and password is 1234. To show a video stream, name is video and password 1234 (if required). The operational position is off.
6. Connection of the UTP cable (Ethernet, LAN, network)
7. Two switches (the middle clamp is common for both switches) for door
sensors or exit buttons (programmable)
8. Connection of cable from expansion modules – 6-wire Fermax cable
9. Terminal block of the switching contact of the first relay (NC= normally
closed, NO= normally open and COM= common, middle clamp/pin)
10. Terminal block of the switching contact of the second relay (NO= normally
open and COM=comman, middle clamp/pin)
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11. Input for powering of the IP-Fermax 12V AC / DC (consumption approx.
300mA max.). We recommend using direct current (DC) type of power supply.
12. Output 12V DC, max. 300mA, e.g. for powering of a low consumption
elektrical lock when there is a PoE type of power for the IP-Fermax doorphone.
13. Connector for the speaker
14. Connector for the microphone (pay attention to the correct polarity)
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15. Programming button (after pressing it for 5 sec., the IP-Fermax doorphone
will switch to the mapping mode to allocate connected push button modules. When you press the programming button once again, it will save the mapping result to its memory)
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Front panel
20. Mounting holes for holding the front panel. After installation close the top
hole with a supplied plastic cover with Fermax logo. The bottom hole is covered with a supplied silver colour cover. Both covers and screws are always delivered as accessories with the doorphone.
21. Speaker.
22. Camera wide angle 120° with illumination white LEDs and an ambient light
sensor for swtching on the illumination LEDs.
23. Push buttons which always come soldered on the main board. Depending
on the type of front housing you use them or do not use them (defined during the programming-mapping sequence of push buttons)
24. Name card, exchanging a name card is described later on. The name car dis
illuminated with white LEDs (the illumination can be deactivated)
25. Microphone
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Camera (22)
On the figure below and the previous figure above (22) – detailed description (valid for camera models only):
22a Two-colour LED for status indication. Red=establishing a call, Green=active
call, Orange=a switch is switched on (you need to set acoustic signalling of the switch)
22b White LEDs for illumination of the space in front of the camera 22c Sensor of ambient surrounding illumination for controlling of name cards
illumination and camera illumination
22d Objective of the camera. View angle is 120°, max. resolution 640x480.
Replacement of name cards
The name cards are removed from the front of the doorphone as shown on the figure below. Be careful when opening the front plastic cover to avoid damaging or scratching the front panel or the plastic cover of name cards. The name card cover is actually a tray where the label paper must be loaded.
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Power supply - clamp (10)
12V power supply can be direct (DC) or alternating (AC), it is
inpependent on polarity, from 12V the max. consumption is 300mA.
The power supply can be used also for powering the elecrical lock, then
we recommend to use 12V/1A.
You can also use a 24V direct current (DC) power supply. Usually it is used at instllations where there is a power supply already, for example at attendance systems or at sliding gates. You must not use an alternating current (AC) power supply, you can use a direct current (DC) power supply only. It is inpependent on polarity.
Micro SD card (4)
The microSD card is used for savig user audio files. In the future it will be used for storing images, videos and audio files. Then the MicroSD card will be used as a recorder.
If use choose a user audio tone and the card is not inserted in the doorphone, then only the audio tones of the basic signalling will be used.
Do not eject the SD card during operation of the doorphone!
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Connection of switches
Examples of switches connection is shown on the next page. There are just a few basic examples, but it gives you a good guidance how to connect individual circuits (red circle = example number).
1. Basic wiring - 2 electric locks and the possibility of controlling two doors
independently (switches 1 and 2 are monostable) this scheme also applies to the gradual opening of the door. This connection is the most common, one common source powers the IP-Fermax doorphone and two electric locks. The current load of the power supply depends especially on the electric locks used. The standard lock has a current consumption of 0.6A - 1.0A, and it is also necessary to consider whether it is possible to switch on both switches of the electric locks simultaneously. If not, choose a 2A power supply source instead. If you use low consumption electrical locks, then 1A power supply source is fully compliant.
2. Two sources - the possibility to use independently two power supplies, one
for the IP-Fermax doorphone and the other for electric locks. The electric lock 2 is inversely connected (fire escape door).
3. Combination of doors with electric lock and gates in fencing.
4. Extending the previous example to two doors with a gradual opening (this
function is set in TimeRelay - external module)
5. Combination of electric lock and auxiliary bell. The auxiliary bell switch can
be in the switching mode of the call (responds to all push buttons) or switching the switch from the selected push button, then the switch responds to only one selected push button.
6. Switching lighting (eg road to the building) by switch 1 (setting the switch
from call to switch). Switch 2 - heating control according to the weekly schedule - the time profile table synchronizes the selected switch. Attention! A contactor must be used (the IP-Fermax doorphone must not switch 230V!).
The examples in the figures below are principal examples only.
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PoE power supply source
The IP-Fermax doorphone is equipped with a circuit for PoE powering over UTP cable. If you have a PoE power switch, or you own a PoE (a box of the size of the AC adapter plugged into the UTP cable - according to the IEEE802.3af standard), you no longer need a 12V power for the doorphone´s function. If you use an electric lock to open the door, you must use the power supply (only in the relay contact circuit) or use a low consumption electrical lock and then use the output terminal "12V output" (the terminal marked "12"). For PoE power supply source, there is 12V/300mA available. Attention, ensure that both electric locks are not be active at the same time. This can be achieved, for example, by synchronizing the switches and setting the door's successive opening (the setting is described in the chapter on the setting of the switches – relays setting)
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Code relay (COSW)
For the switch, the code relay function (COSW-CodeSwitch) is available. In particular, it serves to secure transmission of information on switching the electric lock. When using this function, it is not possible to activate this lock by attaching or disconnecting the voltage to the lock leads. Activation is only performed when the serial information transmitted between the IP-Fermax doorphone and the code relay board (COSW) is identical.
In the IP-Fermax doorphone you can set the Security code for the output to activate the COSW code relay.
The code information is 8 bits, but the code entry is 4 bits with 4-bit security, which is a total of 8 bits. Practically, this happens by activating the switch first by transmitting the serial code and if it agrees, the code relay will connect the electrical lock.
The code relay can be connected in parallel and thus extend the number of switches, but you can never combine the electrical lock and the code
relay in parallel !!!
Use of door sensors – exit button
Door sensors can be connected to the IP-Fermax doorphone to a maximum of two. It is used to retransmit information about the closed door. This information is displayed on the Home screen (under the camera image) and also transferred to UDVguard sw applications. Another option is to use SNMP.
The door sensor is either a part of the electric lock, or it is a common magnetic contact used in the security technology. It is connected as an NC switch on the terminal block (7) - as well as the magnetic contact from the Alarm (Door Closed = Closed).
Inputs for door sensors can also be used as exit buttons. The IP-Fermax
doorphone´s setting allows you to select which switch controls this input. The
NO button is connected to the input and when you press the exit button, the switch is switched on in monostable mode for the switching time.
.
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Numbering of push buttons
After connecting the expansion push button modules, you must program the push buttons numbering (to determine which push button has what number – you need to create a relation to the party number in the phone book). This is done similarly to the VDS Fermax system. On the basic side of the IP-Fermax doorphone (above the MicroSD card slot) there is a button (15). How to assign numbers to the push buttons:
1. All expansion push button modules are connected, the IP-Fermax doorphone is switched onPress the button (15) and hold it for 5 sec. (the IP-Fermax doorphones starts beeping quietly)
2. Now press the buttons of the whole assembly so that the first press = push button # 1, the second press = push button # 2 and so on until the last push button.
3. Also include the push buttons on the basic (voice) module in this proces
4. Press the button (15) briefly to save the programming/mapping of push buttons.
5. The check is on the Current status page - the number of push buttons (buttons count) is the number of times you pressed the push button on the whole assembly.
The keypad is not included in the programming/mapping and nothing is pressed on the keypad. It is detected automatically.
If you want to omit some push button while programming, just press the same push button again. E.g. the push buttons sequence should be 1-2-4-6, then press the push button 1, the push button 2, the push button 3 and the push button 3 again = this is number 4), the push button 4 and the push button 4 again (that is number 6).
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Service of IP-Fermax
Signalling overview
Overview of signalling
The IP-Fermax doorphone is signaling acoustic states that can occur during operation, additional signaling is via two-color LED (located above the camera). The acoustic signaling for each state listed in the table below can be turned off or the default beep tone is used or replaced by user sounds.
Status
Tone
LED
Start calling
Optional / user-programmable
red
End of call
Optional / user-programmable
goes out
Call is not possible (busy)
Optional / user-programmable
red
Confirmation of the code entry
Optional / user-programmable
green
End call alert
Optional / user-programmable
green
Switching on the relay switch
Optional / user-programmable
* red +
green
Error
Optional / user-programmable
-
Pressing the push button
Optional / user-programmable
-
Establishing a connection
-
red
Connection is established - call
-
green
Service mode (start boot)
green
Start Linux
red
Start of rescue WEB
red blinks
* - the indication is conditional upon switching on the acoustic signaling of the respective switch
Visitor at door
Visitor at door is person who wants enter inside the building.
Push Button press – outgoing call
Outgoing call is call from the doorphone (started by the visitor). Then the
doorphone dials and a phone is ringing inside the building.
The push buttons of the doorphone have name cards with names and functions of people inside the building. The visitor press appropriate push button and the doorphone starts calling immediatelly (in case the push button is not defined as the first digit of codelock) or there is some delay (a time period
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