Szablon: Connectors: Różnice pomiędzy wersjami

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(Nie pokazano 23 pośrednich wersji utworzonych przez tego samego użytkownika)
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     | RB900L3|RB900MC|RBMTX-Lite|RBMTX-Viper|NTS-pico3 = Please use power adapter which is included in package. It ensures “clean” power supply input and avoids short transients on power supply lines originating from inductive load switching. The power supply connector is a 2-pin connector for external DC power supply. Power supply range of {{{model}}} is {{{psr}}}.
     | RB900L3|RB900MC|RBMTX-Lite|RBMTX-Viper|NTS-pico3 = Please use power adapter which is included in package. It ensures “clean” power supply input and avoids short transients on power supply lines originating from inductive load switching. The power supply connector is a 2-pin connector for external DC power supply. Power supply range of {{{model}}} is {{{psr}}}.


[[File:{{{model}}}_powersupply.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_powersupply.png|400px|frameless|class=tlt-border]]


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{{!}}}
{{!}}}


[[File:RB900L3_powersupplypinout.png|100px|border|class=tlt-border]]
[[File:RB900L3_powersupplypinout.png|100px|frameless|class=tlt-border]]


'''''NOTE:''' The device is switched off by removing the external power supply from the electric socket. The electric socket must be located close to the device and easily accessible.''
'''''NOTE:''' The device is switched off by removing the external power supply from the electric socket. The electric socket must be located close to the device and easily accessible.''


     | RB900SG = The power supply connector marked as ''PWR'' is a 2-pin connector for external DC power supply connection, which can handle voltage from range 5..30 V DC, 2.5 W max. continuous power. (for modem with internal battery).
     | RB900SG|RB900SG-ElpOS = The power supply connector marked as ''PWR'' is a 2-pin connector for external DC power supply connection, which can handle voltage from range 5..30 V DC, 2.5 W max. continuous power. (for modem with internal battery).


[[File:{{{model}}}_powersupply.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_powersupply.png|400px|frameless|class=tlt-border]]


[[File:RB900L3_powersupplypinout.png|100px|border|class=tlt-border]]
[[File:RB900L3_powersupplypinout.png|100px|frameless|class=tlt-border]]


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<span style="color:red">Attention!</span>
<span style="color:red">Attention!</span>
Please note that it is prohibited to connect external power supply and the meter at the same time, as the power pins of power port and RJ45 port are internally shorted.
Please note that it is prohibited to connect external power supply and the meter at the same time, as the power pins of power port and RJ45 port are internally shorted.
In order to power the RB900SG from external source and communicating with the meter at the same time it is needed to prepare the proper cable, in which the pin 1 has to be removed.
In order to power the {{{model}}} from external source and communicating with the meter at the same time it is needed to prepare the proper cable, in which the pin 1 has to be removed.


===Battery disposal===
===Battery disposal===


The RB900SG terminal contains a Li-Po battery.
The {{{model}}} terminal contains a Li-Po battery.


<span style="color:red">SAFETY INFORMATION:</span>
<span style="color:red">SAFETY INFORMATION:</span>
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Risk of fire or explosion or defeat the safeguard of equipment if the battery is replaced by an incorrect type. Disposal of a battery into fire or a hot oven, or mechanically crushing or cutting of a battery, that can result in an explosion. High or low extreme temperatures or low air pressure at high altitude that the battery can be subjected to during use, storage or transportation. Leaving the battery in an extremely high temperature and/or low air pressure surrounding environment that can result in an explosion or the leakage of flammable liquid or gas. Please read and follow the above safety information when operating the device. We cannot guarantee that no accidents or damage will occur due to improper use of the device. Please use this product with care and operate at your own risk.
Risk of fire or explosion or defeat the safeguard of equipment if the battery is replaced by an incorrect type. Disposal of a battery into fire or a hot oven, or mechanically crushing or cutting of a battery, that can result in an explosion. High or low extreme temperatures or low air pressure at high altitude that the battery can be subjected to during use, storage or transportation. Leaving the battery in an extremely high temperature and/or low air pressure surrounding environment that can result in an explosion or the leakage of flammable liquid or gas. Please read and follow the above safety information when operating the device. We cannot guarantee that no accidents or damage will occur due to improper use of the device. Please use this product with care and operate at your own risk.
}}
}}
{{#ifeq: {{{sim}}} | 1 | ==SIM card holder==
{{#ifeq: {{{sim}}} | 1 | ==Main SIM card holder==


External SIM card holder is placed at the front of the {{{model}}} {{{type}}} (as shown below). To insert a SIM card into the holder, press the <b>yellow button</b>, eject the black drawer, place the SIM card inside it and insert drawer into the modem (you will hear "click"). To operate the module in a GSM/LTE network, it is necessary to insert active SIM card from the network provider.
External, main SIM card holder is placed at the front of the {{{model}}} {{{type}}} (as shown below). To insert a SIM card into the holder, press the <b>yellow button</b>, eject the black drawer, place the SIM card inside it and insert drawer into the modem (you will hear "click"). To operate the module in a GSM/LTE network, it is necessary to insert active SIM card from the network provider.


[[File:{{{model}}}_connectorssim.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_connectorssim.png|400px|frameless|class=tlt-border]]
}}<br>
}}<br>
{{#ifeq: {{{dualsim}}} | 1 | Second SIM card is located inside the device. Unscrew one of the {{{type}}} panel, eject the board and put internal SIM card into holder.
{{#ifeq: {{{dualsim}}} | 1 | Second SIM card is located inside the device. Unscrew one of the {{{type}}} panel, eject the board and put internal SIM card into holder.
}}{{#switch: {{{model}}}
    | RBMTX-Viper = Second SIM card holder (SIM2) in {{{model}}} is placed above the main SIM holder (SIM1).
NOTE: To manage SIM cards of the {{{type}}} check [[{{{model}}} Interfaces|{{{model}}} Interfaces]] and [[{{{model}}} Watchcat|{{{model}}} Watchcat]]
}}
}}
==Antenna connectors==
==Antenna connectors==


{{#switch: {{{model}}}
{{#switch: {{{model}}}
     | RB900L3|RB900MC|RB900SG|RBMTX-Lite|RBMTX-Viper = ===GSM antenna connector===
     | RB900L3|RB900MC|RB900SG|RB900SG-ElpOS|RBMTX-Lite|RBMTX-Viper = ===GSM antenna connector===
}}
}}


{{#switch: {{{model}}}
{{#switch: {{{model}}}
     | RB900L3|RB900MC|RB900SG = SMA “ANT” input is used to connect external GSM/LTE antenna. To establish a connection with a GSM/LTE network, an external antenna must be used. Type of antenna depends of GSM/LTE coverage. In good circumstances (level of received signal is high) use antenna contained in the package. If the range of GSM/LTE is low or none, an outdoor or indoor (for instance in place where GSM/LTE range is sufficient) antenna should be used.<br>
     | RB900L3|RB900MC|RB900SG|RB900SG-ElpOS = SMA “ANT” input is used to connect external GSM/LTE antenna. To establish a connection with a GSM/LTE network, an external antenna must be used. Type of antenna depends of GSM/LTE coverage. In good circumstances (level of received signal is high) use antenna contained in the package. If the range of GSM/LTE is low or none, an outdoor or indoor (for instance in place where GSM/LTE range is sufficient) antenna should be used.<br>
'''''Note:''' If there is no antenna connected to SMA connector, the connection with GSM/LTE network is impossible.''
'''''Note:''' If there is no antenna connected to SMA connector, the connection with GSM/LTE network is impossible.''


[[File:{{{model}}}_antennagsm.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_antennagsm.png|400px|frameless|class=tlt-border]]


     | RBMTX-Lite|RBMTX-Viper = SMA antenna connector placed on {{{gsm_place}}} panel is used to connect external GSM/UMTS/LTE. It must be connected to establish a connection with GSM/UMTS/LTE network. In good circumstances (good coverage, level of received signal is high) use antenna which is included in package. When signal strength is poor please use outdoor directional/omnidirectional or indoor antenna.
     | NTS-pico3 = Connect the antenna and surge arrestor as shown in the picture below.
 
[[File:{{{model}}}_antennasurge.png|600px|frameless|class=tlt-border]]
 
    | RBMTX-Lite = SMA antenna connector placed on {{{gsm_place}}} panel is used to connect external GSM/UMTS/LTE. It must be connected to establish a connection with GSM/UMTS/LTE network. In good circumstances (good coverage, level of received signal is high) use antenna which is included in package. When signal strength is poor please use outdoor directional/omnidirectional or indoor antenna.


'''''Note:''' If antenna is not connected, connection with GSM/UMTS/LTE network will be impossible.''
'''''Note:''' If antenna is not connected, connection with GSM/UMTS/LTE network will be impossible.''
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type is SMA male, but GNSS antenna connector type is female (the same as for GSM/UMTS/LTE antenna). There is no variant with WiFi+Bluetooth and GPIO (no space for both SMA and GPIO connectors).
type is SMA male, but GNSS antenna connector type is female (the same as for GSM/UMTS/LTE antenna). There is no variant with WiFi+Bluetooth and GPIO (no space for both SMA and GPIO connectors).


'''''Note:''' If antenna is not connected, connection with WiFi/Bluetooth network/GNSS system will be impossible. To let the router get the correct position (NMEA coordinates) put the antenna outside (in a place where the GNSS system is visible).''<br>
'''''Note:''' If the antenna is not connected, connection with WiFi/Bluetooth network/GNSS system will be impossible. To let the router get the correct position (NMEA coordinates) put the antenna outside (in a place where the GNSS system is visible).''<br>
'''''Note:''' Make sure you don't tighten the antenna too much. The torque setting of SMA connector is 0.15 – 0.20 NM.''
    | RBMTX-Viper = SMA antenna connector placed on {{{gsm_place}}} panel is used to connect external GSM/UMTS/LTE. It must be connected to establish a connection with GSM/UMTS/LTE network. When signal strength is poor please use outdoor directional/omnidirectional or indoor antenna.
 
'''''Note:''' If the antenna is not connected, connection with GSM/UMTS/LTE network will be impossible.''
'''''Note:''' Make sure you don't tighten the antenna too much. The torque setting of SMA connector is 0.15 – 0.20 NM.''
 
===WiFi antenna connector===
Router is equipped with WiFi SMA male connector placed on {{{wifi_place}}} panel and it is used to connect external WiFi antenna.
 
'''''Note:''' If the antenna is not connected, connection with WiFi network will be impossible.<br>
'''''Note:''' Make sure you don't tighten the antenna too much. The torque setting of SMA connector is 0.15 – 0.20 NM.''
'''''Note:''' Make sure you don't tighten the antenna too much. The torque setting of SMA connector is 0.15 – 0.20 NM.''
[[File:{{{model}}}_antennawifi.png|400px|frameless|class=tlt-border]]
     | RBVND-Lite = SMA connector placed on back panel of device is used to connect external GSM/LTE antenna for {{{model}}}. To establish a connection with the network an external antenna must be used. Type of antenna depends on network coverage. In good circumstances (level of received signal is high) use antenna which is included in the package. If range of network signal is low or none, an outdoor directional/omnidirectional or indoor (for instance in place where signal range is sufficient) antenna should be used.
     | RBVND-Lite = SMA connector placed on back panel of device is used to connect external GSM/LTE antenna for {{{model}}}. To establish a connection with the network an external antenna must be used. Type of antenna depends on network coverage. In good circumstances (level of received signal is high) use antenna which is included in the package. If range of network signal is low or none, an outdoor directional/omnidirectional or indoor (for instance in place where signal range is sufficient) antenna should be used.


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}}
}}
{{#switch: {{{model}}}
{{#switch: {{{model}}}
    | RB900SG = ===GNSS antenna connector===
The SMA "GNSS" input is used to connect an external GPS/Glonass antenna. To establish connection with GPS/Glonass sattelites and check the coordinates of the device, an external antenna must be used and should be located outdoors. GNSS is optionally available in RB900SG-L5 modem variant.
     | RB900L3|RBMTX-Viper = ===GPS/GNSS antenna connector===
     | RB900L3|RBMTX-Viper = ===GPS/GNSS antenna connector===


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{{#ifeq: model | RB900SG | GNSS is optionally available in RB900SG-L5 modem variant.}}
{{#ifeq: model | RB900SG | GNSS is optionally available in RB900SG-L5 modem variant.}}


[[File:{{{model}}}_antennagps.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_antennagps.png|400px|frameless|class=tlt-border]]
}}
}}
{{#switch: {{{model}}}
{{#switch: {{{model}}}
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An SMA "DIV" input is used to connect an external diversity antenna to improve reception.
An SMA "DIV" input is used to connect an external diversity antenna to improve reception.


[[File:{{{model}}}_antennadiv.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_antennadiv.png|400px|frameless|class=tlt-border]]
}}
}}


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{{#switch: {{{model}}}
{{#switch: {{{model}}}


     | RB900SG = === Front ===
     | RB900SG|RB900SG-ElpOS = === Front ===


[[File:{{{model}}}_interfacesfront.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_interfacesfront.png|400px|frameless|class=tlt-border]]


=== Back===
=== Back===


[[File:{{{model}}}_interfacesback.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_interfacesback.png|400px|frameless|class=tlt-border]]


<b>RS232/RS485 interfaces</b>
<b>RS232/RS485 interfaces</b>


The {{{model}}} {{{type}}} is equipped with RS232/RS485 interfaces on RJ45 socket. Use the jumper to switch between interfaces as described in 7.1. Setting up the modem. The connector also carries the power supply from the ITRON SL7000 or ACE6000 meter, therefore it is not necessary to use an external power supply when connected to a meter.
The {{{model}}} {{{type}}} is equipped with RS232/RS485 interfaces on RJ45 socket. Use the jumper to switch between interfaces as described in [[{{{model}}} QuickStart#Setting up the {{{type}}}|{{{model}}} QuickStart]].


[[File:{{{model}}}_interfacesrs.png|400px|border|class=tlt-border]]
{{#ifeq: {{{meter}}} | 1 |
<span style="color:red">* If you want to power the modem from the meter (e.g. ITRON SL7000 or ACE6000) you MUST disconnect the power adapter first!</span>. Then connect the modem with the meter using RJ45 cable (the modem will be powered directly from the meter).
}}
 
[[File:{{{model}}}_interfacesrs.png|400px|frameless|class=tlt-border]]


Table of RJ45 serial connector:
Table of RJ45 serial connector:
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''NOTE: To configure the modem with SIM card inside, please plug also the power adaptor.''
''NOTE: To configure the modem with SIM card inside, please plug also the power adaptor.''


[[File:RB900SG_interfacesusb.png|400px|border|class=tlt-border]]
[[File:{{{model}}}_interfacesusb.png|400px|frameless|class=tlt-border]]
     | RB900L3|RB900MC = === Front ===
     | RB900L3|RB900MC = === Front ===


[[File:RB900L3_interfacesfront.png|600px|border|class=tlt-border]]
[[File:RB900L3_interfacesfront.png|600px|frameless|class=tlt-border]]


=== Back===
=== Back===


[[File:RB900L3_interfacesback.png|400px|border|class=tlt-border]]
[[File:RB900L3_interfacesback.png|400px|frameless|class=tlt-border]]


<b>USB</b>
<b>USB</b>
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{{{model}}} {{{type}}} is equipped with a USB interface (as shown below) – miniUSB connector.
{{{model}}} {{{type}}} is equipped with a USB interface (as shown below) – miniUSB connector.


[[File:RB900L3_interfacesusb.png|400px|border|class=tlt-border]]
[[File:RB900L3_interfacesusb.png|400px|frameless|class=tlt-border]]


<b>RS232</b>
<b>RS232</b>
Linia 248: Linia 270:
{{{model}}} {{{type}}} is equipped with an RS232 interface (as shown below). The DE9 DSUB socket is connected via a voltage level translator circuit to the GSM/LTE module.
{{{model}}} {{{type}}} is equipped with an RS232 interface (as shown below). The DE9 DSUB socket is connected via a voltage level translator circuit to the GSM/LTE module.


[[File:RB900L3_interfacesrs232.png|400px|border|class=tlt-border]]
[[File:RB900L3_interfacesrs232.png|400px|frameless|class=tlt-border]]


Table of RS232 pins (DCE female connector):
Table of RS232 pins (DCE female connector):


[[File:RB900L3_interfacesrs232pinout.png|200px|border|class=tlt-border]]
[[File:RB900L3_interfacesrs232pinout.png|200px|frameless|class=tlt-border]]


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===LAN connector===
===LAN connector===


Second RJ-45 connector (marked as "LAN") is placed next to serial connector and is used for communication with PC or laptop through Ethernet interface. WWW configuration is available in the web browser (default IP address is 192.168.1.234). You can change the default address in {{{ip_address_link}}}.
Second RJ-45 connector (marked as "LAN") is placed next to serial connector and is used for communication with PC or laptop through Ethernet interface. WWW configuration is available in the web browser (default IP address is 192.168.1.234). You can change the default IP address in {{{ip_address_link}}}.<br>
<b>WARNING: Do not connect the PoE (Power-over-Ethernet) connection to the LAN port. Otherwise it may damage the device!</b>


==="R" button - factory reset===
==="R" button - factory reset===
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8-pin GPIO connector.
8-pin GPIO connector.


[[File:gpio_pinout.png|400px|border|class=tlt-border]]
[[File:gpio_pinout.png|400px|frameless|class=tlt-border]]


<nowiki>*</nowiki> - can be extended to Digital Input, range from 0 to max. 30V (option)
<nowiki>*</nowiki> - can be extended to Digital Input, range from 0 to max. 30V (option)
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     | RBMTX-Viper = ===Router serial port: RS485===
     | RBMTX-Viper = ===Router serial port: RS485===


Serial RS485 (4-pin connector marked as "RS485") is placed on back panel of router. Serial connector pinout is described in a table below:
Serial RS485 (3-pin connector marked as "RS485") is placed on back panel of router. Serial connector pinout is described in a table below:


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{{!}}-
{{!}}-
   {{!}} 1
   {{!}} 1
   {{!}}  
   {{!}} GND
{{!}}-
{{!}}-
   {{!}} 2
   {{!}} 2
   {{!}}  
   {{!}} A
{{!}}-
{{!}}-
   {{!}} 3
   {{!}} 3
   {{!}}  
   {{!}} B
{{!}}-
  {{!}} 4
  {{!}}
{{!}}}
{{!}}}


===Ethernet ports===
===Ethernet ports===


{{{model}}} has four Gigabit Ethernet ports (1 x WAN and 3 x LAN) marked as #1, #2, #3 and #4. The WAN interface is used to connect the router with external networks and the LAN interfaces are used to connect local networks. The WWW configuration is available in the web browser (default IP address is 192.168.1.234). You can change the default address as described in [[{{{model}}}_QuickSetup]].
{{{model}}} has four Gigabit Ethernet ports (1 x WAN and 3 x LAN). The WAN interface is used to connect the router with external networks and the LAN interfaces are used to connect local networks. The WWW configuration is available in the web browser (default IP address is 192.168.1.234). You can change the default address as described in [[{{{model}}}_Interfaces]].


===GPIO===
===GPIO===
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   ! Pin no.
   ! Pin no.
   ! GPIO
   ! GPIO
  ! Description
{{!}}-
{{!}}-
   {{!}} 1
   {{!}} 1
   {{!}}  
   {{!}} IN1
  {{!}} Isolated input
{{!}}-
{{!}}-
   {{!}} 2
   {{!}} 2
  {{!}} IN1 GND
   {{!}}  
   {{!}}  
{{!}}-
{{!}}-
   {{!}} 3
   {{!}} 3
   {{!}}  
   {{!}} IN2
  {{!}} Dry contact
{{!}}-
{{!}}-
   {{!}} 4
   {{!}} 4
   {{!}}  
   {{!}} IN3
  {{!}} Digital input 30V
{{!}}-
{{!}}-
   {{!}} 5
   {{!}} 5
   {{!}}  
   {{!}} AIN
  {{!}} Analog input
{{!}}-
{{!}}-
   {{!}} 6
   {{!}} 6
   {{!}}  
   {{!}} GND
  {{!}} Ground
{{!}}-
{{!}}-
   {{!}} 7
   {{!}} 7
   {{!}}  
   {{!}} OUT1
  {{!}} Open drain output
{{!}}-
{{!}}-
   {{!}} 8
   {{!}} 8
   {{!}}  
   {{!}} OUT2
  {{!}} Open drain output
{{!}}-
{{!}}-
   {{!}} 9
   {{!}} 9
   {{!}}  
   {{!}} OUT3
  {{!}} Relay output
{{!}}-
{{!}}-
   {{!}} 10
   {{!}} 10
  {{!}} OUT3 GND
   {{!}}  
   {{!}}  
{{!}}}
{{!}}}
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# It is necessary to connect the cable for machine with MDB protocol and RS232 DEX(DDCMP) connection to EVA-DTS
# It is necessary to connect the cable for machine with MDB protocol and RS232 DEX(DDCMP) connection to EVA-DTS


[[File:RBVND-Lite_MDBcable.png|600px|border|class=tlt-border]]
[[File:RBVND-Lite_MDBcable.png|600px|frameless|class=tlt-border]]


The diagram and pinout of the 20-pin connector are presented below.
The diagram and pinout of the 20-pin connector are presented below.


[[File:RBVND-Lite_MDBpinout.png|300px|border|class=tlt-border]]
[[File:RBVND-Lite_MDBpinout.png|300px|frameless|class=tlt-border]]


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Aktualna wersja na dzień 10:24, 12 lut 2025

This page contains connectors description of {{{model}}} {{{type}}}.

Power supply connector


Antenna connectors

Interfaces

[[Category:{{{model}}} User Manual]]