inveo Nano Relay Output PoE, Nano Relay Output User Manual

User manual
The Relay Output Module
Nano Relay Output PoE
Nano Relay Output
Soft >= 1.21
INVEO s.c.
ul. Rzemieślnicza 21
tel: +48 33 444 65 87
www.inveo.com.pl info@inveo.com.pl
Dear Customer!
Thank you very much for choosing our product. Before its use, please read these instructions carefully. Here you find the most appropriate ways of dealing with this device, the basic principles of safety and maintenance. Please, also keep the user manual so that you can read it during later use.
Attention!
The manufacturer is not liable for any damage caused by improper use of the device which differ from its intended purpose, or improper handling, as well as a fault of driver resulting from improper use.
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Contents:
1 PRELIMINARY INFORMATION...................................................................................................................4
2 APPLICATION OF THE DEVICE..................................................................................................................5
3 WARRANTY AND LIABILITY OF THE MANUFACTURER...................................................................5
4 SAFETY GUIDELINES.....................................................................................................................................6
4.1 STORAGE, WORK AND TRANSPORT CONDITIONS.........................................................................................................6
4.2 INSTALLATION AND USE OF THE DEVICE..................................................................................................................6
4.3 DECOMMISSIONING OF THE DEVICE.........................................................................................................................6
5 CONSTRUCTION OF THE DEVICE..............................................................................................................7
5.1 NANO RELAY OUTPUT POE.................................................................................................................................7
5.2 NANO RELAY OUTPUT........................................................................................................................................9
6 CONFIGURATION OF THE DEVICE.........................................................................................................11
6.1 CHANGING THE DEVICE'S IP ADDRESS BY DISCOVERER APPLICATION.........................................................................11
6.2 CHANGING THE PC'S SUBNET ADDRESS, FOR THE DEVICE CONFIGURATION..................................................................12
6.3 SECURITY SETTINGS AND ADMINISTRATION............................................................................................................14
7 THE DEVICE FUNCTIONS...........................................................................................................................15
7.1 OUTPUT CONTROL.............................................................................................................................................15
7.2 CONFIGURATION OF THE OUTPUT CHANNEL............................................................................................................15
7.3 DESTINATION CLIENT (M2M)...........................................................................................................................17
7.4 SNMP CONFIGURATION....................................................................................................................................21
7.5 WINDOWS COMMAND LINE SOFTWARE..................................................................................................................22
7.6 LINUX CONTROL PROGRAM.................................................................................................................................22
7.7 MODBUS TCP.................................................................................................................................................23
7.8 COMMUNICATION VIA THE MQTT INVEO PROTOCOL.............................................................................................24
7.9 CONTROL VIA HTTP PROTOCOL.........................................................................................................................25
7.10 DESCRIPTION OF THE COMMUNICATION TCP/UDP PROTOCOL...............................................................................27
8 COMMUNICATION WITH THE MODULE FROM THE EXTERNAL NETWORK...........................28
9 CHECKING THE IP ADDRESS.....................................................................................................................28
10 DHCP................................................................................................................................................................28
11 RESTORING FACTORY DEFAULTS........................................................................................................29
12 FIRMWARE UPDATE..................................................................................................................................29
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1 Preliminary information
Before starting work with the device, read The User manual and follow the
instructions contained therein!
Description of visual symbols used in this user manual:
This symbol is responsible for reviewing the appropriate place in the user instructions, warnings and important information. Failure to follow warnings could cause injury or damage to the device
Important information and guidelines
Following this guidelines makes the use of the device easier
Attention: The screenshots in this manual can be dissimilar from actual images at the time of the device purchase. Due to continuous development of the devices software, some of the functions may differ from these in the manual. The manufacturer claims no responsibility for any undesirable effects (misunderstanding) caused by changes of the software.
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2 Application of the device
The Nano Relay Output device is used to control one electrical circuit using relay. The relay can be controlled using www website, network protocols (HTTP GET, Modbus TCP, SNMP, MQTT) TCP frame or software supplied by manufacturer.
3 Warranty and liability of the manufacturer
The manufacturer provides a 2-year warranty on the device. The manufacturer also provides post-warranty service for 10 years from the date of the introducing the device on the market. The warranty covers all defects in material and workmanship. The manufacturer undertakes to comply with the contract of guarantee, if the following conditions are met:
all repairs, alterations, extensions and device calibrations are performed by the
manufacturer or authorized service,
supply network installation meets applicable standards in this regard, the device is operated in accordance with the recommendations outlined in this
manual,
the device is used as intended.
The manufacturer assumes no responsibility for consequences resulting from improper installation, improper use of the device, not following this manual and the repairs of the device by individuals without permission.
This device doesn’t contain serviceable parts.
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4 Safety guidelines
The device has been designed and built using modern electronic components, according to the latest trends in the global electronics. In particular, much emphasis was placed on ensuring optimum safety and reliability of control. The device has a housing with a high­quality plastic.
4.1 Storage, work and transport conditions
The device has to be stored in enclosed rooms which are free of caustic vapors and substances and also meet the requirements:
surrounding temperature from -30°C to +60°C, humidity from 25 to 90%, atmospheric pressure from 700 to 1060hPa.
The device working conditions:
surrounding temperature from -10°C to +55°C, relative humidity from 30% to 75%, atmospheric pressure from 700 to 1060hPa.
Recommended transport conditions:
surrounding temperature from -40°C to +85°C, relative humidity from 5% to 95%, atmospheric pressure from 700 to 1060hPa.
4.2 Installation and use of the device
The device should be used following the guidelines shown in next part of the user manual.
4.3 Decommissioning of the device
When it becomes necessary to recycle the device (for instance, to decommission the device from service), please contact the manufacturer or its representative, who are obliged to respond, appropriately, i.e. collecting the device from the user. You can also ask the companies involved in recycling of electrical or computer equipment. Under no circumstances should you place the device along with other waste material.
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5 Construction of the device
5.1 Nano Relay Output PoE
Technical data:
Power supply::
PoE: 33-57V POE IEEE 802.3af
DC: 10-24VDC (screw terminals 3,5mm)
Power consumption: max 1,5W
Outputs:
1 output: Output type: relay NO
Max current: 1A @ 30VDC Engage time: 10ms, Disengage time: 5ms,
Communication:
1 port Ethernet: 10Mbps
PoE IEEE 802.3af
Housing:
IP Code: 30
Dimensions:
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General features:
The device has a 7-segment display signaling the current input status (ON or OFF).
There are several ways to communicate with the module:
using built in WWW server via any web browser,
Windows / Linux command line programs,
MODBUS TCP protocol,
SNMP protocol,
HTTP protocol,
MQTT Inveo protocol,
User application – TCP protocol available for user.
Description of the module connectors:
LAN – LAN connection and PoE IEEE 802.3af power supply,
RESET – switch used to enabling DHCP service, checking the current IP address
and restoring the module to the factory settings.
OUTPUT – relay connector NO,
POWER – power connector. An additional power connector used in the event of
a PoE power failure. Supply voltage 10-24VDC.
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5.2 Nano Relay Output
Technical data:
Power supply:
The module is adapted to 12-24VDC power supply.
Power is supplied through the PoE adapter.
Outputs:
1 output: Output type: relay NO
Max current: 1A @ 30VDC Engage time: 10ms, Disengage time: 5ms,
Communication:
1 port Ethernet: 10Mbps
passive PoE 12-24VDC power supply
Housing:
IP Code: 30
Dimensions:
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