ADF Web HD67D35-B2 User manual

Industrial Electronic Devices
ADFweb.com S.r.l.
User Manual
LoRaWAN /
IEC61850
Server
Document code: MN67D35_ENG Revision 1. Page 1 of 3
User Manual
Revision 1.
English
LoRaWAN / IEC61850 Server - Converter
(Order Code: HD67D35-B2-868MHz)
For Website information:
www.adfweb.com?Product=HD67D35-B2
For Price information:
www.adfweb.com?Price=HD67D35-B2-868MHz
Benefits and Main Feat res:
Very easy to configure
Power Supply 18…35V DC and 8…24 V AC
Temperature range: -4 °C/+85°C (-4 °F/+185°F)
For others LoRaWAN products, see also the following links:
Converter LoRaWAN to
www.adfweb.com?Product=HD67D 1 (Modb s Master)
www.adfweb.com?Product=HD67D 2 (Modb s Slave)
www.adfweb.com?Product=HD67D 3 (Modb s TCP Master)
www.adfweb.com?Product=HD67D 4 (Modb s TCP Slave)
www.adfweb.com?Product=HD67D 5 (Serial)
www.adfweb.com?Product=HD67D15 (M-B s)
www.adfweb.com?Product=HD67D16 (BACnet Master)
www.adfweb.com?Product=HD67D17 (BACnet Slave)
www.adfweb.com?Product=HD67D18 (Ethernet)
www.adfweb.com?Product=HD67D19 (CAN)
www.adfweb.com?Product=HD67D2 (CANopen)
www.adfweb.com?Product=HD67D21 (DeviceNet Master)
www.adfweb.com?Product=HD67D22 (DeviceNet Slave)
www.adfweb.com?Product=HD67D23 (DMX)
www.adfweb.com?Product=HD67D24 (EtherNet/IP Master)
www.adfweb.com?Product=HD67D25 (EtherNet/IP Slave)
www.adfweb.com?Product=HD67D26 (J1939)
www.adfweb.com?Product=HD67D27 (KNX)
www.adfweb.com?Product=HD67D28 (NMEA 0183)
www.adfweb.com?Product=HD67D29 (NMEA 2000)
www.adfweb.com?Product=HD67D3 (PROFIBUS Master)
www.adfweb.com?Product=HD67D31 (PROFIBUS Slave)
www.adfweb.com?Product=HD67D32 (PROFINET Master)
www.adfweb.com?Product=HD67D33 (PROFINET Slave)
www.adfweb.com?Product=HD67D34 (IEC61850 Client)
www.adfweb.com?Product=HD67D36 (MQTT)
www.adfweb.com?Product=HD67D37 (OPC UA Client)
www.adfweb.com?Product=HD67D38 (OPC UA Server)
www.adfweb.com?Product=HD67D39 (S7comm)
www.adfweb.com?Product=HD67D4 (SNMP Manager)
www.adfweb.com?Product=HD67D41 (SNMP Agent)
User Manual

Industrial Electronic Devices
ADFweb.com S.r.l.
User Manual
LoRaWAN /
IEC61850
Server
Document code: MN67D35_ENG Revision 1. Page 2 of 3
INDEX:
Page
INDEX 2
UPDATED DOCUMENTATION 2
REVISION LIST 2
WARNING 2
TRADEMARKS 2
SECURITY ALERT 3
EXAMPLE OF CONNECTION 4
CONNECTION SCHEME 5
CHARACTERISTICS 6
CONFIGURATION 6
POWER SUPPLY 7
FUNCTION MODES 8
LEDS 9
LORAWAN 1
ETHERNET 11
USE OF COMPOSITOR SW67D35 12
NEW CONFIGURATION / OPEN CONFIGURATION 13
SOFTWARE OPTIONS 14
SET COMMUNICATION 16
LORAWAN ACCESS 2
IEC 6185 ACCESS 22
TLS KNOWN CERTIFICATE 23
UPDATE DEVICE 24
LORAWAN PAYLOAD 26
MECHANICAL DIMENSIONS 27
ORDERING INFORMATIONS 28
ACCESSORIES 28
DISCLAIMER 29
OTHER REGULATIONS AND STANDARDS 29
WARRANTIES AND TECHNICAL SUPPORT 3
RETURN POLICY 3
UPDATED DOCUMENTATION:
Dear customer, we thank you for your attention and we remind you that
you need to check that the following document is:
Updated
Related to the product you own
To obtain the most recently updated document, note the “document code”
that appears at the top right-hand corner of each page of this document.
With this “Document Code” go to web page www.adfweb.com/download/
and search for the corresponding code on the page. Click on the proper
“Document Code” and download the updates.
REVISION LIST:
WARNING:
ADFweb.com reserves the right to change information in this manual about
our product without warning.
ADFweb.com is not responsible for any error this manual may contain.
TRADEMARKS:
All trademarks mentioned in this document belong to their respective
owners.
Revision
Date A thor Chapter
Description
1. 4/12/2 2
Ff All First release version

Industrial Electronic Devices
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Document code: MN67D35_ENG Revision 1. Page 3 of 3
SECURITY ALERT:
G
ENERAL
I
NFORMATION
To ensure safe operation, the device must be operated according to the instructions in the manual. When using the device, legal and
safety regulation are required for each individual application. The same applies also when using accessories.
I
NTENDED
U
SE
Machines and systems must be designed so the faulty conditions do not lead to a dangerous situation for the operator (i.e.
independent limit switches, mechanical interlocks, etc.).
Q
UALIFIED
P
ERSONNEL
The device can be used only by qualified personnel, strictly in accordance with the specifications.
Qualified personnel are persons who are familiar with the installation, assembly, commissioning and operation of this equipment and
who have appropriate qualifications for their job.
R
ESIDUAL
R
ISKS
The device is state-of-the-art and is safe. The instruments can represent a potential hazard if they are inappropriately installed and
operated by untrained personnel. These instructions refer to residual risks with the following symbol:
This symbol indicates that non-observance of the safety instructions is a danger for people that could lead to serious injury or
death and / or the possibility of damage.
CE
CONFORMITY
The declaration is made by our company. You can send an email to [email protected]om or give us a call if you need it.

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EXAMPLE OF CONNECTION:

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CONNECTION SCHEME:
Figure 1: Connection scheme for HD67D35- 2-xxxMHz

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CHARACTERISTICS:
The HD67D35-B2 is a LoRaWAN / IEC6185 Server Converter.
It allows the following characteristics:
Electrical isolation between IEC6185 and Power Supply;
Mountable on 35mm Rail DIN;
Wide power supply input range: 12…35V DC and 8…24V AC;
Wide temperature range: -4 °C / 85°C [-4 °F / +185°F].
CONFIGURATION:
You need Compositor SW67D35 software on your PC in order to perform the following:
Define the parameter of IEC6185 line;
Define the parameter of LoRaWAN line;
Define the list of LoRaWAN messages in uplink and downlink to the LoRaWAN gateway;
Define the list of IEC6185 variables available for the Client;
Update the device.

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POWER SUPPLY:
The devices can be powered at 8…24V AC and 12…35V DC. For more details see the two tables below.
VAC
VDC
Vmin Vmax Vmin Vmax
8V 24V 12V 35V
Consumption at 24V DC:
Device Cons mption [W/VA]
HD67D35-B2-xxxMHz 3.5
H
D67D3
5
-
B2
-
xxxMHz
Ca tion: Not reverse the polarity power

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FUNCTION MODES:
The device has got two functions mode depending of the position of the ‘Dip1 of Dip-Switch A’:
The first, with ‘Dip1 of Dip-Switch A’ at “OFF” position, is used for the normal working of the device.
The second, with ‘Dip1 of Dip-Switch A’ at “ON” position, is used for upload the Project and/or Firmware.
For the operations to follow for the updating, see ‘UPDATE DEVICE’ section.
According to the functioning mode, the LEDs will have specifics functions, see ‘LEDS’ section.

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LEDS:
The device has got four LEDs that are used to give information of the functioning status.
The various meanings of the LEDs are described in the table below.
LED Normal Mode Boot Mode
1: Device State (green) Blinks slowly (~1Hz) Blinks q ickly: Boot state
Blinks very slowly (~0.5Hz): update in progress
2: LoRaWAN communication
(yellow) Blinks when LoRaWAN data is received Blinks q ickly: Boot state
Blinks very slowly (~0.5Hz): update in progress
3: IEC6185 communication
(yellow) Blinks when a IEC6185 request is received Blinks q ickly: Boot state
Blinks very slowly (~0.5Hz): update in progress
4: Error state (yellow) ON: An error in the communication busses occurs
OFF: No errors are present
Blinks q ickly: Boot state
Blinks very slowly (~0.5Hz): update in progress

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LORAWAN:
The LoRaWAN® specification is a Low Power, Wide Area (LPWA) networking protocol
designed to wirelessly connect battery operated ‘things’ to the internet in regional, national
or global networks, and targets key Internet of Things (IoT) requirements such as bi-
directional communication, end-to-end security, mobility and localization services.
LoRaWAN® network architecture is deployed in a star-of-stars topology in which gateways
relay messages between end-devices and a central network server.
The wireless communication takes advantage of the Long Range characteristics of the LoRa
physical layer, allowing a single-hop link between the end-device and one or many
gateways. All modes are capable of bi-directional communication, and there is support for
multicast addressing groups to make efficient use of spectrum during tasks such as
Firmware Over-The-Air (FOTA) upgrades or other mass distribution messages.
Converters from HD67D35 serie act as end-devices and they can communicate with one or
more LoRwaWAN Gateways.
The converters support all the standard datarates and they work both on public and private
networks.

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ETHERNET:
The Ethernet port is used for programming the device and for IEC6185 communication.
The Ethernet connection must be made using Connector2 of HD67D35-B2 with at least a Category 5E cable. The maximum length of the
cable should not exceed 1 m. The cable has to conform to the T568 norms relative to connections in cat.5 up to 1 Mbps. To connect the
device to an Hub/Switch is recommended the use of a straight cable, to connect the device to a PC is recommended the use of a cross cable.

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USE OF COMPOSITOR SW67D35:
To configure the Converter, use the available software that runs with Windows called SW67D35. It is downloadable on the site
www.adfweb.com and its operation is described in this document. The software works with MS Windows (XP, Vista, Seven, 8, 1 ; 32/64bit).
When launching the SW67D35, the window below appears (Fig. 2).
Note:
It is necessary to have installed .Net Framework 4.
Figure 2: Main window for SW67D
3
5

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NEW CONFIGURATION / OPEN CONFIGURATION:
The “New Config ration” button creates the folder which contains the entire device’s configuration.
A device’s configuration can also be imported or exported:
To clone the configurations of a Programmable “LoRaWAN / IEC6185 Server -
Converter” in order to configure another device in the same manner, it is necessary to
maintain the folder and all its contents;
To clone a project in order to obtain a different version of the project, it is sufficient to
duplicate the project folder with another name and open the new folder with the
button “Open Config ration”.

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SOFTWARE OPTIONS:
By pressing the “Settings” ( ) button there is the possibility to change the language of the software and check the updatings for the
compositor.
In the section “Language” it is possible to change the language of the
software.
In the section “Connection Options”, it is possible to check if there are some
updatings of the software compositor in ADFweb.com website.
Checking the option “Check Software Update at Start of Program”, the
SW67D35 check automatically if there are updatings when it is launched.

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In the section “Software Settings”, it is possible to enable/disable some
keyboard’s commands for an easier navigation inside the tables contained in
the different sections of the software.

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SET COMMUNICATION:
This section define the fundamental communication parameters of two buses,
LoRaWAN and IEC6158 Server.
By Pressing the “Set Comm nication” button from the main window for SW67D35
(Fig. 2) the window “Set Communication” appears (Fig. 3).
The window is divided in different sections in order to define the different parameters
of the converter:
LoRaWAN
IEC6185 Server
TLS (Transport Layer Security) Server
NTP (Network Time Protocol)
Figure
3
a
:
“Set Communication” window

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L
O
R
A
WAN:
This section is used to define the general parameters of LoRaWAN. The means of the fields are:
In the field “RF Band” the wireless band used for LoRaWAN communication
is defined;
In the field “Network Type” the type of LoRaWAN network is defined;
If the field “Adaptive Data Rate” is checked, the converter will enable the
ADR functionalities to select the best data rate to be used in relation to the
environmental conditions;
In the field “Data Rate” the data rate for LoRaWAN communication is
defined;
In the field “Transmission Type” the type of LoRaWAN communication is
defined;
In the field “Max Payload Size” the maximum dimension of the LoRaWAN
messages is defined (fixed in relation to the data rate selected);
In the field “Activation Method” the method used to join into a LoRaWAN
network is defined;
In the field “Device Address” the device identifier (DevEUI) is defined (only
for ABP method);
In the field “Application Identifier” the application identifier (AppEUI) is
defined (only for ABP method);
In the field “Network Session Key” the key used for the communication
with the LoRaWAN gateway (NwkSKey) is defined (only for ABP method);
In the field “Application Session Key” the key for encryption and
decryption of the payload (AppSKey) is defined (only for ABP method);
If OTAA method is selected, in the field “Application Key” the secret key for the dynamic activation of the converter in the LoRAWAN
network is defined.
Figure 3b: “Set Communication
LoRaWAN”
window

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IEC61850
S
ERVER
:
This section is used to define the main parameters of IEC6185 line. The means of the
fields are:
In the fields “IP Address” the IP address for IEC6185 side of the converter is
defined;
In the fields “S bNet Mask” the SubNet Mask for IEC6185 side of the
converter is defined;
In the fields “Gateway” the default gateway of the net is defined. This feature
can be enabled or disabled pressing the Check Box field. This feature is used for
going out of the net;
In the field “Port” the port used for IEC6185 communication is defined;
If the field “Password” the password used for accessing to IEC 6185
variables is defined.
TLS:
This section is used to define the main parameters of TLS line. The means of the fields
are:
If the field “Enable TLS” is checked, the TLS protocol for secure connection is
enabled;
In the field “Key” the key for the authentication is defined;
In the field “Key Password” the password for decrypting the key is defined;
In the field “Server Certificate” the certificate for the server is defined;
In the field “Root Certificate” the root of the server is defined;
If the field “Enable Only Known Certificates” is checked, the converter will
accept just connection from known Clients (defined in the section “TLS Known
Certificate”).
Figure 3c: “Set Communication
IEC61850
Server” window
Figure 3d: “Set Communication
TLS Server”
window

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NTP:
This section is used to define the main parameters of NTP line. The means of the fields
are:
In the field “Server URL” the URL or the IP Address of the NTP Server is
defined;
In the field “Poll Time (seconds)” the polling time for the time synchronization
is defined. Figure 3e: “Set Communication
NTP” window

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Figure 4a: “LoRaWAN Access
LoRaWAN Uplink” window
LORAWAN ACCESS:
By Pressing the “LoRaWAN Access” button from the main window for SW67D35 (Fig. 2) the window “Set LoRaWAN Access” appears (Fig.
4).
This section is used to define the LoRaWAN messages where the converter will place the data read from IEC6185 (Uplink) and the LoRaWAN
messages that the converter will take (Downlink) for writing the data to IEC6185 .
L
O
R
A
WAN
U
PLINK
The means of the fields are:
If the field “Enable” is checked, the LoRaWAN message is enabled;
In the field “Start Byte” the starting byte of the internal memory array where taking the data is defined;
In the field “N m. Byte” the number of consecutive bytes to take from the internal array starting from “Start Byte” is defined;
If the field “On Change” is checked, the LoRaWAN message is sent only when the data from IEC6185 change;
If the field “On CMD” is checked, the LoRaWAN message is sent when a IEC6185 request is received;
If the field “On Timer” is checked, the LoRaWAN message is sent cyclically with the delay defined in “Time (s)” field;
In the field “Mnemonic” a description of the message is defined.
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