Satel ETHM-A Manual

Satel ETHM-A Manual

Universal monitoring module
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ETHM-A
Universal monitoring module
EN
Firmware version 1.00
ethm-a_en 11/21
SATEL sp. z o.o. • ul. Budowlanych 66 • 80-298 Gdańsk • POLAND
tel. +48 58 320 94 00
www.satel.eu

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Summary of Contents for Satel ETHM-A

  • Page 1 ETHM-A Universal monitoring module Firmware version 1.00 ethm-a_en 11/21 SATEL sp. z o.o. • ul. Budowlanych 66 • 80-298 Gdańsk • POLAND tel. +48 58 320 94 00 www.satel.eu...
  • Page 2 The rating plate of the device is located on the enclosure base. FreeRTOS is used in this device (www.freertos.org). SATEL aims to continually improve the quality of its products, which may result in changes in their technical specifications and software. The current information on the introduced modifications is available on our website.
  • Page 3: Table Of Contents

    Establishing communication with the module ................. 17 6.2.1 Local connection ..........................17 6.2.2 Remote connection: SATEL server ....................17 6.2.3 Remote connection: direct connection in the local network .............. 18 6.2.4 Remote connection: direct connection in the public network ............18 Project .............................
  • Page 4 ETHM-A SATEL 6.13 Remote update ........................36 6.14 IoT ............................37 6.15 Users ............................40 6.16 Events ............................. 40 7. GX Control application ..................... 41 8. Module firmware update ....................43 Local update ........................... 43 Remote update ........................44 9. Restoring the factory settings ..................44 10.
  • Page 5: Introduction

    SATEL ETHM-A 1. Introduction This manual describes the ETHM-A module and how it should be installed as well as configured using the GX Soft program. 2. Features Communication  Encrypted communication via Ethernet.  Control of the Ethernet cable presence.
  • Page 6  Free GX Soft program for local (USB port) and remote (Ethernet) configuring of the module.  Simple and easy establishing remote communication between GX Soft program and the module thanks to SATEL's connection setup service. Firmware update  Local firmware update by using a computer connected to USB port.
  • Page 7: Typical Module Applications

    SATEL ETHM-A 3. Typical module applications The extended functionality of ETHM-A module enables it to be used for a variety of applications. This section presents typical examples of its application. Some of them may be combined with one other. Supervision / control of devices Fig.
  • Page 8: Work Within The Internet Of Things (Iot)

    In response, the module can receive commands to bypass / unbypass the inputs as well as to activate / deactivate the outputs of the module. 4. Description of the module Fig. 4. ETHM-A module. APS connector for a SATEL power supply unit (e.g. APS-412).
  • Page 9 – programmable OC type outputs (disconnected from common ground / shorted O1...O4 to common ground). – terminals for future use (RS-485). A RS B – input for supervision of AC voltage presence or for AC voltage frequency measurement. Fig. 5. Dimensions of ETHM-A module enclosure.
  • Page 10: Installation

    2. Connect the devices which are to be controlled by the module to the output terminals. 3. If the module is to be powered from the SATEL APS-15 or APS-30 power supply unit, you can connect to the AC input terminal the wire from the secondary winding of the transformer which supplies the AC voltage to the power supply unit (fig.
  • Page 11: Connecting The Digital Temperature Sensors (1-Wire)

    Connecting the power supply and starting the module The module may be powered from the control panel, from an expander with power supply, or from a power supply unit. SATEL offers power supplies (e.g. APS-412), which can be connected to the APS connector on the electronics board.
  • Page 12: Configuring

    6. Configuring You can configure the module by using a computer with GX Soft program installed. Download the GX Soft program from www.satel.eu. Required program version: 2.0 (or newer). Communication between the program and the module is encrypted. You can program the module locally or remotely.
  • Page 13 SATEL ETHM-A Buttons click to update the GX Soft program. The button is displayed when new program version is available. click to add a new project with module factory default settings. click to import a project with module settings. click, if the projects are to be sorted by name (the arrow next to the button indicates whether the projects are displayed from A to Z or from Z to A).
  • Page 14: Menu Bar In The Gx Soft Program

    USB – local connection using the module USB port, SRV – remote connection via Ethernet through the SATEL server, TCP – remote connection made directly to the module via Ethernet (LAN / WAN).
  • Page 15: Side Menu

     if the module is to be programmed from a computer connected to the module USB port, click “USB”,  if the module is to be programmed through SATEL server via Ethernet, click “SATEL SERVER”,  if the module is to be programmed via Ethernet, directly from a computer in the same local network as the module, click “LAN”,...
  • Page 16 SATEL SERVER MAC – module hardware address. ID – individual identification number for the purposes of communication through the SATEL server. The number is assigned automatically by the SATEL server during the first connection to the server (before the number is assigned, “F” characters are displayed).
  • Page 17 SATEL ETHM-A Fig. 12. “Connection” window: settings for establishing connection through SATEL server. Fig. 13. “Connection” window: connection settings in the local network.
  • Page 18: Settings" Window

    ETHM-A SATEL You can select a module from the list of modules found by the GX Soft program in the local network or manually enter the settings required to establish connection. Only the modules in which the “Direct connection” option is enabled are available on the modules list (see “Communication”...
  • Page 19: Establishing Communication With The Module

    1. In the startup window, open the file with module data (a file with default settings or a previously saved file). 2. In the “Connection” window, “SATEL SERVER” tab, configure the settings required to establish connection through the SATEL server (see ““Connection” window” p. 13).
  • Page 20: Remote Connection: Direct Connection In The Local Network

    Firmware version – module firmware version: number and date. MAC – module hardware address. ID – individual identification number of the module for the purposes of communication through the SATEL server (assigned automatically by the SATEL server). Click to view the number.
  • Page 21: Hardware

    SATEL ETHM-A server. You can read the QR code by using a mobile device or export to PNG file and transmit to the users. The QR code facilitates configuring the GX Control application settings. Factory settings – click to restore module factory settings. A message box will be displayed in which you must confirm your intention to restore the factory settings of the module.
  • Page 22 ETHM-A SATEL NONE – outgoing mail is not encrypted. Subject – subject of the e-mail message. It will be inserted in each e-mail message to be sent. Sender e-mail address – e-mail address which will be inserted in the outgoing e-mail message as the sender address.
  • Page 23: Network

    SATEL ETHM-A 6.4.2 Network Fig. 18. “Network” tab. Obtain IP address automatically (DHCP) – select this option if module IP address, subnet mask and gateway are to be downloaded automatically from the DHCP server. Use the following IP address – select this option if you want module IP address, subnet mask and gateway to be entered manually.
  • Page 24: Settings

    ETHM-A SATEL Fig. 19. “Inputs” tab. 6.5.2 Settings – click to show the table options. The options enable you to hide / show the selected columns in the table and to fit the columns to its content or to the width of the window.
  • Page 25: Bypasses

    SATEL ETHM-A  the NO type digital input must be again disconnected from the ground so that the module can register input restore (end of violation),  the analog input value must remain above the L threshold (plus tolerance) or below the H threshold (minus tolerance) so that the module can register input restore (end of violation).
  • Page 26 ETHM-A SATEL Fig. 20. Analog input operation. 0 – normal status (no violation), 1 – threshold exceeded (violation), L-T – lower threshold minus tolerance, L – lower threshold, L+T – lower threshold plus tolerance, H-T – upper threshold minus tolerance, H – upper threshold, H+T –...
  • Page 27: 1-Wire Sensors

    SATEL ETHM-A 1-Wire sensors The 1-Wire bus can handle up to 8 digital temperature sensors. The way the 1-Wire sensors are being handled by the module is much the same as in the case of sensors connected to the analog inputs (see Fig. 20).
  • Page 28: Outputs

    ETHM-A SATEL H threshold – the upper temperature threshold for the sensor. If the temperature rises above the defined value (plus tolerance), the module will register a threshold exceeding. You can program temperatures ranging from -55°C to 125°C. If no value is defined, the temperature threshold will not be monitored.
  • Page 29: Triggering

    SATEL ETHM-A Fig. 23. “Outputs” tab. Options Pulsed – if this option is enabled, the output is pulsating when it is active. The option does not apply to relay outputs. Problem with transmission to station 1 / 2 – if this option is enabled, the output will be active in the case of any problem with transmitting events to the monitoring station 1 / 2.
  • Page 30: Communication

    Module – type and version of the module firmware. MAC – module hardware address. ID – individual identification number of the module for the purposes of communication through the SATEL server (assigned automatically by the SATEL server). Click to view the number.
  • Page 31: Satel Server

    Connect to GX Control – if this option is enabled, it is possible to establish connection between the GX Control application and the module through the SATEL server. Push notifications – if this option is enabled, the GX Control application can provide information about events by means of push notifications.
  • Page 32 ETHM-A SATEL Fig. 25. “Station simulation” tab. Station 1 (ST1) / Station 2 (ST2) Reporting format – the format in which event codes are sent to the monitoring station. The following formats are available: SIA, CID, AdemcoExpress, Sil.Knight/Ademco slow, Radionics 1400Hz, Radionics 1400Hz with parity.
  • Page 33: Reporting

    SATEL ETHM-A [control panel] – the parameters are configured automatically, as required by the selected alarm control panel. Kiss-off time – duration of the signal generated by the module to confirm receipt of the event from the control panel. The value entered must be suitable for the reporting format selected in the control panel.
  • Page 34 You can enter a value from 0 to 65535. Advanced SATEL station key – a string of characters for encrypting the sent data. You can enter up to 12 alphanumeric characters (digits, letters and special characters). If you want to enter 24 hexadecimal characters (digits or letters from A to F), enable the “hex”...
  • Page 35 SATEL ETHM-A SIA-IP key – a string of characters for encrypting data sent in the SIA-IP format. You can enter up to 16 alphanumeric characters (digits, letters and special characters). If you want to enter 32 hexadecimal characters (digits or letters from A to F), enable the “hex” option.
  • Page 36: Module Events Distribution

    ETHM-A SATEL Number of retries – the number of unsuccessful retries to send the event code to the station server selected for reporting, after which the module will make an attempt to send the event to the other server. Send test transmission to both servers – if this option is enabled, the test transmission will be sent to both monitoring station servers.
  • Page 37: Event Converter

    SATEL ETHM-A E-mail/Push message – the text of the e-mail / push message. The message may contain up to 32 characters. For the analog input and 1-Wire temperature sensor, the messaging parameters are to be defined separately for each of the defined thresholds.
  • Page 38: Remote Update

    The message may be composed of up to 32 characters. 6.13 Remote update Remote update of the module firmware is made possible by the “UpServ” update server, which is included in the SATEL product portfolio.
  • Page 39: Iot

    SATEL ETHM-A Fig. 29. “Remote update” tab. UpServ Update server – address of the “UpServ” update server. You can enter the IP address or domain name. Port – number of the TCP port used for communication with the “UpServ” update server.
  • Page 40 ETHM-A SATEL Fig. 30. “IoT” tab. IoT – if this option is enabled, the module can communicate with the IoT devices. [Protocol] – protocol used for communication. You can select: MQTT, JSON or JSON/HTTP. Format of data sent by means of each protocol – see “Appendix” p. 44.
  • Page 41 SATEL ETHM-A HTTP header Define the information that will be contained in the header of the frame sent by the module using the “JSON/HTTP” communication protocol. You can enter a text of your choice. The text displayed in the “HTTP header” field is only an example and can be freely modified.
  • Page 42: Users

    ETHM-A SATEL Supply voltage – if this option is enabled, the frame will contain information about the module supply voltage. MAC – if this option is enabled, the frame will contain the module hardware address. Events – if this option is enabled, the frame will contain the index of the event last saved to module memory (EV) and the maximum event index (MEV).
  • Page 43: Gx Control Application

    – descending) will be displayed in the column header. method ( 7. GX Control application The GX Control is a mobile application that allows you to remotely operate the ETHM-A module i.e.:  check the status of inputs, 1-Wire sensors and outputs,...
  • Page 44 Communication between the application and the module is encrypted. Password required to establish connection between the GX Control and the ETHM-A module must be programmed in the user list (see “Users” p. 40). You can download the application from the internet stores: “Google play” (Android system devices) or “App Store”...
  • Page 45: Module Firmware Update

     enter the module ID number (the individual identification number for the purpose of communication via the SATEL server – see “Project” tab p. 18),  enter the user password (the password programmed in the module – see “Users” p. 40), ...
  • Page 46: Remote Update

    ETHM-A SATEL Remote update 1. Program the parameters in the module to enable the remote update of the module firmware (see “Remote update” p. 36). 2. Initiate the update from the GX Soft program (see p. 11). 9. Restoring the factory settings 1.
  • Page 47 – index of the event last saved to module memory. – maximum index for events saved to module memory (circular buffer). JSON/HTTP protocol POST http://192.168.7.230:502/write HTTP/1.1 User-Agent: ETHM-A 1.00.000 Content-Type: application/json {"MAC":"868325024202972", "I1":11841, "BI2":1, "I3":0, "I4":0, "I5":0, "I6":0, "I7":0, "I8":0, "AC":0, "S1":0, "BS2":1, "S3":0, "S4":0, "S5":0, "S6":0, "S7":0, "S8":0, "O1":1, "O2":0, "O3":1,...
  • Page 48: Format Of The Module Control Frame

    ETHM-A SATEL {"MAC":"868325024202972", "S1_avg":27250, "S1_min":27250, "S1_max":27250, "S2_avg":25000, "S2_min":25000, "S2_max":25000, "S3_avg":26250, "S3_min":26250, "S3_max":26250, "S4_avg":26000, "S4_min":26000, "S4_max":26000, "S5_avg":25250, "S5_min":25250, "S5_max":25250, "S6_avg":25970, "S6_min":26000, "S6_max":26000, "S7_avg":26500, "S7_min":26500, "S7_max":26500, "S8_avg":26250, "S8_min":26250, "S8_max":26250} – module hardware address. I1_avg…I8_avg – average value from measurements registered on the input during the measurement cycle (scaled and multiplied by 1000).
  • Page 49: Format Of The Event Log Reading Frame

    SATEL ETHM-A “BS1”:0 – unbypass sensor 1 on 1-Wire bus, “BAC”:1 – bypass AC input. 11.1.3 Format of the event log reading frame You can use the JSON and MQTT protocols to send to the module a frame with control command that will start the reading of events saved to module memory.

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