
Download the latest release from the GitHub repository and extract. In the server folder, run npm install, remove node-snap-seven if needed, then npm start to launch the mascara dashboard.
Install Füxa on a Raspberry Pi using npm, after confirming npm and node are installed. Access the dashboard and editor from your network at the Pi's IP:1881.
Install FUXA SCADA in docker using a docker-ready virtual lab, pull the image, and run it on port 1881 to access the editor via the public IP.
Learn to add a new view in the FUXA SCADA editor with the plus icon, name it, and save the project.
Clone views in the web editor by selecting the main view, clicking the three-dot menu, choosing clone, renaming the copy (view_1), then editing tag addresses and saving to launch.
Change the view size in the web editor by selecting the view, opening the three-dot menu, and adjusting the property from 1024x768 to 1920x1080, then save for the dashboard.
learn to add and link navigation menu items in Fukuzawa's editor, assign icons to open the second, clone, and main views, and fix the menu to stay visible.
Establish connectivity between FUXA SCADA and an OPC UA server using the process OPC UA simulation server, configure endpoint and security settings, and browse OPC UA tags for a dashboard.
Browse OPC UA server tags in a scada setup, add them to a dashboard, and visualize tag values by attaching counter and random tags to gauges.
Publish OPC UA server data to an MQTT broker with a JSON payload, mapping OPC UA tags to the OPC UA data topic and monitoring via an MQTT client.
Publish OPC UA server data to an MQTT broker using the row format (raw payload), giving each tag its own topic and updating values every second.
Configure the MQTT client device in the fuxa scada web interface, connect to a mosquitto broker using the IP address and port, add credentials if needed, and enable publish/subscribe.
Fuxa scada training teaches subscribing to mqtt topics and extracting tag values from json or raw payloads, using weather data such as temperature, humidity, and wind speed.
Connect your data to a Bacnet IP device using the room controller simulator, configure interface, port, and UDP 47808, and enable browsing of device tags for the dashboard.
Browse and add BACnet IP tags to a web dashboard, read and write tag values, and create a minimal SCADA dashboard to monitor temperatures.
Publish Bacnet IP data to MQTT using a unidirectional converter that reads from a Bacnet IP device and publishes a JSON payload to an MQTT broker, monitor with MQTT explorer.
Publish bacnet ip data to mqtt using a scada scatter raw payload, turning room controller readings into row format for mqtt topics like temperature indoor, outdoor, and water.
Set up modbus tcp ip device communication using the modbus slave simulator, then configure the server with 127.0.0.1 and port 502, and verify the connection.
Create and read Modbus TCP/IP tags, build a minimal dashboard with a gauge and slider, and read and write tag values from the dashboard to the Modbus device.
Create a unidirectional Modbus tcp/ip to mqtt publisher that reads Modbus data and publishes it to an mqtt broker in a json payload for local and cloud monitoring.
Publish Modbus TCP/IP data to an MQTT broker in the row payload format, with each tag in its own topic. Use MQTT explorer to monitor and graph the data.
Set up and connect a Modbus RTU serial device in a SCADA dashboard to read temperature and humidity data, using com seven, slave id one, and one-second polling.
Learn how to set up a Modbus serial (RTU/RS485) device, create and read tags for temperature and humidity from input registers, apply divisors, and visualize live data on a dashboard.
Publish Modbus serial data to an MQTT broker using a unidirectional Modbus RTU setup, format the data as a JSON payload, and monitor it with an MQTT client.
Publish modbus serial data to mqtt using the row payload format, publishing holding register data on topics for a unidirectional modbus to mqtt publisher.
Set up an smtp email profile in the web to send alarm notifications, configure outlook smtp with host name and port 587, test with a test email, and save profile.
Set up alarms for a tag in FUXA SCADA by creating high and low alarms with intervals and min/max ranges, attach the tag, and enable fixed dashboard notifications.
Enable alarm history in the web by setting retention in the alarm settings, choosing seven, thirty, or ninety days, and saving the project to store alarms in a sqlite database.
Navigate to data homepage, open alarm history via the alarm icon and three-dot menu, select a time span, apply, and review alarms with who acknowledged, text, priority, and status.
Configure the alarm notification pipeline using the smtp email profile. Send email alerts to a receiver email for high and low alarms with configurable delay and interval.
Configure a line chart on the fuxa dashboard for two modbus tcp ip tags, showing real-time last five minutes data with color, interpolation, and chart properties.
Access your local FUXA SCADA dashboard remotely from anywhere in the world using Cloudflare tunnels, publish a public url, and monitor or update gauges and projects via the remote editor.
Install the local tunnel package and forward port 1881 to a public URL to access your FUXA scada locally from anywhere.
FUXA SCADA Training: Web-based Process Visualization (SCADA/HMI/Dashboard) Software
FUXA Web SCADA is a cutting-edge, open-source, web-based SCADA/HMI solution tailored for industrial automation and process monitoring. This comprehensive course will guide you through the installation, configuration, and usage of FUXA Web SCADA to craft robust and interactive dashboards for real-time data visualization and control. The curriculum covers essential aspects such as device integration using industrial protocols (Modbus, OPC UA, MQTT, BACnet), data logging, trend analysis, alarm management, and secure remote access. You will gain hands-on experience in developing SCADA solutions that can be accessed from anywhere via a web browser, enhancing industrial monitoring's efficiency and cost-effectiveness.
By the end of this course, you will be proficient in setting up a complete SCADA system, integrating various industrial devices, configuring alarms, visualizing trends, and publishing data to cloud platforms using MQTT. Whether you are an automation engineer, IoT developer, or SCADA professional, this training will elevate your skills and enable you to deploy scalable SCADA solutions for Industry 4.0 applications.
This course is ideal for professionals eager to enhance their expertise in industrial automation and modern SCADA development. Enroll today and start creating your web-based SCADA solutions with FUXA, and take your industrial automation knowledge to the next level!