Choose your language
Industrial Communications (Fieldbus & Industrial Networks) Course
Over 400,000 professionals on the platform
Exclusive for businesses

Industrial Communications (Fieldbus & Industrial Networks) Course

4

Master every layer of industrial communications — from legacy serial protocols to real-time Ethernet and IIoT connectivity. This course gives automation and controls professionals the technical depth to design, configure, secure, and troubleshoot modern industrial networks with confidence.

Dedika for students

What your team will master:

You will build a solid foundation in industrial communication principles, covering the OSI model, network topologies, and signal types as they apply to automation environments. From there, you will work through serial standards like RS-232, RS-485, Modbus RTU, and HART before moving into classic fieldbuses such as PROFIBUS and Foundation Fieldbus. The course then advances into industrial Ethernet, covering PROFINET, EtherNet/IP, and EtherCAT, along with redundancy protocols and QoS configuration. You will also learn how to design secure, segmented OT networks, apply structured troubleshooting methodologies, and integrate fieldbus data through OPC UA. Supplementary topics include wireless industrial systems, functional safety networks, TSN, and cloud connectivity for IIoT applications.

How your team learns practically Industrial Communications (Fieldbus & Industrial Networks) Course

How your team practises Industrial Communications (Fieldbus & Industrial Networks) Course

Professionals from these companies study at Dedika

ActemiumFR
Nunner LogisticsNL
GT Constructora GeotécnicaCR
Sydel StarBR
Metrô de São PauloBR
Aguas AndinasCL
DSMIN
MeridianbetRS
CDHCN

Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Industrial Communications

  • Lesson 1 • Network Topologies and Media

    Examines bus, ring, star, and tree topologies alongside cable and wireless media. Prepares students to select appropriate topology for specific industrial applications.

  • Lesson 2 • Communication Modes and Timing

    Explains simplex, half-duplex, and full-duplex modes alongside synchronous and asynchronous timing. Links timing concepts to real-time control requirements.

  • Lesson 3 • Signal Types and Transmission Basics

    Covers analogue, digital, and discrete signal types used in industrial settings. Connects signal fundamentals to the need for standardised communication protocols.

  • Lesson 4 • OSI Model in Industrial Context

    Maps the OSI seven-layer model to industrial protocol stacks. Provides the structural framework used throughout the course to analyse any fieldbus or network.

  • Lesson 5 • Industrial Automation Communication Overview

    Introduces the role of communication in automated systems and contrasts it with IT networking. Establishes context for all subsequent fieldbus and network topics.

Chapter 2See details

Serial Communication and Legacy Protocols

  • Lesson 1 • Modbus RTU and ASCII Protocols

    Explains Modbus frame structure, function codes, and register addressing for RTU and ASCII modes. Students read and write device registers using Modbus tools.

  • Lesson 2 • RS-485 Multidrop Networks

    Covers differential signalling, termination, and biasing for RS-485 multidrop buses. Provides the electrical foundation required for Modbus RTU and other RS-485 protocols.

  • Lesson 3 • Serial Network Troubleshooting

    Applies oscilloscope, multimeter, and protocol analyser techniques to diagnose serial faults. Reinforces signal and protocol knowledge from earlier sections through practical fault scenarios.

  • Lesson 4 • HART Protocol Fundamentals

    Introduces HART frequency-shift keying overlaid on 4–20 mA loops and its command structure. Bridges analogue instrumentation to digital fieldbus concepts.

  • Lesson 5 • RS-232 Standard and Applications

    Details RS-232 electrical characteristics, connector pinouts, and point-to-point wiring. Connects this legacy standard to modern HMI and instrument interfaces.

Chapter 3See details

Classic Fieldbus Technologies

  • Lesson 1 • DeviceNet and CAN-Based Fieldbuses

    Covers CAN physical layer, DeviceNet object model, and explicit vs. implicit messaging. Positions DeviceNet within discrete manufacturing and safety applications.

  • Lesson 2 • Fieldbus Configuration and Commissioning

    Guides students through address assignment, segment testing, and live-list verification for classic fieldbuses. Builds hands-on commissioning skills applicable across all fieldbus types.

  • Lesson 3 • PROFIBUS PA for Process Instrumentation

    Explains PROFIBUS PA intrinsic safety, segment couplers, and device profiles for process instruments. Connects PA to DP backbone integration in process plants.

  • Lesson 4 • Foundation Fieldbus H1 and HSE

    Introduces FF H1 function block model, publisher-subscriber communication, and HSE high-speed backbone. Highlights control-in-the-field capability unique to FF.

  • Lesson 5 • PROFIBUS DP Architecture

    Covers PROFIBUS DP token-passing bus, GSD files, and master-slave communication cycles. Establishes PROFIBUS as the reference for comparing other fieldbuses.

Chapter 4See details

Industrial Ethernet Fundamentals

  • Lesson 1 • Ethernet Standards for Industrial Use

    Reviews IEEE 802.3 variants, industrial-grade hardware, and environmental ratings relevant to factory floors. Distinguishes commercial Ethernet from ruggedised industrial implementations.

  • Lesson 2 • Redundancy Protocols for High Availability

    Covers MRP, RSTP, and PRP/HSR redundancy schemes used in industrial Ethernet rings and parallel paths. Prepares students to design fault-tolerant network topologies.

  • Lesson 3 • IP Addressing in Industrial Networks

    Covers IPv4 subnetting, static addressing, and DHCP considerations for industrial devices. Links addressing schemes to device discovery and network management practices.

  • Lesson 4 • Quality of Service and Traffic Prioritisation

    Introduces IEEE 802.1p priority tagging and DSCP marking to ensure deterministic delivery of control traffic. Connects QoS configuration to real-time performance requirements.

  • Lesson 5 • Switched Ethernet and VLANs

    Explains MAC address learning, switch forwarding, and VLAN segmentation for traffic isolation. Prepares students to partition OT networks for security and performance.

Chapter 5See details

Real-Time Industrial Ethernet Protocols

  • Lesson 1 • EtherNet/IP and CIP Protocol Stack

    Covers CIP object model, implicit and explicit messaging, and EtherNet/IP adapter configuration. Connects DeviceNet CIP knowledge to Ethernet transport for seamless migration.

  • Lesson 2 • EtherCAT Distributed Clock and Topology

    Introduces EtherCAT frame processing, distributed clock synchronization, and flexible topology options. Highlights sub-microsecond synchronization for motion control applications.

  • Lesson 3 • Protocol Performance Measurement and Tuning

    Applies Wireshark and vendor tools to measure cycle times, jitter, and packet loss across real-time protocols. Provides practical tuning techniques to meet application timing requirements.

  • Lesson 4 • PROFINET Architecture and Device Model

    Explains PROFINET IO controller-device model, GSDML files, and conformance classes RT and IRT. Builds on PROFIBUS knowledge to show the migration path to PROFINET.

  • Lesson 5 • Modbus TCP and Legacy Integration

    Extends Modbus RTU knowledge to TCP/IP transport, covering connection management and gateway use. Enables integration of legacy serial devices into modern Ethernet architectures.

Chapter 6See details

Industrial Network Design and Architecture

  • Lesson 1 • Purdue Model and Network Segmentation

    Introduces the Purdue Enterprise Reference Architecture and its five levels for OT-IT segmentation. Provides the structural model used in all subsequent design and security discussions.

  • Lesson 2 • Network Documentation and Change Control

    Establishes standards for network diagrams, IP address registers, and change management procedures. Prepares students to maintain accurate records throughout the network lifecycle.

  • Lesson 3 • Cable Plant Design and Installation

    Details cable routing, bend radius, shielding, and grounding practices for industrial environments. Ensures students can specify and verify a compliant cable plant.

  • Lesson 4 • Device Selection and Network Sizing

    Covers criteria for selecting switches, gateways, and media converters based on port count, throughput, and environmental requirements. Links device specs to network performance targets.

  • Lesson 5 • Scalability and Future-Proofing Strategies

    Examines modular design, spare capacity planning, and protocol migration paths for long-lived industrial networks. Connects design decisions to total cost of ownership.

Chapter 7See details

Industrial Network Security

  • Lesson 1 • Device Hardening and Patch Management

    Details firmware updates, unused service disabling, and credential management for industrial devices. Addresses the unique constraints of patching in continuously operating OT environments.

  • Lesson 2 • Security Frameworks and Risk Assessment

    Introduces IEC 62443 zones and conduits, risk assessment methodology, and security levels. Provides the governance structure for all technical security controls covered in this chapter.

  • Lesson 3 • Security Monitoring and Incident Response

    Introduces passive OT network monitoring, anomaly detection, and incident response procedures for industrial environments. Connects monitoring outputs to the risk assessment framework.

  • Lesson 4 • Firewalls, DMZs, and Network Access Control

    Covers industrial firewall rule design, DMZ architecture, and port-based access control for OT segments. Applies Purdue model segmentation to enforce traffic policies.

  • Lesson 5 • OT Security Threat Landscape

    Surveys attack vectors, threat actors, and historical incidents specific to industrial control systems. Motivates security investment by linking threats to operational and safety consequences.

Chapter 8See details

Diagnostics, Maintenance, and Optimisation

  • Lesson 1 • Network Performance Monitoring

    Introduces SNMP, LLDP, and vendor network management systems for continuous performance visibility. Connects monitoring data to proactive maintenance and capacity planning.

  • Lesson 2 • Physical Layer Diagnostics

    Covers cable testers, TDR, optical power meters, and signal analysers for physical fault detection. Reinforces cable plant knowledge with hands-on measurement techniques.

  • Lesson 3 • Protocol-Level Diagnostics

    Applies protocol analysers and vendor diagnostic tools to decode frames and identify communication errors. Builds on protocol knowledge from Chapters 2–5 to interpret captured data.

  • Lesson 4 • Structured Troubleshooting Methodology

    Presents a layered, hypothesis-driven fault isolation process applicable to any industrial network. Establishes the diagnostic framework used throughout this chapter.

  • Lesson 5 • Preventive Maintenance and Optimisation

    Defines maintenance schedules, firmware review cycles, and performance tuning procedures for long-term network reliability. Integrates all course knowledge into a sustainable operations plan.

Certification

Your valid completion certificate

This course is for you:

  • Automation technician: wants to understand the networks behind the machines they maintain.

  • Controls engineer: needs formal grounding in fieldbus and Ethernet protocol selection.

  • Instrumentation specialist: works with HART and 4–20 mA devices and wants to go deeper.

  • IT network professional: transitioning into OT environments and needs industrial context.

  • Maintenance engineer: troubleshoots communication faults but lacks a structured diagnostic framework.

  • Engineering student: building credentials for a career in industrial automation systems.

Related Courses

FAQ

Who is Dedika?

Is the certificate valid in Nigeria?

Are the courses free?

What is the course workload?

What are the courses like?

How do the courses work?

What is the duration of the courses?

What is the cost or price of the courses?

What is an EAD or online course and how does it work?

PDF Course