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The overview serves as orientation for the short names of B&R standard seminars and their relationships. Both classroom training and distance learning content are offered. Classroom seminars are referenced in the overview. In many cases, however, an equivalent distance learning offer exists.

Select your learning path. Follow the arrows from left to right. This results in the selection and sequence of the required seminars. For distance learning offers, "SEM" can be replaced by "SRL" (e.g. SEM210 = SRL210)

Not all seminars are offered at all B&R subsidiaries. The following is an overview of all local offers:

Open-loop control, closed-loop control

Learning objectives

  • Programming and configuration in Automation Studio
  • Commissioning and diagnostics of the control system
  • Software development with IEC 61131 - Programming languages
  • Using and creating libraries
  • Communication on the controller
  • Data management and alarming on the controller
  • The basics of closed-loop control

Learning paths

  • The basics of control technology and programming per IEC 61131-3
  • SEM210 >> SEM246 >> SEM250
Drive technology for single-axis and multi-axis applications

Learning objectives

  • The concept behind the B&R drive solution
  • Commissioning and control loop optimization
  • PLCopen and integration of mapp technology
  • Single-axis applications
  • Electronic gears and cams

Learning paths

Drive technology for path-controlled movements - Robotics, CNC

Learning objectives

  • Overview of how an axis group works
  • CNC or robot configuration in Automation Studio
  • Use of coordinate systems and tools
  • Configuration of workspace monitoring
  • Simulation, commissioning and diagnostics

Learning paths

Track technology, flexible transport systems - ACOPOStrak, SuperTrak

Learning objectives

  • The basics of B&R track technology
  • System and software concept
  • Executing various movements in the simulation
  • Dimensioning a track
  • Commissioning and diagnostics

Learning paths

  • Self-study: B&R tutorials for software, assembly and maintenance
  • Tutorials
Control engineering for mechatronic systems - Temperature, hydraulics, winders

Learning objectives

  • The basics of closed-loop control
  • Temperature control
  • Hydraulic applications
  • Closed-loop tension control

Learning paths

Safety technology, safe motion control

Learning objectives

  • Smart Safe Reaction
  • Configuration and programming in SafeDESIGNER
  • Commissioning and diagnostics
  • Integration of safe motion control

Learning paths

HMI and operation

Learning objectives

  • Development and configuration of integrated HMI applications
  • Localization, unit switching and user management
  • Processing events and implementing dynamic objects

Learning paths

  • Creating simple HMI applications with mapp View
  • SEM210 >> SEM611
  • Creating comprehensive HMI applications with mapp View and mapp Services
  • SEM210 >> SEM611 >> SEM270
Machine vision, image processing

Learning objectives

  • B&R machine vision portfolio
  • Hardware implementation and configuration
  • Image acquisition and interpretation of the results
  • Configuration and practical use of vision functions

Learning paths

Modeling and simulation

Learning objectives

  • The basics of visualization and simulation for industrial control technology
  • MapleSim and Functional Mock-up Interface (FMI)
  • Automation Studio Target for Simulink
  • Virtual commissioning with industrialPhysics

Learning paths

  • MapleSim and Functional Mock-up Interface (FMI)
  • SEM210 >> SEM292 
  • Virtual commissioning with industrialPhysics
  • SEM210 >> SEM294 
Connectivity via fieldbuses and protocols

Learning objectives

  • Introduction to OPC UA, POWERLINK and openSAFETY
  • Using and creating device description files
  • Diagnostics and network analysis
  • Implementation with development kits

Learning paths

  • openSAFETY technology and certification
  • SEM951 
Process control

Learning objectives

  • System overview, configuration, programming and maintenance of APROL systems
  • Project creation with process graphics, trending, alarms, etc.
  • APROL WEB portal and system diagnostics

Learning paths

Diagnostics and service for control systems

Learning objectives

  • Selection and design of components in the X20 system
  • Strategy for the targeted use of diagnostic tools
  • Diagnostics with and without software
  • Procurement of replacement parts and module replacement
  • Working on existing projects and monitoring process variables

Learning paths

  • Design for controllers and I/O system in the X20 system
  • SEM910

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