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Duration 14 hours
Course Outline
Recap of LabVIEW Fundamentals
- Dataflow execution model and multithreading overview
- Variables, clusters, arrays, and standard data types
- Utilizing loops and sequence structures
Advanced Control Structures
- Limitations of Flat Sequences and cycle control methods
- Alternatives to flat sequence structures
- Implementing proper error handling in advanced architectures
Parallel and Queued State Machines
- Building scalable and responsive applications
- State machine design patterns
- Designing producer-consumer architectures
Optimizing Shift Register Usage
- Employing shift registers to store state data
- Managing scope and adhering to best practices
- Preventing race conditions and unintended overwrites
Advanced Data Types and Structures
- Handling nested clusters and user-defined types
- Best practices for typedefs and maintenance
- Managing multi-dimensional arrays
LabVIEW to PLC Communication
- Ethernet/IP communication with Allen-Bradley PLCs (ControlLogix/CompactLogix)
- Reading and writing clusters and user-defined data
- Handling multi-dimensional arrays via Ethernet/IP
Effective Use of Property Nodes
- Understanding property node scope and execution timing
- Applying property nodes for UI manipulation versus hardware control
- Mitigating performance bottlenecks
Summary and Next Steps
Requirements
- Proficiency with LabVIEW and its core components
- A solid understanding of data types, control structures, and graphical programming
Audience
- Software engineers working on advanced LabVIEW applications
- Test automation developers integrating LabVIEW with industrial systems
- Engineers aiming to optimize and scale existing LabVIEW systems