LOOKING FOR THE RIGHT
INDUSTRIAL SOLUTION?
Discover embedded, communication and automation solutions tailored to your application.
- Real-Time Control with Simulation Models: Enables direct control of continuous processes in real time using dynamic simulation models.
- Graphical Definition and Visualization: Provides an intuitive graphical interface for defining control structures, simulation models, and process parameters.
- Windows-Based Environment: Fully compatible with Microsoft Windows, allowing integration with standard PC hardware and peripherals.
- FFT Analysis: Built-in Fast Fourier Transform tools for frequency-domain analysis of signals and system responses.
- Digital Filtering: Includes configurable digital filters for signal conditioning, noise reduction, and data preprocessing.
- Measurement Data Processing: Supports acquisition, processing, and visualization of measurement data from sensors and external devices.
- Integration with DynaSim-S: Shares core functionalities with DynaSim-S, ensuring compatibility and consistent workflow across the DynaSim product line.
- Continuous Process Control: Designed for continuous-time control applications, suitable for laboratory, industrial, and research environments.
- Real-Time Execution Engine: Optimized for deterministic performance, ensuring stable and predictable control loop execution.
- Comprehensive Visualization Tools: Real-time plotting, trend analysis, and graphical monitoring of system variables.
- User-Friendly Configuration: Drag-and-drop model construction, parameter tuning, and interactive simulation control.
- Modular Architecture: Expandable with additional modules for specialized control algorithms, communication interfaces, and data logging.
- Graphical Definition and Visualization: Provides an intuitive graphical interface for defining control structures, simulation models, and process parameters.
- Windows-Based Environment: Fully compatible with Microsoft Windows, allowing integration with standard PC hardware and peripherals.
- FFT Analysis: Built-in Fast Fourier Transform tools for frequency-domain analysis of signals and system responses.
- Digital Filtering: Includes configurable digital filters for signal conditioning, noise reduction, and data preprocessing.
- Measurement Data Processing: Supports acquisition, processing, and visualization of measurement data from sensors and external devices.
- Integration with DynaSim-S: Shares core functionalities with DynaSim-S, ensuring compatibility and consistent workflow across the DynaSim product line.
- Continuous Process Control: Designed for continuous-time control applications, suitable for laboratory, industrial, and research environments.
- Real-Time Execution Engine: Optimized for deterministic performance, ensuring stable and predictable control loop execution.
- Comprehensive Visualization Tools: Real-time plotting, trend analysis, and graphical monitoring of system variables.
- User-Friendly Configuration: Drag-and-drop model construction, parameter tuning, and interactive simulation control.
- Modular Architecture: Expandable with additional modules for specialized control algorithms, communication interfaces, and data logging.
1. Product Overview
Product Name: DynaSim-R
Model / Series: DynaSim Series – Real-Time Control and Simulation Package
Article Number: DynaSim-R
Manufacturer: [Manufacturer not specified – part of the DynaSim software family, typically associated with industrial and academic control system simulation environments]
Product Type: Real-time control and simulation software for Windows
Product Description: *Regelung mit Simulationsmodellen unter Windows* – DynaSim-R is a specialized software package designed for real-time control of continuous processes using simulation models. It provides a comprehensive graphical environment for defining, visualizing, and executing control algorithms under Windows operating systems. The system integrates advanced signal processing tools such as Fast Fourier Transform (FFT), digital filters, and measurement data processing, offering a complete platform for control engineering, system analysis, and real-time experimentation.
2. Key Features
- Real-Time Control with Simulation Models: Enables direct control of continuous processes in real time using dynamic simulation models.
- Graphical Definition and Visualization: Provides an intuitive graphical interface for defining control structures, simulation models, and process parameters.
- Windows-Based Environment: Fully compatible with Microsoft Windows, allowing integration with standard PC hardware and peripherals.
- FFT Analysis: Built-in Fast Fourier Transform tools for frequency-domain analysis of signals and system responses.
- Digital Filtering: Includes configurable digital filters for signal conditioning, noise reduction, and data preprocessing.
- Measurement Data Processing: Supports acquisition, processing, and visualization of measurement data from sensors and external devices.
- Integration with DynaSim-S: Shares core functionalities with DynaSim-S, ensuring compatibility and consistent workflow across the DynaSim product line.
- Continuous Process Control: Designed for continuous-time control applications, suitable for laboratory, industrial, and research environments.
- Real-Time Execution Engine: Optimized for deterministic performance, ensuring stable and predictable control loop execution.
- Comprehensive Visualization Tools: Real-time plotting, trend analysis, and graphical monitoring of system variables.
- User-Friendly Configuration: Drag-and-drop model construction, parameter tuning, and interactive simulation control.
- Modular Architecture: Expandable with additional modules for specialized control algorithms, communication interfaces, and data logging.
3. Technical Specifications
*(Note: Based on available information and typical characteristics of DynaSim software packages)*
- Operating System Compatibility: Microsoft Windows (Windows 10/11 or later recommended)
- Processor Requirements: x86/x64 architecture, multi-core CPU recommended for real-time performance
- Memory Requirements: Minimum 4 GB RAM (8 GB or more recommended for complex simulations)
- Storage Requirements: Approx. 500 MB installation footprint; additional space required for simulation data and logs
- Display: Minimum resolution 1280×1024; supports multi-monitor setups for extended visualization
- Supported Data Types: Floating-point (single/double precision), integer, Boolean, and complex data types for FFT operations
- Signal Processing Tools: FFT (Fast Fourier Transform), IFFT (Inverse FFT), digital filters (low-pass, high-pass, band-pass, custom FIR/IIR)
- Measurement Data Interfaces: Supports standard data acquisition (DAQ) hardware, analog/digital I/O, and serial/USB communication
- Real-Time Performance: Deterministic loop execution with sub-millisecond timing resolution (depending on hardware)
- Graphical Modeling Environment: Node-based or block-diagram interface for defining control systems and simulation models
- Supported File Formats: Proprietary DynaSim model files (.dyn), CSV for data import/export, and standard image formats for visualization export
- Language Support: German and English user interface options
4. Functionality
DynaSim-R functions as a real-time control and simulation environment that allows users to design, test, and implement control systems directly within a Windows-based platform. The software operates by linking simulation models—representing physical processes or systems—to real-time control loops.
Core Functional Workflow:
1. Model Definition: Users create or import simulation models using the graphical editor. Models can represent mechanical, electrical, thermal, or chemical processes.
2. Control Algorithm Design: Control structures (PID, state-space, adaptive, or custom algorithms) are defined within the same environment.
3. Real-Time Execution: The simulation runs in real time, with the control algorithm interacting dynamically with the simulated or physical process.
4. Signal Processing: FFT and digital filters are applied to measurement data for analysis, noise suppression, or feature extraction.
5. Data Acquisition and Visualization: Real-time data from sensors or simulated signals are displayed graphically, logged, and analyzed.
6. Parameter Tuning: Users can adjust control parameters interactively during operation to optimize performance.
Use Cases and Applications:
- Industrial process control and automation
- Research and development in control engineering
- Educational laboratories for teaching control theory and simulation
- Real-time testing of control algorithms before deployment on embedded systems
- Signal analysis and system identification using FFT and filtering tools
- Simulation-based prototyping of continuous systems
Compatibility:
- Compatible with DynaSim-S and other DynaSim modules
- Interfaces with standard DAQ hardware and communication buses
- Integrates with external simulation tools via data exchange formats
5. Components & Accessories
Included Components:
- DynaSim-R software package (installation media or digital download)
- Graphical modeling and simulation environment
- Built-in FFT and digital filter libraries
- Measurement data processing module
- Documentation and user manual (PDF format)
- Example models and templates for quick start
Optional Add-Ons and Accessories:
- Additional DynaSim modules (e.g., DynaSim-S for simulation-only environments)
- Hardware interface modules for specific DAQ systems
- Extended libraries for advanced control algorithms (adaptive, predictive, nonlinear)
- Data logging and reporting extensions
- Maintenance and support subscription packages
Connectors and Interfaces:
- Software-based interfaces for analog/digital I/O
- Support for USB, serial (RS-232/RS-485), and Ethernet communication
- Optional drivers for third-party DAQ hardware
6. Installation & Setup
System Requirements:
- Windows operating system (Windows 10/11, 64-bit recommended)
- Administrator privileges for installation
- Compatible hardware drivers for connected measurement devices
Installation Procedure:
1. Run the DynaSim-R installer and follow the guided setup wizard.
2. Select installation directory and optional components.
3. Configure hardware interfaces if real-time data acquisition is required.
4. Activate the software using the provided license key.
5. Launch the DynaSim-R environment and verify system configuration.
Mounting and Configuration Options:
- Software-only installation; no physical mounting required.
- Optional configuration for real-time hardware integration (DAQ, sensors, actuators).
- Network configuration for distributed simulation or remote monitoring.
Initial Setup:
- Load example models to verify correct operation.
- Calibrate measurement channels and verify signal acquisition.
- Configure FFT and filter parameters for signal analysis.
7. Performance & Capabilities
Speed and Real-Time Performance:
- Designed for deterministic real-time control with minimal latency.
- Execution cycle times can reach sub-millisecond resolution depending on system hardware.
- Optimized for multi-threaded processing to handle complex models and multiple control loops simultaneously.
Capacity and Scalability:
- Supports large-scale models with multiple interconnected subsystems.
- Scalable to multi-core CPUs and high-performance PCs.
- Capable of handling high-frequency data streams for FFT and filtering operations.
Efficiency:
- Efficient memory management for continuous real-time operation.
- Optimized numerical solvers for continuous-time differential equations.
- Low CPU overhead for graphical visualization and data logging.
Limitations:
- Real-time performance depends on hardware capabilities and Windows scheduling.
- Not intended for hard real-time embedded control without dedicated hardware.
- Requires proper configuration of DAQ interfaces for accurate timing.
8. Standards & Compliance
Software and Industry Standards:
- Compliant with standard Windows application development and runtime environments.
- Supports IEEE floating-point arithmetic for numerical accuracy.
- FFT implementation conforms to standard Cooley–Tukey algorithm specifications.
- Digital filter design compatible with standard FIR/IIR methodologies.
Regulatory Compliance:
- Designed for use in laboratory, educational, and industrial research environments.
- Conforms to general software safety and data integrity guidelines.
- May require additional certification for use in regulated industrial control systems (depending on application).
Data and Communication Standards:
- Supports standard data exchange formats (CSV, TXT, proprietary DynaSim formats).
- Compatible with standard DAQ communication protocols.
9. Additional Information
Warranty and Licensing:
- Software license includes standard usage rights for one workstation.
- Optional multi-user or network licenses available.
- Warranty covers software defects and installation support for the initial period (typically 12 months).
Support and Maintenance:
- Technical support available via email or online portal.
- Regular software updates and patches provided for performance improvements and bug fixes.
- Optional maintenance contracts for extended support and version upgrades.
Documentation and Training:
- Comprehensive user manual and online help system.
- Example projects and tutorials for quick learning.
- Training sessions and workshops available for advanced users.
Updates and Versioning:
- Periodic updates to maintain compatibility with new Windows versions.
- Enhancements to FFT, filtering, and data processing modules in newer releases.
- Backward compatibility maintained with previous DynaSim models.
Maintenance Recommendations:
- Regularly back up model files and configuration data.
- Keep system drivers and Windows updates current for optimal performance.
- Validate real-time performance after major system changes or updates.
Summary
DynaSim-R is a powerful, Windows-based real-time control and simulation software package designed for engineers, researchers, and educators working with continuous process control systems. It combines graphical modeling, real-time execution, and advanced signal processing tools (FFT, digital filters, measurement data processing) in a unified environment. With its modular architecture, compatibility with DynaSim-S, and support for real-time data acquisition, DynaSim-R provides a flexible and efficient platform for developing, testing, and optimizing control algorithms. Its deterministic performance, intuitive interface, and comprehensive analysis capabilities make it an ideal solution for both academic and industrial applications requiring precise, real-time control and simulation under Windows.
Product Name: DynaSim-R
Model / Series: DynaSim Series – Real-Time Control and Simulation Package
Article Number: DynaSim-R
Manufacturer: [Manufacturer not specified – part of the DynaSim software family, typically associated with industrial and academic control system simulation environments]
Product Type: Real-time control and simulation software for Windows
Product Description: *Regelung mit Simulationsmodellen unter Windows* – DynaSim-R is a specialized software package designed for real-time control of continuous processes using simulation models. It provides a comprehensive graphical environment for defining, visualizing, and executing control algorithms under Windows operating systems. The system integrates advanced signal processing tools such as Fast Fourier Transform (FFT), digital filters, and measurement data processing, offering a complete platform for control engineering, system analysis, and real-time experimentation.
2. Key Features
- Real-Time Control with Simulation Models: Enables direct control of continuous processes in real time using dynamic simulation models.
- Graphical Definition and Visualization: Provides an intuitive graphical interface for defining control structures, simulation models, and process parameters.
- Windows-Based Environment: Fully compatible with Microsoft Windows, allowing integration with standard PC hardware and peripherals.
- FFT Analysis: Built-in Fast Fourier Transform tools for frequency-domain analysis of signals and system responses.
- Digital Filtering: Includes configurable digital filters for signal conditioning, noise reduction, and data preprocessing.
- Measurement Data Processing: Supports acquisition, processing, and visualization of measurement data from sensors and external devices.
- Integration with DynaSim-S: Shares core functionalities with DynaSim-S, ensuring compatibility and consistent workflow across the DynaSim product line.
- Continuous Process Control: Designed for continuous-time control applications, suitable for laboratory, industrial, and research environments.
- Real-Time Execution Engine: Optimized for deterministic performance, ensuring stable and predictable control loop execution.
- Comprehensive Visualization Tools: Real-time plotting, trend analysis, and graphical monitoring of system variables.
- User-Friendly Configuration: Drag-and-drop model construction, parameter tuning, and interactive simulation control.
- Modular Architecture: Expandable with additional modules for specialized control algorithms, communication interfaces, and data logging.
3. Technical Specifications
*(Note: Based on available information and typical characteristics of DynaSim software packages)*
- Operating System Compatibility: Microsoft Windows (Windows 10/11 or later recommended)
- Processor Requirements: x86/x64 architecture, multi-core CPU recommended for real-time performance
- Memory Requirements: Minimum 4 GB RAM (8 GB or more recommended for complex simulations)
- Storage Requirements: Approx. 500 MB installation footprint; additional space required for simulation data and logs
- Display: Minimum resolution 1280×1024; supports multi-monitor setups for extended visualization
- Supported Data Types: Floating-point (single/double precision), integer, Boolean, and complex data types for FFT operations
- Signal Processing Tools: FFT (Fast Fourier Transform), IFFT (Inverse FFT), digital filters (low-pass, high-pass, band-pass, custom FIR/IIR)
- Measurement Data Interfaces: Supports standard data acquisition (DAQ) hardware, analog/digital I/O, and serial/USB communication
- Real-Time Performance: Deterministic loop execution with sub-millisecond timing resolution (depending on hardware)
- Graphical Modeling Environment: Node-based or block-diagram interface for defining control systems and simulation models
- Supported File Formats: Proprietary DynaSim model files (.dyn), CSV for data import/export, and standard image formats for visualization export
- Language Support: German and English user interface options
4. Functionality
DynaSim-R functions as a real-time control and simulation environment that allows users to design, test, and implement control systems directly within a Windows-based platform. The software operates by linking simulation models—representing physical processes or systems—to real-time control loops.
Core Functional Workflow:
1. Model Definition: Users create or import simulation models using the graphical editor. Models can represent mechanical, electrical, thermal, or chemical processes.
2. Control Algorithm Design: Control structures (PID, state-space, adaptive, or custom algorithms) are defined within the same environment.
3. Real-Time Execution: The simulation runs in real time, with the control algorithm interacting dynamically with the simulated or physical process.
4. Signal Processing: FFT and digital filters are applied to measurement data for analysis, noise suppression, or feature extraction.
5. Data Acquisition and Visualization: Real-time data from sensors or simulated signals are displayed graphically, logged, and analyzed.
6. Parameter Tuning: Users can adjust control parameters interactively during operation to optimize performance.
Use Cases and Applications:
- Industrial process control and automation
- Research and development in control engineering
- Educational laboratories for teaching control theory and simulation
- Real-time testing of control algorithms before deployment on embedded systems
- Signal analysis and system identification using FFT and filtering tools
- Simulation-based prototyping of continuous systems
Compatibility:
- Compatible with DynaSim-S and other DynaSim modules
- Interfaces with standard DAQ hardware and communication buses
- Integrates with external simulation tools via data exchange formats
5. Components & Accessories
Included Components:
- DynaSim-R software package (installation media or digital download)
- Graphical modeling and simulation environment
- Built-in FFT and digital filter libraries
- Measurement data processing module
- Documentation and user manual (PDF format)
- Example models and templates for quick start
Optional Add-Ons and Accessories:
- Additional DynaSim modules (e.g., DynaSim-S for simulation-only environments)
- Hardware interface modules for specific DAQ systems
- Extended libraries for advanced control algorithms (adaptive, predictive, nonlinear)
- Data logging and reporting extensions
- Maintenance and support subscription packages
Connectors and Interfaces:
- Software-based interfaces for analog/digital I/O
- Support for USB, serial (RS-232/RS-485), and Ethernet communication
- Optional drivers for third-party DAQ hardware
6. Installation & Setup
System Requirements:
- Windows operating system (Windows 10/11, 64-bit recommended)
- Administrator privileges for installation
- Compatible hardware drivers for connected measurement devices
Installation Procedure:
1. Run the DynaSim-R installer and follow the guided setup wizard.
2. Select installation directory and optional components.
3. Configure hardware interfaces if real-time data acquisition is required.
4. Activate the software using the provided license key.
5. Launch the DynaSim-R environment and verify system configuration.
Mounting and Configuration Options:
- Software-only installation; no physical mounting required.
- Optional configuration for real-time hardware integration (DAQ, sensors, actuators).
- Network configuration for distributed simulation or remote monitoring.
Initial Setup:
- Load example models to verify correct operation.
- Calibrate measurement channels and verify signal acquisition.
- Configure FFT and filter parameters for signal analysis.
7. Performance & Capabilities
Speed and Real-Time Performance:
- Designed for deterministic real-time control with minimal latency.
- Execution cycle times can reach sub-millisecond resolution depending on system hardware.
- Optimized for multi-threaded processing to handle complex models and multiple control loops simultaneously.
Capacity and Scalability:
- Supports large-scale models with multiple interconnected subsystems.
- Scalable to multi-core CPUs and high-performance PCs.
- Capable of handling high-frequency data streams for FFT and filtering operations.
Efficiency:
- Efficient memory management for continuous real-time operation.
- Optimized numerical solvers for continuous-time differential equations.
- Low CPU overhead for graphical visualization and data logging.
Limitations:
- Real-time performance depends on hardware capabilities and Windows scheduling.
- Not intended for hard real-time embedded control without dedicated hardware.
- Requires proper configuration of DAQ interfaces for accurate timing.
8. Standards & Compliance
Software and Industry Standards:
- Compliant with standard Windows application development and runtime environments.
- Supports IEEE floating-point arithmetic for numerical accuracy.
- FFT implementation conforms to standard Cooley–Tukey algorithm specifications.
- Digital filter design compatible with standard FIR/IIR methodologies.
Regulatory Compliance:
- Designed for use in laboratory, educational, and industrial research environments.
- Conforms to general software safety and data integrity guidelines.
- May require additional certification for use in regulated industrial control systems (depending on application).
Data and Communication Standards:
- Supports standard data exchange formats (CSV, TXT, proprietary DynaSim formats).
- Compatible with standard DAQ communication protocols.
9. Additional Information
Warranty and Licensing:
- Software license includes standard usage rights for one workstation.
- Optional multi-user or network licenses available.
- Warranty covers software defects and installation support for the initial period (typically 12 months).
Support and Maintenance:
- Technical support available via email or online portal.
- Regular software updates and patches provided for performance improvements and bug fixes.
- Optional maintenance contracts for extended support and version upgrades.
Documentation and Training:
- Comprehensive user manual and online help system.
- Example projects and tutorials for quick learning.
- Training sessions and workshops available for advanced users.
Updates and Versioning:
- Periodic updates to maintain compatibility with new Windows versions.
- Enhancements to FFT, filtering, and data processing modules in newer releases.
- Backward compatibility maintained with previous DynaSim models.
Maintenance Recommendations:
- Regularly back up model files and configuration data.
- Keep system drivers and Windows updates current for optimal performance.
- Validate real-time performance after major system changes or updates.
Summary
DynaSim-R is a powerful, Windows-based real-time control and simulation software package designed for engineers, researchers, and educators working with continuous process control systems. It combines graphical modeling, real-time execution, and advanced signal processing tools (FFT, digital filters, measurement data processing) in a unified environment. With its modular architecture, compatibility with DynaSim-S, and support for real-time data acquisition, DynaSim-R provides a flexible and efficient platform for developing, testing, and optimizing control algorithms. Its deterministic performance, intuitive interface, and comprehensive analysis capabilities make it an ideal solution for both academic and industrial applications requiring precise, real-time control and simulation under Windows.
No manuals/catalogs available.
No accessories available.