Description
IES-EV-347
KEY TECHNICAL SPECIFICATIONS
Real-Time Controller PlatformStandalone deterministic real-time control hardware designed for high-speed model execution and embedded control applications.
Embedded Processing ArchitectureHigh-performance system-on-chip platform with ARM-based processor designed for real-time control and simulation tasks.
Memory & Storage SystemHigh-capacity RAM and onboard flash storage supporting model execution, firmware storage and real-time data logging.
Model-Based Development EnvironmentGraphical block-based model design environment allowing direct execution of control models on target hardware.
Real-Time Control Block LibraryExtensive library of control, mathematical, signal processing and power electronics blocks for real-time model implementation.
Measurement & Debugging ToolsIntegrated diagnostic tools including digital oscilloscope, logic analyzer, time plotter and high-capacity data logging.
Analog & Digital I/O InterfacesMultiple isolated analog and digital input/output channels designed for integration with sensors, actuators and control systems.
Communication InterfacesStandard communication interfaces supporting controller programming, monitoring and integration with external systems.
Application SupportDesigned for applications including motor control, power electronics, embedded control systems, EV development and HIL testing.
Safety & Laboratory IntegrationElectrical isolation, grounding provisions and protective enclosures designed for safe laboratory operation.
RANGE OF EXPERIMENTS
Real-time deployment of control models on embedded hardware
Rapid prototyping and testing of control algorithms
Hardware-in-the-loop simulation and closed-loop control testing
Power electronics control experiments using PWM and SVPWM techniques
Motor control studies including FOC, Clarke and Park transformations
High-speed data acquisition and real-time parameter monitoring
Performance analysis using built-in measurement and visualization tools
Motor characteristic testing and efficiency mapping experiments
FEATURES
Standalone deterministic real-time control platform
High-speed embedded processor architecture for real-time applications
Graphical model-based development environment
Extensive library of control and power electronics blocks
Integrated measurement and debugging tools
Multiple isolated analog and digital I/O interfaces
Suitable for EV, power electronics and embedded control research
Ideal for advanced engineering laboratories and training centers

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