
The Maple system is an advanced, mathematical problem solving and programming environment.
The analytical engine that powers Maple includes a powerful symbolic computation system that expresses and manipulates complex mathematics using automated mathematical formalisms and knowledge systems.

The ecICP provides powerful, practice-proven and reliable methods for measurement based automatic model generation and entire controller parametrization for real world applications.

The ecCST enables bumpless switching between parameter sets for different operating areas and different process variables (system outputs) and actuators.

The ecVERSIM treats each Simulink-subsystem as a separate module and so allows for parallel development inside the different Simulink-subsystems as if they were separate files.

The IDCON classic provides powerful and proven methods for automatic generation of continuous-time, dynamic models from measured data.

The IDCON nonlinear provides powerful and proven methods for automatic generation of nonlinear models for multi input-multi output systems from measured data.

The CANbus Toolset allows to access, influence and monitor the data flow on the Canbus directly from Matlab and from the simulation environment Simulink in realtime.

The Hydraulic Blockset extends SIMULINK for design and simulation of hydraulic systems. The blockset provides a collection of more than 50 SIMULINK blocks like hydraulic cylinders, pumps and valves.

Mathmatical analysis, visualization and the technical computing language
MATLAB is an ultimate technical computing environment, which integrate mathematical computing, visualization, modeling, simulation, data analysis and powerful technical language capabilities. Using over 60 option products, it enables engineers to research and develop for broader area of application such as signal and image processing, DSP and control design, finance, earth and space exploration, etc.
