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| Learn more about Real-Time Workshop |
When developing a system, it is important to use the correct combination of products to model each system component based on the domain to which it applies.
The following table guides you to information and demos that pertain to use of Real-Time Workshop technology to meet goals for specific domains.
| Goals | Related Product Information | Demos |
|---|---|---|
| Specify algorithms as MATLAB code | Embedded MATLAB documentation | rtwdemo_emlcbasicdemo |
| Specify algorithms graphically as Simulink models for controls design | Creating a Model in the Simulink documentation | rtwdemo_f14 |
| Call Embedded MATLAB functions in Simulink | MATLAB Function Blocks in the Simulink documentation | rtwdemo_eml_aero_radar |
| Model event-driven designs, such as finite state machines and truth tables, in Simulink for fault detection, modes, and conditional logic | Creating Stateflow Charts in the Stateflow documentation | rtwdemo_fuelsys |
| Model signal processing filters (for example, fast Fourier transform (FFT) and infinite impulse response (IIR)) in Simulink | Signal Processing Blockset documentation | rtwdemo_lmsadeq |
| Model video processing models in Simulink | Video and Image Processing Blockset™ Video and Image Processing Blockset documentation | |
| Create physical models or plant models in Simulink | Simscape documentation | |
| Model other domains and applications | All products supported by code generation |
![]() | Developing Models for Code Generation | Architecture Considerations | ![]() |

Learn more about Simulink through this collection of videos, articles, technical literature and the Getting Started with Simulink Guide.
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