Real-time for Simulink® models

With ADsim, you easily run Simulink® models on ADwin hardware. With a few clicks only, you insert data of the ADwin system as blocks into the model and start C code generation. After compilation, the model runs on the ADwin system in real-time with absolute timing precision and predictability reaching sample rates up to 1,000 kHz (processor T12).
With processor T11, frequencies up to 100 kHz are available.

We will gladly send you further information about ADsim, with just a click.

PID controller: Simulink model with ADsim blocks for analog input and output
PID controller: Simulink model with ADsim blocks for analog inputs and outputs

User interfaces for Simulink® models

ADsimDesk When developing and debugging with ADbasic, you take advantage of our decades of experience in real-time programming.
The model signals and parameters can be displayed or modified with the graphical user interface ADsimDesk. Via the standard ADwin driver, you can build your own user interface for the compiled model in any common programming language including direct access to all model parameters and signals. The running model can also be controlled and tested by use of the free-of-charge ADtools.

Requirements for ADsim

  • Matlab® 7.1 or higher
  • Simulink® 6.3 or higher
  • Simulink Coder® / Real-Time Workshop ®
  • Embedded Coder® / Real-Time Workshop Embedded Coder®
  • Processor T11 only: Analog Devices VisualDSP++ Environment 5.0 für TigerSHARC
  • ADwin hardware:

ADsim on Matlab Expo 2021

ADsim on Matlab Expo 2021 Visit the online fair Matlab Expo 2021 (May 4-5), where we present the newest features of ADsim.

ADsim Product info
(PDF pdf, 180 kB)

ADsim is available in the
"ADwin Software package  6.00.30.00 ADsim".
We will be happy to inform you about the details.

ADsim applications

  • Rapid prototyping with single- or multitasking
  • Hardware-in-the-loop (HIL) simulation
  • Programming of production devices

ADsim interfaces

  • Analog and digital inputs and outputs, PWM outputs, SSI Decoder
  • Universal counters: clock/direction, 4 edge evaluation, PWM analysis
  • CAN, CANdb, CAN bus monitoring
  • EEPROM r/w
  • Simatic Fetch/Write
  • Ethernet interface for PC communication
  • Global ADwin and TiCo variables