Exhibitor search 2026
MOVI-C Controller
Description
The new performance class progressive from the controller portfolio supplements the automation module set MOVI-C®. This high-performance, scalable motion and logic control solution makes it easy for mechanical and plant engineers to automate a whole range of applications. Three key market requirements for machine and system automation are met – scalability, smart technology and connectivity.
The MOVI-C CONTROLLER progressive is based on the new CPC (Cyber Physical Controller) modular system, which features numerous hardware components such as scalable CPU modules, fieldbus options (multi-protocol capability) and Wi-Fi variants. The passive cooling and RTC (Real Time Clock) function without battery replacement make 100% maintenance-free operation possible. The modular software system includes MOVIKIT® software modules, which meet every possible requirement in terms of motion control and real-time control, and solutions for safety, axis/controller replacement functions and configured code generation. By systematically implementing a software layer model based on Hypervisor technology, the new generation of controllers clearly sets itself apart from existing controller concepts on the market. This offers a simple means of enabling non-reactive interaction between the real-time controller on the one hand and, on the other, higher-level software functions such as visualization, condition monitoring, data mining, engineering software, diagnostics, IT communication stacks and intelligent sensors. A CFast memory card that supports extremely fast access to data enables the famously easy device replacement. The card contains all important data such as firmware, application, axis data sets and application data.
Due to its slimline design, the controller is also ideal for tight installation spaces . It can just as easily be used for modular machine modules as for coordinated tasks in a line network. Thanks to a cutting-edge software structure, the operating system is available separately and independently for engineering, programming, diagnostics and visualization. Version incompatibility issues between the individual programs are also a thing of the past. This solution enables simple operation and web visualization. HMI or OPC-UA enable visualization and external communication. The trend for hardware-independent solutions for machines is thus supported
Hardware designs: 1-core, 2-core, 4-core
4-core design feature: Real time (IEC Runtime) + Windows 10 IoT optional
Programming: CoDeSys 3, IEC61131-3
Fieldbus master: EtherCAT®/SBusPLUS
Fieldbus slave: EtherNet/IPTM, PROFINET IO, Modbus TCP, OPC UA





