Monarco HAT is an add-on board which provides analog and digital input/output interface following industrial automation standards for the Raspberry Pi (B+ and newer) minicomputer. It is designed according to the HAT specification (Hardware Attached on Top).
Our rebranded M527 is hardware-identical to the UniPi Patron M527. Its main advantage is the integrated REXYGEN Profi S license, which allows users to implement control tasks with a sampling period as short as 1 millisecond. This combination of extensive I/O and serial communication capabilities with the powerful REXYGEN control system makes it an ideal choice for large-scale industrial automation applications.
The AMC2 is a miniature control unit designed for motion actuator control. It enables motion control using advanced vector control algorithms. One of its main advantages is the ability to modify the internal control task running inside the unit, allowing users to implement custom control algorithms.
The internal task is defined as a REXYGEN system scheme. The unit’s extensive I/O interface allows the connection of encoders, sensors, and peripherals.
An example application could include a setup with two encoders, a laser rangefinder, and a 3D mouse — all connected directly to the unit, which transmits application data via the EtherCAT communication bus to a higher-level control system.
Inspired by LTE and 5G concepts and TSN protocol, we developed a wireless solution targeted at fast real-time automatic control, monitoring and diagnostics applications. This MIMO wireless system working simultaneously at multiple frequency channels or even bands, allows highly deterministic and reliable data exchange between controller and sensor or actuator nodes with latency below 300 μs and refresh rates above 1.5 kHz. Moreover, sub-μs clock synchro nization between all nodes allows synchronized operation at all nodes, which is essential for control of fast systems.
AIC is an industrial control computer based on the ARM platform developed with an emphasis on easy adjustment, scalability, reasonable computing power and perfect real-time behavior. Special algorithms may be implemented directly in programmable gate arrays (FPGA). It is suitable for tasks requiring a short sampling period, accurate timing and low latency. It finds its application in robotics, fast feedback control and motion control. EtherCAT communication support is a matter of course for these tasks.
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