![]() In the operation with the CAN-bus, a distance sensor can be connected via the ☑0V interface to carry out the distance correction e. Additional interfaces like a ± 10V interface (speed target value) and an RS232 interface are available. Besides synchronous point-to-point positioning (S-PTP) and speed control, track control (CP - Continuous Path) and synchronised multiple axis applications via the implemented CANopen protocol DS402 are possible. Various user interfaces are available for integration into custom applications and here the CANopen interface should be highlighted. The extensive configuration options allow flexible adaptation to various applications and all necessary settings can be made using user-friendly set-up software. The housings of the output stages are optimised for control cabinet installation. Typical areas of application are CNC machines and automation technology. The fully digital controller iMD40 is an affordable output stage, directly powered from the mains for EC servomotors (synchronous motors like e.g. The iMD10/20 controllers are cost-effective output stages for DC motors (iMD10) and EC servomotors (iMD20). Communication between CNC and the controls is done at isel via the CAN bus. ![]() Compared to the position control in the CNC, higher accuracies are achieved at higher speeds. In the digital controllers used, the position control occurs directly in the drive. Machine axes are mainly numerically controlled in position control loops. This kind of all-in-one approach will give production managers access to the information needed for a continuous monitoring and improvement of the entire production process.Isel Controller - The intelligent choice for your automation job! As a key result of this paper, and given the variety of monitoring systems and communication protocols, the developed approach combines various different machine interfaces on a single system, in order to cover a relevant subset of machining equipment currently in use by the molds industry. For a standardized approach, OPC UA is used for high-level communication between the various systems. In this paper a methodology to build monitoring solutions for machining devices is defined, based on the main equipment and operations used by molds industry companies. ![]() With each brand and model requiring different (proprietary) interfaces and communication protocols, this technological diversity renders the automatic interconnection with production management software extremely challenging. With its constant modernization, several technologies have been introduced, in particular regarding machining equipment. This paper addresses the concept of Industry 4.0 from the perspective of the molds industry, a key industry in today’s industrial panorama. ![]()
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