The open system architecture is made possible through consistent data management, global standards, and uniform interfaces for hardware and software. The integration brings together the virtual and real worlds, spanning the product development and production process, increasing efficient production at every step of the process, from product design to product planning, engineering and the production process. real, including services.

Productivity and efficiency are success factors for manufacturing industries. Engineering plays a central role when it comes to increasingly complex machinery and plants. A high level of efficiency is required and the first step towards better production: faster, more flexible and smarter.

Fully integrated automation means efficient interoperability of all components. This allows holistic optimization of the production process which is as follows:

  • Efficient engineering is possible with cost savings.
  • Due to integrated communication, there is great flexibility in production.
  • Seamless integrated safety technology is possible with the protection of personnel, machinery and the environment.
  • Due to integrated communication, there is greater flexibility in production.
  • Due to the consistency of the data, the quality is improved.
  • Due to the interoperability of the components tested by the system, there is better performance.

The entire production process is managed on an open system architecture and is based on the constant presence of shared features such as consistent data management, global standards, and uniform hardware and software interfaces. These features are shared and minimize engineering time. The end result of all this is lower costs, faster time to market, and greater flexibility.

Due to the relatively small production volumes and the wide variety of applications, industrial automation uses new technologies developed in other markets. Automation companies customize products for specific applications and requirements. From the specific application, the innovation comes rather than any new or novel technology.

New innovations have given new waves of growth to industrial automation since the last few decades. Programmable Logic Controller is now being replaced by Relay Logic, driving growth in applications where custom logic was difficult to implement and change. This controller is more reliable than relay contacts and is easy to program and reprogram. At the car testing facility, growth was rapid and had to be rescheduled. The programmable logic controller has a long and productive life and has now become a commodity. Through the use of computers for control systems, the programmable controller was developed. Similar new developments in industrial automation have allowed further growth potential.

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