Industrial

2021

The evolution of the Gateways

When it comes to expanding and operating innovative IoT solutions, IT architectures have a key role to play. What architectural issues arise at the interface between IT and OT, and how does this interface relate to 'edge' and 'cloud'?  If you take these questions into account during planning you can fully exploit the potential of software, IT and innovative algorithms and make your production more efficient. 

It’s all about data security!

Secure data exchange between production and management levels is still something of a minefield, with many aspects and security issues needing to be negotiated. Middleware has since established itself as a key component in the pursuit of seamless integration of the OT and IT domains. The following post addresses the aspects of secure cross-company communication by looking at an OPC UA-based solution from Softing.

Industrial IoT Automation – Smart Data Integration With dataFEED Software Platform

Data integration and IoT or Industrie 4.0 have been fueling the market for many years and are finally on the verge of a breakthrough and success, because it is now possible to integrate and successfully use the incredible range of technologies and the vast amount of sensors, data formats and conceivable usage scenarios. The same can be said for the volume of data currently produced. In the "Internet of Things" or Industrie 4.0, a seamless data exchange between Operational Technology (OT) and Information Technology (IT) is crucial for competitiveness and success. However, this is not the only decisive factor. Production processes, both in manufacturing and in the process industry, require continuous improvement in efficiency and performance - this can only be achieved in the future through innovative, reliable data integration.

Industry 4.0 Implementation for HART Devices

An essential feature of modern Industry 4.0 solutions is the networking of machines and plants. If a continuous digital data flow is guaranteed across all production levels, data from intelligent field devices can provide well-founded information on the plant status. In this way unplanned outages can be avoided, downtimes reduces and maintenance costs lowered. How does this work in the ideal case?

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