IEC 62453-2:2009
Field device tool (FDT) interface specification - Part 2: Concepts and detailed description
IEC 62453-2:2009 explains the common principles of the field device tool concept. These principles can be used in various industrial applications such as engineering systems, configuration programs and monitoring and diagnostic applications. It specifies the general objects, general object behavior and general object interactions that provide the base of FDT. This bilingual version (2014-04) corresponds to the monolingual English version, published in 2009-06.
IEC 62453-2:2009 explains the common principles of the field device tool concept. These principles can be used in various industrial applications such as engineering systems, configuration programs and monitoring and diagnostic applications. It specifies the general objects, general object behavior and general object interactions that provide the base of FDT. This bilingual version (2014-04) corresponds to the monolingual English version, published in 2009-06.
provides information for integrating the PROFIBUS protocol into the FDT interface specification (IEC 62453-1). This PAS neither contains the FDT specification nor modifies it.
provides information for integrating the FOUNDATION FIELDBUS (FF) protocol into the FDT interface specification (IEC 62453-1). describes communication schemas, protocol-specific extensions and the means for block (e.g. transducer, resource or function blocks) representation.
provides information for integrating the INTERBUS® protocol into the FDT interface specification (IEC 62453-1).
provides information for integrating the HART protocol into the FDT interface specification (IEC 62453-1). This PAS neither contains the FDT specification nor modifies it.
includes the engineering and commissioning of field devices. Functionality for documentation and audit trail support is also considered. Examples and use cases are mainly given for actors, sensors and remote I/Os. Of course, FDT is prepared to be used for devices like drives, analyzers, recorders, etc. as well. The FDT interfaces are designed in such a way as to support all significant fieldbus protocols. The main focus of this version of FDT does not lie on any specific fieldbus protocol. Due to the scalable structure of FDT it will be easy to add new schemas in order to extend the scope to new protocols.
IEC 62453-2:2016 explains the common principles of the field device tool concept. These principles can be used in various industrial applications such as engineering systems, configuration programs and monitoring and diagnostic applications. This standard specifies the general objects, general object behavior and general object interactions that provide the base of FDT. This second edition cancels and replaces the first edition published in 2009. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: - Clarification for categories of DTMs (e.g. new category ?Composite Device DTM?) - Clarification: Command functions - New concept: Static function - Clarification for Communication Channel and communication - Clarifications for identification - Clarifications for scanning and DTM assignment - New concept: PLC tool support
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