Description
GE General Electric Technical Specifications: IS200EISBH1AAA
Fault activities allow you to end a workflow in a predictable way under specific conditions. It is used to
create a user-defined stop point within a workflow where an IS200EISBH1AAA error is raised.
If a fault resource is selected when the fault activity is configured, that fault is raised with its associated
error message. If a fault has not been selected, the activity raises a default fault, or a non-specific error.
The common use for a fault activity is within a fault IS200EISBH1AAA scope where the end result is expected and defined.
Fault activities should not be used in a linear process as they will cause the process and the workflow to
end and begin the postsubprocess and unload steps.
brand | Product Name | Product model | Order No |
GE Fanuc | Module card | IS200EISBH1AAA | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
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Xiamen | Shunfeng Express | Commissioning and installation | Power Plant Steel Plant Cement Plant Shipboard Papermaking |
Service advantages | Foreign import, goods preparation and supply | Reasonable price and reliable quality | Pictures are for reference only |
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The Fault Scope activity is used to contain activities in a subprocess that are likely to raise errors. If a fault
is somewhat predictable, the Fault Scope activity can IS200EISBH1AAA invoke preset resolutions that deal with the fault
and permit the workflow to continue at the point immediately following the scope.
The benefit of fault scopes is that they have built-in resolutions to these failures. Scopes have fault
handlers that deal with these issues so that the workflow instance can resume after the scope runs if
an error occurs. So, if the fault is handled, the workflow continues at the point immediately following the
scope. There can be many levels of scopes, which are nested in the subprocess.
The fault scope activity allows a series of activities to be contained in the scope. If a failure during a
workflow instance is predictable, you can add a fault handler
that is associated with the fault to resolve
these circumstances. For example, if you can IS200EISBH1AAA predict that a new process designed on a production floor
may fail some of the time, a special set of fault handlers can be assigned to this scope to deal with the
failure.
The fault scope activity is also associated with fault handlers as they pertain to level promotion. Within
a fault scope, there are a series of fault handlers at various levels to try and catch any error or failure
that is occurring. The fault scope searches for handlers to run. If the scope cannot find a handler to
deal with the fault (that is, if no resolution to this fault is found), the fault is promoted to the next level of
fault scope where it could possibly be handled by its fault handlers. The next level could be another fault
scope activity (if the scope is nested), or upwards to the subprocess/step itself. The same sequence of
events happens until there are no further levels to promote to. If there are no more levels (that is, the fault
reaches the workflow level), the workflow stops and an error is logged.
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