Abstract:
A safe control apparatus (10) for adjusting the stroke length of an eccentric press (100), wherein the eccentric press (100) has a plunger (102) that is driven via a connecting rod (104) by an eccentric system (106) that comprises an eccentric shaft (108) and an eccentric bushing (114) that can be released from one another and then rotated against one another for the adjustment of the stroke length; wherein the control apparatus (10) has an encoder (12) for determining the rotational position of the eccentric shaft (108) and a control logic (10) to generate a first switching signal at at least one first rotational position (BDC, TDC). The control logic (10) is here configured to automatically readjust the first rotational position (BDC, TDC) on an adjustment of the stroke length.
Abstract:
To simplify a configuration of an automation system for a customer, a configuration apparatus for configuring an automation system of a customer is provided that comprises device components of one or more manufacturers, having a first software tool that is provided for inputting user data in customer-specific terminology is provided and stores the input user data in a data management sector; having a second software tool that is provided for receiving the user data and that has a calculation unit for determining configuration data from the user data, wherein the second software tool has at least one mapping algorithm that prepares the stored user data for the calculation unit into manufacturer-specific terminology, and wherein a storage of the user data and a storage of the configuration data by the second software tool can be carried out separately from the data management sector of the first software tool.
Abstract:
To ensure a simple and secure verification of a device, in particular of a safety controller, a method of verifying a configuration of a device, in particular of a safety controller, is provided, said method comprising the steps of subdividing the configuration of the device into at least two part configurations that are validated, of allocating the part configurations to at least one part configuration sequence in which a dependence on a verification of the part configurations on one another is predefined, of determining parameters of each part configuration, with the parameters being used for verifying the respective part configurations, of calculating a single checksum that reproduces the verification of the part configurations, with the single checksum of a preceding part configuration being recalculated in the verification of a part configuration following in the part configuration sequence and with the verification of the preceding part configuration being confirmed on an agreement of the single checksum, and with the configuration of the device being verified when the last part configuration has been verified for each part configuration sequence.