Abstract:
A method for the project engineering of an automation system is provided. An existing project is opened or a new project is created in a project engineering software tool. In this project, a station having a plurality of slots is opened or generated. A hardware catalog is opened, the hardware catalog including a plurality of hardware modules. At least one hardware module is inserted from the hardware catalog into the station. The station is saved together with the inserted modules. In the process one or more hardware modules can be combined to form a hardware packet. In order to insert the hardware modules which are combined in a hardware packet, the hardware packet is selected and, as soon as the hardware packet is integrated into the station, all the hardware modules contained therein are automatically allocated to free slots of the station.
Abstract:
A configurable, connectorized system for providing RTU monitoring of field digital and analog parameters and transmitting data to the Central PLC system dramatically reduces the number of wire connections that must be made to connect sensors and actuators to a PLC system. The system is also extremely rugged and safe to be located in a hazardous environment.
Abstract:
The underlying invention relates in particular to a production module for a production line which is modularly populatable with production modules. In embodiments, provision is made whereby the production module comprises at least one manipulator unit with which a workpiece or a workpiece component is, during the production process, transferable between a deposit position and a production position in the production space of a production module which, for the execution of a production step, is positioned directly downstream in a production direction (R) along the production line.
Abstract:
A method/device for managing/configuring field devices in an automation installation with a configuration tool designed to physically identify a field device therein, to logically incorporate it into, and configure it in, the automation installation, wherein the configuration tool to uses a prescribed field-device-type-specific information package describing functions and data of the field device at least partially and wherein the configuration tool has a server and a client, the server being designed to integrate received configuration data with the field-device-type-specific information package into an information package and to validate and process the information package with a piece of validation logic, and the client having a user interface for taking the configuration data. To avoid bottlenecks in the client/server communication, the client is equipped with an information package instance, and is designed to integrate taken configuration data into a package and validate the package. The server is designed to take validated packages.Accompanying figure
Abstract:
The present invention relates to a method for the project engineering of an automation system and in particular for configuring hardware modules in an automation system, comprising the steps: a) Open an existing project or create a new project in a project engineering software tool, b) Open or generate, in this project, a station having a plurality of slots, c) Open a hardware catalog comprising a plurality of hardware modules, d) Insert at least one hardware module from the hardware catalog into the station, e) Save the station together with the inserted modules. In the process one or more hardware modules can be combined to form a hardware packet. In order to insert the hardware modules which are combined in a hardware packet, the hardware packet must first be selected and, as soon as the hardware packet is integrated into the station, all the hardware modules contained therein are automatically allocated to free slots of the station.
Abstract:
A system and method includes storing a description of at least one sensor in a database; storing a description of the at least one actuator in the database; storing a PLC-list comprising a description of the at least one PLC in the database; writing a controller program that describes an action of the at least one actuator caused by the at least one sensor; selecting, based on the database and the controller program, a PLC of the PLC-list, which is able to functionally connect the sensor and the actuator; generating an application for controlling the selected PLC based on the selected PLC and the controller program; and transferring the application to the selected PLC thus configuring and/or functionally connecting the at least one sensor and the at least one actuator of the sub-system.
Abstract:
Exemplified herein is a graphical user interface for an industrial automation system that provides, in a single aggregated and eloquent view, a configuration workspace to discover and present configuration details of control components within an industrial automation system. These components may include industrial controllers, programmable logic controllers (PLCs), supervisory control and data acquisition (SCADA) systems, programmable automation controllers (PACs), and the like, which have modules (as well as submodules) connected thereto. Among other things, the configuration workspace enables a holistic view of identified hardware configuration and the modular reconciliation and troubleshoot of the network device and module configurations.
Abstract:
A memory programmable controller of the multiprocessor type having both word and bit processors is disclosed. The controller has a data memory in which process images of the process being controlled are stored and a user program memory in which a control program is stored. In order to increase the rate at which commands are executed by the controller, means are employed by which the bit processor fetches commands from the user program memory at the same time that it is executing a prior command. Accordingly, two sequential commands are respectively executed and fetched simultaneously, thereby increasing the speed of the controller. Separate bus systems dedicated to the bit processor which enable the bit processor to access the user program memory and the data memory are employed.
Abstract:
A system is disclosed for managing a set of electrical/electronic devices for driving fans of a heat exchanger of a refrigeration plant, having a basic control unit adapted to act as interface between a remote control unit/Master unit and a plurality of electrical/electronic devices to be controlled. The basic control unit has a data input to receive inputs from the remote control unit/Master unit and a plurality of data outputs connectable with respective electrical/electronic devices of the electrical/electronic devices. The basic control unit is configured to address the electrical/electronic devices using management signals to program the operating parameters of the electrical/electronic devices, and to directly manage the operation. The management signals include addressing, programming and management commands previously programmed in the memory unit based on specific applications and communication protocols. The basic control unit manages the data outputs independently from the other data outputs, to manage the electrical/electronic devices independently.
Abstract:
Exemplified herein is a graphical user interface for an industrial automation system that provides, in a single aggregated and eloquent view, a configuration workspace to discover and present configuration details of control components within an industrial automation system. These components may include industrial controllers, programmable logic controllers (PLCs), supervisory control and data acquisition (SCADA) systems, programmable automation controllers (PACs), and the like, which have modules (as well as submodules) connected thereto. Among other things, the configuration workspace enables a holistic view of identified hardware configuration and the modular reconciliation and troubleshoot of the network device and module configurations.