摘要:
A Packaging System having a Packaging Line designed to produce Packaged Consumer Products; a Marking System designed to mark individual or packs of Packaged Consumer Products with graphical information, and a Line Controller designed to control the Packaging Line and the Marking System. The Marking System includes: Marking Equipment and a Marking Server. The Marking Server is designed to receive Production Batch Data and associated Template Identifier(s); and a Marking Device Controller. The Line Controller is designed to: receive Production Batch Data and generate Marking Instruction(s) for associated Marking Device Controller(s). The Marking Device Controller is designed to: receive Marking Instruction(s) from the Line Controller, fetch out from a Repository in the Marking Server stored Mark Layout Template(s) and Production Batch Data, and generate Marking Command(s) for Marking Device(s) controlled by the Marking Device Controller based on fetched Mark Layout Template(s) and Production Batch Data.
摘要:
A Packaging System comprising: a Packaging Line designed to produce Packaged Consumer Products; a Marking System designed to mark individual or packs of Packaged Consumer Products with graphical information, and a Line Controller designed to control the Packaging Line and the Marking System. The Marking System includes: Marking Equipment and a Marking Server. The Marking Server is designed to receive Production Batch Data and associated Template Identifier(s); and a Marking Device Controller. The Line Controller is designed to: receive Production Batch Data and generate Marking Instruction(s) for associated Marking Device Controller(s). The Marking Device Controller is designed to: receive Marking Instruction(s) from the Line Controller, fetch out from a Repository in the Marking Server stored Mark Layout Template(s) and Production Batch Data, and generate Marking Command(s) for Marking Device(s) controlled by the Marking Device Controller based on fetched Mark Layout Template(s) and Production Batch Data.
摘要:
A method for monitoring at least one server in a semiconductor factory automation (FA) system, includes the steps of: a) providing server state information from at least one server to a real-time database, wherein the server state information includes an availability of a central processing unit, an availability of a disk and a state of a program process related to the server; b) storing the processor state information in the real-time database; c) retrieving the server state information to monitor the server; and d) displaying the server state information retrieved. Therefore, the method monitors at least one server in a real time so that an operator can easily locate a failure of at least one-server.
摘要:
Method and apparatus for an improved interface for controlling transactions in a manufacturing execution system. A common display interface is displayed on a computer system display which represents a series of transactions for a single manufacturing process, The common display interface includes a plurality of subdisplays each separately accessible through the common display interface. Each of the plurality of subdisplays includes various information related to the step in the manufacturing process represented by the subdisplay, The common display also can access a first group of the plurality of subdisplays in a sequential order and perform transactions related to the subdisplays in a sequential order. The common display also can access a second group of the plurality of subdisplays at arbitrary time intervals, and performing transactions associated with the second group of the plurality of subdisplays at the arbitrary time intervals.
摘要:
In an automation system, a plurality of machines are connected to a file server via a network and the job result data produced by the machines, are shared by the file server. The job result data processed from a machine (for example, a tester) are stored in the file server. Another machine (for example, a repairer) can execute a job by using the above job result data.
摘要:
Factory machines such as CNC machine tools, co-ordinate measuring machines and industrial robots are connected in a local area network. Each machine controller is interfaced to the network via a communications adaptor which translates data, commands and programs between the Manufacturing Automation Protocal used by the network and the necessary machine-specific format. The communications adaptors are microprocessor-based and have additional input/output ports for controlling probes, other sensors such as temperature sensors and workpiece presence sensors, peripheral devices such as conveyors, and the "electronic handwheel" inputs of the machine controller. Controlling such devices from a program run in the communications adaptor rather than from the machine controller or from a computer on the network gives greater power, flexibility, convenience and potential for real-time control.