Drath
David J. Drath, Lakeland, MN US
Patent application number | Description | Published |
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20080272332 | MICROENCAPSULATED HEAT DELIVERY VEHICLES - Microencapsulated delivery vehicles comprising an active agent are disclosed. In one embodiment, the microencapsulated delivery vehicles are heat delivery vehicles capable of generating heat upon activation. The microencapsulated heat delivery vehicles may be introduced into wet wipes such that, upon activation, the wet wipe solution is warmed resulting in a warm sensation on a user's skin. Any number of other active ingredients, such as cooling agents and biocides, can also be incorporated into a microencapsulated delivery vehicle. | 11-06-2008 |
20150064489 | ONE PART, FAST-SETTING, AQUEOUS ADHESIVE EMULSIONS - The present disclosure relates to acrylic adhesive emulsions comprising a core-shell polymeric component comprising an inner core and an outer shell containing at least one pendent functional group; a polyfunctional component capable of reacting with at least one of the pendent functional groups on the outer shell; wherein the inner core is free of functional groups reactive with the pendent functional groups on the outer shell; and wherein the pH of the emulsion is 6.5 or less; and wherein the emulsion is a fast-setting, one part, aqueous, adhesive. Bonded articles made therefrom, and methods of bonding articles using these emulsions are also disclosed. | 03-05-2015 |
Rainer Drath, Weinheim DE
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20080294473 | System and Method for Automatic Testing of Planning Results - A system and a method are disclosed for automatically testing planning results, the tests being made possible by a data processing device in which planning results that are to be verified are stored in an electronic format, and with the aid of software used for performing automatic and systematic tests. The software can contain test criteria that are stored in the form of rules as well as test programs which have access to the planning results and the rules. Additionally, display and/or output media are provided to output test results. | 11-27-2008 |
20120162235 | EXECUTION OF REAL TIME APPLICATIONS WITH AN AUTOMATION CONTROLLER - A method and system are provided for performing the computational execution of automation tasks with automation devices by combining one or more central processing units (CPU) and one or more Graphics Processing Units (GPU). The control tasks and/or control algorithms are executed by the single-core or multi-core control unit (CPU) and a multi-core-graphics processor (GPU) or both in parallel at the same time. | 06-28-2012 |
20120303586 | SYSTEM AND METHOD FOR DATA INTEGRATION OF ENGINEERING TOOLS - Exemplary embodiments of the present disclosure relates to a system and method for data integration using at least two independent engineering tools including their private database, where all data in the first tool being of interest for the second tool are identified, specified and stored in an electronic data container. Each data item stored in the electronic data container is provided with a link to the original data and with a copy of the stored data items. The electronic data container that includes the data items can be accessed by the target tool or a separate application to obtain a read-only view of the engineering data of the source tool for further use in the target engineering tool and navigation through the data for the engineer as well as for a data import. | 11-29-2012 |
20130179519 | SYSTEM AND METHOD FOR COLLABORATION, MESSAGING AND INFORMATION EXCHANGE BETWEEN ENGINEERING TOOLS - A system and method are provided for the collaboration between engineering tools and engineers. A data processing unit is combined with or includes a source engineering tool having a source engineering data storage. The data processing unit exchanges data with at least one target data processing unit associated with at least one target engineering tool having its own engineering data storage. The collaboration system and method provides engineers of the source or target engineering tools to generate collaboration requests or collaboration responses which are automatically assigned to the corresponding engineering data object, and the owner and receivers of regarding engineering data objects are automatically notified about corresponding collaboration requests or responses across engineering tools and data processing units. | 07-11-2013 |
20130218307 | METHOD FOR DEBUGGING OF PROCESS OR MANUFACTURING PLANT SOLUTIONS COMPRISING MULTIPLE SUB-SYSTEMS - An exemplary method and a system for debugging a control system of an industrial plant where the system includes at least two different control sub-systems, of the same or different control equipment type, on plant or sub-system level, and has specific programmable controller units in devices like PLCs, DCSs, robots, drives, instruments and/or other process specific components whereas all specified parameters and signals of the control system across its sub-systems, devices, and technologies are extracted and visualized on a single sight and are utilized for the definition of system wide breakpoints, utilizing a subset of those signals or parameters, and related conditions, e.g. logical combinations of the signals or parameters. | 08-22-2013 |
Rainer Drath, Einhausen DE
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20120036499 | SYSTEM AND METHOD FOR AUTOMATICALLY TESTING A PROGRAM FOR SAFETY-RELATED AUTOMATION SYSTEMS - A method and system are provided for automatically testing a program for automation systems (e.g., programmable logic controllers) with regard to maintaining programming guidelines for program design for automation systems. A copy of at least part of a safety-related program is obtained from a development system for automation systems as a copy to be tested. The program copy to be tested is loaded into a test device for testing programs. The test device has access to programming guidelines for program testing. The test device automatically performs the program test with regard to maintaining programming guidelines, and outputs the test result. | 02-09-2012 |
Rainer Drath, Seckenhiem DE
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20140200688 | SYSTEM AND METHOD FOR DISTRIBUTING AND EXCHANGING ELEMENTS FOR PLANNING AND/OR FOR OPERATING AUTOMATION OPERATING EQUIPMENT - A system and method are disclosed for distributing and exchanging elements for planning and/or operating automation operating equipment, which include at least one interface device, at least one processing device and at least one data store, wherein the interface device effects an integrated connection to at least one engineering tool and/or an integrated link to at least one engineering tool such that functionalities of the at least one interface device and of the at least one processing device can be retrieved from the respective engineering tool and carried out. The respective processing device, the respective interface device, and the respective engineering tool, elements created and/or marked by a first engineering tool can be transferred to the respective processing device and processed and/or can be made available on the at least one data store to be retrieved and/or to be transferred to and/or implemented in at least one second engineering tool. | 07-17-2014 |
Rainer Drath, Seckenheim DE
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20150277429 | SYSTEM AND METHOD FOR MONITORING AND/OR DIAGNOSING OPERATION OF A PRODUCTION LINE OF AN INDUSTRIAL PLANT - A system and method monitor and/or diagnose the operation of a production line of an industrial plant which is controlled by an automation system. The system includes a remote data processing server, which is installed outside of the industrial plant. The remote data processing server is configured to receive a digital input signal reflecting at least one control input signal and a digital output signal reflecting a second operational state, to determine at least first and second modeled states corresponding to the at least first and second operational states, respectively, by inputting the digital input and the digital output signals to a digital observer model of the production line and the automation system and by processing the digital observer model, and to forward the first and second modeled states to an output interface from where they can be accessed by modeling and/or diagnosing modules. | 10-01-2015 |