Patent classifications
G05B2219/23363
PORTABLE PRODUCTION MACHINE, MOBILE TERMINAL, PRODUCTION SYSTEM, AND METHOD FOR CAPTURING DATA
The present disclosure relates to a portable production machine, a mobile terminal, a production system having a portable production machine and a mobile terminal, and a method for capturing data. According to aspects of the disclosure, on the production machine - which can be, for example, a welding machine or cutting machine - production data is automatically captured, organized into data sets, and converted into data set images, which are displayed on a display device. The displayed data set images are captured with a mobile terminal and transmitted to a central server. As a result, a plurality of production machines can be incorporated into a data system without the need for any changes to the hardware in the production machines.
Distributed autonomous robot interfacing systems and methods
Described in detail herein is an automated fulfilment system including a computing system programmed to receive requests from disparate sources for physical objects disposed at one or more locations in a facility. The computing system can combine the requests, and group the physical objects in the requests based on object types or expected object locations. Autonomous robot devices can receive instructions from the computing system to retrieve a group of the physical objects and deposit the physical objects in storage containers.
Processing Device For Processing A Dental Indication
A processing device (100) for processing a dental indication (103), including an electronic status detection device (105) for detecting status data of the processing device (100) and/or the dental indication (103); and an electronic generation device (107) for generating a code (109) comprising the status data.
Sensor arrangement and method for operating a sensor arrangement
A sensor array (100) with one or more sensors (201-204), with one or more operating means (101-104), each of which labels an object (801, 802), and with a processing unit (501) that is connected to the sensor or the sensors (201-204) via a communication connection (401), wherein each sensor (201-204) is designed for reading and unambiguously identifying an operating means (101-104). In each sensor (201-204), the time at which an operating means (101-104) was detected, the operating means identification of the operating means (101-104), a sensor identification that unambiguously identifies the sensor, and a quality variable q(t, s, b) determined based on time, sensor and operating means for the detection of the operating means (101-104) is sent to the processing unit (501). The invention further relates to a corresponding method.
Method for changing software data of a field device and a system comprising such a field device
A method for changing software data of a field device is disclosed. In an embodiment, the field device has, in or on a housing, a device code that can be optically detected using a mobile device. An embodiment of the method includes detecting a first device code with a reader unit of the mobile device, accessing primary device data of the field device by the mobile device, and converting the primary device data to secondary device data. The embodiment further includes detecting a second device code and subsequently transmitting the secondary device data to the field device. The second device code may be the same as or different from the first device code. The disclosed embodiments furthermore comprise an associated system.
Method and apparatus for the automated management of a coating plant
A plant for manufacturing products, in particular for applying a coating on parts, includes apparatuses having radiofrequency transmitters, with a pre-set periodicity, of a radio signal containing a unique identifier of each apparatus; a portable device carried by an operator and receiving the radio signal; a program loaded on and performed by the portable device to extract a unique identifier of the apparatus and detect the operator-apparatus distance through an analysis of the trend of the radio signal, the radio-transmitters transmitting periodically their unique identifier and having a remote configuring/setting channel through radio-frequency communication with an external control device to exchange data packets; and a connecting procedure between the portable device and the radio-frequency transmitter to receive information on the operating status of the apparatuses, the signals being transmitted to a remote server or a cloud to monitor the operating conditions of the apparatuses.
METHOD FOR ACTIVATING OR DEACTIVATING AT LEAST ONE HARDWARE AND/OR SOFTWARE FUNCTIONALITY OF AN AUTOMATION COMPONENT
A method for activating or deactivating at least one hardware- and/or software functionality of an automation component having an input unit and an output unit includes: generating an identification information of the automation component; providing the identification information as a first machine interpretable code on the output unit; registering the provided first code using a service device via a reaction free, unidirectional data channel; transmitting the identification information from the service device to a server; generating a first license information using the server; transmitting the first license information as an alphanumeric data sequence of predetermined character length from the server to the service device; inputting the output first license information into the automation component using the input unit; checking the plausibility of the first license information using the automation component; activating or deactivating the hardware- and/or software functionality upon successful checking of the plausibility of the first license information.
METHOD OF OBTAINING AT LEAST ONE OPERATING PARAMETER OF AN ELECTRICAL SUBSTATION COMPONENT
A method of obtaining at least one operating parameter of an electrical substation component. The method comprises: providing the electrical substation component with a machine-readable code, non-human-readable, including the a operating parameter of the electrical substation component, the operating parameter includes a network connection parameter corresponding to the electrical substation component; providing an electronic module able to read the network connection parameter from the machine-readable code, the electrical substation component and the electronic module are in communication with a communications network; configuring the electronic module to read the network connection parameter from the machine-readable code and retrieve the network connection parameter from the machine-readable code; configuring the electronic module to use the network connection parameter retrieved from the machine-readable code to form a direct network connection with the electrical substation component to enable communication between the electronic module and the electrical substation component via a digital communication link.
Shopping facility assistance systems, devices and methods
Apparatuses, components and methods are provided herein useful to provide assistance to customers and/or workers in a shopping facility. In some embodiments, a shopping facility personal assistance system comprises: a plurality of motorized transport units located in and configured to move through a shopping facility space; a plurality of user interface units, each corresponding to a respective motorized transport unit during use of the respective motorized transport unit; and a central computer system having a network interface such that the central computer system wirelessly communicates with one or both of the plurality of motorized transport units and the plurality of user interface units, wherein the central computer system is configured to control movement of the plurality of motorized transport units through the shopping facility space based at least on inputs from the plurality of user interface units.
AN AIR PURIFIER FILTER SYSTEM, AN AIR PURIFIER AND A METHOD FOR CONTROLLING AN AIR PURIFIER
An air purifier filter system comprises an air purifier filter unit and a machine readable identifier which provides information concerning the filter unit type and performance information specific to a target pollutant to be filtered by said air purifier filter unit from a plurality of different pollutants that can be filtered by that filter unit type. This information can be used to provide an end of life prediction for the filter unit or provide advice that the filter should be changed for other reasons. This enables the user to be given advance warning, and to be given instructions when it is time to change the filter unit. The instructions to change the filter unit may be more accurate than a simple timer as they can take account of the type of filter unit and the performance information. In some examples the use history of the filter unit may also be used to predict the time when it should be changed.