Abstract:
Verfahren zum Fügen verdeckter Werkstückteile mittels eines Energiestrahls, bei dem ein Werkstückunterteil und ein Werkstückoberteil relativ zueinander positioniert werden, das Werkstückoberteil das Werkstückunterteil im positionierten Zustand längs einer Fügekontur des Werkstückunterteils kontaktiert und die Fügekontur, deren Soll-Verlauf einer Steuerung in Bezug auf ein Koordinatensystems bekannt ist, verdeckt, der Energiestrahl auf eine vom Werkstückunterteil abgewandte Oberseite des Werkstückoberteils gerichtet und von einer Steuerung längs der Fügekontur bewegt wird, um das Werkstückoberteil mit der Fügekontur stoffschlüssig zu fügen, mit dem Energiestrahl eine Suchnaht auf der Oberseite des Werkstückoberteils zur Detektion der Fügekontur erzeugt wird, mittels eines Detektors ein Übergang detektiert wird, an dem ein Flächenbereich des Werkstückoberteils, der keinen Kontakt mit dem Werkstückunterteil hat, an einen Flächenbereich des Werkstückoberteils, der einen Kontakt mit der Fügekontur hat, grenzt, von der Steuerung eine Position des Übergangs registriert und mit einer in der Steuerung abgespeicherten Soll-Position des Übergangs verglichen wird, und bei einer abweichenden Position des Übergangs eine Bewegung des Energiestrahls längs der Fügekontur korrigiert wird.
Abstract:
A mobile data storage device (102) may be housed in a mobile computing device (142) without an active cooling feature. The mobile data storage device (102) can have at least a controller (122) configured to delay command execution in response to a predicted mobile data storage device (102) temperature. The controller (122) can insert a plurality of delays into a command queue to prevent the mobile data storage device (102) from reaching the predicted mobile data storage device (102) temperature.
Abstract:
A method for processing products having low tolerances by removing shavings, including a processing step for finishing the workpiece being processed (2), comprises a step for detecting temperature (T) of the workpiece being processed (2) before or at the same time as the finishing step and a step for adjusting the finishing depths in accordance with the detected temperature value.
Abstract:
To monitor an adjusting movement of an adjuster (4) operated by an electric adjusting drive (2), the time (t) elapsed from the start of the adjusting movement and a characteristic value (I) for the torque of the adjusting drive (2) are detected and compared with stored reference values (tS or IG). Depending on the result of comparison, monitoring signals (S1, S2, S3, S4) are derived therefrom which are imitated in the monitoring signals provided by mechanical transmitters in travel and torque detection.
Abstract:
A cold-shed may be deployed in areas with little or no electrical infrastructure in order to provide a cold storage area for perishable goods including agricultural, dairy products, medicines, vaccines, etc. A wireless communication device may be installed in the cold-shed to allow remote management, access control, and monitoring of the cold-shed devices, including cooling units, solar power cells, batteries, power conditioners, and a variety of sensors to determine internal and external temperatures, door positions, and other information. A mobile device configured to communicate with the wireless communication device may receive information and updates via cellular networks or text messaging. The mobile device may also be used to change temperature settings, lock and unlock doors, conduct inventory management and auditing, and make other changes. The corresponding application allows an owner to manage and monitor many cold-sheds from a single mobile device.
Abstract:
A method, an apparatus, and a computer program product for thermal management are provided. The apparatus may be a mobile device, a UE, a base station, a tablet computer, a smart watch, a head-mounted display, a portable media player, a personal navigation device, a wearable device, etc. The apparatus determines a direction of a natural draft relative to the apparatus. The apparatus generates an airflow within the apparatus in the direction of the natural draft. To determine the direction of the natural draft, the apparatus may detect an orientation of the apparatus and determine an upward direction based on the detected orientation. The upward direction may be generally aligned with the natural draft
Abstract:
A system for qualifying a process in a facility. The system includes a validation system and a portable computer device. The validation system includes a storage device, a processing device, and one or more sensor input modules each connected to one or more sensors. The portable computer device includes a storage device and a processing device. The storage device of the portable computer device includes a database comprising configuration file for configuring the validation system to perform a qualification of the asset. The processing device of the portable computer device is configured to transmit the configuration file to the validation system for storage in the storage device thereof. The processing device of the validation system is configured to load the configuration file stored in the storage device thereof and to perform the qualification of the asset based on the loaded configuration file.