Abstract:
Configuration of detection of physical conditions in and/or around a communication apparatus is described. Further, configuration of an action responsive to the detection of physical conditions, or changes in physical conditions, is described. The communication apparatus may output a user notification in response to a moisture detection notification. A user interface of the communication apparatus may receive a user response. Further actions may be then taken based on the user response to the user notification. Alternatively or in addition, an end-user may predetermine a set of actions to be performed in response to the moisture event. Further, a respective set of actions may be specified for several possible severity levels or thresholds values of the moisture detection.
Abstract:
Methods and systems may be provided that detect moisture with an antenna. Electrical impedance at the antenna may be detected by an impedance sensor. Moisture may be detected based on the impedance at the antenna.
Abstract:
Systems, devices and methods for sensing moisture within an electronic device are disclosed. A device may include a housing and a display defining an exterior of an electronic device and an interior of the electronic device. Further, the device may include an integrated circuit (IC) within the electronic device and a control element within the electronic device. The device may also include a moisture sensor such as an inductive sensor, a capacitance sensor, or both. The moisture sensor, which may be part of the IC, together with the control element may sense moisture within the electronic device.
Abstract:
In various aspects and embodiment, the present disclosure relates to a carrier system for receiving and holding precursor material. The carrier system may be used within a material processing system for forming protecting coatings on a substrate. The carrier system may comprise a carrier including a plurality of receptacles. The carrier system may further include a plurality of cups, each cup configured to be removably positioned with a receptacle of the carrier.
Abstract:
Configuration of detection of physical conditions in and/or around a communication apparatus is described. Further, configuration of an action responsive to the detection of physical conditions, or changes in physical conditions, is described. The communication apparatus may output a user notification in response to a moisture detection notification. A user interface of the communication apparatus may receive a user response. Further actions may be then taken based on the user response to the user notification. Alternatively or in addition, an end-user may predetermine a set of actions to be performed in response to the moisture event. Further, a respective set of actions may be specified for several possible severity levels or thresholds values of the moisture detection.
Abstract:
Systems for organizing substrates in deposition chambers of material deposition apparatuses are disclosed. Such a system may be configured to organize a large number of substrates (e.g., electronic device subassemblies, such as circuit boards with semiconductor devices and other components secured thereto; partially assembled electronic devices; fully assembled electronic devices; etc.) in a manner that will enable concurrent deposition of material onto all of the substrates of the plurality. The system may be configured to optimize an efficiency with which the substrates are packed into the deposition chamber.
Abstract:
A pyrolysis tube for use with a material deposition system includes a plurality of channels. The channels may be defined by internal elements of the pyrolysis tube, or by internal elements that form an insert for a conventionally configured pyrolysis tube. One or more of the channels may extend straight through the pyrolysis tube, providing a direct line of sight through the pyrolysis tube. Material deposition systems that include such an insert or pyrolysis tube are also disclosed, as are methods for efficiently pyrolyzing precursor materials at temperatures that are reduced relative to conventional pyrolysis temperatures and/or at rates that are increased relative to conventional pyrolysis rates.