Abstract:
A near-field communication (NFC) system may include a plurality of spaced-apart NFC sensors and at least one mobile wireless communications device. The at least one mobile wireless communications device may include a portable housing, an NFC circuit carried by the portable housing and configured to establish NFC communications with the NFC sensors when moved in close proximity therewith, and a controller carried by the portable housing and coupled to the NFC circuit. The controller may be configured to perform different mobile device operations based upon a timing and sequence in which the NFC sensors are communicated with.
Abstract:
A wireless communications system may include a user-wearable device including a clasp having open and closed positions, a first wireless security circuit (WSC), and a first controller coupled to the clasp and the first WSC. The system may further include a mobile wireless communications device including a portable housing, an input device(s), a second WSC carried by the portable housing and configured to communicate with the first WSC when in close proximity therewith, and a second controller carried by the portable housing and coupled to the second WSC and the input device(s). The second controller may be configured to enable mobile wireless communications device(s) function based upon a manual entry of an authentication code via the input device(s), and bypass the manual entry and enable the mobile wireless communications device function(s) based upon a communication from the user-wearable device and a position of the clasp.
Abstract:
A near-field communication (NFC) system may include a plurality of spaced-apart NFC sensors and at least one mobile wireless communications device. The at least one mobile wireless communications device may include a portable housing, an NFC circuit carried by the portable housing and configured to establish NFC communications with the NFC sensors when moved in close proximity therewith, and a controller carried by the portable housing and coupled to the NFC circuit. The controller may be configured to perform different mobile device operations based upon a timing and sequence in which the NFC sensors are communicated with.
Abstract:
A method includes receiving an input string from a virtual keyboard, generating at least one string based on the input string, where the input string is not a substring of the generated string, responsive to a determination that the generated string was previously generated based on the input string, selecting a candidate character associated with the input string and with the generated string, and displaying the generated string at a location on the virtual keyboard that is associated with the selected candidate character.
Abstract:
A method includes detecting when a portable electronic device having a touch-sensitive display is disposed in a holster and monitoring an area of the touch-sensitive display for a query gesture. When the query gesture is detected in association with the area, a function associated with the query gesture is performed.
Abstract:
Methods and devices for storing content are described. In one example embodiment, a method includes: displaying, on a display of an electronic device, a plurality of selectable content classification options for classifying a content item, the selectable content classification options including a selectable option to classify the content item as an action item and a selectable option to classify the content item as an archive; receiving, via an input interface associated with the electronic device, a selection of one of the content classification options; and storing the content item in accordance with the selected content classification option.
Abstract:
Methods and electronic devices for identifying a location of a top electronic device stacked on top of a bottom electronic device are described. In one example embodiment, the top electronic device and the bottom electronic device are configured to communicate. In one example embodiment, the method includes: receiving camera data associated with a camera of the top electronic device; obtaining display data identifying a pixel arrangement on at least a portion of a display of the bottom electronic device; and identifying the position of the top electronic device relative to the bottom electronic device based on the camera data and the display data.
Abstract:
A charger for charging a battery of an electronic device is provided. The electronic device has a charging clip that clips to a structure of the charger. The structure has a plurality of conductive strips disposed thereon. The number of conductive strips contacted by a charging contact on the charging clip determines the amount of current provided to the electronic device for charging.
Abstract:
Methods and electronic devices for identifying a location of a top electronic device stacked on top of a bottom electronic device are described. In one example embodiment, the top electronic device and the bottom electronic device are configured to communicate. In one example embodiment, the method includes: receiving camera data associated with a camera of the top electronic device; obtaining display data identifying a pixel arrangement on at least a portion of a display of the bottom electronic device; and identifying the position of the top electronic device relative to the bottom electronic device based on the camera data and the display data.
Abstract:
There is disclosed one or more methods, systems and components therefor for varying the behaviour of a projector. The operations for varying the behaviour from a first behaviour to a second behaviour responsive to a change in projection distance from a first distance to a second distance, the behaviours comprising a control mode or a presentation mode.