Abstract:
Various disclosed embodiments include methods and systems that automatically adjust camera functions of an electronic device to provide improved image quality by determining whether the electronic device is being operated indoors or outdoors.
Abstract:
Various disclosed embodiments include methods and systems that automatically adjust camera functions of an electronic device to provide improved image quality by determining whether the electronic device is being operated indoors or outdoors.
Abstract:
A mobile device for determining a handling condition of the mobile device and a method of use thereof. One embodiment of the mobile device includes: at least one left capacitive proximity sensor disposed on a left side of the mobile device and operable to detect a hold condition, at least one right capacitive proximity sensor disposed on a right side of the mobile device and operable to detect a hold condition, an accelerometer disposed in the mobile device and operable to detect an orientation of the mobile device, an ambient light proximity sensor disposed in the mobile device and operable to detect a proximity of a user's head, and a processor operable to execute an application configured to gain access to and employ the hold condition, the orientation, and the proximity of the user's head to determine a handling condition.
Abstract:
A mobile device for determining a handling condition of the mobile device and a method of use thereof. One embodiment of the mobile device includes: at least one left capacitive proximity sensor disposed on a left side of the mobile device and operable to detect a hold condition, at least one right capacitive proximity sensor disposed on a right side of the mobile device and operable to detect a hold condition, an accelerometer disposed in the mobile device and operable to detect an orientation of the mobile device, an ambient light proximity sensor disposed in the mobile device and operable to detect a proximity of a user's head, and a processor operable to execute an application configured to gain access to and employ the hold condition, the orientation, and the proximity of the user's head to determine a handling condition.
Abstract:
In an example embodiment, an application is executed on a mobile device, causing generation of application graphical output in an application layer. The application layer is rendered on a touchscreen display. A first gesture of a user is detected, and in response to the first gesture a viewfinder layer is generated, the viewfinder layer containing real-time image data from the embedded camera via a camera service. A composite of the application layer, the viewfinder layer, and a transparency mask is rendered so that a portion of the viewfinder layer is visible and a portion of the application layer is visible on the touchscreen display at the same time. Then a second gesture by the user is detected, and in response to the second gesture, viewfinder data from the viewfinder layer is captured and the viewfinder layer and transparency mask are removed.
Abstract:
In an example embodiment, an application is executed on a mobile device, causing generation of application graphical output in an application layer. The application layer is rendered on a touchscreen display. A first gesture of a user is detected, and in response to the first gesture a viewfinder layer is generated, the viewfinder layer containing real-time image data from the embedded camera via a camera service. A composite of the application layer, the viewfinder layer, and a transparency mask is rendered so that a portion of the viewfinder layer is visible and a portion of the application layer is visible on the touchscreen display at the same time. Then a second gesture by the user is detected, and in response to the second gesture, viewfinder data from the viewfinder layer is captured and the viewfinder layer and transparency mask are removed.
Abstract:
A method and a system for virtual handwriting recognition are disclosed. In an embodiment the method includes optically capturing a finger gesture by the camera unit of a computing device and transforming the finger gesture into a digital indicia by a processing unit of the computing device. The method further includes comparing the digital indicia with a stored indicia by the processing unit, wherein the stored indicia is stored in a memory unit of the computing device and displaying the digital indicia on a display of the computing device.
Abstract:
Various disclosed embodiments include methods and systems that automatically adjust camera functions of an electronic device to provide improved image quality by determining whether the electronic device is being operated indoors or outdoors.