Abstract:
An information display device comprising a processor, the processor executing: time information acquiring processing of acquiring time information; azimuth information acquiring processing of acquiring azimuth information; coordinate setting processing of setting a time coordinate system for display of the time information on a display image and setting an azimuth coordinate system for display of the azimuth information on the display image; and display control processing of displaying particular time information acquired by the time information acquiring processing, in the time coordinate system set on the display image and particular azimuth information acquired by the azimuth information acquiring processing, in the azimuth coordinate system set on the display image.
Abstract:
To improve convenience in a wearable electronic apparatus that measures biological information. An electronic apparatus includes a sensor mechanism, a main body, and a retaining mechanism. The sensor mechanism acquires biological information of a user. The main body supports the sensor mechanism in a movable manner in an upper/lower direction. The retaining mechanism changes the sensor mechanism and the user's body between an unpress state and a press state by moving the sensor mechanism at the main body. With the electronic apparatus, a displacement of the sensor mechanism from the body is prevented and the maintenance of a contact condition is secured, an optical measurement becomes possible; therefore, it is thereby possible to improve convenience for a user without adjusting a position, etc.
Abstract:
An image processing apparatus to be employed at an imaging device. An image acquisition section acquires data of an image. An input operation receiving section receives an operation for selection of an image region of the image data acquired by the image acquisition section. An image quality processing choosing section chooses image quality processing to be applied to the image data acquired by the image acquisition section in accordance with the image region received by the input operation receiving section. An image quality processing information presentation section presents information relating to the image quality processing chosen by the image quality processing decision section.
Abstract:
Provided is an electronic device capable of suitably determining whether a user is moving or stationary. The electronic device includes a speed acquisition unit that acquires a user's moving speed and a processor that determines whether the user is in a moving state or in a pause state. In the moving state, the processor determines that a transition from the moving state to the pause state has occurred in the case where the moving speed acquired by the speed acquisition unit is less than the pause speed threshold. In the pause state, the processor determines that a transition from the pause state to the moving state has occurred in the case where the moving speed acquired by the speed acquisition unit is equal to or more than the moving speed threshold.
Abstract:
A map recording device includes: a display which displays information; a storage; and a processor. The processor causes the display to perform a display of an arbitrary region expressed by browsing map information specified by a user's manipulation. The processor further acquires partial map information from the browsing map information. The partial map information is map information other than the browsing map information and expresses a region corresponding to a whole region displayed in the display. The storage stores the partial map information acquired in the acquiring.
Abstract:
A portable terminal 1 includes an information acquisition unit 55, an output control unit 56 and an output unit 20. The information acquisition unit 55 acquires move locus information on a move due to daily behavior of a user and a move due to non-daily behavior. The output control unit 56 controls an output unit 20 such that the output unit 20 outputs the acquired move locus information in a state where it is possible to distinguish the move due to non-daily behavior of the user.
Abstract:
An electronic device includes a touch sensor that, by operating in a predetermined operation direction, inputs a predetermined instruction to the electronic device, and a frame-like member that is provided so as to surround the touch sensor. A predetermined first processing is carried out on a first region of the frame-like member corresponding to the predetermined operation direction, and second processing, which is different from the first processing, is carried out on a second region, which is a region of the frame-like member other than the first region.
Abstract:
An electronic device includes a sensor unit, a first CPU, and a second CPU. A first management unit functioning in the first CPU manages first information related to cumulative information acquired by the sensor unit. A second management unit functioning in the second CPU manages second information related to the cumulative information. One of the first management unit and the second management unit outputs a corresponding one of the first and second information related to the cumulative information managed by the one management unit to the other management unit according to switching of an operating state of the first CPU, and the other management unit continues management of the corresponding other of the first and second information related to the cumulative information based on the corresponding one of the first and second information related to the cumulative information output from the one management unit.
Abstract:
In a wrist terminal 1, the measurement information acquiring unit 51 acquires position information. The first timing detection unit 52 detects a standby state for a sport. The second timing detection unit 53 detects predetermined start timing of the sport. If the first timing detection unit 52 detects the standby state, the recording control unit 54 makes the measurement information acquiring unit 51 start acquiring position information to continue acquiring position information sequentially at predetermined intervals. If the second timing detection unit 53 detects the predetermined start timing, the recording control unit 54 stores position information being part of the position information already acquired by the measurement information acquiring unit 51 and corresponding to the predetermined start timing into a ROM 16 or a removable medium 31.
Abstract:
A map recording device includes: a display which displays information; a storage; and a processor. The processor causes the display to perform a display of an arbitrary region expressed by browsing map information specified by a user's manipulation. The processor further acquires partial map information from the browsing map information. The partial map information is map information other than the browsing map information and expresses a region corresponding to a whole region displayed in the display. The storage stores the partial map information acquired in the acquiring.