Abstract:
An electronic device includes a body, a cover coupled to the body, and a sliding mechanism. The sliding mechanism includes a rotating component, a first locking component, and a second locking component. When the second locking component moves to a locked position, the second locking component engages with the first locking component to lock the cover to the body. When the second locking component moves to an unlocked position, the first locking component disengages from the second locking component, to allow the rotating component to rotatably drive the cover to be opened.
Abstract:
A telephone device comprises a base, a handset, and a supporting device secured to the base. The base comprises a first receiving portion and a hang-up button protruding out of the first receiving portion. The hang-up button is used for ending a call when being pressed. The handset comprises an earpiece received in the first receiving portion. When the supporting device is in a resisting position, the supporting device extends into the first receiving portion for supporting the earpiece to prevent the earpiece from pressing the hang-up button. When the supporting device is in an unresisting position, the supporting device retracts into the base for allowing the earpiece to press the hang-up button.
Abstract:
A portable electronic device includes a main body, a display and a distance measuring device. The distance measuring device includes a first distance measuring member and a second distance measuring member. The first distance measuring member includes a first signal emitting/receiving module and an arithmetic module. The second distance measuring member includes a second signal emitting/receiving module and a control module. The first signal emitting/receiving module is for receiving an alignment signal, emitting a measuring signal, and receiving a feedback of a measuring signal. The arithmetic module is for calculating the distance between the first distance measuring member and the second distance measuring member. The distance is displayed. The second signal emitting/receiving module is for emitting the alignment signal, receiving the measuring signal, and emitting the feedback of the measuring signal. The present disclosure further provides a distance measuring method for a device.
Abstract:
A charging dock includes a base, a charging cable and a retractable wire reel module received in the base. A wall of the base is concaved downward to form a charging space including an opening in a cavity of the base. The charging cable includes a power wire, a charging and a power connector interfaces. The charging interface is received in the base. The power interface is positioned out of the base. The retractable wire reel module includes a guiding shaft positioned, a coil spring member and a sleeve member. The sleeve member rotatably sleeves on the guiding shaft via the coil spring member. The power wire is wound on the sleeve member, the coil spring member is connected with the guiding shaft and the sleeve member. The power wire retracts in the base via the sleeve member driven to rotate by the coil spring member.
Abstract:
A connecting structure received in a main device for connecting an auxiliary apparatus. The connecting structure includes a retracting part formed on a bottom board of the main device and close to a sidewall of the main device and a clamping part. The clamping part is pivotablly mounted on the bottom board and pivotally connected to the retracting part. The retracting part drives the clamping part to extend out of the main device via an opening defined on the sidewall for connecting the auxiliary apparatus when the auxiliary apparatus needs to be mounted on the main device. The retracting part retracts the clamping part into the main device when the auxiliary apparatus is unmounted from the main device.
Abstract:
A flexible light-emitting apparatus including a side light-emitting flexible light guide rod, two light emitting diodes, and two lenses is provided. The side light-emitting flexible light guide rod has a first end, a second end opposite to the first end, and a light-emitting surface connecting the first and the second ends. The LEDs are respectively disposed beside the first end and the second end and adapted for emitting light beams toward the side light-emitting flexible light guide rod, respectively. One of the lenses is located between the first end and the LED disposed beside the first end, and the other lens is located between the second end and the LED disposed beside the second end. Each of the light beams enters the side light-emitting flexible light guide rod through the corresponding lens and is transmitted to the outside of the side light-emitting flexible light guide rod through the light-emitting surface.
Abstract:
A spring operation device and a method for assembling the same are disclosed. A switching device including the spring operation device is also disclosed. In the spring operation device disclosed in at least one embodiment of the present invention, by way of a smooth corrugated protuberance, the protuberance can push the operation mechanism of the spring operation device to rotate accurately and efficiently under the effect of a spring at the moment when the spring's energy storing process is completed, so as to accomplish the release of energy.
Abstract:
A system and process for determining the location of a captured image from a larger image is described. A non-repeating sequence may be folded into a non-repeating array in which the array is unique for every sub window of a given size. The image of the sub window may be captured and its location determined within the non-repeating array.
Abstract:
A system and process for determining the location of a captured image from a larger image is described. A non-repeating sequence may be folded into a non-repeating array in which the array is unique for every sub window of a given size. The image of the sub window may be captured and its location determined within the non-repeating array.