Abstract:
A hook includes two parts. A first hook element is fixed on a first cover. The first hook element includes two supporting panels extending from a surface of the first cover and spaced from each other, a first flat panel connecting tops of the two supporting panels, and a receiving space formed by the first cover, the two supporting panels, and the first flat panel. A second hook element is fixed on a second cover. The second hook element includes a supporting member extending from a surface of the second cover, a second flat panel extended from a distal end of the supporting member and parallel to the surface of the second cover, and a groove formed between the supporting member and the second flat panel. The first flat panel is slid into and engaged with the groove, and clamped between the second flat panel and the supporting member.
Abstract:
An electronic device comprises a housing, an electronic component fixed to the housing, and a fixing mechanism. The electronic component defines first and second latching notches. The fixing mechanism comprises a first latching component, a second latching component opposite to the first latching component, a first positioning post, and a second positioning post opposite to the first positioning post. The first and second latching components are capable of hooking over opposite ends of the electronic component, and fixing the electronic component to the housing in a first direction. The first and second positioning posts are capable of latching to the first and second latching notches, for fixing the electronic component to the housing in a second direction perpendicular to the first direction.
Abstract:
An electronic device for reading or writing to an optical disc includes a base and a traverse module set on the base. The base defines a receiving portion for receiving the optical disc. The traverse module is used for rotating and supporting the optical disc and comprises at least one friction-reducing component. The at least one friction-reducing component protrudes out of the bottom of the receiving portion and is positioned between the optical disc and the traverse module for preventing the optical disc from rubbing against the bottom of the receiving portion.
Abstract:
An electronic device comprises a main body, a flip cover rotatably connected with the main body, and at least one switching portion. The main body includes at least one through hole. The flip cover includes at least one protrusion corresponding to the at least one through hole. The at least one switching portion comprises an operating portion. The operating portion is slideably received in the at least one through hole and does not protrude from the at least one through hole at any time. When the flip cover covers on the main body, the at least one protrusion is inserted into the at least one through hole to press the at least one switching portion via pressing the operating portion.
Abstract:
An exemplary electronic device includes a cover, a circuit board and a driving module both mounted on the bottom cover, an electronic component fixed on the circuit board, and a top cover covering the bottom cover. The driving module has a rotating shaft adapted for supportively driving an optical disk to rotate. The electronic component generates heat during operation. Through holes are defined in the top cover and located at a periphery of the rotating shaft. When the optical disk is mounted on the rotating shaft and driven to rotate by the rotating shaft, air heated by the electronic component in the electronic device can flow out of the top cover via the through holes, and rotation of the optical disk facilitates such airflow.
Abstract:
An optical disk player includes a main body, a hinge, and a display. The main body includes a cover and an opposite base. The hinge includes a fixing portion coupled with the cover of the main body. The display is pivotably connecting to the main body by the hinge. The fixing portion defines a locating hole thereon. The cover defines a holding portion and a first locking portion. The first locking portion comprises a pole and a hook at an end of the pole. The holding portion of the cover is engaged in the corresponding locating hole of the fixing portion. The hook and the pole of the first locking portion are clasped different sides of the fixing portion.
Abstract:
An optical disk player includes a main body, a cover engaging with the main body, a pivot module, and a deceleration module. The pivot module includes a torsion spring, two ends of the torsion spring being fixed on the main body and the cover respectively. The deceleration module includes a first deceleration portion arranged on the main body and a second deceleration portion arranged on the pivot module. The first deceleration portion contacts the second deceleration portion and frictional forces therebetween reduces the speed of opening the cover.
Abstract:
An electronic device includes a casing, a female connector received in the casing and a holder. The casing has a substrate. The female connector is spaced from an inner surface of the casing. The female connector defines an opening in one end thereof for a male connector inserting therein. The holder is between the substrate of the casing and the other end of the female connector which is away from the opening.
Abstract:
A cable positioning mechanism configured to hold at least one cable in position includes a main body attached to the bottom surface of the electronic device. The main body includes a first edge and a second edge intersecting with each other. A bent portion projects from the first edge and is bent toward the bottom surface. A supporting portion projects from a distal end of the bent portion. A block member projects from the second edge. The block member, the bent portion, and the supporting portion cooperatively form a slot to hold the cable therein.
Abstract:
An exemplary electronic device includes a casing with a slot defined in an outer face of the casing, a through holed defined in the slot, and a switch module. The switch module includes a switch received in the casing, and a slidable button embedded in the slot. The slidable button includes an operating portion received in the slot and abutting an outer face of the casing, a holding portion extending outwardly from the operating portion and through the through hole, and two elastic arms respectively extending outwardly from two lateral sides of the holding portion. Each elastic arm includes a connecting section extending outwardly from the holding portion and a locking section protruding outwardly from the connecting section towards the operating portion. The locking sections of the elastic arms abut an inner face of the casing, whereby the slidable button is fixed to the casing.