Abstract:
A battery cover structure includes a removable cover and a main body. The cover defines two cutouts at an end thereof. The main body includes a first housing and a second housing. The first housing defines a through hole. An elastic arm extending from the first housing and is received in the through hole. Two latching blocks respectively extend from two sides of the arm and are respectively engaged in the cutouts of the cover. The arm includes a distal portion. The second housing is integrally formed with the first housing. The second housing includes a flexible operating portion above the distal portion of the arm. When the operating portion is pressed down, the at latching blocks are detached from the cutouts so as to remove the cover.
Abstract:
A cover mechanism is for an electronic device, and the cover mechanism includes a base member and a cover member. The base member defines a hole and a receiving groove. The cover member is received in the receiving groove. The cover member includes a connecting portion to allow the cover member to be elastically bent to cover the hole.
Abstract:
A cover mechanism is for an electronic device, and the cover mechanism includes a base member and a cover member. The base member defines a hole and a receiving groove. The cover member is received in the receiving groove. The cover member includes a connecting portion to allow the cover member to be elastically bent to cover the hole.
Abstract:
A sliding button mechanism includes a housing, a button, a connecting member, two resilient elements, and a printed circuit board. The housing defines a sliding slot. The button is slidably received in the sliding slot. The connecting member is secured on the button. Two resilient elements are disposed between the housing and the button provides a resilient force to the button. The printed circuit board is secured in the housing and includes at least two contact areas. The connecting member continuously and simultaneously connects to the two contact areas to achieve a continuous adjustment function.
Abstract:
A card socket assembly used to mount a data card includes a body member, and a controlling member. The body member defines a battery receiving space and a card slot adjacent to the battery receiving space. The card slot is used to receive the data card. The controlling member is used to abut against the data card, thus ejecting the data card out of the card slot.
Abstract:
An exemplary surface contact card holder (800) for holding a surface contact card (40) includes a body (10) and a guiding mechanism (20). The body has a receiving space (105) therein. The guiding mechanism is movably provided in the receiving space. The guiding mechanism is configured for selectably one of retaining the surface contact card in the receiving space and withdrawing the surface contact card from the receiving space. The guiding mechanism includes a pulling lever (201) and a spring element (202). One end of the spring element is fixed on the pulling lever and the other end of the spring element resists the body. The spring element is pressed when the guiding mechanism is pushed out from the receiving space. The guiding mechanism automatically returns to its original position by rebounding of the spring element.
Abstract:
A surface contact card latching assembly (100) is formed in a portable electronic device. The latching assembly includes a receiving portion (11) and a latch module (12). The receiving portion is configured for receiving the surface contact card, and a first end of the receiving portion forms an entrance (112) via which the surface contact card can enter or exit. The latch module includes a blocking tab (120) and an elastic latch (122). The blocking tab extends from the receiving portion for partially covering the receiving portion. The elastic latch is disposed at the first end of the receiving portion.
Abstract:
A hinge assembly (10) for joining a cover section (012) to a body section (014) of a foldable electronic device (01) includes: a button (1); a locking element (2); a main shaft (4); a driving spring (3); a cam (5) including a latching cam surface (54) on one end thereof, and two reverse rotating grooves (56) on another end thereof; a barrel (6) including two latching posts (62) engaging in the grooves; an end shaft (8); and a torsion spring (7) including two end portions attached to the barrel and the end shaft. The button, the locking element and the driving spring are located around one end of the main shaft, and the cam and the barrel are located around another end of the main shaft. When the button is pushed, the hinge assembly fully opens the cover section from body section. This provides a user with convenient one-handed operation.
Abstract:
A card socket assembly used to mount a data card includes a body member, and a controlling member. The body member defines a battery receiving space and a card slot adjacent to the battery receiving space. The card slot is used to receive the data card. The controlling member is used to abut against the data card, thus ejecting the data card out of the card slot.
Abstract:
A latching mechanism to connect a cover to a housing includes a catch and a catching portion. The catch is disposed on the cover. The catch includes a latching end and a connecting portion. The catching portion is defined in the housing. The catching portion includes a first hole and a second hole communicating with each other. The first hole is larger than or substantially equal to the diameter of the latching end, the second hole is larger than the connecting portion and smaller than the latching end, and a joint of the first hole and second hole is smaller than the diameter of the connecting portion. The present disclosure further provides an electronic device including the latching mechanism.