Abstract:
A battery cover mechanism used in a portable electronic device includes a housing, a releasing assembly and a battery cover. The housing has an assembling surface, an accommodating portion disposed on the assembling surface and at least one latching slot disposed thereon. The battery cover defines a notch therethrough and comprises at least one latch disposed thereon corresponding to the latching slot of the housing for being detachably mounted on the housing. The releasing assembly is releasably assembled within the accommodating portion of the housing and partially accommodated within the notch of the battery cover to release the battery cover from the housing.
Abstract:
A battery cover mechanism used in a portable electronic device includes a housing, a cover and an operating member. The housing defines a receiving groove therein for receiving a battery. The cover corresponds to the housing and is movably mounted on the housing. The operating member is movably mounted on the housing. The operating member is held on the housing to hold the cover such that the cover is closed to cover the receiving groove, and the operating member is moved to drive the cover to move such that the cover is opened.
Abstract:
A pendant mounting structure comprises a main body, a cantilever and two latching elements. The main body includes a first surface and a second surface opposite to the first surface. The cantilever protrudes from the first surface. The latching elements protrude from the second surface. The pendant mounting is separately manufactured and latched to a housing. Thus, when an external force exerted on the cantilever is more than the offset limit of the cantilever, the cantilever could be cracked to protect the housing from being damaged.
Abstract:
An electronic device includes a housing, an ejecting piece, a shaft and a circuit board. The housing has a front surface, an opposite rear surface, and a battery chamber defined in the front surface for receiving a battery therein. The ejecting piece is rotatably hinged to the housing and configured to support a portion of the battery and eject the battery from the battery chamber. The ejecting piece has an ejecting portion and an operating portion connecting with the ejecting portion, the ejecting portion is for assembly under the battery. The shaft is configured for hinging the ejecting piece to the housing. The circuit board is mounted on the rear surface of the housing for electrically connecting with the battery.
Abstract:
A hinge assembly includes a cam (13), a follower (14), a first spring (12), a control member (17) and a second spring (16). The cam has a first cam surface (135) and a second cam surface (136). The follower has a third cam surface (141) engaging with the first cam surface. The first spring provides an elastic force causing the cam surface of the cam and the third cam surface of the follower to resist each other. The control member has a fourth cam surface engaging with the second cam surface of the cam. The second spring is positioned between the control member and the follower. The control member is movable to push the cam to rotate to realize the first cam surface of the cam to rotate relative to the third cam surface of the follower.
Abstract:
A slide mechanism (100) used in portable electronic device (300) is described including a main plate (10), a slide plate (20), two sliders (40), and two guiders (30). The slide plate is installed on the main plate and slidable relative to the main plate. The sliders are securely attached to the slide plate, and the guiders are securely attached to the main plate deformably guiding the sliders to move along it. When the slide plate slides along the main plate, the sliders and the guiders compress with each other, thereby generating deformations therebetween and driving the sliding of the slide plate along the main plate.
Abstract:
A cover mechanism for an electronic device includes a protective cover, a resisting element, a control element, and a releasable element. The resisting element is attached to the electronic device. The control element engages with the resisting element. The protective cover latches to the control element. The releasable element provides a force to the protective cover for automatically opening the protective cover. When the control element is pressed, the control element forces the resisting element to unlock the protective cover.
Abstract:
A cover latch for a portable electronic device includes a housing member forming two latching protrusions, a cover member, a mounting panel secured to the cover member, two latching members pivotally positioned on the mounting panel, and a contact member slidably positioned on the mounting panel. Each of the latching members includes a latching portion for interlocking with one of the latching protrusions. The contact member slides relative to the mounting panel to pivot the latching members to release the interlocking of the latching portions and the latching protrusions.
Abstract:
A slide mechanism used in portable electronic device is described including a main plate, a slide plate, a parallelogrammically-shaped slider, and two guiders. The slider is attached to the slide plate. The guiders are attached to the main plate and configured for deformably guiding the slider to move therealong. The slider is positioned between the guiders. During the sliding process of the slide plate with respect to the main plate, two corners of the slider deform the guiders to slide the slide plate along the main plate.
Abstract:
A battery cover assembly for a portable electronic device includes a base body, a battery cover, a rotatable member. The base body forms two hooks. The battery cover forms two catches for latching with the hooks. The rotatable member is rotatably disposed between the base body and the battery cover. The rotatable member includes two resisting portions for abutting against the catches. When the rotatable member is rotated, the catches are forced to be separate from the hooks to allow the battery cover to releasably latch to the base body.