Abstract:
An electronic device includes a housing having top and bottom walls, and an optical disk drive disposed in the housing between the top and bottom walls and including a supporting plate, and a motor shaft disposed at the center of the supporting plate. An optical disk drive support module includes an upper support unit provided on the top wall and having a rotatable element disposed above the motor shaft, a lower support unit provided on the bottom wall below the motor shaft, a bracket connected to the optical disk drive and including top and bottom plates. When the optical disk drive is inserted into the housing, the top plate presses the rotatable element downwardly toward the motor shaft, and the bottom plate pushes the lower support unit upwardly toward the supporting plate. A rolling unit is provided on the top plate, and is in rollable contact with the rotatable element.
Abstract:
A two-way latch mechanism includes a hook disposed inside a host for engaging with a first hole on a panel and for engaging with a second hole on the panel after the panel rotates relative to the host at 180 degrees. The two-way latch mechanism further includes an actuating component. Two pushing portions are respectively disposed on two sides of the actuating component. One of the pushing portions slides at a first direction for separating the hook from the first hole, and the other slides at the first direction for separating the hook from the second hole. The two-way latch mechanism further includes two elastic components for respectively providing elastic forces on the actuating component, so as to hold the actuating component at a predetermined position stably.
Abstract:
An electronic device includes a housing having top and bottom walls, and an optical disk drive disposed in the housing between the top and bottom walls and including a supporting plate, and a motor shaft disposed at the center of the supporting plate. An optical disk drive support module includes an upper support unit provided on the top wall and having a rotatable element disposed above the motor shaft, a lower support unit provided on the bottom wall below the motor shaft, a bracket connected to the optical disk drive and including top and bottom plates. When the optical disk drive is inserted into the housing, the top plate presses the rotatable element downwardly toward the motor shaft, and the bottom plate pushes the lower support unit upwardly toward the supporting plate. A rolling unit is provided on the top plate, and is in rollable contact with the rotatable element.
Abstract:
A portable electronic device includes superposed base and sliding housings, a pair of guide units and a pair of slide rails that cooperate with each other to permit sliding movement of the sliding housing relative to the base housing along a sliding direction between closed and open positions, and a pair of correction mechanisms respectively adjacent to the slide rails and each including at least two push-back members. When the slide rails deviate from the sliding direction, the push-back members can push back the slide rails to a position parallel to the sliding direction so that the slide rails can slide smoothly relative to the guide units.
Abstract:
A latch mechanism includes a first housing, a second housing, at least one guiding column, a hook whereon a fourth hole is formed, a fastening component, a latching component, and a first magnetic component for attracting the hook when a display pivots close to a host, so that the hook slides on the guiding column in a first direction to pass through the second housing, the fastening component, and the first housing. The first magnetic component drives the latching component to slide in a second direction simultaneously, so that an end of the latching component is inserted into the fourth hole on the hook, for fixing the display and the host. The latch mechanism further includes a pushing component for separating the latching component from the fourth hole on the hook when being pushed in a direction opposite to the second direction.
Abstract:
A portable electronic device includes superposed base and sliding housings, a pair of guide units and a pair of slide rails that cooperate with each other to permit sliding movement of the sliding housing relative to the base housing along a sliding direction between closed and open positions, and a pair of correction mechanisms respectively adjacent to the slide rails and each including at least two push-back members. When the slide rails deviate from the sliding direction, the push-back members can push back the slide rails to a position parallel to the sliding direction so that the slide rails can slide smoothly relative to the guide units.
Abstract:
A connector includes a first body, and a second body movably disposed on the first body. The first body includes a first plate, and a second plate connected to the first plate. The second body is located between the first plate and the second plate for clamping a reversible cable with the first body. The connector further includes a first connecting terminal disposed on the first body for contacting a first transmission terminal of the reversible cable, a second connecting terminal disposed on the second body for contacting a second transmission terminal of the reversible cable, and a buckling structure. The buckling structure includes a first buckling portion disposed on the first body, and a second buckling portion disposed on the second body. The second buckling portion is clamped with the first buckling portion in a loose fit manner.
Abstract:
The present invention discloses a sliding mechanism for sliding a display module relative to a host module. The sliding mechanism includes a host module fixing component installed inside the host module, a display module fixing component connected to the host module fixing component, a sliding component disposed on a lateral side of the display module and installed on the display module fixing component in a slidable manner, and a roller set installed on the display module fixing component for guiding the sliding component to slide in a first direction relative to the display module fixing component, such that the display module can slide relative to the host module in the first direction.
Abstract:
A speaker with vibration absorbing function is disclosed in the present invention. The speaker is disposed on a boss of a casing. The speaker includes a sound box, and a supporting arm disposed on a lateral surface of the sound box. The supporting arm includes a bending portion. An end of the bending portion is connected to the sound box. The supporting arm further includes a hooking portion disposed on the other end of the bending portion for hooking the boss of the casing. Vibration generated from the sound box can decay by the bending portion, and is not transmitted to the boss via the hooking portion.
Abstract:
A speaker with vibration absorbing function is disclosed in the present invention. The speaker is disposed on a boss of a casing. The speaker includes a sound box, and a supporting arm disposed on a lateral surface of the sound box. The supporting arm includes a bending portion. An end of the bending portion is connected to the sound box. The supporting arm further includes a hooking portion disposed on the other end of the bending portion for hooking the boss of the casing. Vibration generated from the sound box can decay by the bending portion, and is not transmitted to the boss via the hooking portion.