Abstract:
The invention discloses an electronic device comprising a casing and a stand. The stand is detachably disposed on the casing for supporting the electronic device on a plane and rotatably disposed at a first position or a second position with respect to the casing. The casing has a first engaging portion located on a first side thereof. The stand comprises a second engaging portion pivotally connected to the first engaging portion along a first direction. An incline extending along a second direction different from the first direction is disposed on the casing. Once the electronic device is hit by a force and the stand is at the second position, the stand will slide along the incline and then the second engaging portion will depart from the first engaging portion, so as to make the stand depart from the casing.
Abstract:
An apparatus for preventing a cracked disc from flying out of a disc data reading apparatus is provided. The apparatus includes a housing and a panel. The panel selectively connects with the housing. The housing has a protrusion connecting with a front edge of the housing. The panel has a first surface corresponding to the protrusion. While the disc within the disc data reading apparatus cracks, a force existing between the protrusion and the first surface prevents a cracked disc flying out.
Abstract:
The invention discloses an electronic device comprising a casing and a stand. The stand is detachably disposed on the casing for supporting the electronic device on a plane and rotatably disposed at a first position or a second position with respect to the casing. The casing has a first engaging portion located on a first side thereof The stand comprises a second engaging portion pivotally connected to the first engaging portion along a first direction. An incline extending along a second direction different from the first direction is disposed on the casing. Once the electronic device is hit by a force and the stand is at the second position, the stand will slide along the incline and then the second engaging portion will depart from the first engaging portion, so as to make the stand depart from the casing.
Abstract:
The present invention relates to a disc data storage apparatus with a structure for preventing cracked discs from jetting out. The disc data storage apparatus has a tray for receiving a disc, a cover and a housing. The cover has a first portion and a second portion. The first portion is connected to a front flange of the housing, and the second portion is extended into the housing to form a barrier portion. When a disc cracks, the barrier portion is configured to stop and prevent the cracked disc from jetting out.
Abstract:
An optical disk device at least includes a housing, an optical pickup head, a circuit board, and a heat roof. The housing has a ventilating hole. The optical pickup head is disposed in the optical disk device for reading/writing the data on the disk. The circuit board is disposed in the housing. The heat roof is used for separating at least part of the circuit board from the optical pickup head. The heat roof includes a chamber in communication with the ventilating hole. The heat generated from at least part of the circuit board is within the chamber and then diffused to the outside of the optical disk device through the ventilating hole.
Abstract:
An optical disk drive is provided. The optical disk drive includes a housing, a chassis and an elastic dust-proof slice. The housing includes a top plate and a bottom plate. The chassis, which is deposited inside the housing, includes a lateral plate wherein the lateral plate has an airflow exit for dissipating heat. The elastic dust-proof slice is swimmingly deposited on the lateral plate for closing or opening the airflow exit. In natural situation, the elastic dust-proof slice is located on a shielding position and closes the airflow exit. When a hot airflow generated inside the optical disk drive flows to the airflow exit, the elastic dust-proof slice is pushed by the hot airflow and swung away from the outside surface of the lateral plate. As a result, the airflow exit is opened and the hot airflow flows out of the chassis via the opened airflow exit.
Abstract:
While a tray moves into a disk drive, a clamper and a turntable are used to clamp a disk. While the tray is moving into the disk drive without a disk thereon, the clamper and turntable hit with each other, which generates an uncomfortable noise. The apparatus for reducing the noise is an improved clamper with holes thereon. Alternatively, the clamper is replaced by a clamping part, which includes a metal plate and a plastic plate. The plastic plate has a holder, which clips tight an extension of the metal plate. Therefore, the noise, which is generated from the collision of metal plate and the turntable, is reduced.
Abstract:
When a disk drive is running, airflow is generated in the disk drive. The disk drive includes a tray and a housing. A plurality of through-holes are disposed on the tray, and the housing accommodates the tray therein. While airflow flows over the through-hole, noise is generated. Walls are formed on the rim of the through-hole to reduce this noise. A sponge for absorbing noise is adhered on the inner top portion of the housing for absorbing noise. As holes are located on the front end of the tray for guiding airflow, noise is reduced to a lower level.