This Non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No(s). 094127715 filed in Taiwan, Republic of China on Aug. 15, 2005, the entire contents of which are thereby incorporated by reference.
The present invention relates to an optical disc drive, and more particularly to an optical disc drive with a rotation means for loading a disc in or out of it.
There are many types of optical disc drives developed currently, such as tray type, cover opening type, cassette type and slit-in type drives. The tray type disc drive is the most popular among these. A disc loading tray is mainly used to load a disc into the disc drive, and then a base seat in the drive is driven to elevate a predetermined distance to support the disc on a spindle motor disposed on the base seat to drive the disc rotating such that an optical pickup unit in the drive can read data on the disc.
Generally, tray type optical disc drive can be used in a level state and a vertical state. Please refer to
As the figure shows, the tray type disc drive 10 is placed on a supporting base S to use the disc drive 10 in a vertical state. However, when the tray type disc drive is used in the vertical state, the disc is supported on the tray by little area that will cause the disc to easily fall from the tray during the tray is loading into the disc drive. This leads to a situation that the disc cannot be loaded into the disc drive successfully and the disc drive cannot function.
Therefore, how to support the disc stately so as to load the disc into the disc drive smoothly is the topic of which the present invention takes a thorough study.
One object of the present invention is to provide an optical disc drive which is capable of rotating an optical disc loading device to load a disc into or eject out of a drive by installing the loading device at any side of an opening of the drive.
Another object of the present invention is to provide an optical disc drive which is capable of raising a spindle motor to support and drive a disc to rotate by moving the base seat in the disc drive synchronously when a disc loading device is loading an optical disc into the drive.
For attaining the objects mentioned above, the present invention provides an optical disc drive which comprises a housing provided with an opening; a disc loading device for loading a disc into or ejecting the disc out of the housing via the opening by means of rotation; a base seat movably installed in said housing, in which a spindle motor and a pickup unit module are installed; and a joint mechanism installed in the housing for driving the base seat from a lower position to a higher position to support and drive the disc on the spindle motor and then the pickup unit module reads the data thereon. Namely, when the disc is rotated out of the opening, the joint mechanism drives the base seat to the lower position, and when the disc loading device is rotated into the opening, the joint mechanism drives the base seat to the higher position allowing the spindle motor to support and drive the disc.
According to a preferred embodiment of the present invention, the disc loading device is in an arc shape matching with the perimeter of a disc and has an accepting groove for accepting a disc in the disc loading device.
According to a preferred embodiment of the present invention, an elastic arm having a T-shape is extended from one side of the disc loading device, and a clip is disposed on one end of the elastic arm for clipping the disc. Moreover, a raised block is installed in the drive in the rotation route of the disc loading device. Whereby, when the disc loading device is rotated into the drive, the raised block presses the other end of the elastic arm to deform the elastic arm to release the clip from the disc for the spindle motor supporting the disc and driving it to rotate.
According to a preferred embodiment of the present invention, the joint mechanism comprises a joint body, a sliding block, and an elastic element, in which the joint body has a pivoting end, a pushed end and a joint end, in which the pivoting end has the same pivoting point as the disc loading device. Besides, the pushed end is located on a rotating route of the disc loading device. When the disc loading device is rotated into the housing, it pushes the pushed end to rotate the joint body and drive the sliding block to move the base seat from a lower position to a higher position so as to raise a spindle motor to support and rotate the disc. The elastic element is connected to the housing and the joint body and provide a spring force to move the joint body from a loaded position to an unloaded position, and therefore to move the base seat from the higher position to the lower position when the disc loading device is rotated out of the housing.
According to a preferred embodiment of the present embodiment, the optical disc drive further comprises a locking mechanism for fixing the disc loading device in a loaded position, which is installed in the housing and comprises a hook for locking the disc loading device, an electromagnetic plunger for controlling the hook to lock or release the disc loading device, and an elastic element for elastically moving the hook. Whereby, when the disc loading device is rotated into the drive, the hook will lock the disc loading device so as to fix it in the housing, and when the disc loading device is rotated out of the drive, the electromagnetic plunge is controlled to disengage the hook from the locked disc loading device to release it to rotate out of the housing.
The present invention can be more fully understood by reference to the following description and accompanying drawings, in which:
Please first refer to
As the figures show, an optical disc drive 10 comprises a housing 11, a disc loading device 20 for loading a disc D, a base seat 30, and a joint mechanism 40, in which an opening 12 is disposed at one side of the housing 11 and the disc loading device 20 is pivotally connected at one side of the opening 12 so that the disc loading device 20 is rotated into or out of the housing 11 through the opening 12.
The disc loading device 20 is in an arc shape matching with the perimeter of a disc and has an accepting groove 21 for loading the disc D so that the disc D could be placed and supported in the accepting groove 21 to load it into the optical disc drive 10, as shown in
A base seat 30 is installed in the housing 11 and moved between a lower position and a higher position. The spindle motor 31 used for driving the disc D and a pickup unit module 32 used for reading data on the disc D are installed on the base seat 30. Whereby, a joint mechanism 40 pivotally disposed in the housing 11 drives the base seat 30 to move from the lower position to the higher position meanwhile the spindle motor 31 is raised to support the disc D when the disc loading device 20 is rotated into the housing 11.
Please refer to
Please refer to
The sliding block 42 is slidably installed at one side of the base seat 30, as
Furthermore, the base seat 30 has a joint pin 33 engaged with the sloped guide groove 4221, as
According to this embodiment, the sliding block 42 is installed on a guide block 421; the guide block 421 has a guide groove 4211 to guide the sliding block 42 to move along the guide groove 4211.
Besides, as
Please refer to
According to the disc drive of the present invention, when the joint body 41 is moved from the unloaded position to the loaded position, the pin 4131 at the joint end 413 of the joint body 41 is slid in the sliding groove 4231, the sliding block 42 is moved together. And, the joint pin 33 extended from the base seat 30 is slid in the sloped guide groove 4221 to raise the base seat 30 from the lower position to the higher position where the disc D is supported on the spindle motor 31.
Please refer to
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details and representative embodiments shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
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094127715 | Aug 2005 | TW | national |