The present invention relates to a slidable motherboard tray structure, and more particularly, to the motherboard tray structure using leverage principle to position a motherboard tray by sliding.
It is more and more popular with users to use a motherboard tray forholding and moving a motherboard. With the daily increase of various applications, more and more electronic elements and modules are installed on a motherboard, and the weight of the motherboard is accordingly increased. Since the motherboard becomes heavy, a conventional way of positioning the motherboard tray (holding the motherboard) directly by hands generally takes a lot of time and effort, and it is very difficult to move the motherboard accurately to an appropriate position thereby. Therefore, the conventional way of positioning the motherboard tray directly by hands cannot effectively meet the users' requirements.
Hence, there is a need to develop a slidable motherboard tray structure for effectively positioning a motherboard tray by sliding, and saving time and effort for positioning the motherboard tray, thereby overcoming the disadvantages of using the conventional way of positioning the motherboard tray directly by hands.
It is an object of the present invention to provide a slidable motherboard tray structure for positioning a motherboard tray housing by sliding via pushing force (torque) generated between the handle elements and the supporting elements of the motherboard tray housing, thereby achieving the purpose of automatic positioning and labor saving.
According to the aforementioned objects of the present invention, the present invention provides a slidable motherboard tray structure for holding and moving a motherboard.
According to a preferred embodiment of the present invention, the slidable motherboard tray structure comprises a motherboard tray housing, a pair of supporting elements, and a pair of handle elements. The supporting elements are installed respectively on two opposite sides of the motherboard tray housing, and each of the handle element has an arc-shaped opening used for receiving the corresponding supporting element, wherein there is a distance between a force-acting end of each of the handle elements and the corresponding supporting element, and the arc-shaped opening of each of the handle elements further has a sidewall, and, when each of the handle elements is rotated with an angle, the sidewall of the arc-shaped opening resists each of the supporting elements to generate a pushing force used for moving the motherboard tray housing;
Further, each of the handle elements has a striped-shape notch, and a rotation-stopping element is installed on each of the two opposite sides of the motherboard tray housing, so that the rotation-stopping element is engaged with the stripe-shaped notch correspondingly after the handle element has been rotated with an angle.
Further, the slidable motherboard tray structure comprises a pair of fixing elements used for pivotally connecting the handle elements respectively to the two opposite sides of the motherboard tray housing.
Further, the rotation-stopping elements are installed in rotation-adjusting openings, and each of the rotation-adjusting openings has an adjusting groove and two adjusting holes located on both ends of the adjusting groove.
Hence, with the application of the present invention, a motherboard tray housing can be briefly positioned by sliding, thereby greatly saving the time and effort for positioning the motherboard tray.
The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
Referring to
Further, the handle elements 300 have respective stripe-shaped notches 320, and rotation-stopping elements 240 are installed respectively on the two opposite sides 210 of the motherboard tray housing 200. When the handle elements 300 have been rotated with a certain angle, the rotation-stopping elements 240 can be engaged with the respective stripe-shaped notches 320, so as to lock the handle elements 300 respectively on the two sides 210 of the motherboard tray housing 200. With the design of matching the shapes of the arc-shaped openings 310 with the positions of the rotation-stopping elements 240, the motherboard tray housing 200 can be slid for a predetermined distance by rotating the handle elements 300 with a certain angle, thereby achieving the purpose of automatically positioning the motherboard tray housing 200.
Hereinafter, the operation procedure of the slidable motherboard tray structure is described according to the present invention:
Referring to
Thereafter, the stripe-shaped notch 320 (as shown in
It is worthy to be noted that there is a distance L (as shown in
Further, the handle elements 300 and the supporting elements 220 can be located on one end of the motherboard tray housing or any other appropriate positions thereon. The aforementioned structures of the handle elements 300, the supporting elements 220, and the rotation-adjusting openings (250, 252, 254) are merely stated as examples for explanation, so are the force reaction relationship and direction, and thus the present invention is not limited thereto. After proper adjustment, the present invention also can be applied in rotating the handle elements to move the motherboard tray housing toward to the other direction, such as to move the motherboard tray housing from the second position 130 to the first position 120.
Hence, the present invention is applied by using leverage principle to design the handle elements pivotally connected to the motherboard tray housing, thereby enabling the motherboard tray to side to an appropriate position via a pushing force (torque) generated between the handle elements and the supporting elements, thus achieving the purposes of automatic positioning and labor saving to overcome the disadvantages of using the conventional way of positioning the motherboard tray directly by hands.
It can be known from the aforementioned preferred embodiment of the present invention, the present invention has an advantage of effectively positioning a motherboard tray by sliding, thus greatly saving a lot of time and effort for positioning the motherboard tray. Therefore, the present invention has considerably high industrial application value.
As is understood by a person skilled in the art, the foregoing preferred embodiments of the present invention are illustrated of the present invention rather than limiting of the present invention. It is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims, the scope of which should be accorded the broadest interpretation so as to encompass all such modifications and similar structure.
Number | Date | Country | Kind |
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93201172 | Jan 2004 | TW | national |