This application is based on and claims the benefit of priority from the prior Japanese Patent Application No. 2005-87744, filed on Mar. 25, 2005; the entire contents of which are incorporated herein by reference.
The present invention relates to a structure of attaching a disk loader, and more particularly relates to a structure of attaching a disk loader employed when a disk loader used for DVD player is attached to an outer housing.
As exemplarily shown in
In order to accommodate this type disk loader in an outer housing so that it can be made to be a stationary type disk loader, the disk loader must be fixed to the outer housing. In general, the outer housing is formed into a box-shape composed of a bottom case, a top case and a front panel. It is conventional that the disk loader is fixed to a bottom plate of the bottom case by screws and then the top case is attached to the bottom case and the front panel is attached to the bottom case. In order to conduct screwing as described above, the following method is employed. As shown in
On the other hand, in the same manner as that explained in
According to the structure of attaching a disk loader, the following problems may be encountered. When the disk loader is fixed to the bottom case of the outer casing with screws, attaching screws are redundantly required. It is troublesome and complicated to insert and fasten the attaching screws into the screw holes. Accordingly, the number of parts is increased and further the number of man-hours is increased, which results in an increase in the manufacturing cost. These problems can not be solved by applying the technique proposed by JP-A-2002-100094 which only shows a disk loader fastened with screws and by applying the technique proposed by P JP-A-8-221864, JP-A-7-153163, and JP-A-63-2444424 which only show a disk loader of the well known structure having a sliding mechanism of a disk tray.
The present invention has been accomplished to solve the above problems and provides a structure of attaching a disk loader capable of fixing the disk loader at a predetermined position in an outer housing without using redundant parts such as attaching screws and without conducting a troublesome work such as fastening attaching screws instead of attaching the disk loader with screws.
According to an aspect of the invention, there is provided a structure of attaching a disk loader, including: an outer housing being divided into a top case, a bottom case including a bottom plate, and a front panel, the outer housing comprising a first holding unit, a second holding unit; and a substantially rectangular frame comprising a disk loading element including a disk tray, the rectangular frame capable of being configured to be fixed by a plurality of screws onto the bottom plate. Instead of fixing the rectangular frame to the bottom plate of the bottom case by the plurality of screws, the frame is held in a lateral direction and a vertical direction by the first holding unit and is held in a longitudinal direction by a second holding unit. The first holding unit has a function of allowing the rectangular frame to slide in the longitudinal direction.
By the above-structure, the disk loader can be positioned and fixed at a position in three directions, which are perpendicular to each other, by the first holding unit and the second holding unit. Therefore, it becomes unnecessary to use redundant screws, and a screwing work to fasten the attaching screws is not needed. Accordingly, the attaching work property can be improved and the mass production property can be also improved.
These and other objects and advantages of this invention will become more fully apparent from the following detailed description taken with the accompanying drawings in which:
The disk loader A shown in
As explanatorily shown in
As explanatorily shown in
In this embodiment, the first holding unit 5 holds two portions of the disk loader A in the longitudinal direction. However, concerning this point, the disk loader A may be held in one portion in the longitudinal direction. Alternatively, the disk loader A may be held in portions, the number of which is not less than two. Further, it is possible to adopt such a structure that the longitudinal widths of the rising piece 51 and the pushing piece 52 of the first holding unit 5 are extended and the rising piece 51 and the pushing piece 52 pinch and press the substantially entire length portion of the attaching piece 12 of the frame 1. In the same manner, in the second holding unit 7, the disk loader A may be held in on portion in the lateral direction. Alternatively, the disk loader A may be held in portions in the lateral direction, the number of which is not less than two.
Referring to the attaching structure explanatorily shown in
Before the top case 120 and the front case 130 (shown in
In this embodiment, the bottom case 110 can be made of sheet metal or resin. In the case where the bottom case 110 is made of sheet metal, the rising piece 51 and the pushing piece 52 of the first holding unit 5 can be formed integrally with the bottom plate 112 of the bottom case 110 by raising a portion of the bottom plate 112. In the case where the bottom case 110 is made of resin, the rising piece 51 and the pushing piece 52 can be formed integrally with the bottom case 110 when the bottom case 110 is formed by molding. The circumstances are the same as those of the engaging piece 71 on the bottom case 110 side of the second holding unit 7 and the engaging piece 72 on the front panel 130 side. Therefore, it is possible to provide a structure of attaching the disk loader A, the attaching property of which is excellent, without increasing the number of parts. Accordingly, the mass production property of DVD player can be improved.
Although the front side engaging piece 72 of the second holding unit 7 is provided on the front panel 130, it can be provided on the top case 120. A soft elastic member such as a sheet of rubber or cloth may be stuck onto the engaging piece 71 on the bottom case 110 side. According to this structure, the disk loader A is elastically held by the second holding unit 7. Therefore, the occurrence of rattling can be prevented.
According to the above-embodiments, the first holding unit includes a pair of rising pieces integrally provided on the bottom plate of the bottom case, for pinching the frame from both sides and also includes pushing pieces respectively provided with respect to the rising pieces, for pinching the frame between the pushing pieces and the bottom plate. It is also preferable that the pushing pieces are respectively individually provided for the pair of rising pieces. When this structure is employed, in the case where the bottom case is made of sheet metal, the rising pieces and the pushing pieces can be formed by raising a portion of the bottom plate of the bottom case. In the case where the bottom case is composed of a resin molding, it is possible to provide an advantage that the rising pieces and the pushing pieces can be integrally formed together with the formation of the bottom case. Therefore, the first holding unit does not need such parts as screws. Accordingly, the manufacturing cost can be easily reduced. At the same time, the attaching property can be improved and the mass production property can be also improved.
According to the above-embodiments, the second holding unit includes a pair of engaging pieces respectively provided on the bottom plate of the bottom case and the top case or on the bottom plate and the front panel, for pinching the frame in the longitudinal direction. Due to the foregoing, when the top case and the front panel are attached to the bottom case to which the disk loader is positioned and fixed in the longitudinal direction and the vertical direction by the first holding unit described before, the disk loader can be also positioned and fixed in the longitudinal direction. Accordingly, it becomes unnecessary for the first holding unit and the second holding unit to use such parts as attaching screws. Accordingly, the manufacturing cost can be easily reduced. At the same time, the attaching property can be improved and the mass production property can be also improved.
According to the above-embodiments, the attaching piece extending in the longitudinal direction provided in the frame is slidably engaged with the groove-shaped portion, which is formed by the rising pieces of the first holding unit, the pushing pieces provided in the rising pieces and the bottom plate of the bottom case, so that the attaching piece can slide in the longitudinal direction. Due to the foregoing, in the case of attaching the disk loader to the bottom case, only when the frame of the disk loader is engaged with and pushed into the groove-shaped portion, the disk loader can be positioned to the bottom case. Therefore, the attaching work can be easily and positively executed, and the mass production property can be remarkably improved as compared with a case in which the attaching work is conducted with the attaching screws.
According to the above-embodiments, a structure of attaching a disk loader in which a substantially rectangular frame of the disk loader having disk loading elements such as a disk tray and others is fixed by a plurality of screws onto a bottom plate of a bottom case of an outer housing which is divided into the bottom case, a top case and a front panel, and front faces of the bottom case and the top case are open, characterized in that: instead of fixing the frame to the bottom plate of the bottom case by screws, the frame is held in the lateral direction and the vertical direction by a first holding unit provided in the outer housing; and the frame is held in the longitudinal direction by a second holding unit provided in the outer housing. The first holding unit includes: a pair of rising pieces provided on a bottom plate of the bottom case, for pinching the frame from both sides; and pushing pieces provided on the bottom plate of the bottom case, for pinching the frame between the pushing pieces and the bottom plate. An attaching piece provided in the frame extending in the longitudinal direction is slidably engaged with a groove-shaped portion formed by the rising piece of the first holding unit, the pushing piece provided for the rising piece and the bottom plate of the bottom case so that the attaching piece can be freely slid in the longitudinal direction. The second holding unit includes a pair of engaging pieces individually provided on the bottom plate of the bottom case and the top case or on the bottom plate of the bottom case and the front panel so as to pinch the frame in the longitudinal direction. When the attaching piece is engaged with the groove-shaped portion and the disk loader is slid and pushed backward, the engaging piece on the bottom plate side receives the rear end of the frame and conducts positioning on the disk loader. When the above constitution is adopted, the present invention can be more specifically realized. The action of the present invention will be explained in detail referring to the embodiment described later.
According to the above-embodiments, instead of attaching the disk loader with screws, without using redundant parts such as attaching screws which require a troublesome work of fastening the attaching screws, the disk loader can be fixed at a predetermined position in the outer housing. Therefore, it becomes unnecessary to use redundant parts such as screws. Further, a troublesome work such as a fastening work of the attaching screws can be avoided. Therefore, the attaching property can be greatly improved and the manufacturing cost can be reduced. Accordingly, the mass production property in the assembling line of the factory can be improved. Further, DVD players, in which the disk loader is accommodated in the outer housing, can be provided at an inexpensive price.
Number | Date | Country | Kind |
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P2005-087744 | Mar 2005 | JP | national |