The present application is based on and claims priority of Japanese patent applications No. 2005-266735 filed on Sep. 14, 2005 and No. 2006-161933 filed on Jun. 12, 2006, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a disk device which reads and/or writes a signal from/to a disk medium, and more particularly, to a disk device designed to realize dust proofing and reduction in thickness.
2. Description of the Related Art
Disk media represented by CD and DVD are widely used for reasons such as ease of handling and various electronic devices (e.g., television and personal computer incorporating a DVD or the like) using a disk device which performs recording/replaying to/from these disk media are also widely spread. Furthermore, these electronic devices are becoming smaller and slimmer year after year.
In such a disk device which performs reading/writing from/to optical media such as DVD, if, for example, dust enters its optical head, an adverse influence may be caused on the recording/replaying operation, and therefore dust proofing measures are taken to prevent invasion of dust. Conventional technologies about such dust proofing measures for disk devices are disclosed in Japanese Patent Laid-Open Publications No. 7-272473, No. 9-326192 and No. 10-21679 (Patent Documents 1 to 3) or the like. Furthermore, conventional technologies about a reduction in the number of parts of a disk device and simplification of assembly processes are disclosed in Japanese Patent Laid-Open Publications No. 2001-222877 and No. 2003-317461 (Patent Documents 4, 5) or the like. Furthermore, Japanese Patent Laid-Open Publications No. 2001-222847 and No. 2002-352449 (Patent Documents 6, 7) or the like disclose a technology for preventing a disk medium from being left behind inside a device.
The conventional technologies disclosed by the above described Patent Documents are basically designed to house a frame in which a pickup unit and disk drive device or the like are mounted in a box-type cabinet, require a step of attaching the frame in the box-type cabinet and require the box-type cabinet (basically constructed of two parts; upper cabinet and lower cabinet) in addition to the frame, which leads to an increase in the number of parts corresponding thereto.
In view of the above described problems, it is an object of the present invention to provide a disk device which reads and/or writes a signal from/to a disk medium designed to realize dust proofing and reduction in thickness and at the same time designed to reduce the number of parts and number of working steps, capable of preventing the disk medium from being left behind inside the disk device when the disk medium is ejected.
The disk device according to aspect 1 is a disk device which reads and/or writes a signal from/to a disk medium comprising a top plate member which is provided with continuous or intermittent engagement grooves in top end faces of side walls of a frame constituting an enclosure of the disk device and which covers a top surface of the disk device, wherein bent parts of the top plate member formed by bending the whole or part of both side ends so as to have a substantially L-shaped cross section are engaged with the engagement grooves to thereby cover the top surface of the device with the top plate member.
According to the above described configuration, the area where the frame making up the enclosure of the disk device and the top plate member are connected is constructed of the grooves (engagement grooves) engaged with the projections (bent parts) and the frame and top plate member together form the disk device into a box shape.
The disk device according to aspect 2 is the disk device according to aspect 1, wherein a stepped recess swelling out toward a turn table which drives to rotate a disk medium provided for the disk device is formed in an area of the top plate member facing the turn table, a support hole for supporting a clamper for holding the disk medium sandwiched with the turn table is provided in the stepped recess and the clamper is fitted into the support hole.
According to the above described configuration, the clamper for holding the disk medium is held by the top plate member.
The disk device according to aspect 3 is the disk device according to aspect 1 or 2, wherein lugs protruding outward from the bottom ends of the bent parts are formed in parts of the bent parts, insertion holes for screws are formed in the lugs and boss sections are formed in the side walls of the frame so as to face the insertion holes and the top plate member is thereby fixed to the frame using screws.
According to the above described configuration, the top plate member is fixed to the frame using screws.
The disk device according to aspect 4 is the disk device according to aspect 2 or 3, wherein the stepped recess is formed such that the clamper does not protrude from the top surface of the top plate member or the lugs and the boss sections are formed such that heads of the screws do not protrude from the top surface of the top plate member.
According to the above described configuration, the clamper or screws for fixing the top plate member to the frame do not protrude from the top surface of the top plate member.
The disk device according to aspect 5 is the disk device according to any one of aspects 1 to 4, wherein when the side of the disk device on which the disk medium is inserted/ejected is assumed to be the front side of the device, projections swelling out toward the disk medium are formed at positions on the top plate member closer to the back than a part facing the disk medium when the disk medium is in a replaying position inside the disk device.
According to the above described configuration, the projections are formed in parts of the inner surface side (side on which the disk medium is placed) of the top plate member closer to the back (back viewed from the disk insertion side) than the part facing the disk medium in the replaying position.
The disk device according to aspect 6 is the disk device according to any one of aspects 1 to 5, wherein the top plate member is made of an elastic member and when a distance between the inner side wall surface of the engagement groove formed in one side wall top end face of the frame and the inner side wall surface of the engagement groove formed in the other side wall top end face is assumed to be a first distance, the device is constructed such that a distance between the bottom end of the bent part formed at one side end of the top plate member and the bottom end of the bent part formed at the other side end is shorter than the first distance and at the same time a distance between both side ends of the top plate member is longer than the first distance.
According to the above described configuration, the distance between both bottom ends of the bent parts formed at both side ends of the top plate member is shorter than the distance (first distance) between both engagement grooves formed on both side walls of the frame and the distance between both side ends of the top plate member is longer than the distance (first distance) between both engagement grooves formed on both side walls of the frame.
The disk device according to aspect 7 is a disk device which reads and/or writes a signal from/to a disk medium comprising a frame which constitutes an enclosure of the disk device, a top plate member which covers the whole or part of the top surface of the disk device and a disk tray for mounting the disk medium provided so as to be slidable on the frame, wherein when the side on which the disk medium is inserted or ejected is assumed to be the front side of the device, disk position control projections protruding toward the disk medium and having a slope to guide the disk medium toward the disk tray when contacting the disk medium are formed at positions of the top plate member closer to the back than an area facing the disk medium when the disk medium is in a replaying position inside the disk device and disk medium stoppers are formed at positions closer to the back than positions facing the disk position control projections on the disk medium mounting surface side of the disk tray.
According to the above described configuration, the disk position control projections having the slope to guide the disk medium toward the disk tray when contacting the disk medium are formed in parts on the inner surface side (side on which the disk medium is placed) of the top plate member closer to the back (back viewed from the disk insertion side) than the area facing the disk medium in the replaying position and the disk medium stoppers are formed on the disk tray at positions closer to the back than the positions facing the disk position control projections.
The disk device according to aspect 8 is the disk device according to any one of aspects 1 to 6, further comprising a disk tray for mounting the disk medium provided so as to be slidable on the frame, wherein when the side on which the disk medium is inserted or ejected is assumed to be the front side of the device, disk position control projections protruding toward the disk medium and having a slope to guide the disk medium toward the disk tray when contacting the disk medium are formed at positions of the top plate member closer to the back than an area facing the disk medium when the disk medium is in a replaying position inside the disk device and disk medium stoppers are formed at positions closer to the back than positions facing the disk position control projections on the disk medium mounting surface side of the disk tray.
The disk device according to aspect 9 is the disk device according to aspect 7 or 8, wherein a height position of an end of the disk position control projection is made to be substantially identical to a height position of an end of the disk medium stopper or the height position of the end of the disk position control projection is made to be closer to the disk tray than the height position of the end of the disk medium stopper.
According to the above described configuration, the height position of the end of the disk position control projection is closer to the disk tray than the height position of the end of the disk medium stopper or substantially identical thereto. That “the height position of the end of the disk position control projection is closer to the disk tray than the height position of the end of the disk medium stopper” means in other words that “the height position of the end of the disk medium stopper is closer to the top plate member than the height position of the end of the disk position control projection.”
The disk medium replaying device or disk medium recording/replaying device according to aspect 10 comprises the disk device according to any one of aspects 1 to 9.
Hereinafter, specific examples of the present invention will be explained with reference to the attached drawings. The following embodiments are some aspects in implementing the present invention and are not intended to confine the present invention within the range thereof.
[Embodiment 1]
As shown in
An engagement groove 211a is formed in a top end face of a side wall 211 of the frame 21 and boss sections 212 are formed at positions facing insertion holes 233a (which will be described later) for screws formed in lugs 233 of the top plate 23.
Furthermore, when the side of the DVD replaying unit 2 on which the disk medium 3 is inserted/ejected is assumed to be the front side, projections 236 which swell out toward the disk medium 3 are formed at positions of the top plate 23 closer to the back than the area facing the disk medium 3 when the disk medium 3 is in a replaying position inside the DVD replaying unit 2 (disk medium 3 in a replaying position is shown with a single-dot dashed line in
As shown in
Furthermore, as shown in
As shown in
Furthermore, as shown in
This embodiment provides the clamper 25 in the top plate 23 so as to eliminate the necessity for providing a member for supporting the clamper 25 separately and thereby reduce the number of parts and improve the working efficiency, but it is also possible to provide a separate member for supporting the clamper 25 and provide no stepped recess 234 (support hole 235) in the top plate 23. When the top plate 23 is provided with the clamper 25, it is necessary to ensure that the top plate 23 is fixed to the frame 21 and fixing with screws or the like (this embodiment adopts the fixing with screws 26, but other fixing means may also be used) is indispensable, but when the top plate 23 is provided with no clamper 25, it is also possible to attach the top plate 23 to the frame 21 through only the engagement strength obtained by the system as explained in
[Embodiment 2]
In the top plate 131 provided on the DVD replaying unit 130 according to this embodiment, when the side of the DVD replaying unit 130 on which a disk medium 3 is inserted/ejected is assumed to be the front side, the disk position control projections 1311 which swell out toward the disk medium 3 are formed at positions closer to the back than the area (
Furthermore, as shown in
Disk medium replaying devices are used not only in the field of home appliances such as a DVD player but in a wide variety of fields such as PC and automobile, and therefore there are also various situations in which the devices are used. Thus, there is quite a high possibility that the devices may be inclined as described above and therefore the present invention is quite useful. In order for the disk medium stopper 132 to draw the disk medium 3 more reliably in the above described situation, it is also possible to form a slope 181 on the surface of the disk medium stopper 132 contacting the disk medium 3 (
This embodiment has explained the case where the top plate 131 covers the entire top surface of the DVD replaying unit, but as shown in
Furthermore, this embodiment has explained the case where two conical disk position control projections are formed as an example, but the present invention is not limited to this and the number of disk position control projections formed can be only one or three or more. The shape of the disk position control projection is not limited to the conical shape either but various shapes can be adopted according to the above described concept of the present invention (the disk position control projection may be made of a member different from the top plate member and attached thereto or the like).
This embodiment has explained a DVD replaying unit as an example of the disk device, but the present invention is not limited to this and it goes without saying that the present invention is not only applicable to a recordable DVD recording/replaying unit but also applicable to a disk device which performs replay processing on other disk media (for example, CD recording/replaying unit, LD recording/replaying unit or the like) and effectively applicable to a disk medium replaying device or disk medium recording/replaying device incorporating each of these disk devices (for example, hybrid machine such as an LCD with a built-in DVD, personal computer furnished with a disk device or the like).
The effects of the present invention are as follows.
According to the disk device according to aspect 1, which is a disk device which reads and/or writes a signal from/to a disk medium comprising a top plate member which is provided with continuous or intermittent engagement grooves in top end faces of side walls of a frame constituting an enclosure of the disk device and which covers a top surface of the disk device, wherein bent parts of the top plate member formed by bending the whole or part of both side ends so as to have a substantially L-shaped cross section are engaged with the engagement grooves to thereby cover the top surface of the device with the top plate member, the area where the frame making up the enclosure of the disk device and the top plate member are connected is constructed of the grooves (engagement grooves) engaged with the projections (bent parts), and therefore the connection area has an excellent dust proofing characteristic and the frame and top plate member together form the disk device into a box shape, no separate box-type cabinet needs to be provided in addition to the frame and it is possible to reduce the number of parts and also simplify working steps. Furthermore, since the frame and top plate member together form the disk device into a box shape, it is possible to improve the strength of the disk device.
According to the disk device according to aspect 2, which is the disk device according to aspect 1, wherein a stepped recess swelling out toward a turn table which drives to rotate a disk medium provided for the disk device is formed in an area of the top plate member facing the turn table, a support hole for supporting a clamper for holding the disk medium sandwiched with the turn table is provided in the stepped recess and the clamper is fitted into the support hole, the clamper for holding the disk medium is held by the top plate member, and therefore no separate member for holding the clamper needs to be provided and it is possible to reduce the number of parts and also simplify working steps.
According to the disk device according to aspect 4, which is the disk device according to aspect 2 or 3, wherein the stepped recess is formed such that the clamper does not protrude from the top surface of the top plate member or the lugs and the boss sections are formed such that heads of the screws do not protrude from the top surface of the top plate member, the clamper or screws for fixing the top plate member to the frame do not protrude from the top surface of the top plate member, and therefore it is possible to reduce the thickness of the disk device.
According to the disk device according to aspect 5, which is the disk device according to any one of aspects 1 to 4, wherein when the side of the disk device on which the disk medium is inserted/ejected is assumed to be the front side of the device, projections swelling out toward the disk medium are formed at positions on the top plate member closer to the back than a part facing the disk medium when the disk medium is in a replaying position inside the disk device, the projections are formed in parts of the inner surface side of the top plate member closer to the back (back viewed from the disk insertion side) than the part facing the disk medium, and therefore the projections can prevent the disk medium from going in toward the back of the disk device (e.g., the disk goes in toward the back of the disk device in a case where a problem occurs in the clamp mechanism while the disk is rotating and the disk comes off or the disk is not clamped).
According to the disk device according to aspect 6, which is the disk device according to any one of aspects 1 to 5, wherein the top plate member is made of an elastic member and when a distance between the inner side wall surface of the engagement groove formed in one side wall top end face of the frame and the inner side wall surface of the engagement groove formed in the other side wall top end face is assumed to be a first distance, the device is constructed such that a distance between the bottom end of the bent part formed at one side end of the top plate member and the bottom end of the bent part formed at the other side end is shorter than the first distance and at the same time a distance between both side ends of the top plate member is longer than the first distance, the distance between both bottom ends of the bent parts formed at both side ends of the top plate member is shorter than the distance (first distance) between both engagement grooves formed on both side walls of the frame and the distance between both side ends of the top plate member is longer than the distance (first distance) between both engagement grooves formed on both side walls of the frame and the top plate member is made of an elastic member. Therefore, when the bent parts of the top plate member are engaged with the engagement grooves of the frame, it is possible to obtain certain engagement strength (having engagement strength means having an adhesive force, capable of obtaining greater dust proofing effects).
According to the disk device according to aspect 7, which is a disk device which reads and/or writes a signal from/to a disk medium comprising a frame which constitutes an enclosure of the disk device, a top plate member which covers the whole or part of the top surface of the disk device and a disk tray for mounting the disk medium provided so as to be slidable on the frame, wherein when the side on which the disk medium is inserted or ejected is assumed to be the front side of the device, disk position control projections protruding toward the disk medium and having a slope to guide the disk medium toward the disk tray when contacting the disk medium are formed at positions of the top plate member closer to the back than an area facing the disk medium when the disk medium is in a replaying position inside the disk device and disk medium stoppers are formed at positions closer to the back than positions facing the disk position control projections on the disk medium mounting surface side of the disk tray, the disk position control projections having the slope to guide the disk medium toward the disk tray when contacting the disk medium are formed in parts on the inner surface side of the top plate member closer to the back (back viewed from the disk insertion side) than the area facing the disk medium in the replaying position, and therefore when the disk medium contacts the disk position control projections when the disk tray is ejected, the disk medium is guided toward the disk tray by the slopes of the disk position control projections. This ensures that the disk medium contacts the disk medium stoppers formed on the disk tray and the disk medium is ejected out of the device together with the disk tray (simultaneously with the sliding operation of the disk tray).
According to the disk device according to aspect 9, which is the disk device according to aspect 7 or 8, wherein a height position of an end of the disk position control projection is made to be substantially identical to a height position of an end of the disk medium stopper or the height position of the end of the disk position control projection is made to be closer to the disk tray than the height position of the end of the disk medium stopper, the height position of the end of the disk position control projection is closer to the disk tray than the height position of the end of the disk medium stopper or substantially identical thereto, and therefore when the disk tray is ejected, the disk medium more reliably contacts the disk medium stoppers formed on the disk tray and is ejected out of the device together with the disk tray.
Number | Date | Country | Kind |
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2005-266735 | Sep 2005 | JP | national |
2006-161933 | Jun 2006 | JP | national |