The present application is based on and claims priority of Japanese patent application No. 2005-344849 filed on Nov. 30, 2005, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a disk device for reading, writing or reading and writing signals on a disk medium, and more specifically, relates to a disk device capable of preventing the disk medium from falling into the depth direction of the device.
2. Description of the Related Art
Disk media such as CDs and DVDs are used widely due to their superior usability, and various electronic devices using disk devices for recording and reproducing signals on the disk media are also widely used. One type of such various disk devices is a tray-type disk device in which the disk medium is usually simply placed on a disk tray when loading the disk medium into the disk device (without any special retention force applied for clamping the disk medium), so that if the disk device is installed in a slanted state, the disk medium may fall into the interior (depth direction) of the disk device.
If the disk medium falls into the interior of the device, problems may occur in that the disk medium cannot be taken out of the device, possibly causing malfunction of the device. Japanese Patent Application Laid-Open Publication No. 10-269670 (Patent document 1) discloses an art for preventing such problems (the disk medium from falling into the device).
If stoppers (projections) or the like for preventing the disk medium from falling into the device are provided on the disk tray, there are cases in which the “function of preventing the disk medium from falling into the device” is not sufficiently exerted due to limitations requiring the stoppers not to interfere with the sliding movement of the disk tray (requiring the stoppers (projections) to not interfere with the sliding movement of the frame or the like).
In consideration of the above problems, the present invention aims at providing a disk device for reading, writing, or reading and writing signals on a disk medium, capable of preventing the disk medium from falling into the depth direction of the device.
A first aspect of the present invention provides a disk device for reading, writing or reading and writing signals on a disk medium having ribs for preventing fall-in of the disk medium, comprising: a disk tray slidably disposed on a frame constituting an outer frame of the disk device for mounting the disk medium; and a clamp mechanism for clamping the disk medium; wherein ribs for preventing fall-in of the disk medium are formed to protrude toward an inner side of the disk medium from inner surfaces of both side walls of the frame at an area positioned deeper toward the sliding direction of the disk tray than a center of the disk medium when the disk tray is loaded in the disk device, the ribs being formed so that the distance between the ends of the ribs is smaller than at least the outer diameter of the disk medium, and so that they do not contact the disk medium when the disk medium is clamped by the clamp mechanism.
According to the above arrangement, ribs for preventing fall-in of the disk medium are provided on inner surfaces of the two side walls of the frame, with the distance between the ends of the ribs being formed smaller than at least the outer diameter of the disk medium, so that the outer diameter of the disk medium is prevented from falling into the depth direction of the device beyond the straight line connecting the ribs. The “depth direction of the device” refers to the direction substantially equal to the direction in which the disk tray is moved in sliding motion, wherein the side of the frame on which the loading slot for loading and ejecting the disk tray is formed is referred to as the “front side”, and the side toward which the disk tray is loaded is referred to as the “depth side”.
A second aspect of the prevent invention provides a disk device having ribs for preventing fall-in of the disk medium according to aspect 1, wherein with respect to the height-direction size of the disk device, the ribs for preventing fall-in of the disk medium are formed so that lower ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to or lower than a lower surface of the disk medium mounted on the disk tray, and the upper ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to the upper end portion of the side walls of the frame.
According to the above arrangement, the height-direction size of the ribs for preventing fall-in of the disk medium (height direction of the disk device) corresponds to the distance from the lower surface of the disk medium mounted on the disk tray to the upper end of the side wall of the frame, so that even if the disk medium moves up and down within the frame, the medium moving toward the depth direction of the device will come into contact with the ribs preventing fall-in of the disk medium. Here, the “height direction of the device” refers to the perpendicular direction of the disk device installed in a so-called transverse position, which corresponds to the direction orthogonal to the plane of the disk medium loaded in the device.
A third aspect of the present invention provides a disk device for reading, writing or reading and writing signals on a disk medium having ribs for preventing fall-in of the disk medium, comprising: a disk tray slidably disposed on a frame constituting an outer frame of the disk device and having a disk mounting recess for mounting the disk medium; and a clamp mechanism for clamping the disk medium; wherein at least the width-direction size of the disk mounting recess is formed smaller than the outer diameter of the disk medium so that a portion of the disk medium protrudes from the disk mounting recess, and wherein ribs for preventing fall-in of the disk medium are formed to protrude toward an inner side of the disk medium from inner surfaces of both side walls of the frame at an area positioned deeper toward the sliding direction of the disk tray than a center of the disk medium when the disk tray is loaded in the disk device, the ribs being formed so that the distance between the ends of the ribs is smaller than at least the outer diameter of the disk medium, and so that they do not contact the disk medium when the disk medium is clamped by the clamp mechanism.
According to the above arrangement, a portion of the disk medium protrudes from the disk mounting recess in the disk device having ribs for preventing fall-in of the disk medium.
A fourth aspect of the present invention provides a disk device having ribs for preventing fall-in of the disk medium according to aspect 3, wherein the ribs for preventing fall-in of the disk medium are formed at an area near the portion of the disk medium protruded from the disk mounting recess when the disk medium is clamped by the clamp mechanism, and with respect to the height-direction size of the disk device, the ribs for preventing fall-in of the disk medium are formed so that lower ends of the ribs are positioned substantially equal to or lower than a lower surface of the disk medium mounted on the disk mounting recess, and the upper ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to the upper end portion of the side walls of the frame.
According to the above arrangement, the ribs for preventing fall-in of the disk medium are formed in the area near the disk medium loaded in the device (being clamped by the clamp mechanism), so that if the disk medium moves toward the depth direction of the device from the loaded position, the medium immediately comes into contact with the ribs for preventing fall-in of the disk medium. Furthermore, since the height-direction size of the ribs for preventing fall-in of the disk medium (the height direction in the disk device) corresponds to the distance from the lower surface of the disk medium mounted on the disk mounting recess to the upper end of the side walls of the frame, even if the disk medium moves up and down within the frame, the disk medium will come into contact with the ribs for preventing fall-in of the disk medium when it moves toward the depth direction of the device.
A fifth aspect of the present invention provides a disk device having ribs for preventing fall-in of the disk medium according to any one of aspects 1 through 4, wherein the ribs for preventing fall-in of the disk medium are formed so that the upper ends thereof are placed deeper toward the depth direction of the disk device than the lower ends thereof, so that the ribs are slanted with respect to the vertical direction of the disk device.
According to the above arrangement, the ribs for preventing fall-in of the disk medium are formed in a slanted arrangement with the upper ends placed deeper toward the depth direction of the disk device than the lower ends thereof, so as to exert an effect to move the disk medium coming into contact therewith toward the front direction of the disk device. The “vertical direction” refers to the perpendicular direction when the disk device is installed in a so-called transverse position, which corresponds to the direction orthogonal to the plane of the disk medium loaded in the device.
A sixth aspect of the present invention provides a disk device having ribs for preventing fall-in of the disk medium according to any one of aspects 1 through 5, wherein the ribs for preventing fall-in of the disk medium are formed integrally with guide ribs formed on the inner surfaces of both side walls of the frame for restricting the sliding direction of the disk tray.
According to the above arrangement, it becomes possible to form the guide ribs provided on the inner surfaces of both side walls of the frame so as to restrict the sliding direction of the disk tray integrally with the ribs for preventing fall-in of the disk medium.
Now, the preferred embodiments for carrying out the present invention will be described with reference to the drawings. The following embodiments are mere examples for realizing the present invention, and are not intended to restrict the scope of the present invention.
The disk device 1 is composed of a frame 11 formed mainly of resin and constituting the outer frame of the disk device, a disk tray 12 disposed slidably with respect to the frame 11, a damper 15 for clamping the disk medium 2, and a top panel member 13 for holding the damper 15 and covering the upper surface portion of the disk device 1. Further, although not shown, the disk device 1 comprises a pickup unit mounted in the frame 11, a pickup unit driving mechanism for moving the pickup unit along the radial direction of the disk medium 2, a turntable for clamping the disk medium with the damper 15, and a spindle motor for rotating the turntable. A plurality of guide ribs 18 are formed on the inner side of the side walls of the frame 11 for restricting the sliding direction of the disk tray 12.
The width-direction size of the disk tray 12 excluding the stepped rail portions 122 is formed smaller than the diameter of the disk medium 2, so that as shown in
As shown in
The ribs 17 for preventing fall-in of the disk medium also function as guide ribs by being formed integrally with the ribs 17a (
According to the disk device 1 having the above arrangement, and as shown in
Furthermore, according to the disk device 1 of the present embodiment, even if the disk tray 12 is loaded into the device with the disk medium 2 displaced from the disk mounting recess 121, the disk medium 2 will come into contact with the ribs 17 for preventing fall-in of the disk medium as the disk tray 12 moves into the device, by which the ribs exert another effect of correcting the displacement of the disk medium 2.
Moreover, since there are a number of conventional disk trays 12 that are designed so that “portions of the disk medium 2 are projected from the disk mounting recess 121 when the disk medium 2 is mounted on the disk tray 12 (the areas corresponding to the black colored areas 2a of
In addition, a disk device having the upper surface covered with a top panel member 13 is used as an example according to the present embodiment, but the present invention can also be applied effectively to a disk device with large opening areas formed on the upper surface as illustrated in
According to the present embodiment, one example has been mainly described in detail in which “portions of the disk medium 2 are projected from the disk mounting recess 121 when the disk medium 2 is mounted on the disk tray 12”, but the present invention is not restricted thereto, and the present invention can be effectively applied to cases in which portions of the disk medium 2 are not projected from the disk mounting recess. For example, as shown in
Furthermore, in
According to the present embodiment, each one of the ribs 17 for preventing fall-in of the disk medium is formed respectively on one side wall of the frame 11, but plural ribs can be formed on each side wall.
The effects of the present invention are as follows.
According to the first aspect of the present invention providing a disk device for reading, writing or reading and writing signals on a disk medium having ribs for preventing fall-in of the disk medium, comprising a disk tray slidably disposed on a frame constituting an outer frame of the disk device for mounting the disk medium, and a clamp mechanism for clamping the disk medium, wherein ribs for preventing fall-in of the disk medium are formed to protrude toward an inner side of the disk medium from inner surfaces of both side walls of the frame at an area positioned deeper toward the sliding direction of the disk tray than a center of the disk medium when the disk tray is loaded in the disk device, the ribs being formed so that the distance between the ends of the ribs is smaller than at least the outer diameter of the disk medium, and so that they do not contact the disk medium when the disk medium is clamped by the clamp mechanism. Ribs for preventing fall-in of the disk medium are formed on inner surfaces of both side walls of the frame, with the distance between the ends of the ribs formed to be smaller than at least the outer diameter of the disk medium, so that the disk medium is prevented from moving beyond the straight line connecting the ribs and falling into the depth direction of the device (that is, the disk medium is prevented from falling into the interior (depth direction) of the device).
According to the second aspect of the present invention providing a disk device having ribs for preventing fall-in of the disk medium according to aspect 1, wherein with respect to the height-direction size of the disk device, the ribs for preventing fall-in of the disk medium are formed so that lower ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to or lower than a lower surface of the disk medium mounted on the disk tray, and the upper ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to the upper end portion of the side walls of the frame. The height of the ribs for preventing fall-in of the disk medium (height direction in the disk device) is equal to the distance from the lower surface of the disk medium mounted on the disk tray to the upper end of the side walls of the frame, so that even when the disk medium moves up and down within the frame, the disk medium moving toward the direction to fall into the depth direction of the device comes into contact with the ribs for preventing fall-in of the disk medium, by which the disk medium is effectively prevented from falling into the device.
According to the third aspect of the present invention providing a disk device for reading, writing or reading and writing signals on a disk medium having ribs for preventing fall-in of the disk medium, comprising a disk tray slidably disposed on a frame constituting an outer frame of the disk device and having a disk mounting recess for mounting the disk medium, and a clamp mechanism for clamping the disk medium, wherein at least the width-direction size of the disk mounting recess is formed smaller than the outer diameter of the disk medium so that a portion of the disk medium protrudes from the disk mounting recess, and wherein ribs for preventing fall-in of the disk medium are formed to protrude toward an inner side of the disk medium from inner surfaces of both side walls of the frame at an area positioned deeper toward the sliding direction of the disk tray than a center of the disk medium when the disk tray is loaded in the disk device, the ribs being formed so that the distance between the ends of the ribs is smaller than at least the outer diameter of the disk medium, and so that they do not contact the disk medium when the disk medium is clamped by the clamp mechanism. Since a portion of the disk medium is protruded from the disk mounting recess, the disk medium is effectively prevented from falling into the interior of the device by forming the “ribs for preventing fall-in of the disk medium” so that the protruded portion contacts the “ribs for preventing fall-in of the disk medium”.
According to the fourth aspect of the present invention providing a disk device having ribs for preventing fall-in of the disk medium according to aspect 3, wherein the ribs for preventing fall-in of the disk medium are formed at an area near the portion of the disk medium protruded from the disk mounting recess when the disk medium is clamped by the clamp mechanism, and with respect to the height-direction size of the disk device, the ribs for preventing fall-in of the disk medium are formed so that lower ends of the ribs are positioned substantially equal to or lower than a lower surface of the disk medium mounted on the disk mounting recess, and the upper ends of the ribs for preventing fall-in of the disk medium are positioned substantially equal to the upper end portion of the side walls of the frame. The ribs for preventing fall-in of the disk medium are formed near the disk medium loaded in the device, so that when the disk medium moves from the loaded position toward the depth direction of the device, the medium will immediately come into contact with the ribs for preventing fall-in of the disk medium, so that the disk medium is effectively prevented from falling into the interior (depth direction) of the device.
According to the fifth aspect of the present invention providing a disk device having ribs for preventing fall-in of the disk medium according to any one of aspects 1 through 4, wherein the ribs for preventing fall-in of the disk medium are formed so that the upper ends thereof are placed deeper toward the depth direction of the disk device than the lower ends thereof, so that the ribs are slanted with respect to the vertical direction of the disk device. The ribs for preventing fall-in of the disk medium are formed so that the upper ends thereof are placed deeper toward the depth direction of the disk device than the lower ends thereof, so that the ribs are slanted with respect to the vertical direction of the disk device, according to which the ribs coming into contact with the disk medium exert an effect to move the disk medium toward the front direction of the disk device, so that it becomes possible to lead the disk medium to the determined disk mounting position on the disk tray by the ribs for preventing fall-in of the disk medium.
According to the sixth aspect providing a disk device having ribs for preventing fall-in of the disk medium according to any one of aspects 1 through 5, wherein the ribs for preventing fall-in of the disk medium are formed integrally with guide ribs formed on the inner surfaces of both side walls of the frame for restricting the sliding direction of the disk tray. The guide ribs disposed on the inner sides of both side walls of the frame for restricting the sliding direction of the disk tray are formed integrally with the ribs for preventing fall-in of the disk medium, so that the number of components constituting the device can be reduced.
Number | Date | Country | Kind |
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2005-344849 | Nov 2005 | JP | national |