STORAGE APPARATUS
20210201951 · 2021-07-01
Inventors
Cpc classification
G11B5/012
PHYSICS
G11B19/2018
PHYSICS
International classification
Abstract
A storage apparatus includes a disk-shaped recording medium, a motor configured to drive and rotate the recording medium, a head configured to read information from and write information to the recording medium, and a support member configured to support the recording medium when the recording bends in response to external vibration or shock. The support member supports the recording medium by making contact with the recording medium only when the external vibration or shock is applied to the storage apparatus.
Claims
1. A storage apparatus comprising: a disk-shaped recording medium; a motor configured to drive and rotate the recording medium; a head configured to read information from and write information to the recording medium; and a support member configured to support the recording medium when the recording bends in response to external vibration or shock, wherein the support member supports the recording medium by making contact with the recording medium only when the external vibration or shock is applied to the storage apparatus.
2. The storage apparatus as claimed in claim 1, wherein the support member is configured to make contact with a, side portion or a side surface of the recording medium.
3. The storage apparatus as claimed in claim 1, wherein the support member is provided at three or more locations inside the storage apparatus.
4. The storage apparatus as claimed in claim 3, wherein the support member is provided at equally spaced locations with respect to the recording medium.
5. The storage apparatus as claimed in claim 1, wherein the support member is provided at equally spaced locations with respect to the recording medium.
6. The storage apparatus as claimed in claim 1, further comprising: a ramp mechanism configured to move the head from a position above the recording medium to a head receded position not overlapping the recording medium in a plan view of the storage apparatus, wherein the ramp mechanism has a structure that enables the ramp mechanism to also function as the support member.
7. The storage apparatus as claimed in claim 6, wherein the support member is provided at equally spaced locations with respect to the recording medium.
8. The storage apparatus as claimed in claim 1, further comprising: a flow straightening plate configured to straighten an air flow generated due to rotation of the recording medium, wherein the flow straightening plate has a structure that enables the flow straightening plate to also function as the support member.
9. The storage apparatus as claimed in claim 8, wherein the support member is provided at equally spaced locations with respect to the recording medium.
10. The storage apparatus as claimed in claim 8, wherein the flow straightening plate is arranged between adjacent recording media.
11. The storage apparatus as claimed in claim 1, further comprising: a ramp mechanism configured to move the head from a position above the recording medium to a head receded position not overlapping the recording medium in a plan view of the storage apparatus; and a flow straightening plate configured to straighten an air flow generated due to rotation of the recording medium, wherein the support member has a structure that enables the support member to function as both the ramp mechanism and the flow straightening plate.
12. The storage apparatus as claimed in claim 11, wherein the support member is provided at equally spaced locations with respect to the recording medium.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0025] Embodiments of the present invention will be described with reference to the drawings. The same constituent elements are designated by the same reference numerals, and a repeated description of the same constituent elements will be omitted.
[0026] The present disclosure relates to a storage apparatus including a support member that supports a recording medium (or platter) that bends in response to external vibration or shock.
[0027] In
[0028] The storage apparatus 1 according to this embodiment employs the above described structure to reduce the bending of the recording medium 2, even when strong external vibration or shock is applied to the storage apparatus 1. As a result, vibration resistance and shock resistance of the storage apparatus 1 can be improved.
[0029] In
[0030]
[0031] In this embodiment, the support member 6 supports a predetermined portion of each recording medium 2 that is bent due to the external vibration or shock. This predetermined portion may preferably be an end portion of the recording medium 2, that is, a surface portion of the recording medium 2 where no reading of information and no writing of information take place, or a surface portion of the recording medium 2 over which the head 4 floats and moves. When the recording medium 2 and the support member 6 make contact with each other, a dent may be formed at a portion of the recording medium 2 contacted by the support member 6. However, if the dent is formed in the portion of the recording medium 2 where no reading of information and no writing of information take place, or the surface portion of the recording medium 2 over which the head 4 floats and moves, the operation of the storage apparatus 1 is unaffected by the contact between the recording medium 2 and the support member 6.
[0032] In the storage apparatus 1, the support member 6 may preferably provided at three or more locations inside the storage apparatus 1, as illustrated in
[0033] When three or more support members 6 are provided, the number of portions where the recording medium 2 is supported increases. For this reason, it is possible to reduce the number of portions of the recording medium 2 where the deformation occurs, thereby further improving the vibration resistance and the shock resistance of the storage apparatus 1. In addition, by providing the support members 6 at equally spaced locations, the amount of deformation of the recording medium 2 can be made uniform at each of the portions of the recording medium 2 where the deformation occurs, thereby further improving the vibration resistance and the shock resistance of the storage apparatus 1.
[0034] In this embodiment, the head 4 is moved from the position above the recording medium 2 to the head receded position, using the ramp mechanism 5 provided in the storage apparatus 1. This ramp mechanism 5 may preferably have a structure that enables this ramp mechanism 5 to also function as the support member 6. By employing such a structure for the ramp mechanism 5, it becomes possible to reduce the number of components used in the storage apparatus 1, and increase the freedom of design of the inside of the storage apparatus 1. Further, it becomes possible to further improve the vibration resistance and the shock resistance of the storage apparatus 1, since the number of portions where the recording medium 2 is supported can be increased.
[0035]
[0036] In a ramp mechanism having a conventional structure, the recording medium bends when the strong external vibration or shock is applied to the storage apparatus, and the recording surface (that is, the surface from which the information is read and to which the information is written) of the recording medium and the ramp mechanism may make contact with each other, and cause damage to the recording surface.
[0037] But by employing the structure of the support member 6 illustrated in
[0038] In addition, in a case where the ramp mechanism 5 illustrated in
[0039] The storage apparatus 1 may preferably include a flow straightening plate for straightening an air flow generated due to the rotation of the recording media 2. In addition, this flow straightening plate may preferably have a structure that enables this flow straightening plate to also function as the support member 6. In this case, it becomes possible to increase the freedom of design of the inside of the storage apparatus 1, and further improve the vibration resistance and the shock resistance of the storage apparatus 1, since the number of portions where the recording medium 2 is supported can be increased. Moreover, becomes possible to reduce the number of components used in the storage apparatus 1.
[0040]
[0041] In the flow straightening plate having a conventional structure, the recording medium bends when the strong external vibration or shock is applied to the storage apparatus, and the recording surface (that is, the surface from which the information is read and to which the information is written) of the recording medium and the flow straightening plate may make contact with each other, and cause damage to the recording surface.
[0042] But by employing the structure of the support member 6 illustrated in
[0043] The second embodiment and the third embodiment may be appropriately combined. In other words, the support member 6 may have a structure that enables the support member 6 to function as both the ramp mechanism 5 and the flow straightening plate 9, so that the effects of both the second and third embodiment can be obtained.
[0044] Accordingly, one of the support member 6, the ramp mechanism 5, and the flow straightening plate 9 may function as at least one of the remaining two of the support member 6, the ramp mechanism 5, and the flow straightening plate 9.
[0045] Of course, in each of the embodiments described above, the number of recording media 2 provided in the storage apparatus 1 is not limited to two, and a single recording medium 2 or three or more recording media 2 may be provided in the storage apparatus 1.
[0046] According to each of the embodiments described above, it is possible to provide a storage apparatus having a high resistance with respect to strong external vibration or shock that may be applied thereto.
[0047] Although the embodiments are numbered with, for example, “first,” “second,” or “third,” the ordinal numbers do not imply priorities of the embodiments.
[0048] Further, the present invention is not limited to these embodiments and exemplary implementations, but various variations, modifications, and substitutions may be made without departing from the scope of the present invention.