Head gimbal assembly weld dimples
A data storage device includes a data storage disk, an actuator arm, a load beam attached to the actuator arm, and a flexure attached to the load beam. The disk has a read/write surface defining an x-y plane, and the actuator arm is movable parallel to the x-y plane. The load beam supports a slider that carries a head that is configured to interact with the read/write surface. The load beam includes a first dimple that extends toward the read/write surface and has a flat base. The flexure is attached to the load beam at the flat base of the first dimple and is attached to the slider. The flexure is substantially parallel to the x-y plane between the flat base of the dimple and the slider. In another aspect, an actuator arm assembly includes a load beam with weld dimples.
1 . A data storage device comprising:
a data storage disk having a read/write surface defining an x-y plane;
an actuator arm that is movable parallel to the x-y plane;
a load beam attached to the actuator arm, wherein the load beam supports a slider that carries a head that is configured to interact with the read/write surface, wherein the load beam comprises a first dimple formed of the load beam, that has a substantially continuous annular wall of fixed height that extends toward the read/write surface and has a flat base; and
a flexure attached, via direct rigid physical coupling, to the load beam at the flat base of the first dimple and attached to the slider, wherein the flexure is substantially parallel to the x-y plane between the flat base of the first dimple and the slider, and wherein a region of the load beam around the dimple is separated from the flexure by the fixed height of the substantially continuous annular wall of the dimple.
2 . The data storage device of claim 1 , wherein the flat base is circular.
3 . The data storage device of claim 2 , wherein the first dimple has a truncated conical shape, wherein the annular wall is inclined and is connected to the flat base.
4 . The data storage device of claim 2 , wherein the first dimple has a cylindrical shape, wherein the annular wall is disposed substantially perpendicular to the flat base.
5 . The data storage device of claim 1 , wherein the load beam comprises a longitudinal centerline, wherein the first dimple is one of a plurality of dimples, and wherein the plurality of dimples are equidistantly spaced from the centerline.
6 . The data storage device of claim 1 , comprising a second dimple in contact with the slider.
7 . The data storage device of claim 6 , wherein the first and second dimples have a common height.
8 . The data storage device of claim 1 , wherein the height of the annular wall ranges from about 30 micrometers to about 75 micrometers.
9 . The data storage device of claim 1 , wherein the height of the annular wall ranges from about 40 micrometers to about 65 micrometers.
10 . The data storage device of claim 1 , wherein the height of the annular wall ranges from about 45 micrometers to about 60 micrometers.
11 . The data storage device of claim 1 , wherein a surface area of the flat base is about 50,000 square micrometers to about 150,000 square micrometers.
12 . An actuator arm assembly comprising:
an actuator arm;
a load beam having a first end attached to the actuator arm and an opposed second end, wherein the load beam comprises a first dimple formed of the load beam, that comprises a substantially continuous annular wall of fixed height and comprises a flat base; and
a flexure attached, via direct rigid physical coupling, to the load beam at the flat base of the first dimple, wherein a region of the load beam around the dimple is separated from the flexure by the fixed height of the substantially continuous annular wall of the dimple.
13 . The actuator arm assembly of claim 12 , wherein the load beam comprises an aperture therethrough, the aperture being positioned on a longitudinal centerline of the load beam, and wherein the first dimple is positioned on one side of the aperture.
14 . The actuator arm assembly of claim 13 , wherein the first dimple is one of a plurality of dimples, and wherein the plurality of dimples are arranged on opposed sides of the aperture.
15 . The actuator arm assembly of claim 12 , wherein the flat base is circular.
16 . The actuator arm assembly of claim 12 , wherein the first dimple has a truncated conical shape, wherein the annular wall is inclined and is connected to the flat base.
17 . The actuator arm assembly of claim 12 , wherein the first dimple has a cylindrical shape, wherein the annular wall is disposed substantially perpendicular to the flat base.
18 . The actuator arm assembly of claim 12 , wherein the load beam comprises a second dimple positioned between the first dimple and the second end.
19 . The actuator arm assembly of claim 18 , wherein the first and second dimples have a common height.
20 . A data storage device comprising:
a data storage disk having a read/write surface defining an x-y plane;
an actuator arm that is movable parallel to the x-y plane;
a load beam attached to the actuator arm, wherein the load beam supports a slider that carries a head that is configured to interact with the read/write surface, wherein the load beam comprises a first dimple formed of the load beam, that has a substantially continuous annular wall of fixed height that extends toward the read/write surface and has a flat base;
a flexure attached to the load beam at the flat base of the first dimple and attached to the slider, wherein the flexure is substantially parallel to the x-y plane between the flat base of the first dimple and the slider, and wherein a region of the load beam around the dimple is separated from the flexure by the fixed height of the substantially continuous annular wall of the dimple; and
a base plate via which a first end of the load beam is attached to the actuator arm, and wherein the first dimple is located approximately mid-way between the first end of the load beam and the slider.