Claims
- 1. A method to increase suspension resonance frequencies without increasing spring rate of a head suspension assembly of a disc drive, comprising:
(a) attaching a base plate to an actuator arm assembly such that the base plate including the actuator arm assembly are in an actuating relationship with respect to a rotating disc of the disc drive; (b) attaching a two-piece suspension member having first and second pieces to the base plate such that the two-piece suspension member including the base plate are in an actuating relationship with the rotating disc; and (c) attaching a gimbal to the two-piece suspension member such that the gimbal has a predetermined bendable area between the first and second pieces of the two-piece suspension member, wherein the base plate, the two-piece suspension member, and the gimbal including the predetermined bendable area provide a higher stiffness-to-mass ratio without increasing the spring rate of the head suspension assembly such that the suspension resonance frequencies of the head suspension assembly are increased to fall outside a bandwidth of a servo drive to reduce off-track motion of the head suspension assembly during track follow-and-seek operations of the disc drive.
- 2. The method of claim 1, further comprising:
(d) disposing an adhesive between the two-piece suspension member and the gimbal to further attach the two-piece suspension member and the gimbal to provide a stiffer preload bend radius in the predetermined bendable area to increase torsional and lateral resonance frequencies of the head suspension assembly, and to reduce off-track motion during track follow-and-seek operations of the disc drive.
- 3. The method of claim 2, wherein the two-piece suspension member, the base plate, and the gimbal are made of stainless steel material.
- 4. An improved head suspension assembly, coupled to an actuator arm assembly, to support a head/slider, wherein the head suspension assembly, including the actuator arm assembly, is in an actuating relationship with respect to a rotating disc of a disc drive, comprising:
a base plate; a two-piece suspension member, having a first piece and a second piece, wherein the first piece is attached to the base plate such that the base plate including the two-piece suspension member are in actuating relationship with the rotating disc; and a gimbal, wherein the gimbal is attached to the first and second pieces such that there is a predetermined bendable area formed on the gimbal between the first and second pieces of the two-piece suspension member, and wherein the two-piece suspension member including the gimbal with the predetermined bendable area has a higher stiffness-to-mass ratio to increase suspension resonance frequencies of the head suspension assembly such that the suspension resonance frequencies falls outside a bandwidth of a servo drive without increasing spring rate of the head suspension assembly, so that the head/slider will have a reduced off-track motion during track follow-and-seek operations of the disc drive.
- 5. The assembly of claim 4, further comprising:
an adhesive disposed between the gimbal and the attached portions of the first and second pieces of the two-piece suspension member, to further attach the first and second pieces to the gimbal and provide a stiffer preload bend radius in the predetermined bendable area such that the stiffer preload bend radius increases the stiffness-to-mass ratio of the head suspension assembly to improve torsional and lateral resonance frequencies of the suspension assembly so that the head/slider can have a reduced off-track motion during track follow-and-seek operations.
- 6. The assembly of claim 5, wherein disposing the adhesive comprises:
disposing the adhesive through openings provided in the first and second pieces across from the gimbal, to further attach the gimbal to the first and second pieces of the two-piece suspension member such that the torsional and lateral resonance frequencies fall outside the bandwidth of the servo drive.
- 7. The assembly of claim 6, wherein the adhesive comprises:
a low-viscosity adhesive capable of bonding the gimbal to the first and second pieces such that the torsional and lateral resonance frequencies are increased to fall outside the bandwidth of the servo drive.
- 8. The assembly of claim 7, wherein the adhesive comprises EMCAST 712-5k.
- 9. The assembly of claim 4, wherein the first and second pieces have first and second ends, respectively, further the gimbal also has first and second ends, wherein the first end of the first piece is attached to the base plate, the second end of the first piece is attached to the first end of the gimbal, wherein the first end of the second piece is attached to the second end of the gimbal such that a predetermined bendable area is formed in the gimbal between the second end of the first piece and the first end of the second piece.
- 10. The assembly of claim 4, wherein the base plate, the two-piece suspension member, and the gimbal comprises stainless steel material.
- 11. The assembly of claim 10, wherein the two-piece suspension member has a thickness of approximately in the range of about 0.002″ to 0.004″.
- 12. The assembly of claim 10, wherein the gimbal has a thickness of approximately in the range of about 0.00086″ to 0.001″.
- 13. The assembly of claim 10, wherein the base plate has a thickness of approximately in the range of about 0.0059″ to 0.008″.
- 14. The assembly of claim 10, wherein the first and second pieces of the two-piece suspension member are attached to the gimbal and the base plate such that the separating of the first and second pieces aids in increasing the suspension resonance frequencies to fall outside the bandwidth of the servo drive without increasing the spring rate.
- 15. A disc drive, comprising:
a base; a rotating disc attached to the base; an actuator arm assembly attached to the base such that the actuator arm assembly is in an actuating relationship with respect to the rotating disc; a servo drive, to control a movement of the actuator arm assembly; a four-piece suspension assembly for supporting a head/slider, wherein the four-piece suspension assembly is attached to the actuator arm assembly, wherein the four-piece suspension assembly further comprises:
a base plate attached to the actuator arm assembly; a two-piece suspension member, having a first piece and a second piece, wherein one end of the first piece is attached to the base plate such that the base plate including the first piece of the two-piece suspension member attached to the actuator arm assembly, are in actuating relationship with respect to the rotating disc of the disc drive; and a gimbal, wherein one end of the gimbal is attached to the other end of the first piece, and further the other end of the gimbal is attached to the first and second pieces, such that a predetermined bendable area is formed in the gimbal between the attached first and second pieces of the two-piece suspension member, and wherein the base plate, the two-piece suspension member, and the gimbal including the predetermined bendable area have a higher stiffness-to-mass ratio without increasing the spring rate of the head suspension assembly to increase suspension resonance frequencies to fall outside a bandwidth of the servo drive to reduce off-track motion of the head/slider during track follow-and-seek operations of the disc drive.
- 16. The disc drive of claim 15, wherein the four-piece suspension assembly further comprises:
an adhesive, disposed between the gimbal and the attached portions of the first and second pieces of the two-piece suspension member further increase stiffness-to-mass ratio of the head suspension assembly such that torsional and lateral resonance frequencies of the suspension assembly are increased to fall beyond the bandwidth of the servo drive.
- 17. The disc drive of claim 16, wherein the adhesive comprises a low-viscosity adhesive capable of bonding the gimbal to the first and second pieces such that the torsional and lateral resonance frequencies are increased to fall outside the bandwidth of the servo drive.
- 18. The disc drive of claim 17, wherein the adhesive comprises EMCAST 712-5k.
- 19. The disc drive of claim 4, wherein the base plate, the two-piece suspension member, and the gimbal are made from a sheet of stainless steel material.
- 20. A disc drive, comprising:
a base; a rotating disc; an actuator arm assembly, attached to the base such that the actuator arm assembly is in an actuating relationship with respect to the rotating disc; and means attached to the actuator arm assembly for supporting a head/slider such that the means has a higher stiffness-to-mass ratio without increasing the spring rate of the means to increase suspension resonance frequencies to fall outside a bandwidth of a servo drive so that the head slider can track follow more effectively during track follow-and-seek operations of the disc drive.
RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Ser. No. 60/151,690, filed May 25, 2000 under 35 U.S.C. 11 9(e).
Provisional Applications (1)
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Number |
Date |
Country |
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60151690 |
Aug 1999 |
US |