Claims
- 1. A method of characterizing a bearing cartridge for use in a disc drive based on a preload applied to the bearing cartridge, comprising steps of:
(a) mounting the bearing cartridge to a base and an actuator such that the actuator is rotatably attached to the base by the bearing cartridge; (b) inducing a steady swing in the actuator to simulate a seek operation of the disc drive; (c) measuring a voltage drop that occurs across the bearing cartridge during the steady swing of the actuator to characterize the bearing cartridge based on the preload applied to the bearing cartridge; and (d) characterizing the bearing cartridge based on the measured voltage drop.
- 2. The method of claim 1, in which a voice coil motor is operatively connected to the actuator, and wherein in step (b) the steady swing of the actuator is induced by performing a step of:
(b)(i) applying a voltage signal to the voice coil motor.
- 3. The method of claim 2, wherein in step (b)(i) the voltage signal comprises a 1 Hz square pulse of 2 volts.
- 4. The method of claim 2, wherein in step (b)(i) the voltage signal is applied a predetermined number of times to the voice coil motor such that the voltage signal applied during each of the predetermined number of times induces the steady swing in the actuator.
- 5. The method of claim 4, wherein the predetermined number of times is greater than or equal to 10.
- 6. The method of claim 3, wherein the measuring step (c) further comprises steps of:
(c)(i) measuring the voltage drop that occurs across the bearing cartridge during each of the predetermined number of times the voltage signal is applied to induce the steady swing in the actuator arm assembly; and (c)(ii) measuring highest and lowest voltage drops across the bearing cartridge during each of the predetermined number of times the voltage signal is applied to induce the steady swing in the actuator arm assembly.
- 7. The method of claim 6, wherein the measuring step (c) further comprises steps of:
(c)(iii) computing an average voltage drop using the measured occurred voltage drop during each application of the voltage signal for the predetermined number of times; (c)(iv) computing a standard deviation using the measured voltage drop that occurs during each application of the voltage signal for the predetermined number of times; and (c)(v) determining a largest and a smallest voltage drop across the bearing cartridge using the measured highest and lowest voltage drops during each of the predetermined number of times.
- 8. The method of claim 7, wherein characterizing step (d) further comprises steps of:
(e) comparing the computed average voltage drop to a predetermined average voltage drop; and (d)(i) characterizing the bearing cartridge based on the outcome of the comparison.
- 9. The method of claim 8, wherein the bearing cartridge characterizing step (e) further comprises steps of:
(e)(i) comparing the computed standard deviation to a predetermined standard deviation; and (d)(ii) characterizing the bearing cartridge based on the outcome of the comparison.
- 10. The method of claim 9, wherein the bearing cartridge characterizing step (e) further comprises steps of:
(e)(ii) comparing the determined largest and smallest voltage drops to a predetermined largest and smallest voltage drops; and (d)(iii) characterizing the bearing cartridge based on the outcome of the comparison.
- 11. The method of claim 10, further comprising steps of:
(f) computing a bearing cartridge resistance using the measured voltage drop across the bearing cartridge; and (d)(iv) characterizing the bearing cartridge based on the computed bearing cartridge resistance.
- 12. A test fixture, comprising:
a base; a voice coil motor-shaft-actuator assembly; a preloaded bearing cartridge disposed in the voice coil motor-shaft-actuator assembly such that it is rotatably attached to the base; voice coil motor circuitry to apply a voltage signal to the voice coil motor to induce a steady swing in the voice coil motor-shaft-bearing cartridge-actuator assembly; and a voltage divider circuit to measure a voltage drop that occurs across the bearing cartridge during the steady swing of the actuator assembly to characterize the bearing cartridge based on a preload applied to the bearing cartridge.
- 13. The test fixture of claim 12, wherein the voice coil motor circuitry further comprises:
a comparator to compare the measured voltage drop to a predetermined threshold value to characterize the bearing cartridge.
- 14. The test fixture of claim 12, wherein the applied voltage signal comprises:
a 1 Hz square pulse of 2 volts.
- 15. The test fixture of claim 12, wherein the voice coil motor circuitry is configured to apply the voltage signal for a predetermined number of times to the voice coil motor to induce a steady swing in the actuator assembly.
- 16. The test fixture of claim 15, wherein the voltage divider circuitry is configured to measure the voltage drop across the bearing cartridge during each of the predetermined number of times the voltage signal is applied to induce the steady swing in the actuator arm assembly, and also to further measure highest and lowest voltage drops across the bearing cartridge during each of the predetermined number of times the voltage signal is applied to the voice coil motor to induce the steady swing.
- 17. The test fixture of claim 16, wherein the voltage divider circuitry further comprises:
an analyzer to compute an average voltage drop, a standard deviation, and largest and smallest voltage drops using the measured voltage drop that occurs during each application of the voltage signal for the predetermined of times.
- 18. The test fixture of claim 17, wherein the comparator further compares the computed average voltage drop, the computed standard deviation, and the largest and smallest voltage drops to a predetermined average voltage drop, a predetermined standard deviation, and predetermined largest and smallest voltage drops, respectively, to characterize the bearing cartridge based on the preload applied to the bearing cartridge.
- 19. The test fixture of claim 17, wherein the analyzer computes a bearing cartridge resistance from the measured voltage drop to characterize the bearing cartridge based on a preload applied to the bearing cartridge.
- 20. A test system, comprising:
a base; an actuator; a preloaded bearing cartridge disposed in the actuator such that it is rotatably attached to the base; and means for characterizing the bearing cartridge based on the electrical resistance of the bearing cartridge.
RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/184,700, filed Feb. 24, 2000 under 35 U.S.C. 119(e).
Provisional Applications (1)
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Number |
Date |
Country |
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60184700 |
Feb 2000 |
US |