IP Library Granted Patent US 9,099,144
Granted Patent B1
US 9,099,144 · App. 14/052,648 · Granted Aug 4, 2015

Disk drive evaluating laser performance for heat assisted magnetic recording

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Quick Facts
Patent No.
US 9,099,144
App. No.
14/052,648
Granted
Aug 4, 2015
Kind
B1
Abstract

A disk drive is disclosed comprising a disk and a head comprising a laser configured to heat the disk while writing to the disk. Data is written to the disk using an operating laser power applied to the laser, and then the data is read from the disk to generate a read signal. A ramp interval is measured for an amplitude of the first read signal to ramp up to a first threshold.

Claims (59)

1. A disk drive comprising:

a disk;

a head comprising a laser configured to heat the disk while writing to the disk; and

control circuitry configured to:

write data to the disk using an operating laser power applied to the laser;

read the data from the disk to generate a first read signal; and

measure a ramp interval for an amplitude of the first read signal to ramp up to a first threshold.

2. The disk drive as recited in claim 1 , wherein the control circuitry is further configured to:

sample the first read signal to generate signal samples; and

measure the ramp interval based on a number of the signal samples.

3. The disk drive as recited in claim 2 , wherein the control circuitry is further configured to:

filter the signal samples to generate filtered signal samples; and

measure the ramp interval based on a number of the filtered signal samples.

4. The disk drive as recited in claim 1 , wherein the control circuitry is further configured to detect a degradation of the laser when the ramp interval exceeds a second threshold.

5. The disk drive as recited in claim 4 , wherein the control circuitry is further configured to recalibrate the operating laser power when the ramp interval exceeds the second threshold.

6. The disk drive as recited in claim 1 , wherein the control circuitry is further configured to write the data to the disk by writing a periodic pattern to the disk.

7. The disk drive as recited in claim 1 , wherein the periodic pattern comprises a preamble of a data sector.

8. The disk drive as recited in claim 1 , wherein the control circuitry is further configured to:

erase an area of the disk using the operating laser power;

read the erased area of the disk to generate a second read signal; and

detect degradation of the laser based on an amplitude of the second read signal.

9. The disk drive as recited in claim 8 , wherein when the degradation of the laser is detected, the control circuitry is further configured to:

increase the operating laser power;

erase an area of the disk using the increased laser power;

read the erased area of the disk to generate a third read signal; and

detect degradation of the laser based on an amplitude of the third read signal.

10. The disk drive as recited in claim 9 , wherein when the degradation of the laser is not detected, the control circuitry is further configured to write the data to the erased area of the disk.

11. The disk drive as recited in claim 1 , wherein the control circuitry is further operable to disable the head based on the ramp interval.

12. The disk drive as recited in claim 1 , wherein the control circuitry is further operable to adjust a capacity of the disk based on the ramp interval.

13. The disk drive as recited in claim 12 , wherein the control circuitry is further operable to adjust the capacity of the disk by adjusting at least one of a linear density of data tracks and a radial density of data tracks.

14. The disk drive as recited in claim 12 , wherein the control circuitry is further operable to adjust the capacity of the disk by adjusting a length of a preamble in a data sector.

15. A method of operating a disk drive comprising:

writing data to a disk using an operating laser power applied to a laser of a head, wherein the laser is configured to heat the disk while writing to the disk;

reading the data from the disk to generate a first read signal; and

measuring a ramp interval for an amplitude of the first read signal to ramp up to a first threshold.

16. The method as recited in claim 15 , further comprising:

sampling the first read signal to generate signal samples; and

measuring the ramp interval based on a number of the signal samples.

17. The method as recited in claim 16 , further comprising:

filtering the signal samples to generate filtered signal samples; and

measuring the ramp interval based on a number of the filtered signal samples.

18. The method as recited in claim 15 , further comprising detecting a degradation of the laser when the ramp interval exceeds a second threshold.

19. The method as recited in claim 18 , further comprising recalibrating the operating laser power when the ramp interval exceeds the second threshold.

20. The method as recited in claim 15 , further comprising writing the data to the disk by writing a periodic pattern to the disk.

21. The method as recited in claim 15 , wherein the periodic pattern comprises a preamble of a data sector.

22. The method as recited in claim 15 , further comprising:

erasing an area of the disk using the operating laser power;

reading the erased area of the disk to generate a second read signal; and

detecting degradation of the laser based on an amplitude of the second read signal.

23. The method as recited in claim 22 , wherein when the degradation of the laser is detected, further comprising:

increasing the operating laser power;

erasing an area of the disk using the increased laser power;

reading the erased area of the disk to generate a third read signal; and

detecting degradation of the laser based on an amplitude of the third read signal.

24. The method as recited in claim 23 , wherein when the degradation of the laser is not detected, further comprising writing the data to the erased area of the disk.

25. The method as recited in claim 15 , further comprising disabling the head based on the ramp interval.

26. The method as recited in claim 15 , further comprising adjusting a capacity of the disk based on the ramp interval.

27. The method as recited in claim 26 , further comprising adjusting the capacity of the disk by adjusting at least one of a linear density of data tracks and a radial density of data tracks.

28. The method as recited in claim 26 , further comprising adjusting the capacity of the disk by adjusting a length of a preamble in a data sector.

Assignments (8)
PATENT COLLATERAL AGREEMENT - A&R LOAN AGREEMENT Recorded Aug 21, 2023
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 064715/0001 →
PATENT COLLATERAL AGREEMENT - DDTL LOAN AGREEMENT Recorded Aug 21, 2023
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 067045/0156 →
RELEASE OF SECURITY INTEREST AT REEL 038744 FRAME 0481 Recorded Feb 8, 2022
From: JPMORGAN CHASE BANK, N.A.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 058982/0556 →
RELEASE OF SECURITY INTEREST Recorded Mar 5, 2018
From: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 045501/0714 →
SECURITY AGREEMENT Recorded May 17, 2016
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038744/0481 →
SECURITY AGREEMENT Recorded May 17, 2016
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038722/0229 →
SECURITY AGREEMENT Recorded May 17, 2016
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 038744/0281 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2013
From: CHIA, GALVIN T.; BALASUBRAMANIAM, PRAKASH
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 031392/0890 →