IP Library Granted Patent US 8,947,822
Granted Patent B1
US 8,947,822 · App. 12/478,606 · Granted Feb 3, 2015

Disk drive adjusting fly height based on air density measured from rate of temperature change

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Quick Facts
Patent No.
US 8,947,822
App. No.
12/478,606
Granted
Feb 3, 2015
Kind
B1
Abstract

A disk drive is disclosed comprising a head actuated over a disk, wherein the head comprises a dynamic fly height (DFH) actuator. The disk drive further comprises an electrical heating element, and control circuitry operable to select an operating control signal applied to the DFH actuator by heating the electrical heating element for a first heating time, measuring a rate of temperature change of the electrical heating element, and selecting the operating control signal applied to the DFH actuator in response to the rate of temperature change.

Claims (53)

1. A disk drive comprising:

a disk;

a head actuated over the disk, wherein the head comprises a dynamic fly height (DFH) actuator;

an electrical heating element; and

control circuitry operable to select an operating control signal applied to the DFH actuator by:

heating the electrical heating element for a first heating time;

measuring a rate of temperature change of the electrical heating element; and

selecting the operating control signal applied to the DFH actuator in response to the rate of temperature change.

2. The disk drive as recited in claim 1 , wherein the rate of temperature change is a rate of cooling.

3. The disk drive as recited in claim 1 , wherein the rate of temperature change is a rate of heating.

4. The disk drive as recited in claim 1 , wherein the control circuitry is further operable to select the operating control signal applied to the DFH actuator by measuring a starting temperature (TEMPs) of the electrical heating element before heating the heating element.

5. The disk drive as recited in claim 4 , wherein the control circuitry is further operable to select the operating control signal applied to the DFH actuator by:

measuring an ending temperature (TEMPe) of the electrical heating element after the first heating time;

determining a temperature threshold in response to TEMPs and TEMPe; and

measuring a cooling time required for the temperature of the electrical heating element to cool to the temperature threshold.

6. The disk drive as recited in claim 5 , wherein temperature threshold is determined as:

(TEMPe−TEMPs)*C+TEMPs.

7. The disk drive as recited in claim 2 , wherein the control circuitry is further operable to select the operating control signal applied to the DFH actuator by:

measuring an ending temperature (TEMPe) of the electrical heating element after the first heating time;

waiting for a predetermined cooling time after the first heating time;

measuring a cooled temperature (TEMPc) of the electrical heating element after the cooling time; and

select the operating control signal applied to the DFH actuator in response to the TEMPe and the TEMPc.

8. The disk drive as recited in claim 3 , wherein the control circuitry is further operable to select the operating control signal applied to the DFH actuator by:

measuring a first temperature (TEMP1) of the electrical heating element after the first heating time;

heating the electrical heating element for a second heating time;

measuring a second temperature (TEMP2) of the electrical heating element after the second heating time;

selecting the operating control signal applied to the DFH actuator in response to the TEMP1 and the TEMP2.

9. The disk drive as recited in claim 1 , wherein the electrical heating element comprises a thermistor.

10. The disk drive as recited in claim 1 , further comprising a temperature sensor located proximate the electrical heating element.

11. A method of operating a disk drive, the disk drive comprising a disk, a head actuated over the disk, wherein the head comprises a dynamic fly height (DFH) actuator, and an electrical heating element, the method comprising:

heating the electrical heating element for a first heating time;

measuring a rate of temperature change of the electrical heating element; and

selecting an operating control signal applied to the DFH actuator in response to the rate of temperature change.

12. The method as recited in claim 11 , wherein the rate of temperature change is a rate of cooling.

13. The method as recited in claim 11 , wherein the rate of temperature change is a rate of heating.

14. The method as recited in claim 11 , further comprising measuring a starting temperature (TEMPs) of the electrical heating element before heating the heating element.

15. The method as recited in claim 14 , further comprising:

measuring an ending temperature (TEMPe) of the electrical heating element after the first heating time;

determining a temperature threshold in response to TEMPs and TEMPe; and

measuring a cooling time required for the temperature of the electrical heating element to cool to the temperature threshold.

16. The method as recited in claim 15 , wherein temperature threshold is determined as:

(TEMPe−TEMPs)*C+TEMPs.

17. The method as recited in claim 12 , further comprising:

measuring an ending temperature (TEMPe) of the electrical heating element after the first heating time;

waiting for a predetermined cooling time after the first heating time;

measuring a cooled temperature (TEMPc) of the electrical heating element after the cooling time; and

selecting the operating control signal applied to the DFH actuator in response to the TEMPe and the TEMPc.

18. The method as recited in claim 13 , further comprising:

measuring a first temperature (TEMP1) of the electrical heating element after the first heating time;

heating the electrical heating element for a second heating time;

measuring a second temperature (TEMP2) of the electrical heating element after the second heating time;

selecting the operating control signal applied to the DFH actuator in response to the TEMP1 and the TEMP2.

19. The method as recited in claim 11 , wherein the electrical heating element comprises a thermistor.

Assignments (8)
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 →
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 →
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: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 038744/0281 →
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: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038744/0481 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2009
From: RICE, ALAN P.; FERRIS, TIMOTHY A.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 022784/0629 →