IP Library › Granted Patent US 11,727,957
Granted Patent B1
US 11,727,957 · App. 17/837,185 · Granted Aug 15, 2023

Data storage drive with a vertically translatable actuator arm

Inventors: YiChao Ma (Singapore, SG); Xiong Liu (Singapore, SG); Than Zaw Myint (Singapore, SG); Choon Kiat Lim (Singapore, SG)
Assignee: SEAGATE TECHNOLOGY LLC
G11B5/4873G11B21/22
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,727,957
App. No.
17/837,185
Granted
Aug 15, 2023
Kind
B1
Abstract

A data storage device includes a stack of discs mounted on a spindle and a pivot block rotatably mounted around a shaft. The data storage device also includes an arm having first and second ends, with the first end supporting a head and the second end movably attached to the pivot block. The data storage device further includes an ultrasonic piezoelectric actuator that moves the arm along the pivot block to enable the head to interact with data storage surfaces of the discs.

Claims (43)

1. A data storage device comprising:

a stack of discs mounted on a spindle;

a pivot block rotatably mounted around a shaft;

an arm having first and second ends, the first end supporting a head, and the second end movably attached to the pivot block; and

an ultrasonic piezoelectric actuator configured to move the arm along the pivot block to enable the head to interact with data storage surfaces of the discs.

2. The data storage device of claim 1 and wherein:

the pivot block comprises at least one column comprising a plurality of vertically-arranged pin holes having different locations, wherein the different locations of the vertically-arranged pin holes correspond to positions of respective discs of the stack of discs; and

the second end of the arm is releasably attachable to the pivot block by insertion of a key of a locking mechanism coupled to the arm into any one of the plurality of vertically-arranged pin holes, thereby enabling the head to access data storage surfaces of the respective discs.

3. The data storage device of claim 2 and wherein the locking mechanism comprises an electromagnetic lock.

4. The data storage device of claim 2 and wherein:

the at least one column is one of three columns of vertically-arranged pin holes, the three columns spaced 120 radial degrees apart on the pivot block;

the locking mechanism is one of three locking mechanisms in a same horizontal plane perpendicular to the shaft; and

each one of the three locking mechanisms is positioned opposite a respective one of the three columns of vertically-arranged pin holes.

5. The data storage device of claim 1 and wherein a front portion of the pivot block comprises a vertical rail along which the ultrasonic piezoelectric actuator is configured to move.

6. The data storage device of claim 5 and wherein the ultrasonic piezoelectric actuator comprises at least one roller that is in contact with the rail and enables movement of the ultrasonic piezoelectric actuator along the rail.

7. A data storage device comprising:

a first disc mounted on a spindle, the first disc having a first data storage surface;

a pivot block rotatably mounted around a shaft;

an arm comprising first and second ends, the first end supporting a head; and

at least one electromagnetic lock configured to releasably lock the second end of the arm at a first location along the pivot block, such that when the at least one electromagnetic lock locks the second end of the arm at the first location, the arm is rotatable by the pivot block to enable the head to interact with the first data storage surface.

8. The data storage device of claim 7 and wherein:

the first disc is one of a plurality of discs in a stack, and

the second end of the arm is moveably attached to the pivot block, thereby enabling the head to access other data storage surfaces of different discs of the plurality of discs.

9. The data storage device of claim 8 and further comprising an ultrasonic piezoelectric actuator configured to move the arm along the pivot block to enable the head to access the other data storage surfaces.

10. The data storage device of claim 9 and wherein:

the pivot block comprises at least one column comprising a plurality of vertically-arranged pin holes having different locations, wherein the different locations of the vertically-arranged pin holes correspond to positions of respective discs of the stack of discs; and

the second end of the arm is releasably attachable to the pivot block by insertion of a key of the at least one electromagnetic lock, which is coupled to the arm, into any one of the plurality of vertically-arranged pin holes, thereby enabling the head to access the data storage surfaces of the respective discs.

11. The data storage device of claim 10 and wherein:

the at least one column is one of three columns of vertically-arranged pin holes, the three columns spaced 120 radial degrees apart on the pivot block;

the at least one electromagnetic lock is one of three electromagnetic locks in a same horizontal plane perpendicular to the shaft; and

each one of the three electromagnetic locks is positioned opposite a respective one of the three columns of vertically-arranged pin holes.

12. The data storage device of claim 10 and wherein a front portion of the pivot block comprises a vertical rail along which the ultrasonic piezoelectric actuator is configured to move.

13. The data storage device of claim 12 and wherein the ultrasonic piezoelectric actuator comprises at least one roller that is in contact with the rail and enables movement of the ultrasonic piezoelectric actuator along the rail.

14. A data storage device comprising:

a stack of discs mounted on a spindle;

a pivot block rotatably mounted around a shaft, the pivot block comprising a rear portion and a generally cylindrical front portion that is positioned around the shaft, the front portion having an exterior that includes at least one column of vertically-arranged pin holes, wherein locations of the different vertically-arranged pin holes correspond to locations of respective discs of the stack of discs; and

an arm having first and second ends, the first end supporting a head configured to interact with different data storage surfaces of the stack of discs, and the second end releasably attachable to the pivot block by insertion of a key of a locking mechanism coupled to the arm into any of the different vertically-arranged pin holes, thereby enabling the head to access the different data storage surfaces.

15. The data storage device of claim 14 and wherein the locking mechanism comprises an electromagnetic lock.

16. The data storage device of claim 14 and wherein the at least one column of vertically-arranged pin holes comprises three columns of vertically-arranged pin holes spaced 120 degrees apart on the exterior of the front portion of the pivot block, and wherein the locking mechanism is one of three locking mechanisms in a same horizontal plane perpendicular to the shaft with each different one of the three locking mechanisms being positioned opposite a different column of the vertically-arranged pin holes.

17. The data storage device of 14 and further comprising a linear actuator configured to move the arm along the pivot block to enable the head to interact with the different data storage surfaces.

18. The data storage device of claim 17 and wherein the linear actuator comprises an ultrasonic piezoelectric actuator.

19. The data storage device of claim 17 and wherein the front portion of the pivot block comprises a vertical rail along which the linear actuator is configured to move.

20. The data storage device of claim 19 and wherein the linear actuator comprises at least one roller that is in contact with the rail and enables movement of the linear actuator along the rail.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2022
From: MA, YICHAO; LIU, XIONG; MYINT, THAN ZAW; KIAT LIM, CHOON
To: SEAGATE TECHNOLOGY LLC
Reel/Frame 060160/0498 →
Cited By (2)
US 12,562,189 US 12,592,252