IP Library Granted Patent US 11,373,682
Granted Patent B2
US 11,373,682 · App. 17/177,715 · Granted Jun 28, 2022

Data storage device reading data from magnetic tape in forward and reverse direction

Inventors: James N. Malina (Irvine, CA); Weldon M. Hanson (Rochester, MN); Derrick E. Burton (Ladera Ranch, CA)
Assignee: WESTERN DIGITAL TECHNOLOGIES, INC.
G11B20/1201G11B27/029G11B27/3027G11B2220/90
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Quick Facts
Patent No.
US 11,373,682
App. No.
17/177,715
Granted
Jun 28, 2022
Kind
B2
Abstract

A data storage device is disclosed comprising at least one head configured to access a magnetic tape. The head is used to write contiguously to the magnetic tape a first preamble, followed by a first sync mark, followed by symbols of a first data sector, followed by a second sync mark, followed by a second preamble, followed by a third sync mark, followed by symbols of a second data sector.

Claims (47)

1. A data storage device configured to access a magnetic tape, the data storage device comprising:

at least one head configured to access the magnetic tape; and

control circuitry configured to use the head to write contiguously to the magnetic tape a first preamble, followed by a first sync mark, followed by symbols of a first data sector, followed by a second sync mark, followed by a second preamble, followed by a third sync mark, followed by symbols of a second data sector.

2. The data storage device as recited in claim 1 , wherein the data storage device comprises the magnetic tape.

3. The data storage device as recited in claim 1 , wherein:

the magnetic tape is housed in a cartridge assembly; and

the data storage device comprises a tape drive assembly configured to receive the cartridge assembly.

4. The data storage device as recited in claim 1 , wherein the control circuitry is further configured to:

read the magnetic tape in a forward direction by reading the first sync mark in order to synchronize to the symbols of the first data sector; and

read the magnetic tape in a reverse direction by reading the second sync mark in order to synchronize to the symbols of the first data sector.

5. The data storage device as recited in claim 1 , wherein the control circuitry is further configured to overwrite the second data sector with a third data sector by:

overwriting at least part of the second preamble with a third preamble;

overwriting at least part of the third sync mark with a fourth sync mark; and

overwriting at least part of the symbols of the second data sector with symbols of the third data sector.

6. The data storage device as recited in claim 5 , wherein the control circuitry is further configured to read the magnetic tape in a reverse direction by reading the third preamble and the second sync mark in order to synchronize to the symbols of the first data sector.

7. The data storage device as recited in claim 1 , wherein the control circuitry is further configured to overwrite the second data sector with a third data sector by overwriting at least part of the second sync mark with a third preamble used to synchronize timing recovery when reading the third data sector.

8. The data storage device as recited in claim 1 , wherein the control circuitry is further configured to overwrite the first data sector with a third data sector by overwriting at least part of the second sync mark with a third sync mark used to synchronize to symbols of the third data sector when reading the third data sector in a reverse direction.

9. The data storage device as recited in claim 8 , wherein the control circuitry is further configured to read the third data sector in the reverse direction by reading the second preamble in order to synchronize timing recovery.

10. The data storage device as recited in claim 1 , wherein the control circuitry is further configured to overwrite the first data sector with a third data sector by converting at least part of the second sync mark into a gap field separating an end of the third data sector from the second preamble.

11. A data storage device configured to access a magnetic tape, the data storage device comprising:

at least one head configured to access the magnetic tape; and

control circuitry configured to:

use the head to continuously write a plurality of data sectors to the magnetic tape without leaving a gap between each data sector; and

use the head to write contiguously to the magnetic tape a first preamble, followed by a first sync mark, followed by symbols of a first data sector, followed by a second sync mark, followed by a second preamble, followed by a third sync mark, followed by symbols of a second data sector.

12. The data storage device as recited in claim 11 , wherein the data storage device comprises the magnetic tape.

13. The data storage device as recited in claim 11 , wherein:

the magnetic tape is housed in a cartridge assembly; and

the data storage device comprises a tape drive assembly configured to receive the cartridge assembly.

14. The data storage device as recited in claim 11 , wherein the control circuitry is further configured to:

read the magnetic tape in a forward direction by reading the first sync mark in order to synchronize to the symbols of the first data sector; and

read the magnetic tape in a reverse direction by reading the second sync mark in order to synchronize to the symbols of the first data sector.

15. The data storage device as recited in claim 11 , wherein the control circuitry is further configured to overwrite the second data sector with a third data sector by:

overwriting at least part of the second preamble with a third preamble;

overwriting at least part of the third sync mark with a fourth sync mark; and

overwriting at least part of the symbols of the second data sector with symbols of the third data sector.

16. The data storage device as recited in claim 15 , wherein the control circuitry is further configured to read the magnetic tape in a reverse direction by reading the third preamble and the second sync mark in order to synchronize to the symbols of the first data sector.

17. The data storage device as recited in claim 11 , wherein the control circuitry is further configured to overwrite the second data sector with a third data sector by overwriting at least part of the second sync mark with a third preamble used to synchronize timing recovery when reading the third data sector.

18. The data storage device as recited in claim 11 , wherein the control circuitry is further configured to overwrite the first data sector with a third data sector by overwriting at least part of the second sync mark with a third sync mark used to synchronize to symbols of the third data sector when reading the third data sector in a reverse direction.

19. The data storage device as recited in claim 18 , wherein the control circuitry is further configured to read the third data sector in the reverse direction by reading the second preamble in order to synchronize timing recovery.

20. The data storage device as recited in claim 11 , wherein the control circuitry is further configured to overwrite the first data sector with a third data sector by converting at least part of the second sync mark into a gap field separating an end of the third data sector from the second preamble.

21. A data storage device comprising:

a magnetic tape;

at least one head configured to access the magnetic tape; and

a means for using the head to continuously write a plurality of data sectors to the magnetic tape without leaving a gap between each data sector, wherein the means for using the head to continuously write comprises a means for contiguously writing a first preamble, followed by a first sync mark, followed by symbols of a first data sector, followed by a second sync mark, followed by a second preamble, followed by a third sync mark, followed by symbols of a second data sector.

22. The data storage device as recited in claim 21 , further comprising:

a means for reading the magnetic tape in a forward direction by reading the first sync mark in order to synchronize to the symbols of the first data sector; and

a means for reading the magnetic tape in a reverse direction by reading the second sync mark in order to synchronize to the symbols of the first data sector.

Assignments (5)
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 056285 FRAME 0292 Recorded Feb 8, 2022
From: JPMORGAN CHASE BANK, N.A.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 058982/0001 →
SECURITY INTEREST Recorded May 19, 2021
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS AGENT
Reel/Frame 056285/0292 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2021
From: MALINA, JAMES N.; HANSON, WELDON M.; BURTON, DERRICK E.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 055297/0337 →
Continuity (2)
Provisional Application 63071007 · Aug 27, 2020
Related Publication 20220068308A1 · Mar 3, 2022