IP Library Granted Patent US 11,423,932
Granted Patent B2
US 11,423,932 · App. 17/399,241 · Granted Aug 23, 2022

Magnetic tape, magnetic tape cartridge, and magnetic tape apparatus

Inventors: Eiki Ozawa (Minami-ashigara, JP); Norihito Kasada (Minami-ashigara, JP); Atsushi Musha (Minami-ashigara, JP)
Assignee: FUJIFILM Corporation
G11B5/584G01B11/0675G11B5/708G11B5/7013G11B5/7022G11B5/7061G11B5/70684G11B5/78G11B20/10046G11B23/502G11B27/022B82Y10/00B82Y25/00G11B2005/0013
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Quick Facts
Patent No.
US 11,423,932
App. No.
17/399,241
Granted
Aug 23, 2022
Kind
B2
Abstract

The magnetic tape includes a non-magnetic support; and a magnetic layer in which the magnetic layer has a timing-based servo pattern, an edge shape of the timing-based servo pattern, specified by magnetic force microscopy is a shape in which a difference between a value L 99.9 of a cumulative distribution function of 99.9% and a value L 0.1 of a cumulative distribution function of 0.1% in a position deviation width from an ideal shape of the magnetic tape in a longitudinal direction is 180 nm or less, and a difference between a spacing S after measured on a surface of the magnetic layer by an optical interferometry after methyl-ethyl-ketone cleaning and a spacing S before measured on the surface of the magnetic layer by an optical interferometry before methyl-ethyl-ketone cleaning is greater than 0 nm and 15.0 nm or less.

Claims (55)

1. A magnetic tape comprising:

a non-magnetic support;

a magnetic layer including ferromagnetic powder;

a non-magnetic layer including non-magnetic powder between the non-magnetic support and the magnetic layer; and

a back coating layer on a surface side of the non-magnetic support opposite to a surface side provided with the magnetic layer,

wherein the magnetic layer has a timing-based servo pattern,

wherein the ferromagnetic powder is at least one ferromagnetic powder selected from the group consisting of hexagonal ferrite powder and ε-iron oxide powder

wherein an edge shape of the timing-based servo pattern, specified by magnetic force microscopy is a shape in which a difference L 99.9 −L 0.1 between a value L 99.9 of a cumulative distribution function of 99.9% and a value L 0.1 of a cumulative distribution function of 0.1% in a position deviation width from an ideal shape of the magnetic tape in a longitudinal direction is 180 nm or less, and

wherein a difference S after −S before between a spacing S after measured on a surface of the magnetic layer by an optical interferometry after methyl-ethyl-ketone cleaning and a spacing S before measured on the surface of the magnetic layer by an optical interferometry before methyl-ethyl-ketone cleaning is greater than 0 nm and 15.0 nm or less.

2. The magnetic tape according to claim 1 ,

wherein the difference S after −S before is 2.0 nm or more and 15.0 nm or less.

3. The magnetic tape according to claim 1 ,

wherein the difference S after −S before is 3.0 nm or more and 12.0 nm or less.

4. The magnetic tape according to claim 1 ,

wherein the timing-based servo pattern is a linear servo pattern which continuously extends from one side of the magnetic tape in a width direction to the other side thereof and is inclined at an angle α with respect to the width direction, and

wherein the ideal shape is a linear shape extending in a direction of the angle α.

5. The magnetic tape according to claim 1 ,

wherein the difference L 99.9 −L 0.1 is 100 nm or more and 180 nm or less.

6. The magnetic tape according to claim 1 ,

wherein a thickness of the magnetic layer is 10 nm to 70 nm.

7. The magnetic tape according to claim 1 ,

wherein a thickness of the non-magnetic layer is 100 nm to 800 nm.

8. The magnetic tape according to claim 1 ,

wherein a thickness of the back coating layer is 0.1 μm to 0.4 μm.

9. The magnetic tape according to claim 1 ,

wherein an average particle size of the ferromagnetic powder is 25 nm or less.

10. The magnetic tape according to claim 1 ,

wherein the ferromagnetic powder is vertically orientated.

11. A magnetic tape cartridge comprising:

the magnetic tape according to claim 1 .

12. The magnetic tape cartridge according to claim 11 ,

wherein the difference S after −S before is 2.0 nm or more and 15.0 nm or less.

13. The magnetic tape cartridge according to claim 11 ,

wherein the difference S after −S before is 3.0 nm or more and 12.0 nm or less.

14. The magnetic tape cartridge according to claim 11 ,

wherein the timing-based servo pattern is a linear servo pattern which continuously extends from one side of the magnetic tape in a width direction to the other side thereof and is inclined at an angle α with respect to the width direction, and

wherein the ideal shape is a linear shape extending in a direction of the angle α.

15. The magnetic tape cartridge according to claim 11 ,

wherein the difference L 99.9 −L 0.1 is 100 nm or more and 180 nm or less.

16. The magnetic tape cartridge according to claim 11 ,

wherein the ferromagnetic powder is vertically orientated.

17. A magnetic tape apparatus comprising:

a magnetic tape;

a reading element unit; and

an extraction unit,

wherein the magnetic tape is the magnetic tape according to claim 1 ,

wherein the reading element unit includes a plurality of reading elements each of which reads data from a specific track region including a reading target track in a track region included in the magnetic tape, and

wherein the extraction unit performs a waveform equalization process with respect to each reading result for each reading element, to extract, from the reading result, data derived from the reading target track.

18. The magnetic tape apparatus according to claim 17 ,

wherein the difference S after −S before is 3.0 nm or more and 12.0 nm or less.

19. The magnetic tape apparatus according to claim 17 ,

wherein the timing-based servo pattern is a linear servo pattern which continuously extends from one side of the magnetic tape in a width direction to the other side thereof and is inclined at an angle α with respect to the width direction, and

wherein the ideal shape is a linear shape extending in a direction of the angle α.

20. The magnetic tape apparatus according to claim 17 ,

wherein the difference L 99.9 −L 0.1 is 100 nm or more and 180 nm or less.

Priority Claims (1)
JP JP2019-016532 · Jan 31, 2019 · national
Continuity (2)
Continuation 16777418 · Jan 30, 2020
Related Publication 20210375311A1 · Dec 2, 2021
Cited By (12)
US 12,300,276 US 12,300,286 US 12,300,287 US 12,300,288 US 12,308,054 US 12,308,057 US 12,308,058 US 12,308,059 US 12,308,060 US 12,322,425 US 12,334,125 US 12,380,924