IP Library › Granted Patent US 12,573,423
Granted Patent B1
US 12,573,423 · App. 19/062,575 · Granted Mar 10, 2026

Magnetic disk device and controlling method of the same

Inventor: Takahiro Aoki (Kawasaki Kanagawa, JP)
Assignees: Kabushiki Kaisha Toshiba; Toshiba Electronic Devices & Storage Corporation
G11B5/5547G11B5/59666
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Quick Facts
Patent No.
US 12,573,423
App. No.
19/062,575
Granted
Mar 10, 2026
Kind
B1
Abstract

According to one embodiment, a magnetic disk device including a controller. The controller writes adjustment patterns, reads the written adjustment patterns, and detects the number of signal components of the sync mark included in the read signal, selects a frequency of an adjustment pattern from which the detected number larger than or equal to a threshold value is obtained, among the read adjustment patterns, as a write frequency of each of magnetic heads, writes spiral patterns including the sync mark in each predetermined cycle with the same frequency as each of the selected write frequencies, and writes a servo pattern, while tracking each of the written spiral patterns.

Claims (56)

1 . A magnetic disk device comprising:

a plurality of rotatable magnetic disks;

a plurality of magnetic heads capable of seeking in a radial direction of each of the magnetic disks to write data to and read data from each of the magnetic disks; and

a controller which controls the rotation of each of the magnetic disks and the seek of each of the magnetic heads, wherein

the controller

writes a plurality of adjustment patterns including a sync mark in each predetermined cycle with different frequencies, to each of the magnetic disks by each of the magnetic heads;

reads each of the written adjustment patterns by each of the magnetic heads, and detects the number of signal components of the sync mark included in the read signal of each of the magnetic heads;

selects a frequency of an adjustment pattern from which the detected number larger than or equal to a threshold value is obtained, among the read adjustment patterns, as a write frequency for each of the magnetic heads;

writes a plurality of spiral patterns including the sync mark in each predetermined cycle with the same frequency as each of the selected write frequencies, to each of the magnetic disks by each of the magnetic heads; and

writes a servo pattern which is a reference to positioning control of seek of each of the magnetic heads, to each of the magnetic disks, by each of the magnetic heads, while tracking each of the written spiral patterns by each of the magnetic heads.

2 . The device according to claim 1 , wherein

the controller sets a seek speed of each of the magnetic heads to a value corresponding to each of the selected write pattern frequencies.

3 . The device according to claim 1 , wherein

the controller sets a seek speed of each of the magnetic heads to a value corresponding to each of the selected write pattern frequencies and to a state in which the value becomes gradually larger from an inner circumferential position to an outer circumferential position along the radial direction of each of the magnetic disks.

4 . The device according to claim 1 , wherein

the controller includes a basic clock section which generates a basic clock signal, a circuit which generates a clock signal for data read of each of the magnetic heads from the basic clock signal generated by the basic clock section, and a circuit which generates a clock signal for data write of each of the magnetic heads from the basic clock signal generated by the basic clock section.

5 . The device according to claim 1 , wherein

each of the magnetic heads includes a write element for data write, and a first read element and a second read element for data read, and

the controller

selects the first read element among the first read element and the second read element of each of the magnetic heads as a data read element,

as for the magnetic head from which the detected number larger than or equal to the threshold value cannot be obtained, selects the second read element of the magnetic head as a read element for data read, and

as for the magnetic head from which the detected number larger than or equal to the threshold value cannot be obtained after the selection of the second read element, selects a frequency of an adjustment pattern from which the maximum detected number can be obtained as a write frequency.

6 . A magnetic disk device comprising:

a first magnetic disk, a second magnetic disk, and a plurality of third magnetic disks, which are rotatable;

a first magnetic head capable of seeking in a radial direction of the first magnetic disk to write data to and read data from the first magnetic disk;

a second magnetic head capable of seeking in a radial direction of the second magnetic disk to write data to and read data from the second magnetic disk;

a plurality of third magnetic heads capable of seeking in a radial direction of each of the third magnetic disks to write data to and read data from each of the third magnetic disks; and

a controller which controls rotation of the first magnetic disk, the second magnetic disk, and the plurality of third magnetic disks, and controls seek of the first magnetic head, the second magnetic head, and the plurality of third magnetic heads, wherein

the controller

writes a guide spiral pattern to the first magnetic disk by the first magnetic head,

writes a first final spiral pattern of a predetermined frequency including a sync mark in each predetermined cycle to the first magnetic disk by the second magnetic head while tracking the written guide spiral pattern by the first magnetic head and the second magnetic head following the first magnetic head,

writes a servo pattern which is a reference to positioning control of seek of the second magnetic head, to the second magnetic disk by the second magnetic head while tracking the written first final spiral pattern by the second magnetic head,

writes a plurality of adjustment patterns including a sync mark in each predetermined cycle with different frequencies, to each of the third magnetic disks by each of the third magnetic heads, while tracking the written servo pattern by the second magnetic head and each of the third magnetic heads following the second magnetic head,

reads each of the written adjustment patterns by each of the third magnetic heads and detects the number of signal components of the sync mark included in the read signal of each of the third magnetic heads,

selects a frequency of an adjustment pattern from which the detected number larger than or equal to a threshold value is obtained, among the read adjustment patterns, as a write frequency of each of the third magnetic heads,

writes a plurality of second adjustment patterns including a sync mark in each predetermined cycle with the same frequency as each of the selected write frequencies, to each of the third magnetic disks by each of the third magnetic heads, while tracking the written servo pattern by the second magnetic head and each of the third magnetic heads following the second magnetic head, and

writes a servo pattern which is a reference to positioning control of seek of the each of the third magnetic heads, to each of the third magnetic disks by each of the third magnetic heads while tracking each of the written second final spiral patterns by each of the third magnetic heads.

7 . The device according to claim 6 , wherein

the controller sets a seek speed of each of the third magnetic heads to a value corresponding to each of the selected write pattern frequencies.

8 . The device according to claim 6 , wherein

the controller sets a seek speed of each of the third magnetic heads to a value corresponding to each of the selected write pattern frequencies and to a state in which the value becomes gradually larger from an inner circumferential position to an outer circumferential position along the radial direction of each of the third magnetic disks.

9 . The device according to claim 6 , wherein

the controller includes a basic clock unit generating a basic clock signal, a circuit generating a clock signal for data read of each of the magnetic heads from the basic clock signal generated by the basic clock unit, and a circuit generating a clock signal for data write of each of the magnetic heads from the basic clock signal generated by the basic clock unit.

10 . The device according to claim 6 , wherein

each of the magnetic heads includes a write element for data write, and a first read element and a second read element for data read, and

the controller

first selects the first read element among the first read element and the second read element of each of the magnetic heads as a data read element,

as for the third magnetic head from which the detected number larger than or equal to the threshold value cannot be obtained, selects the second read element of the third magnetic head as a read element for data read, and

as for the third magnetic head from which the detected number larger than or equal to the threshold value cannot be obtained after the selection of the second read element, selects a frequency of an adjustment pattern from which the maximum detected number can be obtained as a write frequency.

11 . A method of controlling a magnet disk device comprising a plurality of rotatable magnetic disks; a plurality of magnetic heads capable of seeking in a radial direction of each of the magnetic disks to write data to and read data from each of the magnetic disks; and a controller controlling the rotation of each of the magnetic disks and the seek of each of the magnetic heads,

the method comprising:

writing a plurality of adjustment patterns including a sync mark in each predetermined cycle with different frequencies, to each of the magnetic disks by each of the magnetic heads;

reading each of the written adjustment patterns by each of the magnetic heads, and detecting the number of signal components of the sync mark included in the read signal of each of the magnetic heads;

selecting a frequency of an adjustment pattern from which the detected number larger than or equal to a threshold value is obtained, among the read adjustment patterns, as a write frequency for each of the magnetic heads;

writing a plurality of spiral patterns including the sync mark in each predetermined cycle with the same frequency as each of the selected write frequencies, to each of the magnetic disks by each of the magnetic heads; and

writing a servo pattern which is a reference to positioning control of seek of each of the magnetic heads, to each of the magnetic disks, by each of the magnetic heads, while tracking each of the written spiral patterns by each of the magnetic heads.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2025
From: AOKI, TAKAHIRO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA ELECTRONIC DEVICES & STORAGE CORPORATION
Reel/Frame 070326/0343 →
Priority Claims (1)
JP 2024-158384 · Sep 12, 2024 · national
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