IP Library Granted Patent US 11,846,605
Granted Patent B2
US 11,846,605 · App. 17/804,659 · Granted Dec 19, 2023

Magnetic property measuring apparatus and magnetic property measuring method

Inventors: Lei Zhang (Chiba, JP); Fumito Kudo (Chiba, JP); Yuki Hirai (Chiba, JP); Masayuki Makita (Chiba, JP); Kensuke Yamanaka (Chiba, JP)
Assignee: RESONAC CORPORATION
G01N27/72G01N1/44
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Quick Facts
Patent No.
US 11,846,605
App. No.
17/804,659
Granted
Dec 19, 2023
Kind
B2
Abstract

A magnetic property measuring apparatus measures magnetic properties of a magnetic recording medium, and includes a rotating mechanism which rotates the magnetic recording medium, a heating or cooling mechanism which heats or cools the magnetic recording medium; a temperature measuring mechanism which measures a temperature of the magnetic recording medium, a laser heating mechanism, disposed opposite to a measurement site of the magnetic recording medium, which heats the measurement site without making contact with the measurement site, a magnetic write part, disposed opposite to the measurement site, which magnetizes the measurement site without making contact with the measurement site, and a magnetic read part, disposed opposite to the measurement site, which reads a magnetic flux leakage at the measurement site without making contact with the measurement site.

Claims (39)

1. A magnetic property measuring apparatus that measures magnetic properties of a magnetic recording medium, comprising:

a rotating mechanism configured to rotate the magnetic recording medium;

a heating or cooling mechanism configured to heat or cool the magnetic recording medium;

a temperature measuring mechanism configured to measure a temperature of the magnetic recording medium;

a laser heating mechanism, disposed at a position opposing a measurement site of the magnetic recording medium, and configured to heat the measurement site without making contact with the measurement site;

a magnetic write part, disposed at a position opposing the measurement site, and configured to magnetize the measurement site without making contact with the measurement site; and

a magnetic read part, disposed at a position opposing the measurement site, and configured to read a magnetic flux leakage at the measurement site without making contact with the measurement site.

2. The magnetic property measuring apparatus as claimed in claim 1 , wherein the temperature measuring mechanism is disposed at a position opposing the magnetic recording medium, and is configured to measure the temperature of the magnetic recording medium without making contact with the magnetic recording medium.

3. The magnetic property measuring apparatus as claimed in claim 1 , further comprising:

a suspension;

a magnetic head, including the magnetic write part and the magnetic read part, and attached to the suspension; and

a magnetic head drive mechanism configured to drive the magnetic head via the suspension,

wherein the laser heating mechanism is attached to the magnetic head.

4. A magnetic property measuring method that measures the magnetic properties of the magnetic recording medium using the magnetic property measuring apparatus according to claim 1 , comprising the steps of:

(A) rotating the magnetic recording medium by the rotating mechanism;

(B) causing the laser heating mechanism, the magnetic write part, and the magnetic read part to float above and scan a surface of the magnetic recording medium;

(C) maintaining the magnetic recording medium at a temperature X that is lower than a Curie temperature by the heating or cooling mechanism and the temperature measuring mechanism;

(D) magnetizing the measurement site of the magnetic recording medium to a saturation state by the laser heating mechanism and the magnetic write part;

(E) demagnetizing the measurement site magnetized to the saturation state in the step (D), by heating the measurement site by the laser heating mechanism to read a magnetic flux leakage at the demagnetized site by the magnetic read part;

(F) determining a relationship between a laser heating amount and the magnetic flux leakage in the step (E), by repeating the step (D) and the step (E);

(G) maintaining the magnetic recording medium at a temperature Y that is lower than the Curie temperature and different from the temperature X, by the heating or cooling mechanism and the temperature measuring mechanism;

(H) reading the magnetic flux leakage at the demagnetized site by the magnetic read part, by heating and demagnetizing the measurement site magnetized to the saturation state by the laser heating mechanism;

(I) reading the magnetic flux leakage at the demagnetized site by the magnetic read part, by heating and demagnetizing the measurement site, magnetized to the saturation state in the step (H), by the laser heating mechanism;

(J) determining the relationship between the laser heating amount and the magnetic flux leakage in the step (I), by repeating the step (H) and the step (I) while varying the laser heating amount in the step (I); and

(K) computing the magnetic properties of the magnetic recording medium from the relationship between the laser heating amount and the magnetic flux leakage determined in the step (F) and the step (J).

5. The magnetic property measuring method as claimed in claim 4 , wherein the magnetic properties include the Curie temperature of the magnetic recording medium and a variance of the Curie temperature.

6. A magnetic property measuring method that measures magnetic properties of a magnetic recording medium, comprising the steps of:

(A) rotating the magnetic recording medium by a rotating mechanism;

(B) causing a laser heating mechanism, a magnetic write part, and a magnetic read part to float above and scan a surface of the magnetic recording medium;

(C) maintaining the magnetic recording medium at a temperature X that is lower than a Curie temperature by a heating or cooling mechanism and a temperature measuring mechanism;

(D) magnetizing a measurement site of the magnetic recording medium to a saturation state by the laser heating mechanism and the magnetic write part;

(E) demagnetizing the measurement site magnetized to the saturation state in the step (D), by heating the measurement site by the laser heating mechanism to read a magnetic flux leakage at the demagnetized site by the magnetic read part;

(F) determining a relationship between a laser heating amount and the magnetic flux leakage in the step (E), by repeating the step (D) and the step (E);

(G) maintaining the magnetic recording medium at a temperature Y that is lower than the Curie temperature and different from the temperature X, by the heating or cooling mechanism and the temperature measuring mechanism;

(H) reading the magnetic flux leakage at the demagnetized site by the magnetic read part, by heating and demagnetizing the measurement site magnetized to the saturation state by the laser heating mechanism;

(I) reading the magnetic flux leakage at the demagnetized site by the magnetic read part, by heating and demagnetizing the measurement site, magnetized to the saturation state in the step (H), by the laser heating mechanism;

(J) determining the relationship between the laser heating amount and the magnetic flux leakage in the step (I), by repeating the step (H) and the step (I) while varying the laser heating amount in the step (I); and

(K) computing the magnetic properties of the magnetic recording medium from the relationship between the laser heating amount and the magnetic flux leakage determined in the step (F) and the step (J).

7. The magnetic property measuring method as claimed in claim 6 , wherein the magnetic properties include the Curie temperature of the magnetic recording medium and a variance of the Curie temperature.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2024
From: RESONAC CORPORATION
To: RESONAC HARD DISK CORPORATION
Reel/Frame 069167/0673 →
CHANGE OF ADDRESS Recorded Feb 14, 2024
From: RESONAC CORPORATION
To: RESONAC CORPORATION
Reel/Frame 066599/0037 →
DECLARATION OF SUCCESSION Recorded Mar 8, 2023
From: SHOWA DENKO K.K.
To: RESONAC CORPORATION
Reel/Frame 063011/0157 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2022
From: ZHANG, LEI; KUDO, FUMITO; HIRAI, YUKI; MAKITA, MASAYUKI; YAMANAKA, KENSUKE
To: SHOWA DENKO K.K.
Reel/Frame 060055/0884 →