IP Library Patent Application 11476857
Patent Application
App. No. 11/476,857

DC demagnetization method and apparatus for magnetic recording medium and magnetic transfer method and apparatus

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Patent No.
US None
App. No.
11/476,857
Abstract

According to the present invention, since the applied magnetic field strength is controlled so as to fall between maximum magnetic field strength×0.7 and the maximum magnetic field strength over almost an entire surface of the magnetic recording medium, there is not much variation in the strength of the applied magnetic field relative to media coercivity during DC demagnetization, which makes it possible to obtain uniform magnetization over almost the entire surface.

Claims (115)

1 . A DC demagnetization method for a magnetic recording medium, comprising:

DC-magnetizing the magnetic recording medium circumferentially by applying a magnetic field circumferentially to the magnetic recording medium; and

controlling a strength of the magnetic field applied to various parts of the medium such that the strength will falls between maximum magnetic field strength×0.7 and the maximum magnetic field strength over almost an entire surface of the magnetic recording medium.

2 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

speed fluctuations of the relative movement are kept within ±15%.

3 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is approximately equal: in length to a radius of the magnetic recording medium and the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the magnetic recording medium.

4 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is shorter in length than a radius of the magnetic recording medium and the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the magnetic recording medium.

5 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is shorter in length than a radius of the magnetic recording medium and relative rotational speed of the magnetic field generating device in relation to the magnetic recording medium is decreased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the magnetic recording medium.

6 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein the magnetic field is applied circumferentially to the magnetic recording medium the same number of times in various parts on a surface of the magnetic recording medium.

7 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein the magnetic field is applied circumferentially to the magnetic recording medium once in each part on the surface of the magnetic recording medium.

8 . The DC demagnetization method for a magnetic recording medium according to claim 1 , wherein

on the surface of the magnetic recording medium, part in which the magnetic field is applied circumferentially to the magnetic recording medium a different number of times from the other parts on the surface of the magnetic recording medium does not exceed a circumferential angle of 1 degree.

9 . The DC demagnetization method for a magnetic recording medium according to claim 2 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

10 . The DC demagnetization method for a magnetic recording medium according to claim 3 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

11 . The DC demagnetization method for a magnetic recording medium according to claim 4 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

12 . The DC demagnetization method for a magnetic recording medium according to claim 5 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

13 . The DC demagnetization method for a magnetic recording medium according to claim 6 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

14 . The DC demagnetization method for a magnetic recording medium according to claim 7 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

15 . The DC demagnetization method for a magnetic recording medium according to claim 8 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

16 . A DC demagnetization method for a magnetic recording medium, comprising:

circumferentially DC-magnetizing the magnetic recording medium whose coercivity depends on application duration of an applied magnetic field, by applying a magnetic field circumferentially to the magnetic recording medium; and

applying the magnetic field such that the coercivity will fall between maximum coercivity×0.7 and the maximum coercivity over almost an entire surface of the magnetic recording medium.

17 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

speed fluctuations of the relative movement are kept within ±15%.

18 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is approximately equal in length to a radius of the magnetic recording medium and the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the magnetic recording medium.

19 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is shorter in length than a radius of the magnetic recording medium and the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the magnetic recording medium.

20 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein:

the application of the magnetic field is performed using a magnetic field generating device while moving the magnetic recording medium relative to the magnetic field generating device, and

the magnetic field generating device is shorter in length than a radius of the magnetic recording medium and relative rotational speed of the magnetic field generating device in relation to the magnetic recording medium is decreased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the magnetic recording medium.

21 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein the magnetic field is applied circumferentially to the magnetic recording medium the same number of times in various parts on a surface of the magnetic recording medium.

22 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein the magnetic field is applied circumferentially to the magnetic recording medium once in each part on the surface of the magnetic recording medium.

23 . The DC demagnetization method for a magnetic recording medium according to claim 16 , wherein

on the surface of the magnetic recording medium, part in which the magnetic field is applied circumferentially to the magnetic recording medium a different number of times from the other parts on the surface of the magnetic recording medium does not exceed a circumferential angle of 1 degree.

24 . The DC demagnetization method for a magnetic recording medium according to claim 17 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

25 . The DC demagnetization method for a magnetic recording medium according to claim 18 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

26 . The DC demagnetization method for a magnetic recording medium according to claim 19 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

27 . The DC demagnetization method for a magnetic recording medium according to claim 20 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

28 . The DC demagnetization method for a magnetic recording medium according to claim 21 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or: in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

29 . The DC demagnetization method for a magnetic recording medium according to claim 22 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

30 . The DC demagnetization method for a magnetic recording medium according to claim 23 , wherein

in a preparatory stage of DC demagnetization at which the magnetic field strength is raised to a level needed for the DC demagnetization or in a termination stage of the DC demagnetization at which the magnetic field strength is lowered from the level needed for the DC demagnetization, the relative moving speed between the magnetic field generating device and the magnetic recording medium is larger than the relative moving speed between the magnetic field generating device and the magnetic recording medium during the DC demagnetization.

31 . A DC demagnetization apparatus for a magnetic recording medium which DC-magnetizes the magnetic recording medium circumferentially by applying a magnetic field circumferentially to the magnetic recording medium, wherein

strength of the magnetic field applied to various parts of the medium is controlled so as to fall between maximum magnetic field strength×0.7 and the maximum magnetic field strength over almost an entire surface of the magnetic recording medium.

32 . A magnetic transfer method, comprising:

an initialization step of initially DC-magnetizing a target magnetic recording medium using the DC demagnetization method for a magnetic recording medium according to claim 1;

a joining step of bringing the initially DC-magnetized target magnetic recording medium into close contact with a master medium having a magnetic pattern; and

a magnetic transfer step of using a magnetic field generating device, applying a magnetic field circumferentially to the target magnetic recording medium and the master medium while the target magnetic recording medium and the master medium placed in close contact with each other are moved relative to the magnetic field generating device, and thereby transferring the magnetic pattern from the master medium to the target magnetic recording medium.

33 . A magnetic transfer method, comprising:

an initialization step of initially DC-magnetizing a target magnetic recording medium using the DC demagnetization method for a magnetic recording medium according to claim 16;

a joining step of bringing the initially DC-magnetized target magnetic recording medium into close contact with a master medium having a magnetic pattern; and

a magnetic transfer step of using a magnetic field generating device, applying a magnetic field circumferentially to the target magnetic recording medium and the master medium while the target magnetic recording medium and the master medium placed in close contact with each other are moved relative to the magnetic field generating device, and thereby transferring the magnetic pattern from the master medium to the target magnetic recording medium.

34 . A magnetic transfer method, comprising:

a joining step of bringing an initially DC-magnetized target magnetic recording medium into close contact with a master medium having a magnetic pattern; and

a magnetic transfer step of using a magnetic field generating device, applying a magnetic field circumferentially to the target magnetic recording medium and the master medium while the target magnetic recording medium and the master medium placed in close contact with each other are moved relative to the magnetic field generating device, and thereby transferring the magnetic pattern from the master medium to the target magnetic recording medium in such a way that strength of the magnetic field applied to various parts of the medium will fall between maximum magnetic field strength×0.7 and the maximum magnetic field strength over almost an entire surface of the magnetic recording medium.

35 . The magnetic transfer method according to claim 34 , wherein speed fluctuations of the relative movement between the magnetic field generating device and the target magnetic recording medium placed in close contact with the master medium are kept within ±15%.

36 . The magnetic transfer method according to claim 34 , wherein

the magnetic field generating device is approximately equal in length to a radius of the target magnetic recording medium, and

the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the target magnetic recording medium.

37 . The magnetic transfer method according to claim 34 , wherein

the magnetic field generating device is shorter in length than a radius of the target magnetic recording medium, and

the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the target magnetic recording medium as the magnetic field generating device moves in a radial direction of the target magnetic recording medium.

38 . The magnetic transfer method according to claim 34 , wherein

the magnetic field generating device is shorter in length than a radius of the target magnetic recording medium, and

relative rotational speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium is decreased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the target magnetic recording medium.

39 . The magnetic transfer method according to claim 34 , wherein the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium the same number of times in various parts on a surface of the target magnetic recording medium.

40 . The magnetic transfer method according to claim 34 , wherein the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium once in each part on the surface of the target magnetic recording medium.

41 . The magnetic transfer method according to claim 34 , wherein on the surface of the magnetic recording medium, part in which the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium a different number of times from the other parts on the surface of the target magnetic recording medium does not exceed a circumferential angle of 1 degree.

42 . The magnetic transfer method according to claim 34 , wherein

in a preparatory stage of DC magnetic transfer at which the magnetic field strength is raised to a level needed for the DC magnetic transfer or in a termination stage of the DC magnetic transfer at which the magnetic field strength is lowered from the level needed for the DC magnetic transfer, the relative moving speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium placed in close contact with each other is larger than the relative moving speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium placed in close contact with each other during the DC magnetic transfer.

43 . A magnetic transfer method, comprising:

a joining step of bringing an initially DC-magnetized target magnetic recording medium whose coercivity depends on application duration of an applied magnetic field into close contact with a master medium having a magnetic pattern; and

a magnetic transfer step of using a magnetic field generating device, applying a magnetic field circumferentially to the target magnetic recording medium and the master medium while the target magnetic recording medium and the master medium placed in close contact with each other are moved relative to the magnetic field generating device, and thereby transferring the magnetic pattern from the master medium to the target magnetic recording medium in such a way that the coercivity will fall between maximum coercivity×0.7 and the maximum, coercivity over almost an entire surface of the magnetic recording medium.

44 . The magnetic transfer method according to claim 43 , wherein speed fluctuations of the relative movement between the magnetic field generating device and the target magnetic recording medium placed in close contact with the master medium are kept within ±15%.

45 . The magnetic transfer method according to claim 43 , wherein

the magnetic field generating device is approximately equal in length to a radius of the target magnetic recording medium, and

the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the target magnetic recording medium.

46 . The magnetic transfer method according to claim 43 , wherein

the magnetic field generating device is shorter in length than a radius of the target magnetic recording medium, and

the strength of the magnetic field applied by the magnetic field generating device is increased from inner tracks to outer tracks of the target magnetic recording medium as the magnetic field generating device moves in a radial direction of the target magnetic recording medium.

47 . The magnetic transfer method according to claim 43 , wherein

the magnetic field generating device is shorter in length than a radius of the target magnetic recording medium, and

relative rotational speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium is decreased from inner tracks to outer tracks of the magnetic recording medium as the magnetic field generating device moves in a radial direction of the target magnetic recording medium.

48 . The magnetic transfer method according to claim 43 , wherein the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium the same number of times in various parts on a surface of the target magnetic recording medium.

49 . The magnetic transfer method according to claim 43 , wherein the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium once in each part on the surface of the target magnetic recording medium.

50 . The magnetic transfer method according to claim 43 , wherein on the surface of the magnetic recording medium, part in which the magnetic field is applied circumferentially to the target magnetic recording medium and the master medium a different number of times from the other parts on the surface of the target magnetic recording medium does not exceed a circumferential angle of 1 degree.

51 . The magnetic transfer method according to claim 43 , wherein

in a preparatory stage of DC magnetic transfer at which the magnetic field strength is raised to a level needed for the DC magnetic transfer or in a termination stage of the DC magnetic transfer at which the magnetic field strength is lowered from the level needed for the DC magnetic transfer, the relative moving speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium placed in close contact with each other: is larger than the relative moving speed of the magnetic field generating device in relation to the target magnetic recording medium and the master medium placed in close contact with each other during the DC magnetic transfer.

52 . A magnetic transfer apparatus, comprising:

a joining device which brings an initially DC-magnetized target magnetic recording medium into close contact with a master medium having a magnetic pattern; and

a magnetic transfer device which, using a magnetic field generating device, applies a magnetic field circumferentially to the target magnetic recording medium and the master medium while the target magnetic recording medium and the master medium placed in close contact with each other are moved relative to a magnetic field generating device, and thereby transfers the magnetic pattern from the master medium to the target magnetic recording medium in such a way that strength of the magnetic field applied to various parts of the medium will fall between maximum magnetic field strength×0.7 and the maximum magnetic field strength over almost an entire surface of the magnetic recording medium.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: FUJIFILM HOLDINGS CORPORATION (FORMERLY FUJI PHOTO FILM CO., LTD.)
To: FUJIFILM CORPORATION
Reel/Frame 018904/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2006
From: FUJINAMI, TATSUYA; NAGAO, MAKOTO; KOMATSU, KAZUNORI
To: FUJI PHOTO FILM CO., LTD.
Reel/Frame 018063/0345 →