IP Library › Granted Patent US 8,467,140
Granted Patent B2
US 8,467,140 · App. 12/802,622 · Granted Jun 18, 2013

Magnetic recording apparatus and magnetic recording evaluating apparatus

Inventors: Toshihiko Sakai (Osaka, JP); Masaki Yamamoto (Osaka, JP); Yasuhiro Harada (Osaka, JP); Go Mori (Osaka, JP); Hideharu Tajima (Osaka, JP); Yoshiteru Murakami (Osaka, JP)
Assignee: Sharp Kabushiki Kaisha
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Quick Facts
Patent No.
US 8,467,140
App. No.
12/802,622
Granted
Jun 18, 2013
Kind
B2
Abstract

A magnetic recording apparatus includes: a magnetic recording medium having a recording surface on which a plurality of magnetic recording cells magnetically isolated from each other are arranged; a magnetic writing element recording information to the magnetic recording cells under a condition in accordance with setting information; a magnetic reading element reproducing information recorded in the magnetic recording cells; a memory storing the setting information for writing; and a processor for executing a program code. The program code includes a test module, responsive to a test write start signal, for repeating writing and reading test information by the magnetic writing and reading elements and calculating a quality index value representing quality of writing of the reproduced test information with the setting information changed, and a write module for selecting setting information with which the quality index value satisfies a predetermined condition, and writing the selected information in the memory.

Claims (84)

1. A magnetic recording apparatus, comprising:

a magnetic recording medium having a recording surface on which a plurality of magnetic recording cells magnetically isolated from each other are arranged;

a magnetic writing element generating magnetic field in accordance with write information under a condition in accordance with prescribed setting information while moving relative to said recording surface, thereby to record information in said magnetic recording cells of said magnetic recording medium;

a magnetic reading element reproducing information recorded in said magnetic recording cells of said magnetic recording medium while moving with said magnetic writing element relative to said recording surface;

a first memory storing said prescribed setting information for writing of information by said magnetic writing element; and

a processor connected to said first memory, said magnetic writing element, and said magnetic reading element, for executing a program code; wherein

said program code includes

a test module, responsive to a test write start signal, for repeating writing and reproduction of test information by said magnetic writing element and said magnetic reading element and calculating a prescribed quality index value representing quality of writing of reproduced said test information with said prescribed setting information changed,

a first write module for selecting setting information with which said prescribed quality index value satisfies a predetermined condition based on said prescribed quality index value calculated by said test module, and writing the selected information in said first memory, and

a determining module for determining whether or not an output signal of said magnetic reading element matches a prescribed signal serving as a trigger of writing by said magnetic element;

said prescribed setting information includes a standby time period from determination by said determining module that said output signal matches said prescribed signal until generation of magnetic field by said magnetic writing element; and

said test module includes

a standby time period changing module, responsive to said test write start signal for changing stepwise said standby time period for a predetermined prescribed range of change having upper and lower limits,

a second write module causing said magnetic writing element to star generation of magnetism in accordance with said test information and thereby to write the test information in said magnetic recording medium, for each standby time period changed by said standby time period changing module, using as a reference time point when the standby time period has passed from when said prescribed signal is output from said magnetic reading element,

a read module causing said magnetic reading element to reproduce the test information written by said second write module to said magnetic recording medium, for each standby time period changed by said standby time period changing module,

an index value calculating module for calculating a quality index value by comparing the test information written by said second write module and the test information reproduced by said magnetic reading element, for each standby time period changed by said standby time period changing module,

a quality information memory storing said quality index value calculated by said index value calculating module and corresponding standby time period, and

a writing device for storing, in said first memory, the standby time period stored in said quality information memory in association with that one of said quality index values stored in the quality information memory which satisfies said predetermined condition.

2. The magnetic recording apparatus according to claim 1 , wherein

said predetermined condition is that said quality value index value is the best.

3. The magnetic recording apparatus according to claim 2 , wherein

said magnetic recording medium has a disk-shape;

said magnetic recording cells are arranged on said recording surface, with a pitch d in circumferential direction of said disk shape; and

with design velocity of relative movement of said recording surface to said magnetic writing element and said magnetic reading element being liner velocity v,

width of said prescribed range of change is selected to be larger than d/v.

4. The magnetic recording apparatus according to claim 1 , wherein said index value calculating module includes an error rate calculating module for calculating error rate of the read test information to said written test information, by comparing the test information written by said second write module and the test information read by said read module, for each standby time period changed by said standby time period changing module.

5. The magnetic recording apparatus according to claim 1 , wherein said index value calculating module includes a jitter calculating module for calculating jitter of a read signal, by comparing a signal waveform reproduced and output by said read module with a prescribed reference signal, for each standby time period changed by said standby time period changing module.

6. The magnetic recording apparatus according to claim 5 ,

wherein said predetermined condition is that said quality index value is not higher than a predetermined defined value.

7. The magnetic recording apparatus according to claim 5 ,

wherein

said predetermined condition is that

said quality index value is a value corresponding to said standby period of (t b +t a )/2, where

t a represents said delay time when said quality index value, calculated corresponding to changed said standby time period, first assumes a value not larger than a predetermined defined value, from a value larger than said defined value, while said standby time period changing module changes stepwise said delay time from said lower limit to said upper limit of said prescribed range of change, and

t b represents said delay time, larger than t a , when said quality index value first assumes a value not smaller than said defined value, from a value smaller than said defined value.

8. The magnetic recording apparatus according to claim 7 ,

wherein

said magnetic recording medium has a disk-shape;

said magnetic recording cells are arranged on said recording surface, with a pitch d in circumferential direction of said disk shape; and

with design velocity of relative movement of said recording surface to said magnetic writing element and said magnetic reading element being liner velocity v,

width of said prescribed range of change is selected to be larger than 2 d/v.

9. The magnetic recording apparatus according to claim 1 , wherein said magnetic recording medium includes a servo pattern area having a prescribed servo pattern written in advance, and a user data area allowing data writing by said magnetic writing element.

10. The magnetic recording apparatus according to claim 9 ,

wherein

said magnetic recording medium has a disk-shape;

said magnetic writing element and said magnetic reading element are arranged spaced by a distance L in the circumferential direction of said disk shape; and

with design velocity of relative movement of said recording surface to said magnetic writing element and said magnetic reading element being liner velocity v,

said lower limit value is selected to be larger than L/v.

11. The magnetic recording apparatus according to claim 1 , wherein said magnetic recording medium includes a user data area allowing data writing by said magnetic writing element, and said user data area stores information for said magnetic reading element to output said prescribed signal serving as a trigger for writing by said magnetic writing element.

12. The magnetic recording apparatus according to claim 1 , further comprising a timer for measuring elapse time from when said standby time period selected by said first write module is stored in said first memory and, when a prescribed set time is reached, generating and applying to said processor said test write start signal.

13. The magnetic recording apparatus according to claim 1 , further comprising

a recording state value calculating module for calculating a recording state value indicating quality of information writing by said magnetic writing element in a normal operation other than when said processor is operating; wherein

said processor is activated in responses to said recording state value calculated by said recording state value calculating module attaining to a prescribed reference value or lower.

14. The magnetic recording apparatus according to claim 1 , wherein said magnetic recording medium includes a test write area ensured in advance as an area to be used when said processor operates, and an area allowing writing of information by said magnetic writing element other than when said processor is operating.

15. A magnetic recording apparatus, comprising:

a magnetic recording medium having a recording surface on which a plurality of magnetic recording cells magnetically isolated from each other are arranged;

a magnetic writing element generating magnetic field in accordance with write information under a condition in accordance with prescribed setting information while moving relative to said recording surface, thereby to record information in said magnetic recording cells of said magnetic recording medium;

a magnetic reading element reproducing information recorded in said magnetic recording cells of said magnetic recording medium while moving with said magnetic writing element relative to said recording surface;

a first memory storing said prescribed setting information for writing of information by said magnetic writing element; and

a processor connected to said first memory, said magnetic writing element, and said magnetic reading element, for executing a program code; wherein

said program code includes

a test module, responsive to a test write start signal, for repeating writing and reproduction of test information by said magnetic writing element and said magnetic reading element and calculating a prescribed quality index value representing quality of writing of reproduced said test information with said prescribed setting information changed, and

a first write module for selecting setting information with which said prescribed quality index value satisfies a predetermined condition based on said prescribed quality index value calculated by said test module, and writing the selected information in said first memory, and

said prescribed setting information includes one of or both of pulse width of generated magnetic field and maximum value of generated magnetic field.

16. The magnetic recording apparatus according to claim 15 , further comprising:

a recording state value calculating module for calculating a recording state value indicating quality of information writing by said magnetic writing element in a normal operation other than when said processor is operating; wherein

said processor is activated in response to said recording state value calculated by said recording state value calculating module attaining to a prescribed reference value or lower.

17. The magnetic recording apparatus according to claim 15 , wherein said magnetic recording medium includes a test write area ensured in advance as an area to be used when said processor operates, and an area allowing writing of information by said magnetic writing element other than when said processor is operating.

18. A magnetic recording apparatus, comprising:

a magnetic recording medium having a recording surface on which a plurality of magnetic recording cells magnetically isolated from each other are arranged;

a magnetic writing element generating magnetic field in accordance with write information under a condition in accordance with prescribed setting information while moving relative to said recording surface, thereby to record information in said magnetic recording cells of said magnetic recording medium;

a magnetic reading element reproducing information recorded in said magnetic recording cells of said magnetic recording medium while moving with said magnetic writing element relative to said recording surface;

a first memory storing said prescribed setting information for writing of information by said magnetic writing element; and

a processor connected to said first memory, said magnetic writing element, and said magnetic reading element, for executing a pro ram code; wherein

said program code includes

a test module, responsive to a test write start signal, for repeating writing and reproduction of test information by said magnetic writing element and said magnetic reading element and calculating a prescribed quality index value representing quality of writing of reproduced said test information with said prescribed setting information changed, and

a first write module for selecting setting information with which said prescribed quality index value satisfies a predetermined condition based on said prescribed quality index value calculated by said test module, and writing the selected information in said first memory, and

said magnetic recording cells are arranged on said recording surface, with a pitch d in circumferential direction of said disk shape;

said magnetic writing element and said magnetic reading element are arranged spaced by a distance L in the circumferential direction of said disk shape; and

with a maximum value of skew angle of said magnetic recording head to said medium when said magnetic recording head moved in the radial direction being Θ, L(1−cos Θ)>d/10.

19. The magnetic recording apparatus according to claim 18 , further comprising:

a recording state value calculating module for calculating a recording state value indicating quality of information writing by said magnetic writing element in a normal operation other than when said processor is operating; wherein

said processor is activated in response to said recording state value calculated by said recording state value calculating module attaining to a prescribed reference value or lower.

20. The magnetic recording apparatus according to claim 18 , wherein said magnetic recording medium includes a test write area ensured in advance as an area to be used when said processor operates, and an area allowing writing of information by said magnetic writing element other than when said processor is operating.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2010
From: SAKAI, TOSHIHIKO; YAMAMOTO, MASAKI; HARADA, YASUHIRO; MORI, GO; TAJIMA, HIDEHARU; MURAKAMI, YOSHITERU
To: SHARP KABUSHIKI KAISHA
Reel/Frame 024558/0444 →
Priority Claims (2)
JP 2009-150426 · Jun 25, 2009 · national
JP 2009-230684 · Oct 2, 2009 · national
Continuity (1)
Related Publication 20100328800A1 · Dec 30, 2010