A slider including a recording and reproducing separation type magnetic head includes that a proximal end of a first lead-out conductor is connected to a proximal end of a central winding portion of a coil sued for record, a distal end of the first lead-out conductor is connected to one terminal used for the record; a proximal end of second lead-out conductor is connected to a proximal end of the winding coil, and extended to an opposite direction against the first lead-out conductor along the upper surface of the slider, a distal end of the second lead-out conductor is connected to another terminal used for the recording device; a proximal end of a third lead-out conductor is connected to a reproducing device; a proximal end of a fourth lead-out conductor is connected to the reproducing device; the third lead-out conductor is extended along an air bearing surface of the slider in a lateral direction; the fourth lead-out conductor is extended along the air bearing surface of the slider in a direction opposite to the lateral direction; and the respective distal ends of the third and fourth lead-out conductors are connected to one and another terminals for the reproduction, making such an integrated circuit and the like connected to the terminals to be readily standardized and racking an electrode for a reproducing device short.
|
0. 7. A recording and reproducing magnetic head formed on a trailing surface of a slider having a magnetic induction type device and a magneto-resistance effect type device for recording and reproducing information to and from a recording medium, connected through lead-out conductors to terminals, comprising:
a first lead-out conductor connected to a central end of a coil wound in a whirling-like manner and used for recording, a first conductor portion of said first lead-out conductor extending from the central end of said coil in a direction substantially perpendicular to a medium opposing surface and extending toward an upper surface side which opposes a medium opposing surface of said slider, and a second conductor portion of said first lead-out conductor extending from said first conductor portion and substantially parallel to the upper surface side and is connected to a first recording device terminal provided at a lateral side of said slider; a second lead-out conductor connected to another end of said coil located at an outer portion of said coil, and extending substantially parallel to the upper surface side of said slider, and is connected to a second recording device terminal provided at a lateral side of said slider; a third lead-out conductor connected to one end of a magneto-resistance effect type device located with respect to said trailing surface of said slider, and having a first conductor portion extending toward the upper surface side in a direction substantially perpendicular to said medium opposing surface which opposes said medium opposing surface of said slider, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a third reproducing device terminal which is closer to said magneto-resistance effect type device than either of said first and second recording device terminals; and a fourth lead-out conductor connected to the other end of said magneto-resistance affect type device, and having a first conductor portion extending toward the upper surface side in a direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side. In a lateral direction but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a fourth reproducing device terminal which is closer to said magneto-resistance effect type device than either of said first and second recording device terminals.
1. A slider including a recording and reproducing magnetic head formed on a trailing surface of said a slider and connected to having a magnetic induction type device and a mnagneto- magneto-resistance effect type device for recording and reproducing information to and from a recording medium, connected through lead-out conductors to terminals, comprising:
a first lead-out conductor connected to a central end of a coil wound in a whirling-like manner as a recording device , a first conductor portion of said first lead-out conductor extending from the central end of said coil in a direction substantially perpendicular to a medium-opposing surface and extending toward an upper surface side of said slider which opposes said medium-opposing surface of said slider, and a second conductor portion of said first lead-out conductor extending from said first conductor portion and substantially parallel to the upper surface side in one lateral direction and is connected to a first recording device terminal provided at a first lateral side of said slider; a second lead-out conductor connected to another end of said coil located at an outer portion of said coil, and extending substantially parallel to the upper surface side of said slider in the other lateral direction and is connected to a second recording device terminal provided at a second lateral side of said slider; a third lead-out conductor connected to one end of a reproducing said magneto-resistance effect type device located with respect to said medium opposing trailing surface of said slider, and having a first conductor portion extending toward the upper surface side of said slider in a direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side in the one lateral direction but closer to said medium opposing surface than eider either of said first and second lead-out conductors, and is connected to a third reproducing device terminal which is closer to a center of said slider than either of said first and second recording device terminals; and a fourth lead-out conductor connected to the other end of said reproducing magneto-resistance effect type device, and having a first conductor portion extending toward the upper surface side of said slider in the a direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side in the other lateral direction but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a fourth reproducing device terminal which is closer to the center of said slider than either of said first and second recording device terminals.
0. 8. A recording and reproducing magnetic head formed on a trailing surface of a slider having a magnetic induction type device and a magneto-resistance effect type device for recording and reproducing information to and from a recording medium, connected through lead-out conductors to terminals, comprising:
a first lead-out conductor connected to an end of a two-layered coil that has a first-layered coil connected to a second-layered coil at the central ends of both said first- and second-layered coils which are wound in a whirling-like manner and used for recording, a first conductor portion of said first lead-out conductor extending from said end of said coil in a direction substantially perpendicular to a medium opposing surface and extending toward an upper surface side which opposes medium opposing surface of said slider, and a second conductor portion of said first lead-out conductor extending from said first conductor portion and substantially parallel to said upper surface side of said slider, and is connected to a first recording device terminal provided at a lateral side of said slider; a second lead-out conductor connected to another end of said two-layered coil than said first layered coil connected to said second-layered coil at central ends of both said first- and second-layered coils, and extending substantially parallel to said upper surface side of said slider, and is connected to a second recording device terminal provided at a lateral side of said slider; a third lead-out conductor connected to one end of said magneto-resistance effect type device located with respect to said trailing surface of said slider, and having a first conductor portion extending toward the upper surface side in a direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a third reproducing device terminal which is closer to said magneto-resistance effect type device than either of said first and second recording device terminals; and a fourth lead-out conductor connected to other end of said magneto-resistance effect type device, and having a first conductor portion extending toward the upper surface side in the direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion in a lateral direction but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a fourth reproducing device, terminal which is closer to said magneto-resistance effect type device than either of said first and second recording terminals.
5. A slider including a recording and reproducing magnetic head formed on a trailing surface of said a slider and connected to having a magnetic induction type device and a magnetoresistance magneto-resistance effect type device for recording and reproducing information to and from a recording medium connected through lead-out conductors to terminals, comprising:
a first lead-out conductor connected to an end of a two-layered coil that has a first-layered coil connected to a second-layered coil at central ends of both a said first-layered coil and a second-layered coil coils which are wound in a whirling-like manner as a and used for recording device, ; a first conductor portion of said first lead-out conductor extending from said central ends of said coils end of said coil in a direction substantially perpendicular to a medium-opposing surface and extending toward an upper surface side which opposes a medium opposing surface of said slider, and a second conductor portion of said first lead-out conductor extending from said first conductor portion and substantially parallel to said upper surface side of said slider in one lateral direction and is connected to a first recording device terminal provided at a first lateral side of said slider; a second lead-out conductor connected to outer peripheral another end of said two-layered coil than said first-layered coil connected to said second-layered coil at central ends of both said first-layered coil and said second-layered coil coils, and extending substantially parallel to said upper surface side of said slider in the other lateral direction, and is connected to a second recording device terminal provided at a second lateral side of said slider; a third lead-out conductor connected to one of a reproducing said magneto-resistance effect type device located with respect to said medium opposing trailing surface of said slider, and having a first conductor portion extending toward the upper surface side of said slider in a direction substantially perpendicular to said medium opposing surface, and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side in the one lateral direction but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a third reproducing device terminal which is closer to a center of said slider than either of said first and second recording device terminals; and a fourth lead-out conductor connected to the other end of said reproducing magneto-resistance effect type device, and having a first conductor portion extending toward the upper surface side of said slider in a direction substantially perpendicular to said medium opposing surface and a second conductor portion extending from said first conductor portion substantially parallel to the upper surface side in the other lateral direction but closer to said medium opposing surface than either of said first and second lead-out conductors, and is connected to a fourth reproducing device terminal which is closer to a center of said slider than either of said first and second recording device terminals.
2. A slider recording and reproducing magnetic head according to
3. A slider recording and reproducing magnetic head according to
4. A slider recording and reproducing magnetic head according to claim 1 5, wherein said coils and said first and second lead-out conductors are constructed such that: said first and second lead-out conductors are formed substantially in parallel; a substantially middle portion of said first lead-out conductor is connected with a proximal end of a central winding portion of said coils an end of said two-layered coil; a substantially middle portion of said second lead-out conductor is connected with a distal end of said coils another end of said two-layered coil; respective both distal ends of said first and second lead-out conductors are connected to said first recording device terminal and said second recording device terminal used for said recording head; a portion of said first lead-out conductor extended to said other lateral direction said second recording device terminal from a connected portion where said first lead-out conductor and said proximal end of said coils end of said two-layered coil are connected is cut apart; and a portion of said second lead-out conductor extended to said lateral direction opposite to said other lateral direction said first recording device terminal from a connected portion where said second lead-out conductor and said distal end of said coils another end of said two-layered coil are connected is cut apart.
6. A slider recording and reproducing magnetic head according to
|
The present invention relates to the positions of terminals of a recording/reproducing separation type magnetic head which copes with a high recording density, and the shape and structure of its lead-out conductors.
In connection with the pads of a magnetic head, there has been JP-A-6-103530 disclosing a layout method of bonding pads capable of freely setting lead-out directions of wires. This method contemplates to accomplish a smaller thickness and a smaller size by obliquely disposing the bonding pads to an air bearing surface.
It is an object of the present invention to provide a recording and reproducing separation type magnetic head capable of reducing an electrode resistance to be connected to a reproducing device and selecting a winding direction of a recording coil irrelevantly to a direction of a current flowing through terminals for a recording device.
The first aspect of an embodiment of the present invention for accomplishing the object described above is that a slider including a recording and reproducing separation type magnetic head having a magnetic induction type device for record and a magnetoresistance effect type device for reproduction connected through lead-out conductors to terminals includes that a proximal end of a first lead-out conductor is connected to a proximal end of a central winding portion of a coil used for record, extended to an upper surface opposite to an air bearing surface of the slider from the central winding portion, and extended to a lateral direction along the upper surface of the slider, a distal end of the first lead-out conductor is connected to one terminal used for the record; and a proximal end of a second lead-out conductor is connected to a distal end of the winding coil, and extended to an opposite direction against the first lead-out conductor along the upper surface of the slider, a distal end of the second lead-out conductor is connected to another terminal used for the record.
A position of the distal end of the first lead-out conductor connected to the distal end of the coil used for the recording device may be located on a position where a length of the coil is the same length in winding both clockwise and counter-clockwise from the distal end to the proximal end of the central winding portion of the coil.
The coil used for the recording device and the first and second lead-out conductors may be constructed that the coil is wound in one direction; the first and second lead-out conductors are formed substantially in parallel; a substantially middle portion of the first lead-out conductor is connected with the proximal end of the central winding portion of the coil; a substantially middle portion of the second lead-out conductor is connected with the distal end of the coil; respective both distal ends of the first and second lead-out conductors are connected to one and another terminals used for the record; a portion at the first lead-out conductor extended to one direction from a connected portion where the first lead-out conductor and the proximal end of the coil are connected is cut apart; and a portion at the second lead-out conductor extended to another direction opposite to the one direction from a connected portion where the second lead-out conductor and the distal end of the coil are connected is cut apart.
The second aspect of an embodiment of the present invention is that a slider including a recording and reproducing separation type magnetic head having a magnetic induction type device for record and a magneto-resistance effect type device for reproduction connected through lead-out conductors to terminals includes that a proximal end of a first lead-out conductor is connected to a proximal end of a central winding portion of a coil used for record, extended to an upper surface opposite to an air nearing surface of the slider from the central winding portion, and extended to a lateral direction along the upper surface of the slider, a distal end of the first lead-out conductor is connected to one terminal used for the record; a proximal end of a second lead-out conductor is connected to a distal end of the winding coil, and extended to an opposite direction against the first lead-out conductor along the upper surface of the slider, a distal end of the second lead-out conductor is connected to another terminal used for the recording device; a proximal end of a third lead-out conductor is connected to a reproducing device; a proximal end of a fourth lead-out conductor is connected to the reproducing device; the third lead-out conductor is extended along an air bearing surface of the slider in a lateral direction; the fourth lead-out conductor is extended along the air bearing surface of the slider in a direction opposite to the lateral direction; and the respective distal ends of the third and fourth lead-out conductors are connected to one and another terminals for the reproduction.
The respective proximal ends of the third and fourth lead-out conductors may be connected to the reproducing device and extended along close to an air bearing surface of the slider in a laterally opposite direction each other, the respective distal ends of the third and fourth lead-out conductors are connected to one and another terminals for the reproduction present within the terminals for the record close to the coil.
The construction of the present invention described above can reduce the length of the lead-out conductors to be connected to the reproducing device, and can therefore reduce the electric resistance. The length of the coil is the same whether the winding direction of the coil may be clockwise or counter-clockwise. Therefore, even when the coil is wound either clockwise or counter-clockwise, the number of photomasks used for the production process of the terminals and the lead-out conductors can be reduced minimum and standardization of integrated circuits connected to the terminals becomes easier. Furthermore, the arrangement of such circuits can be made uniform. Even when the winding direction of the coil is unidirectional, the air bearing direction of the current flowing through the coil can be set either clockwise or counter-clockwise.
Hereinafter, preferred embodiments of the present invention will be described.
In the slider 1 shown in
The construction shown in
As shown in
As described above, even when the coil 7 is wound either clockwise or counter-clockwise, the coil 7 has the same length. Therefore, no difference occurs in the electrical characteristics of the slider 1, and the lead-out conductors 6 for connecting the magnetic transducer 3 to the terminal 4b can be used in common. In consequence, the number of photomasks used in the production process may be only one with the exception of the cases where the coil 7 is wound clockwise and counter-clockwise.
In
The coil 7 of the magnetic transducer shown in the drawings is composed of single layer, but it can be composed naturally of two layers.
FIG, 6 is a perspective view of the embodiment wherein the recording/reproducing separation type magnetic head. that is, the slider 1, is mounted on a medium. According to this construction, the head having excellent electrical characteristics can be packaged and a high reliability apparatus can be obtained economically.
Incidentally, the lead-out conductors 5 connected to the terminals 4a and 4a for the MR transducer 10 in
Koyanagi, Hiroaki, Imanaka, Tadashi, Ueda, Fumiomi, Sasada, Yukio
Patent | Priority | Assignee | Title |
7782568, | Feb 14 2005 | Western Digital Technologies, INC | Compact thin-film magnetic head and magnetic disk drive using the same |
Patent | Priority | Assignee | Title |
4504880, | Aug 09 1982 | INTERNATIONAL BUSINESS MACHINES CORPORATION, A CORP OF NY | Integrated magnetic recording head assembly including an inductive write subassembly and a magnetoresistive read subassembly |
4555740, | Apr 04 1983 | Hewlett-Packard Company | Thin film transducer head for inductive recording and magnetoresistive reading |
5001591, | Jun 03 1988 | TDK Corporation | Thin film magnetic head |
JP6103530, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Jun 20 2000 | Hitachi, Ltd. | (assignment on the face of the patent) | / | |||
Nov 20 2003 | Hitachi, LTD | Hitachi Global Storage Technologies Japan, Ltd | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 014788 | /0751 |
Date | Maintenance Fee Events |
Oct 12 2002 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Sep 27 2006 | M1552: Payment of Maintenance Fee, 8th Year, Large Entity. |
Sep 29 2006 | ASPN: Payor Number Assigned. |
Nov 15 2010 | REM: Maintenance Fee Reminder Mailed. |
Apr 13 2011 | EXP: Patent Expired for Failure to Pay Maintenance Fees. |
Date | Maintenance Schedule |
Jul 09 2005 | 4 years fee payment window open |
Jan 09 2006 | 6 months grace period start (w surcharge) |
Jul 09 2006 | patent expiry (for year 4) |
Jul 09 2008 | 2 years to revive unintentionally abandoned end. (for year 4) |
Jul 09 2009 | 8 years fee payment window open |
Jan 09 2010 | 6 months grace period start (w surcharge) |
Jul 09 2010 | patent expiry (for year 8) |
Jul 09 2012 | 2 years to revive unintentionally abandoned end. (for year 8) |
Jul 09 2013 | 12 years fee payment window open |
Jan 09 2014 | 6 months grace period start (w surcharge) |
Jul 09 2014 | patent expiry (for year 12) |
Jul 09 2016 | 2 years to revive unintentionally abandoned end. (for year 12) |