Perpendicular magnetic recording (PMR) write head with improved shapes of side shield and main pole
US-9406317-B1 · Aug 2, 2016 · US
US9502053B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9502053-B1 |
| Application number | US-201514981213-A |
| Country | US |
| Kind code | B1 |
| Filing date | Dec 28, 2015 |
| Priority date | Dec 28, 2015 |
| Publication date | Nov 22, 2016 |
| Grant date | Nov 22, 2016 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A magnetic head includes a main pole, a write shield, and a gap section. The write shield includes a trailing shield. The trailing shield includes a first portion, a second portion, a third portion and a fourth portion. The second portion and the third portion are located on opposite sides of the first portion in the track width direction. Top surfaces of the first to third portions are coplanar with each other. The fourth portion lies on the top surfaces of the first to third portions. The first portion is higher in saturation flux density than the second to fourth portions.
Opening claim text (preview).
What is claimed is: 1. A magnetic head for perpendicular magnetic recording, comprising: a medium facing surface configured to face a recording medium; a coil for producing a magnetic field corresponding to data to be written on the recording medium; a main pole having an end face located in the medium facing surface, the main pole being configured to pass a magnetic flux corresponding to the magnetic field produced by the coil, and to produce a write magnetic field for use to write the data on the recording medium by means of a perpendicular magnetic recording system; a write shield; and a gap section formed of a nonmagnetic material and located between the main pole and the write shield, wherein the write shield includes a trailing shield located on a front side in a direction of travel of the recording medium relative to the main pole, the trailing shield includes a first portion, a second portion, a third portion and a fourth portion each of which is formed of a magnetic material, the first portion has a first end face located in the medium facing surface, and a first top surface located at a front-side end of the first portion in the direction of travel of the recording medium, the first end face being on the front side in the direction of travel of the recording medium relative to the end face of the main pole, the second portion has a second end face located in the medium facing surface, and a second top surface located at a front-side end of the second portion in the direction of travel of the recording medium, the third portion has a third end face located in the medium facing surface, and a third top surface located at a front-side end of the third portion in the direction of travel of the recording medium, the second end face and the third end face are located on opposite sides of the first end face in a track width direction, the first to third top surfaces are coplanar with each other, the fourth portion lies on the first to third top surfaces and has a fourth end face located in the medium facing surface, and the first portion is higher in saturation flux density than the second to fourth portions. 2. The magnetic head for perpendicular magnetic recording according to claim 1 , wherein the fourth portion includes a seed layer lying on the first to third top surfaces, and a magnetic layer lying on the seed layer. 3. The magnetic head for perpendicular magnetic recording according to claim 2 , wherein the trailing shield further includes a fifth portion formed of a magnetic material, and an intermediate film interposed between the magnetic layer and the fifth portion, the fifth portion is located farther from the medium facing surface than is the magnetic layer, and a thickness of the intermediate film in a direction perpendicular to the medium facing surface is smaller than a maximum thickness of the magnetic layer in the direction perpendicular to the medium facing surface. 4. The magnetic head for perpendicular magnetic recording according to claim 1 , wherein the write shield further includes a first side shield and a second side shield located on opposite sides of the main pole in the track width direction, the gap section includes a side gap section for separating the first and second side shields from the main pole, and a trailing gap section for separating the trailing shield from the main pole, the first side shield has a top surface located at a front-side end of the first side shield in the direction of travel of the recording medium, the second side shield has a top surface located at a front-side end of the second side shield in the direction of travel of the recording medium, the top surface of the first side shield and the top surface of the second side shield are coplanar with each other, the first portion of the trailing shield is located on the trailing gap section, the second portion of the trailing shield is located on the top surface of the first side shield, and the third portion of the trailing shield is located on the top surface of the second side shield. 5. The magnetic head for perpendicular magnetic recording according to claim 4 , wherein the write shield further includes a leading shield located on a rear side in the direction of travel of the recording medium relative to the main pole. 6. The magnetic head for perpendicular magnetic recording according to claim 1 , wherein the gap section includes a trailing gap section for separating the trailing shield from the main pole, the trailing gap section has an end face located in the medium facing surface, the medium facing surface includes a boundary between the end face of the trailing gap section and the first end face, and at the boundary, locations of opposite ends of the first end face in the track width direction coincide with locations of opposite ends of the end face of the trailing gap section in the track width direction. 7. The magnetic head for perpendicular magnetic recording according to claim 1 , further comprising a first nonmagnetic layer formed of a nonmagnetic material and located on the front side in the direction of travel of the recording medium relative to the main pole, the first nonmagnetic layer being at a greater distance from the medium facing surface than is the first portion, wherein the first nonmagnetic layer has a top surface located at a front-side end of the first nonmagnetic layer in the direction of travel of the recording medium, and the top surface of the first nonmagnetic layer is coplanar with the first to third top surfaces. 8. The magnetic head for perpendicular magnetic recording according to claim 7 , further comprising a second nonmagnetic layer formed of a nonmagnetic material and located on the front side in the direction of travel of the recording medium relative to the main pole, the second nonmagnetic layer being at a greater distance from the medium facing surface than is the first portion, wherein at least part of the second nonmagnetic layer is located between the first portion and the first nonmagnetic layer, the second nonmagnetic layer has a top surface located at a front-side end of the second nonmagnetic layer in the direction of travel of the recording medium, and the top surface of the second nonmagnetic layer is coplanar with the first to third top surfaces and the top surface of the first nonmagnetic layer. 9. A manufacturing method for the magnetic head for perpendicular magnetic recording of claim 1 , comprising the steps of: forming the coil; forming the main pole; forming the write shield; and forming the gap section, wherein the step of forming the write shield includes the step of forming the trailing shield, and the step of forming the trailing shield includes the steps of: forming a first magnetic film and a second magnetic film, the first magnetic film including the second portion and the third portion, the second magnetic film including the first portion; polishing the first and second magnetic films so that the first to third top surfaces are formed; and forming a third magnetic film on the first and second magnetic films polished, the third magnetic film including the fourth portion. 10. The manufacturing method for the magnetic head for perpendicular magnetic recording according to claim 9 , wherein the step of forming the first magnetic film and the second magnetic film forms the second magnetic film after forming the first magnetic film. 11. The manufacturing method for the magnetic head for perpendicular magnetic recording according to claim 9 , wherein the step of forming the third magnetic film includes the steps of: forming a seed layer on the first and second magneti
magnetic layers · CPC title
Manufacture of shielding device · CPC title
Composite structural arrangements of transducers, e.g. inductive write and magnetoresistive read (G11B5/3906 takes precedence) · CPC title
Shield layers on both sides of the main pole, e.g. in perpendicular magnetic heads · CPC title
with etching or machining of magnetic material · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.