Heat-assisted magnetic recording head configured to conduct heat away from slider components to a substrate
US-10147446-B1 · Dec 4, 2018 · US
US2019259413A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019259413-A1 |
| Application number | US-201916276508-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 14, 2019 |
| Priority date | Dec 19, 2017 |
| Publication date | Aug 22, 2019 |
| Grant date | — |
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The present disclosure generally relates to data storage devices, and more specifically, to a magnetic media drive employing a magnetic recording head. The head includes a trailing shield, a main pole, a MAMR stack disposed between the trailing shield and the main pole, side shields surrounding at least a portion of the main pole, and a structure disposed between the side shields and the main pole at a media facing surface (WS). The structure is fabricated from a material that is thermally conductive and electrically insulating/dissipative. The material has a thermal conductivity of at least 50 W/(m*K) and an electrical resistivity of at least 105 Ω*m. The structure helps dissipate joule heating generated from either the main pole or the MAMR stack into surrounding area without electrical shunting, leading to reduced heating or break-down induced failures.
Opening claim text (preview).
1 . A magnetic recording head, comprising: a trailing shield; a main pole; a stack disposed between the main pole and the trailing shield; and a first structure surrounding at least a portion of the main pole at a media facing surface, wherein the first structure is fabricated from a material having a thermal conductivity of at least 50 W/(m*K) and an electrical resistivity of at least 10 5 Ω*m. 2 . The magnetic recording head of claim 1 , wherein the main pole has a first surface at the media facing surface, a second surface adjacent to the first surface, a third surface opposite the second surface, a fourth surface connected to the second surface, and a fifth surface opposite the fourth surface. 3 . The magnetic recording head of claim 2 , wherein the first structure surrounds the third surface, the fourth surface, and the fifth surface of the main pole. 4 . The magnetic recording head of claim 1 , further comprising a non-magnetic electrically conductive structure disposed between the main pole and the first structure. 5 . The magnetic recording head of claim 4 , wherein the non-magnetic electrically conductive structure comprises NiTa, Cr, Cu, Rh, or combination thereof. 6 . The magnetic recording head of claim 4 , further comprising side shields surrounding at least a portion of the main pole. 7 . The magnetic recording head of claim 6 , wherein the first structure is disposed between the side shields and the non-magnetic electrically conductive structure. 8 . The magnetic recording head of claim 6 , further comprising a second structure having first portions and a second portion, wherein the first portions of the second structure are disposed between the trailing shield and the side shields, and the second portion of the second structure is disposed between the trailing shield and the main pole at a location recessed from the media facing surface. 9 . The magnetic recording head of claim 8 , wherein the second structure is fabricated from a material having a thermal conductivity of at least 50 W/(m*K) and an electrical resistivity of at least 10 5 Ω*m. 10 . A data storage device comprising the magnetic recording head of claim 1 . 11 . A magnetic recording head, comprising: a trailing shield; a main pole; a stack disposed between the main pole and the trailing shield; and a first structure surrounding at least a portion of the main pole at a media facing surface, wherein the first structure is fabricated from a material selected from the group consisting of: aluminum nitride, silicon carbide, beryllium oxide, gallium nitride, gallium phosphide, hexagonal boron nitride, cubic boron nitride, boron arsenide, gamma magnesium aluminate, zinc oxide, silicon, carbon, beryllium, tungsten, iridium, rhodium, molybdenum, diamond like carbon, and combination thereof. 12 . The magnetic recording head of claim 11 , further comprising side shields surrounding at least a portion of the main pole, wherein the first structure is disposed between the side shields and the main pole. 13 . The magnetic recording head of claim 12 , further comprising a non-magnetic electrically conductive structure disposed between the main pole and the first structure, wherein the non-magnetic electrically conductive structure is in contact with the main pole and the first structure, and wherein the first structure is in contact with the side shields. 14 . The magnetic recording head of claim 13 , further comprising a second structure having first portions and a second portion, wherein the first portions of the second structure are disposed between the trailing shield and the side shields, and the second portion of the second structure is disposed between the trailing shield and the main pole at a location recessed from the media facing surface. 15 . The magnetic recording head of claim 14 , wherein each of the first portions of the second structure has a non-uniform thickness, and the second portion of the second structure has a non-uniform thickness. 16 . The magnetic recording head of claim 14 , wherein each of the first portions of the second structure has a uniform thickness, and the second portion of the second structure has a uniform thickness. 17 . The magnetic recording head of claim 14 , wherein the second structure is fabricated from a same material as the first structure. 18 . A data storage device comprising the magnetic recording head of claim 11 . 19 . A magnetic recording head, comprising: a trailing shield; a main pole; side shields surrounding at least a portion of the main pole; a stack disposed between the main pole and the trailing shield; and a first structure disposed between the trailing shield and the side shields, wherein the first structure comprises: at least one layer of gallium nitride, gallium phosphide, hexagonal boron nitride, cubic boron nitride, boron arsenide, gamma magnesium aluminate, silicon, carbon, beryllium, tungsten, iridium, rhodium, molybdenum, diamond like carbon, or zinc oxide; and at least one layer of aluminum oxide, aluminum nitride, or silicon carbide. 20 . The magnetic recording head of claim 19 , wherein the first structure comprises: a layer of gallium nitride, gallium phosphide, hexagonal boron nitride, cubic boron nitride, boron arsenide, gamma magnesium aluminate, silicon, carbon, beryllium, tungsten, iridium, molybdenum, diamond like carbon, or zinc oxide; and a layer of aluminum oxide, aluminum nitride, or silicon carbide. 21 . The magnetic recording head of claim 19 , wherein the first structure comprises a silicon layer and an aluminum oxide layer. 22 . The magnetic recording head of claim 19 , further comprising side shields surrounding at least a portion of the main pole, wherein the first structure is disposed between the side shields and the main pole. 23 . The magnetic recording head of claim 22 , further comprising a second structure having first portions and a second portion, wherein the first portions of the second structure are disposed between the trailing shield and the side shields, and the second portion of the second structure is disposed between the trailing shield and the main pole at a location recessed from the media facing surface. 24 . The magnetic recording head of claim 23 , wherein each of the first portions has a portion disposed on a taper of a corresponding side shield of the side shields, and the second portion has a portion disposed on a trailing taper of the main pole. 25 . The magnetic recording head of claim 23 , wherein the second structure is fabricated from a same material as the first structure. 26 . A data storage device comprising the magnetic recording head of claim 19 . 27 . A magnetic recording head, comprising: a trailing shield; a main pole; a stack disposed between the main pole and the trailing shield; and means for dissipate heat generated from the main pole or the stack without electrical shunting, wherein the means for dissipate heat surrounds at least a portion of the main pole at a media facing surface. 28 . The magnetic recording head of claim 27 , wherein the stack comprises a seed layer, a spacer layer disposed on the seed layer, and a magnetic layer disposed on the spacer layer. 29 . The magnetic recording head of claim 27 , wherein the stack comprises a seed layer, a first magnetic layer
Microwave assisted recording · CPC title
where the layers are extra layers normally not provided in the transducing structure, e.g. optical layers (G11B5/3196 takes precedence) · CPC title
magnetic layers · CPC title
including layers not usually being a part of the electromagnetic transducer structure and providing additional features, e.g. for improving heat radiation, reduction of power dissipation, adaptations for measurement or indication of gap depth or other properties of the structure (G11B5/3106 takes precedence) · CPC title
Non-polymeric layer under the lowermost magnetic recording layer (base layers having a non-magnetic layer under a soft magnetic layer G11B5/736; magnetic recording media substrates G11B5/739) · CPC title
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