IP Library › Granted Patent US 10,706,880
Granted Patent B1
US 10,706,880 · App. 16/372,898 · Granted Jul 7, 2020

Electrically conductive solder non-wettable bond pads in head gimbal assemblies

Inventors: Robbee Lee Grimm (Lakeville, MN); Greg Arthur Schmitz (Princeton, MN); Venkateswara Rao Inturi (Shakopee, MN); Aaron Michael Collins (Minneapolis, MN)
Assignee: Seagate Technology LLC
G11B5/4826G11B5/486G11B5/4846G11B5/4853
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Quick Facts
Patent No.
US 10,706,880
App. No.
16/372,898
Granted
Jul 7, 2020
Kind
B1
Abstract

A magnetic recording head is provided including a body with a trailing surface, a plurality of bond pads in a row, each of which is spaced by a gap from an adjacent bond pad along a width of the trailing surface. Each bond pad includes a base layer having a top surface, a coating layer covering at least a portion of the top surface of the base layer, two side edges spaced from each other across a width of the bond pad, wherein a width of the gap between adjacent bond pads is defined by one side edge of each of two adjacent bond pads, a top edge extending between the two side edges, and at least one solder dam comprising a nonwettable, electrically conductive material positioned adjacent to the top edge of at least one of the bond pads.

Claims (32)

1. A magnetic recording head comprising:

a body comprising a trailing surface;

a plurality of bond pads in a row, each of which is spaced by a gap from an adjacent bond pad along a width of the trailing surface, wherein each bond pad comprises:

a base layer comprising a top surface;

a top edge defining a width of the bond pad;

at least one solder dam comprising a coating layer covering at least a portion of the top surface of the base layer, wherein the at least one solder dam comprises a nonwettable, electrically conductive material positioned adjacent to the top edge of at least one of the bond pads; and

two side edges spaced from each other across the width of the bond pad, wherein a width of the gap between adjacent bond pads is defined by one side edge of each of two adjacent bond pads

wherein at least a portion of the coating layer comprises an alloy of Ruthenium (Ru) and Titanium (Ti).

2. The magnetic recording head of claim 1 , wherein at least a portion of the coating layer comprises a low sheet resistance that allows for a contact probe to have low surface resistance for electrical testing without modifying a top surface of the coating layer.

3. The magnetic recording head of claim 1 , wherein at least a portion of the coating layer comprises a material comprising an electrical conductivity the same as an electrical conductivity of gold.

4. The magnetic recording head of claim 1 , wherein the alloy of Ruthenium and Titanium comprises a range of 60 percent Ruthenium/40 percent Titanium to 70 percent Ruthenium/30 percent Titanium.

5. The magnetic recording head of claim 1 , wherein the percentage of a surface area of the top surface of the base layer that is covered with the coating layer is in a range of 10% to 90%, inclusive.

6. The magnetic recording head of claim 5 , wherein the percentage of the surface area of the top surface of the base layer that is covered with the coating layer is in a range of 20% to 60%, inclusive.

7. The magnetic recording head of claim 6 , wherein the percentage of the surface area of the top surface of the base layer that is covered with the coating layer is in a range of 30% to 40%, inclusive.

8. The magnetic recording head of claim 1 , wherein the at least one solder dam comprises a plurality of solder dams, and wherein one of the plurality of solder dams is positioned adjacent to the top edge of each of the plurality of bond pads.

9. A head gimbal assembly, comprising:

a suspension comprising multiple electrical pads; and

a magnetic recording head comprising:

a body comprising a trailing surface;

a plurality of bond pads in a row, each of which is spaced by a gap from an adjacent bond pad along a width of the trailing surface, wherein each bond pad comprises:

a base layer comprising a top surface;

a top edge defining a width of the bond pad;

at least one solder dam comprising a coating layer covering at least a portion of the top surface of the base layer, wherein the at least one solder dam comprises a nonwettable, electrically conductive material positioned adjacent to the top edge of at least one of the bond pads; and

two side edges spaced from each other across the width of the bond pad, wherein a width of the gap between adjacent bond pads is defined by one side edge of each of two adjacent bond pads; and

at least one solder joint having a top edge adjacent to the at least one solder dam, wherein each solder joint electrically connects one of the bond pads to one of the electrical pads of the suspension,

wherein at least a portion of the coating layer comprises an alloy of Ruthenium (Ru) and Titanium (Ti).

10. The head gimbal assembly of claim 9 , wherein at least a portion of the coating layer comprises a low sheet resistance that allows for a contact probe to have low surface resistance for electrical testing without modifying a top surface of the coating layer.

11. The head gimbal assembly of claim 9 , wherein at least a portion of the coating layer comprises a material comprising an electrical conductivity the same as an electrical conductivity of gold.

12. The head gimbal assembly of claim 9 , wherein the alloy of Ruthenium and Titanium comprises a range of 60 percent Ruthenium/40 percent Titanium to 70 percent Ruthenium/30 percent Titanium.

13. The head gimbal assembly of claim 9 , wherein the percentage of a surface area of the top surface of the base layer that is covered with the coating layer is in a range of 10% to 90%, inclusive.

14. The head gimbal assembly of claim 13 , wherein the percentage of the surface area of the top surface of the base layer that is covered with the coating layer is in a range of 20% to 60%, inclusive.

15. The head gimbal assembly of claim 14 , wherein the percentage of the surface area of the top surface of the base layer that is covered with the coating layer is in a range of 30% to 40%, inclusive.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2019
From: GRIMM, ROBBEE LEE; SCHMITZ, GREG ARTHUR; INTURI, VENKATESWARA RAO; COLLINS, AARON MICHAEL
To: SEAGATE TECHNOLOGY LLC
Reel/Frame 048768/0324 →
Cited By (1)
US 12,260,886