IP Library › Granted Patent US 10,937,755
Granted Patent B2
US 10,937,755 · App. 16/023,399 · Granted Mar 2, 2021

Bond pads for low temperature hybrid bonding

Inventors: Priyal Shah (San Jose, CA); Milind S. Bhagavat (Los Altos, CA)
Assignee: ADVANCED MICRO DEVICES, INC.
H01L24/80H01L24/03H01L24/05H01L24/06H01L24/08H01L2224/0384H01L2224/05082H01L2224/05118H01L2224/05124H01L2224/05166H01L2224/05184H01L2224/05186H01L2224/05557H01L2224/05647H01L2224/05655H01L2224/0603H01L2224/0614H01L2224/06515H01L2224/08146H01L2224/8034H01L2224/8089H01L2224/80801H01L2224/80906
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Quick Facts
Patent No.
US 10,937,755
App. No.
16/023,399
Filed
Jun 29, 2018
Granted
Mar 2, 2021
Kind
B2
Art Unit
2892
USPC
257/751
Abstract

Various chip stacks and methods and structures of interconnecting the same are disclosed. In one aspect, an apparatus is provided that includes a first semiconductor chip that has a first glass layer and plural first groups of plural conductor pads in the first glass layer. Each of the plural first groups of conductor pads is configured to bumplessly connect to a corresponding second group of plural conductor pads of a second semiconductor chip to make up a first interconnect of a plurality interconnects that connect the first semiconductor chip to the second semiconductor chip. The first glass layer is configured to bond to a second glass layer of the second semiconductor chip.

Claims (24)

1. An apparatus, comprising:

a first semiconductor chip having a first glass layer and plural first groups of plural conductor pads in the first glass layer, each of the plural first groups of conductor pads including a main conductor pad and one or more dummy pads adjacent the main conductor pad and being configured to bumplessly connect to a corresponding second group of plural conductor pads of a second semiconductor chip to make up a first interconnect of a plurality of interconnects that connect the first semiconductor chip to the second semiconductor chip, each of the main conductor pads including a bottommost base layer and a bonding layer, the bottommost base layer having a greater coefficient of thermal expansion than the bonding layer, the bonding layer being configured to plastically deform but not melt to bumplessly bond to one of the second group of plural conductor pads of the second semiconductor chip; and

the first glass layer being configured to bond to a second glass layer of the second semiconductor chip.

2. The apparatus of claim 1 , wherein each of the first groups comprises a main conductor pad and plural dummy pads circumferentially arranged around the main conductor pad.

3. The apparatus of claim 1 , comprising the second semiconductor chip mounted on the first semiconductor chip and electrically connected thereto by the plurality of interconnects.

4. An apparatus, comprising:

a first semiconductor chip having a first glass layer and plural first conductor pads in the first glass layer, each of the plural first conductor pads including a bottommost base layer and a bonding layer on the bottommost base layer, the bottommost base layer having a greater coefficient of thermal expansion than the bonding layer, the bonding layer being configured to plastically deform but not melt to bumplessly bond to a conductor pad of another semiconductor chip; and

the first glass layer being configured to bond to a second glass layer of the second semiconductor chip.

5. The apparatus of claim 4 , comprising a barrier layer between the bottommost base layer and the bonding layer.

6. The apparatus of claim 5 , wherein the bottommost base layer comprises aluminum and the bonding layer comprises copper or nickel.

7. The apparatus of claim 4 , comprising the second semiconductor chip mounted on the first semiconductor chip and electrically connected thereto by the plurality of conductor pads of the first semiconductor chip.

8. A method of manufacturing, comprising:

fabricating plural first groups of plural conductor pads in a first glass layer of a first semiconductor chip, each of the plural first groups of conductor pads including a main conductor pad and one or more dummy pads adjacent the main conductor pad and being configured to bumplessly connect to a corresponding second group of plural conductor pads of a second semiconductor chip to make up a first interconnect of a plurality of interconnects that connect the first semiconductor chip to the second semiconductor chip, each of the main conductor pads including a bottommost base layer and a bonding layer, the bottommost base layer having a greater coefficient of thermal expansion than the bonding layer, the bonding layer being configured to plastically deform but not melt to bumplessly bond to one of the second group of plural conductor pads of the second semiconductor chip; and

the first glass layer being configured to bond to a second glass layer of the second semiconductor chip.

9. The method of claim 8 , wherein each of the first groups comprises a main conductor pad and plural dummy pads circumferentially arranged around the main conductor pad.

10. The method of claim 8 , comprising mounting the second semiconductor chip on the first semiconductor chip and electrically connecting the first semiconductor chip to the second semiconductor chip with the plurality of interconnects.

11. The method of claim 10 , wherein the electrically connecting the first semiconductor chip to the second semiconductor chip with the plurality of interconnects comprises annealing to bond the first glass layer to the second glass layer and cause the plural first groups of conductor pads and the plural second groups of conductor pads to plastically deform and bond together.

12. A method of manufacturing, comprising:

fabricating plural first conductor pads in a first glass layer of a first semiconductor chip, each of the plural first conductor pads including a bottommost base layer and a bonding layer on the bottommost base layer, the bottommost base layer having a greater coefficient of thermal expansion than the bonding layer, the bonding layer being configured to plastically deform but not melt to bumplessly bond to a conductor pad of another semiconductor chip; and

the first glass layer being configured to bond to a second glass layer of the second semiconductor chip.

13. The method of claim 12 , comprising forming a barrier layer between the bottommost base layer and the bonding layer.

14. The method of claim 13 , wherein the bottommost base layer comprises aluminum and the bonding layer comprises copper or nickel.

15. The method of claim 12 , comprising mounting the second semiconductor chip on the first semiconductor chip and electrically connecting the first semiconductor chip to the second semiconductor chip with the plural first conductor pads of the first semiconductor chip and plural second conductor pads of the second semiconductor chip.

16. The method of claim 15 , wherein the electrically connecting the first semiconductor chip to the second semiconductor chip with the plural first conductor pads comprises annealing to bond the first glass layer to the second glass layer and cause the plural first conductor pads and the plural second conductor pads to plastically deform and bond together.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2018
From: SHAH, PRIYAL; BHAGAVAT, MILIND S.
To: ADVANCED MICRO DEVICES, INC.
Reel/Frame 046238/0790 →
Continuity (1)
Related Publication 20200006280A1 · Jan 2, 2020
Cited By (20)
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