IP Library › Granted Patent US 10,522,490
Granted Patent B2
US 10,522,490 · App. 16/036,664 · Granted Dec 31, 2019

Semiconductor package and method of forming the same

Inventors: Chi-Hsi Wu (Hsinchu, TW); Der-Chyang Yeh (Hsinchu, TW); Hsien-Wei Chen (Hsinchu, TW); Jie Chen (New Taipei, TW)
Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.
H01L24/08H01L21/486H01L21/4853H01L21/4857H01L21/565H01L23/481H01L23/49811H01L23/5383H01L23/5384H01L23/5386H01L23/5389H01L24/80H01L24/94H01L24/97H01L25/0652H01L25/50H01L21/561H01L23/3128H01L23/5329H01L23/53223H01L23/53238H01L23/53266H01L24/05H01L29/0657H01L2224/05571H01L2224/05647H01L2224/08147H01L2224/08265H01L2224/08267H01L2224/80895H01L2224/80896H01L2225/06548H01L2225/06558H01L2225/06582H01L2924/1205H01L2924/1206H01L2924/1207
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Quick Facts
Patent No.
US 10,522,490
App. No.
16/036,664
Granted
Dec 31, 2019
Kind
B2
Abstract

An embodiment is a method including forming a first passive device in a first wafer, forming a first dielectric layer over a first side of the first wafer, forming a first plurality of bond pads in the first dielectric layer, planarizing the first dielectric layer and the first plurality of bond pads to level top surfaces of the first dielectric layer and the first plurality of bond pads with each other, hybrid bonding a first device die to the first dielectric layer and at least some of the first plurality of bond pads, and encapsulating the first device die in a first encapsulant.

Claims (64)

1. A structure comprising:

a first substrate comprising a first passive device;

a first dielectric layer over a first side of the first substrate;

a first bond pad and a second bond pad in the first dielectric layer, a first surface of the first dielectric layer being level with first surfaces of the first and second bond pads;

a first die comprising an active side and a backside, the active side comprising:

a second dielectric layer, the second dielectric layer being bonded to the first dielectric layer through dielectric-to-dielectric bonds, wherein the first dielectric layer extends laterally beyond outermost lateral sidewalls of the second dielectric layer; and

a third bond pad in the second dielectric layer, a second surface of the second dielectric layer being level with the third bond pad, the third bond pad being bonded to the first bond pad through metal-to-metal bonds;

a first electrical connector on the second bond pad;

a first encapsulant over the first dielectric layer and on sidewalls of the first die and the first electrical connector, the first electrical connector extending through the first encapsulant.

2. The structure of claim 1 further comprising:

a first redistribution structure on the first side of the first substrate, the first redistribution structure comprising a plurality of metallization layers in a plurality of dielectric layers, the first dielectric layer being one of the plurality of dielectric layers, the first and second bond pads being in one of the plurality of metallization layers.

3. The structure of claim 2 further comprising:

a second redistribution structure over the first encapsulant, the first encapsulant being interposed between a backside of the first die and the second redistribution structure, the first electrical connector being electrically coupled to the second redistribution structure.

4. The structure of claim 3 further comprising:

a second die over the second redistribution structure;

a second electrical connector adjacent the second die, the second electrical connector being electrically coupled to the second redistribution structure;

a second encapsulant on the second redistribution structure, the second encapsulant encapsulating the second electrical connector and the second die; and

a third redistribution structure over the second encapsulant, the third redistribution structure being electrically coupled to the second electrical connector.

5. The structure of claim 4 , wherein an active side of the second die is distal the second redistribution structure and a backside of the second die is proximate the second redistribution structure.

6. The structure of claim 1 further comprising:

a package structure over and bonded to the first electrical connector with a first bonding joint, the package structure comprising a second die.

7. The structure of claim 1 , wherein the first passive device comprises a capacitor, a resistor, an inductor, or a combination thereof.

8. The structure of claim 1 , wherein the second dielectric layer and the third bond pad are parts of a first interconnect structure of the first die.

9. The structure of claim 1 , wherein the first dielectric layer is bonded to the second dielectric layer with respective bonds comprising O—H bonds.

10. The structure of claim 1 further comprising:

a first through via in the first substrate, the first through via being electrically coupled to the first bond pad or the second bond pad.

11. A package structure comprising:

a first substrate comprising a first passive device, the first substrate having a first surface and a second surface opposite the first surface;

a first through via extending from the first surface of the first substrate to the second surface of the first substrate;

a conductive connector disposed at the first surface of the first substrate, the conductive connector being electrically connected to the first through via;

a first redistribution structure over the second surface of the first substrate and the first passive device, the first redistribution structure comprising a first dielectric layer, a first metallization pattern, a first bond pad, and a second bond pad, the first and second bond pads being in the first dielectric layer, the first metallization pattern being electrically connected to the first through via and the first passive device;

a first die bonded to the first redistribution structure, the first die having an active side and a backside, the active side comprising a third bond pad and a second dielectric layer, the third bond pad being bonded to the first bond pad through metal-to-metal bonds, the second dielectric layer being bonded to the first dielectric layer through dielectric-to-dielectric bonds;

a first electrical connector adjacent the first die and electrically coupled to the second bond pad;

a first encapsulant on the first redistribution structure, the first encapsulant encapsulating the first electrical connector and the first die; and

a second redistribution structure over the first encapsulant, the second redistribution structure comprising a fourth bond pad, the fourth bond pad being electrically coupled to the first electrical connector.

12. The package structure of claim 11 further comprising:

a second die over the second redistribution structure;

a second electrical connector adjacent the second die, the second electrical connector being electrically coupled to the second redistribution structure;

a second encapsulant on the second redistribution structure, the second encapsulant encapsulating the second electrical connector and the second die; and

a third redistribution structure over the second encapsulant, the third redistribution structure being electrically coupled to the second electrical connector.

13. The package structure of claim 12 , wherein an active side of the second die is distal the second redistribution structure and a backside of the second die is proximate the second redistribution structure.

14. The package structure of claim 11 , wherein the first dielectric layer extends laterally beyond the outermost lateral sidewalls of the second dielectric layer.

15. A method comprising:

forming a first passive device in a first wafer;

forming a first redistribution structure over a first side of the first wafer, the first redistribution structure comprising a first plurality of bond pads in a first dielectric layer;

planarizing the first dielectric layer and the first plurality of bond pads to level top surfaces of the first dielectric layer and the first plurality of bond pads with each other;

hybrid bonding a first device die to the first dielectric layer and at least some of the first plurality of bond pads;

encapsulating the first device die in a first encapsulant;

laser drilling from a second side of the first wafer to form an opening through the first wafer, the opening through the first wafer exposing a conductive feature in the first redistribution structure;

forming a first electrical connector in the opening and along the second side of the first wafer, the first electrical connector being electrically coupled to the first redistribution structure;

forming a conductive connector on the first electrical connector; and

singulating the first encapsulant and the first wafer.

16. The method of claim 15 , wherein the laser drilling from the second side is performed after encapsulating the first device die.

17. The method of claim 15 further comprising:

forming a second electrical connector adjacent the first device die, the second electrical connector being electrically coupled to the first redistribution structure, the second electrical connector extending through the first encapsulant; and

bonding a package structure over the first device die and the second electrical connector, the package structure comprising a second device die.

18. The method of claim 15 further comprising:

before the encapsulating, plating a second electrical connector on the one of the first plurality of bond pads; and

planarizing a surface of the first encapsulant to expose a surface of the second electrical connector.

19. The method of claim 15 further comprising:

forming a second redistribution structure over the first device die and the first encapsulant;

adhering a second device die over the second redistribution structure; and

forming a third redistribution structure over the second device die, the third redistribution structure being electrically coupled to the second device die.

20. The method of claim 19 , wherein an active side of the second device die faces away from the active side of the first device die.

Continuity (3)
Continuation 15707700 · Sep 18, 2017
Continuation 15272491 · Sep 22, 2016
Related Publication 20180342474A1 · Nov 29, 2018