IP Library › Granted Patent US 11,574,891
Granted Patent B2
US 11,574,891 · App. 17/158,337 · Granted Feb 7, 2023

Semiconductor device with heat dissipation unit and method for fabricating the same

Inventor: Shing-Yih Shih (New Taipei, TW)
Assignee: NANYA TECHNOLOGY CORPORATION
H01L25/0657H01L21/486H01L23/49827H01L25/18H01L25/50H01L2225/06524H01L2225/06541H01L2225/06589
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Quick Facts
Patent No.
US 11,574,891
App. No.
17/158,337
Granted
Feb 7, 2023
Kind
B2
Abstract

The present application discloses a semiconductor device with a heat dissipation unit and a method for fabricating the semiconductor device. The semiconductor device includes a die stack, an intervening bonding layer positioned on the die stack, and a carrier structure including a carrier substrate positioned on the intervening bonding layer, and through semiconductor vias positioned in the carrier substrate and on the intervening bonding layer for thermally conducting heat.

Claims (48)

1. A semiconductor device, comprising:

a die stack;

an intervening bonding layer positioned on the die stack; and

a carrier structure comprising:

a carrier substrate positioned on the intervening bonding layer, and

through semiconductor vias positioned in the carrier substrate and on the intervening bonding layer for thermally conducting heat;

wherein the carrier structure comprises:

a bonding layer positioned between the carrier substrate and the intervening bonding layer; and

a conductive plate positioned in the bonding layer of the carrier structure and contacting the through semiconductor vias of the carrier structure;

wherein the die stack comprises:

a first die structure positioned below the intervening bonding layer; and

a second die structure positioned below the first die structure;

wherein the first die structure comprises:

a first substrate positioned opposite to the intervening bonding layer;

a first dielectric layer positioned between the first substrate and the intervening bonding layer;

a first bonding layer positioned between the first substrate and the second die structure;

first interconnection layers positioned in the first dielectric layer;

through semiconductor vias of the first die structure positioned along the first substrate and the first bonding layer of the first die structure and electrically connecting the first interconnection layers and the second die structure;

wherein the second die structure comprises:

a second substrate positioned opposite to the first bonding layer of the first die structure;

a second dielectric layer positioned between the second substrate and the first bonding layer of the first die structure;

a first bonding layer of the second die structure positioned below the second substrate;

second interconnection layers positioned in the second dielectric layer and electrically connecting to the through semiconductor vias of the first die structure; and

through semiconductor vias of the second die structure positioned along the second substrate and the first bonding layer of the second die structure and electrically connecting to the second interconnection layers.

2. The semiconductor device of claim 1 , wherein the first die structure and the second die structure are memory dies.

3. The semiconductor device of claim 1 , wherein the first die structure is a memory die and the second die structure is a logic die.

4. The semiconductor device of claim 1 , wherein top surfaces of the through semiconductor vias of the carrier structure and a top surface of the carrier substrate are substantially coplanar.

5. The semiconductor device of claim 1 , wherein top surfaces of the through substrate vias of the carrier structure are covered by the carrier substrate.

6. The semiconductor device of claim 1 , further comprising solder joints electrically connecting to the through semiconductor vias of the second die structure.

7. The semiconductor device of claim 1 , wherein the first die structure comprises:

a second bonding layer positioned between the first bonding layer of the first die structure and the second dielectric layer; and

pad layers positioned in the second bonding layer and electrically connecting the second interconnection layers and the through semiconductor vias of the first die structure.

8. The semiconductor device of claim 7 , wherein widths of the pad layers are greater than widths of the through semiconductor vias of the first die structure.

9. The semiconductor device of claim 1 , further comprising first dummy through semiconductor vias positioned along the first die structure, the second die structure, and the intervening bonding layer.

10. The semiconductor device of claim 1 , further comprising first dummy through semiconductor vias positioned along the first die structure, the second die structure, and the intervening bonding layer, extending to the bonding layer of the carrier structure, and thermally contacting with the conductive plate.

11. The semiconductor device of claim 9 , further comprising second dummy through semiconductor vias positioned along the intervening bonding layer and the first dielectric layer and extending to the first substrate.

12. The semiconductor device of claim 11 , wherein widths of the first dummy through semiconductor vias are greater than widths of the second dummy through semiconductor vias.

13. The semiconductor device of claim 11 , further comprising third dummy through semiconductor vias positioned along the first die structure and extending to the second die structure.

14. The semiconductor device of claim 11 , wherein the second dummy through semiconductor vias are substantially uniformly distributed in the first die structure.

15. The semiconductor device of claim 1 , further comprising a thermal interface layer positioned between the intervening bonding layer and the bonding layer of the carrier substructure, wherein the thermal interface layer is formed of a carbon material imbued with a flexible material.

16. A semiconductor device, comprising:

a die stack;

an intervening bonding layer positioned on the die stack; and

a carrier structure comprising:

a carrier substrate positioned on the intervening bonding layer;

through semiconductor vias positioned in the carrier substrate and on the intervening bonding layer for thermally conducting heat;

a bonding layer positioned between the carrier substrate and the intervening bonding layer; and

conductive fins positioned in the bonding layer of the carrier structure and contacting with the through semiconductor vias of the carrier structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2021
From: SHIH, SHING-YIH
To: NANYA TECHNOLOGY CORPORATION
Reel/Frame 055109/0060 →
Continuity (1)
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