IP Library › Granted Patent US 11,605,615
Granted Patent B2
US 11,605,615 · App. 17/398,646 · Granted Mar 14, 2023

Semiconductor package and semiconductor module including the same

Inventors: Byung Jun Bang (Icheon-si, KR); Ju Il Eom (Icheon-si, KR)
Assignee: SK hynix Inc.
H01L25/0657H01L25/105H01L2225/0651H01L2225/06586
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Quick Facts
Patent No.
US 11,605,615
App. No.
17/398,646
Granted
Mar 14, 2023
Kind
B2
Abstract

A semiconductor package includes: a substrate including a first bonding pad and a first conductive pattern positioned at the same level and in contact with the first bonding pad; a lower semiconductor chip and an upper semiconductor chip stacked over the substrate, the lower and upper semiconductor chips respectively including a first lower chip pad and a first upper chip pad; a first lower bonding wire with first and second ends respectively connected to the first bonding pad and the first lower chip pad; and a first upper bonding wire with a first end connected to the first bonding pad and a second end connected to the first upper chip pad, the first end of the first upper bonding wire is located farther from the lower and upper semiconductor chips and closer to the first conductive pattern than the first end of the first lower bonding wire.

Claims (62)

1. A semiconductor package comprising:

a substrate including a first bonding pad and a first conductive pattern positioned at the same level in a vertical direction as the first bonding pad and in contact with the first bonding pad;

a lower semiconductor chip and an upper semiconductor chip that is stacked over the substrate, the lower semiconductor chip including a first lower chip pad and the upper semiconductor chip including a first upper chip pad, wherein the first conductive pattern is positioned farther from the lower semiconductor chip than the first bonding pad;

a first lower bonding wire with a first end that is connected to the first bonding pad and a second end that is connected to the first lower chip pad; and

a first upper bonding wire with a first end that is connected to the first bonding pad and a second end that is connected to the first upper chip pad,

wherein the first end of the first upper bonding wire is located farther from the lower and upper semiconductor chips and closer to the first conductive pattern than the first end of the first lower bonding wire.

2. The semiconductor package according to claim 1 , wherein a length of the first upper bonding wire is longer than a length of the first lower bonding wire.

3. The semiconductor package according to claim 2 , wherein a value that is obtained by subtracting the length of the first lower bonding wire from the length of the first upper bonding wire has a value that is greater than or equal to 0.9 times and less than or equal to 1.1 times a distance between the first end of the first upper bonding wire and the first end of the first lower bonding wire.

4. The semiconductor package according to claim 1 , wherein the substrate further includes a second bonding pad and a second conductive pattern that are positioned at the same level as the second bonding pad in the vertical direction, the second conductive pattern being in contact with the second bonding pad,

wherein the lower semiconductor chip further includes a second lower chip pad, and

wherein the upper semiconductor chip further includes a second upper chip pad,

the semiconductor package further comprising:

a second lower bonding wire with a first end that is connected to the second bonding pad and a second end that is connected to the second lower chip pad; and

a second upper bonding wire with a first end that is connected to the second bonding pad and a second end that is connected to the second upper chip pad,

wherein the first end of the second upper bonding wire is located farther from the lower and upper semiconductor chips and closer to the second conductive pattern than the first end of the second lower bonding wire.

5. The semiconductor package according to claim 4 , wherein a length of the second upper bonding wire is longer than a length of the second lower bonding wire.

6. The semiconductor package according to claim 5 , wherein a value obtained by subtracting the length of the second lower bonding wire from the length of the second upper bonding wire has a value that is greater than or equal to 0.9 times and less than or equal to 1.1 times a distance between the first end of the second upper bonding wire and the first end of the second lower bonding wire.

7. The semiconductor package according to claim 4 , wherein the first bonding pad is disposed on one side of the lower and upper semiconductor chips,

wherein the second bonding pad is disposed on an other side of the lower and upper semiconductor chips,

wherein the first conductive pattern is in contact with the first bonding pad at one side, and

wherein the second conductive pattern is in contact with the second bonding pad at on other side.

8. The semiconductor package according to claim 7 , wherein the first lower chip pad and the second lower chip pad are respectively disposed on one side edge and an other side edge of the lower semiconductor chip, and

wherein the first upper chip pad and the second upper chip pad are respectively disposed on one side edge and an other side edge of the upper semiconductor chip.

9. The semiconductor package according to claim 7 , wherein a direction of a signal that is received in the semiconductor package is different from a signal transmission direction in the first conductive pattern and is the same as a signal transmission direction in the second conductive pattern.

10. A semiconductor module comprising:

a module substrate; and

first and second semiconductor packages disposed over the module substrate to be spaced apart from each other and electrically connected to each other through the module substrate,

wherein the first semiconductor package comprises:

a substrate including a first bonding pad and a first conductive pattern positioned at the same level in a vertical direction as the first bonding pad and in contact with the first bonding pad;

a lower semiconductor chip and an upper semiconductor chip that is stacked over the substrate, the lower semiconductor chip including a first lower chip pad and the upper semiconductor chip including a first upper chip pad, wherein the first conductive pattern is positioned farther from the lower semiconductor chip than the first bonding pad;

a first lower bonding wire with a first end that is connected to the first bonding pad and a second end that is connected to the first lower chip pad; and

a first upper bonding wire with a first end that is connected to the first bonding pad and a second end that is connected to the first upper chip pad, and

wherein the first end of the first upper bonding wire is located farther from the lower and upper semiconductor chips and closer to the first conductive pattern than the first end of the first lower bonding wire.

11. The semiconductor module according to claim 10 , wherein a length of the first upper bonding wire is longer than a length of the first lower bonding wire.

12. The semiconductor module according to claim 11 , wherein a value obtained by subtracting the length of the first lower bonding wire from the length of the first upper bonding wire has a value that is greater than or equal to 0.9 times and less than or equal to 1.1 times a distance between the first end of the first upper bonding wire and the first end of the first lower bonding wire.

13. The semiconductor module according to claim 10 , wherein the substrate further includes a second bonding pad and a second conductive pattern positioned at the same level as the second bonding pad in the vertical direction, the second conductive pattern being in contact with the second bonding pad,

wherein the lower semiconductor chip further includes a second lower chip pad,

wherein the upper semiconductor chip further includes a second upper chip pad,

wherein the first semiconductor package further comprises:

a second lower bonding wire with a first end that is connected to the second bonding pad and a second end that is connected to the second lower chip pad; and

a second upper bonding wire with a first end that is connected to the second bonding pad and a second end that is connected to the second upper chip pad, and

wherein the first end of the second upper bonding wire is located farther from the lower and upper semiconductor chips and closer to the second conductive pattern than the first end of the second lower bonding wire.

14. The semiconductor module according to claim 13 , wherein a length of the second upper bonding wire is longer than a length of the second lower bonding wire.

15. The semiconductor module according to claim 14 , wherein a value obtained by subtracting the length of the second lower bonding wire from the length of the second upper bonding wire has a value that is greater than or equal to 0.9 times and less than or equal to 1.1 times a distance between the first end of the second upper bonding wire and the first end of the second lower bonding wire.

16. The semiconductor module according to claim 13 , wherein the first bonding pad is disposed on one side of the lower and upper semiconductor chips,

wherein the second bonding pad is disposed on an other side of the lower and upper semiconductor chips,

wherein the first conductive pattern is in contact with the first bonding pad at one side, and

wherein the second conductive pattern is in contact with the second bonding pad at an other side.

17. The semiconductor module according to claim 16 , wherein the first lower chip pad and the second lower chip pad are respectively disposed on one side edge and an other side edge of the lower semiconductor chip, and

wherein the first upper chip pad and the second upper chip pad are respectively disposed on one side edge and an other side edge of the upper semiconductor chip.

18. The semiconductor module according to claim 10 , wherein the first semiconductor package is disposed on one side of the second semiconductor package, and receives a signal from the second semiconductor package through the module substrate,

wherein the first bonding pad is disposed on one side of the lower and upper semiconductor chips,

wherein the first conductive pattern is in contact with the first bonding pad at one side, and

wherein a signal transmission direction in the module substrate is different from a signal transmission direction in the first conductive pattern.

19. The semiconductor module according to claim 13 , wherein the first semiconductor package is disposed on one side of the second semiconductor package, and receives a signal from the second semiconductor package through the module substrate,

wherein the first bonding pad is disposed on one side of the lower and upper semiconductor chips,

wherein the first conductive pattern is in contact with the first bonding pad at one side,

wherein the second bonding pad is disposed on an other side of the lower and upper semiconductor chips,

wherein the second conductive pattern is in contact with the second bonding pad at an other side, and

wherein a signal transmission direction in the module substrate is different from a signal transmission direction in the first conductive pattern, and is the same as a signal transmission direction in the second conductive pattern.

20. The semiconductor module according to claim 10 , wherein the lower and upper semiconductor chips include memory chips, and

wherein the second semiconductor package includes a logic chip for controlling the memory chips.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2021
From: BANG, BYUNG JUN; EOM, JU IL
To: SK HYNIX INC.
Reel/Frame 057137/0157 →
Priority Claims (1)
KR 10-2021-0050588 · Apr 19, 2021 · national
Continuity (1)
Related Publication 20220336420A1 · Oct 20, 2022
Cited By (1)
US 12,685,228