IP Library › Granted Patent US 12,733,520
Granted Patent B2
US 12,733,520 · App. 18/145,949 · Granted Sep 8, 2026

Circuit module having reinforcing bonding materials, and a method of manufacturing the same

Inventors: Yoshitaka Kato (Nisshin, JP); Takeshi Endo (Nisshin, JP); Kazuhiro Tsuruta (Nisshin, JP)
Assignees: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA; MIRISE Technologies Corporation
H10W70/65H05K1/111H10W20/44H10W74/012H10W74/15H10W74/40
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Quick Facts
Patent No.
US 12,733,520
App. No.
18/145,949
Granted
Sep 8, 2026
Kind
B2
Abstract

A circuit module includes: a first circuit component having electrode pads on a first surface; and a second circuit component having electrode pads on a second surface. A conductive bonding material joins the electrode pads of the first circuit component to the electrode pads of the second circuit component respectively. A first reinforcing bonding material is not in contact with the conductive bonding material and joins the first surface of the first circuit component to the second surface of the second circuit component. A second reinforcing bonding material is located in contact with the first reinforcing bonding material, and joins the first surface of the first circuit component to the second surface of the second circuit component.

Claims (65)

1 . A circuit module comprising:

a first circuit component having a first surface on which a plurality of electrode pads is arranged;

a second circuit component having a second surface on which a plurality of electrode pads is arranged;

a conductive bonding material made of a mixture of conductive material and resin;

a first reinforcing bonding material; and

a second reinforcing bonding material made of a material different from the conductive bonding material and different from the first reinforcing bonding material, wherein

the first circuit component and the second circuit component are arranged such that the plurality of electrode pads of the first circuit component respectively face the plurality of electrode pads of the second circuit component,

the conductive bonding material joins the plurality of electrode pads of the first circuit component to the plurality of electrode pads of the second circuit component respectively,

the first reinforcing bonding material is not in contact with the conductive bonding material and joins the first surface of the first circuit component to the second surface of the second circuit component,

the second reinforcing bonding material covers a periphery of the conductive bonding material and is located in a range in contact with the first reinforcing bonding material, and

the second reinforcing bonding material joins the first surface of the first circuit component to the second surface of the second circuit component,

the plurality of electrode pads of the first circuit component are arranged to form a row linearly arranged along a longitudinal direction of the first reinforcing bonding material,

an end of the first reinforcing bonding material in the longitudinal direction is located adjacent to an end of the row in the longitudinal direction of the first reinforcing bonding material,

the plurality of electrode pads arranged to form the row include a first electrode pad at the end of the row and a second electrode pad which is closest to the first electrode pad, and

adjacent is defined as the first electrode pad is closer to a closest part of the end in the longitudinal direction of the first reinforcing bonding material than the first electrode pad is to the second electrode pad.

2 . The circuit module according to claim 1 , wherein

the plurality of electrode pads of the first circuit component are arranged to form a row linearly arranged along a first direction on the first surface of the first circuit component,

the plurality of electrode pads of the second circuit component are linearly arranged along the first direction at a position facing the row,

the first reinforcing bonding material is located at a position offset from the row in a second direction that intersects the first direction, and

the first reinforcing bonding material is continuously distributed in the first direction from a position of one end of the row to a position of the other end of the row.

3 . The circuit module according to claim 1 , wherein

the plurality of electrode pads of the first circuit component are arranged to form a first row linearly arranged along a first direction and a second row linearly arranged along the first direction at a position offset in a second direction intersecting the first direction, on the first surface of the first circuit component,

the plurality of electrode pads of the second circuit component are arranged to form a third row linearly arranged along the first direction at a position facing the first row and a fourth row linearly arranged along the first direction at a position facing the second row, and

the first reinforcing bonding material is arranged between the first row and the second row in the second direction.

4 . The circuit module according to claim 1 , wherein

one of the first circuit component and the second circuit component has a gate switching element, and

the other of the first circuit component and the second circuit component has a gate control circuit that controls a gate voltage of the gate switching element.

5 . The circuit module according to claim 1 , wherein a coefficient of linear expansion of the second reinforcing bonding material is higher than a coefficient of linear expansion of the conductive bonding material.

6 . The circuit module according to claim 1 , wherein a coefficient of linear expansion of the first reinforcing bonding material is lower than a coefficient of linear expansion of the conductive bonding material.

7 . The circuit module according to claim 1 , wherein a coefficient of linear expansion of the first reinforcing bonding material is higher than half of a coefficient of linear expansion of the second reinforcing bonding material.

8 . The circuit module according to claim 1 , wherein

the first reinforcing bonding material is arranged to form a plurality of islands separated from each other, and

the second reinforcing bonding material surrounds each island of the plurality of islands.

9 . The circuit module according to claim 1 , wherein

at least one of the first surface of the first circuit component and the second surface of the second circuit component has a recess, and

the first reinforcing bonding material is disposed within the recess.

10 . The circuit module according to claim 1 , wherein

at least one of the first surface of the first circuit component and the second surface of the second circuit component has a groove that annularly extends,

the first reinforcing bonding material is disposed within an area surrounded by the groove, and

an outer peripheral edge of the first reinforcing bonding material is disposed within the groove.

11 . The circuit module according to claim 1 , wherein

at least one of the first surface of the first circuit component and the second surface of the second circuit component has a less-rough face and a rough face having a surface roughness rougher than the less-rough face, and

the first reinforcing bonding material is in contact with the less-rough face.

12 . The circuit module according to claim 1 , wherein the first reinforcing bonding material is made of a same material as the conductive bonding material.

13 . The circuit module according to claim 1 , wherein a ratio of an area of a bonding range by the conductive bonding material to an area of a facing portion where the first circuit component and the second circuit component face each other is less than or equal to 15%.

14 . The circuit module according to claim 1 , wherein

the first reinforcing bonding material is continuously extended to outside of the end of the row in the longitudinal direction of the first reinforcing bonding material.

15 . The circuit module according to claim 14 , wherein

a first distance is defined between the end of the first reinforcing bonding material and the end of the row in the longitudinal direction,

a second distance is defined between the first reinforcing bonding material and the row in a lateral direction perpendicular to the longitudinal direction, and

the first distance is greater than the second distance.

16 . A method of manufacturing the circuit module according to claim 1 , comprising:

disposing the conductive bonding material and the first reinforcing bonding material between the first circuit component and the second circuit component;

heating a laminate of the first circuit component and the second circuit component such that the conductive bonding material is fixed to the plurality of electrode pads of the first circuit component and the plurality of electrode pads of the second circuit component and that the first reinforcing bonding material is fixed to the first surface of the first circuit component and the second surface of the second circuit component;

applying a second reinforcing bonding material made of a material different from the conductive bonding material and the first reinforcing bonding material between the first surface of the first circuit component and the second surface of the second circuit component such that the second reinforcing bonding material covers a periphery of the conductive bonding material and is distributed in a range in contact with the first reinforcing bonding material and that the second reinforcing bonding material is in contact with the first surface of the first circuit component and the second surface of the second circuit component; and

heating the laminate such that second reinforcing bonding material is fixed to the first surface of the first circuit component and the second surface of the second circuit component.

17 . The method according to claim 16 , wherein the first reinforcing bonding material is made of a same material as the conductive bonding material,

the disposing of the conductive bonding material and the first reinforcing bonding material between the first circuit component and the second circuit component comprises:

applying the conductive bonding material and the first reinforcing bonding material, at a same time, to one of the first surface of the first circuit component and the second surface of the second circuit component.

18 . The method according to claim 16 , wherein the first circuit component has a through hole open to the first surface of the first circuit component,

the applying of the second reinforcing bonding material comprises:

injecting the second reinforcing bonding material between the first surface of the first circuit component and the second surface of the second circuit component through the through hole.

19 . The method according to claim 16 , wherein the second circuit component has a through hole open to the second surface of the second circuit component,

the applying of the second reinforcing bonding material comprises:

injecting the second reinforcing bonding material between the first surface of the first circuit component and the second surface of the second circuit component through the through hole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2022
From: KATO, YOSHITAKA; ENDO, TAKESHI; TSURUTA, KAZUHIRO
To: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA; MIRISE TECHNOLOGIES CORPORATION
Reel/Frame 062194/0197 →
Priority Claims (1)
JP 2022-065227 · Apr 11, 2022 · national
Continuity (1)
Related Publication 20230326845A1 · Oct 12, 2023
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