IP Library › Granted Patent US 12,275,839
Granted Patent B2
US 12,275,839 · App. 17/299,149 · Granted Apr 15, 2025

Reinforcing resin composition, electronic component, method for manufacturing electronic component, mounting structure, and method for manufacturing mounting structure

Inventors: Shigeru Yamatsu (Mie, JP); Yasuhiro Suzuki (Osaka, JP); Hirohisa Hino (Osaka, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
C08L63/04C08G59/245C08G59/5046C08G59/56C08G59/621C08G59/686C08L63/00H01L21/563H01L23/12H01L23/291H01L23/293H01L23/3157H01L24/05H01L24/08H01L24/11H01L24/13H01L24/16H01L24/81H05K3/28C08L2203/206C08L2205/02H01L2224/05568H01L2224/10126H01L2224/10156H01L2224/11013H01L2224/11334H01L2224/11849H01L2224/16058H01L2224/16225H01L2224/16227H01L2224/16238H01L2224/81395H01L2224/81815H01L2224/81862H01L2224/81906H01L2224/81951H01L2924/066H01L2924/0665H01L2924/18161
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Quick Facts
Patent No.
US 12,275,839
App. No.
17/299,149
Granted
Apr 15, 2025
Kind
B2
Abstract

A reinforcing resin composition includes an epoxy resin (A), a phenolic resin (B), and a benzoxazine compound (C).

Claims (30)

1. A reinforcing resin composition comprising:

an epoxy resin (A);

a phenolic resin (B); and

a benzoxazine compound (C); and

an activator (D),

wherein with respect to a total of the epoxy resin (A), the phenolic resin (B), the benzoxazine compound (C), and the activator (D):

proportion of the epoxy resin (A) is within a range from 20% by weight to 60% by weight;

proportion of the phenolic resin (B) is within a range from 10% by weight to 40% by weight;

proportion of the benzoxazine compound (C) is within a range from 5% by weight to 30% by weight; and

proportion of the activator (D) is within a range from 10% by weight to 40% by weight.

2. The reinforcing resin composition of claim 1 , wherein

the activator (D) comprises at least one of an organic acid (D1) having a melting point of 130° C. to 220° C., and an amine (D2) having a melting point of 130° C. to 220° C.

3. The reinforcing resin composition of claim 1 , wherein

the phenolic resin (B) comprises a phenol-novolac resin (B1) having a hydroxyl equivalent of 70 g/eq to 150 g/eq.

4. The reinforcing resin composition of claim 1 , wherein

the benzoxazine compound (C) comprises a polyvalent oxazine compound (C1) having a plurality of oxazine rings in one molecule.

5. An electronic component comprising:

an electronic component body;

a conductor formed on a surface of the electronic component body;

a solder bump arranged on the conductor and electrically connected to the conductor; and

a reinforcing portion that is a cured product of the reinforcing resin composition according to claim 1 and covers a joint between the conductor and the solder bump.

6. A method for manufacturing the electronic component of claim 5 , the method comprising:

curing the reinforcing resin composition after covering the joint between the conductor and the bump with the reinforcing resin composition.

7. A mounting structure comprising:

a circuit board including a first conductor;

an electronic component including a second conductor;

a solder bump interposed between the first conductor and the second conductor and electrically connecting the first conductor and the second conductor to each other; and

a reinforcing portion that is a cured product of the reinforcing resin composition according to claim 1 and covers at least one of a joint between the first conductor and the bump or a joint between the second conductor and the bump.

8. A method for manufacturing the mounting structure of claim 7 , the method comprising:

curing the reinforcing resin composition after covering, with the reinforcing resin composition, at least one of the joint between the first conductor and the bump or the joint between the second conductor and the bump.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2021
From: YAMATSU, SHIGERU; SUZUKI, YASUHIRO; HINO, HIROHISA
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 057735/0385 →
Priority Claims (1)
JP 2018-226757 · Dec 3, 2018 · national
Continuity (1)
Related Publication 20220049085A1 · Feb 17, 2022
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