IP Library Granted Patent US 8,779,586
Granted Patent B2
US 8,779,586 · App. 13/036,277 · Granted Jul 15, 2014

Die bond film, dicing die bond film, and semiconductor device

Inventors: Kenji Oonishi (Ibaraki, JP); Miki Hayashi (Ibaraki, JP); Kouichi Inoue (Ibaraki, JP); Yuichiro Shishido (Ibaraki, JP)
Assignee: Nitto Denko Corporation
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Quick Facts
Patent No.
US 8,779,586
App. No.
13/036,277
Granted
Jul 15, 2014
Kind
B2
Abstract

The present invention provides a die bond film for adhering, onto a semiconductor element that is electrically connected to an adherend with a bonding wire, another semiconductor element and that enables loading of the other semiconductor element and improvement in the manufacturing yield of a semiconductor device by preventing deformation and cutting of the bonding wire, and a dicing die bond film. The die bond film of the present invention is a die bond film for adhering, onto a semiconductor element that is electrically connected to an adherend with a bonding wire, another semiconductor element, in which at least a first adhesive layer that enables a portion of the bonding wire to pass through inside thereof by burying the portion upon press bonding and a second adhesive layer that prevents the other semiconductor element from contacting with the bonding wire are laminated.

Claims (22)

1. A die bond film for adhering, onto a semiconductor element that is electrically connected to an adherend with a bonding wire, another semiconductor element, wherein

at least a first adhesive layer that enables a portion of the bonding wire to pass through inside thereof by burying the portion upon press bonding and a second adhesive layer that prevents the other semiconductor element from contacting with the bonding wire are laminated,.

wherein the content of metal ions in the first adhesive layer is 100 ppm or less.

2. The die bond film according to claim 1 , wherein each of the first adhesive layer and the second adhesive layer is formed from at least an epoxy resin, a phenol resin, and an acrylic resin, wherein

X/(X+Y) of the first adhesive layer, where the total weight of the epoxy resin and the phenol resin is X parts by weight and the weight of the acrylic resin is Y parts by weight, is in a range of 0.5 to 0.95, and X/(X+Y) of the second adhesive layer is in a range of 0.15 to less than 0.5.

3. The die bond film according to claim 1 , wherein the total thickness of the die bond film is in a range of 40 to 120 μm, and d 1 /(d 1 +d 2 ) is in a range of 0.6 to 0.95 where d 1 (μm) is the thickness of the first adhesive layer and d 2 (μm) is the thickness of the second adhesive layer.

4. The die bond film according to claim 1 , wherein the shear loss modulus G″ of the first adhesive layer at 120° C. before thermal curing is in a range of 5×10 2 to 1.5×10 4 Pa, and the shear loss modulus G″ of the second adhesive layer at 120° C. before thermal curing is in a range of 2×10 4 to 1×10 6 Pa.

5. The die bond film according to claim 1 , wherein at least one of the second adhesive layer or other adhesive layers when providing the other adhesive layers on the second adhesive layer contains at least one of a dye or a pigment.

6. The die bond film according to claim 1 , wherein the glass transition temperature of the first adhesive layer is 20 to 60° C., and the glass transition temperature of the second adhesive layer is 60° C. or less.

7. The die bond film according to claim 1 , wherein the tensile storage modulus at 175° C. after thermal curing is in a range of 0.5 to 100 MPa.

8. A dicing die bond film comprising:

a dicing film in which at least a pressure-sensitive adhesive layer is provided on a base; and

the die bond film according to claim 1 that is provided on the pressure-sensitive adhesive layer.

9. A semiconductor device that is manufactured with the die bond film according to claim 1 .

10. A semiconductor device that is manufactured with the dicing die bond film according to claim 8 .

11. A die bond film comprising a first adhesive layer and a second adhesive layer; wherein

the first adhesive layer possesses a shear loss modulus G″ sufficiently low to permit a portion of a semiconductor element bonding wire to pass through inside thereof by burying the portion upon press bonding the die bond film onto a semiconductor element, and the shear loss modulus G″ is sufficiently high to prevent the first adhesive layer from spreading out upon press bonding the die bond film onto the semiconductor element, and

the second adhesive layer possesses a shear loss modulus G″ greater than the shear loss modulus G″ of the first adhesive layer.

12. A dicing die-bonding film comprising the die bond film of claim 11 and a pressure-sensitive adhesive layer attached on the first adhesive layer side of the die bond film.

13. A semiconductor device comprising a first semiconductor element, a second semiconductor element, and the die bond film according to claim 11 .

14. The semiconductor device according to claim 13 , wherein the first semiconductor element and the second semiconductor element are approximately the same size.

15. The semiconductor device according to claim 13 , wherein the die bond film is approximately the same size as at least either the first semiconductor element or the second semiconductor element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2011
From: OONISHI, KENJI; HAYASHI, MIKI; INOUE, KOUICHI; SHISHIDO, YUICHIRO
To: NITTO DENKO CORPORATION
Reel/Frame 025873/0276 →
Priority Claims (1)
JP 2010-044434 · Mar 1, 2010 · national
Continuity (1)
Related Publication 20110210455A1 · Sep 1, 2011