IP Library › Granted Patent US 11,205,580
Granted Patent B2
US 11,205,580 · App. 16/878,734 · Granted Dec 21, 2021

Method of manufacturing molded chip

Inventor: Katsuhiko Suzuki (Tokyo, JP)
Assignee: DISCO CORPORATION
H01L21/565H01L21/78
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,205,580
App. No.
16/878,734
Granted
Dec 21, 2021
Kind
B2
Abstract

A method of manufacturing a molded chip includes a preparing step of sticking device faces of a plurality of device chips arrayed to a protective member that is thermally insulative, thereby forming a chip group; a molding step of, after the preparing step, supplying a molding resin to reverse sides of the device chips and gaps between the device chips, thereby forming a molded wafer in which the reverse sides and side faces of the device chips are covered with a resin molding; and a molded wafer dividing step of, after the molding step, dividing the molded wafer along centers of the gaps filled with the resin molding into molded chips on the basis of an image in which a face side of the molded wafer has been captured.

Claims (28)

1. A method of manufacturing a molded chip from a wafer having an arcuate outer circumferential edge, comprising:

an edge trimming step of trimming off an arcuate portion of the arcuate outer circumferential edge on a face side of the wafer along the outer circumferential edge;

a preparing step of sticking device faces of a plurality of device chips arrayed to a protective member that is thermally insulative, thereby forming a chip group of the device chips;

a molding step of, after the preparing step, supplying a molding resin to reverse sides of the device chips and gaps between the device chips, thereby forming a molded wafer in which the reverse sides and side faces of the device chips are covered with a resin molding; and

a molded wafer dividing step of, after the molding step, dividing the molded wafer along centers of the gaps filled with the resin molding into molded chips on a basis of an image in which the face side of the molded wafer has been imaged.

2. The method of manufacturing a molded chip according to claim 1 , wherein the preparing step includes

a groove forming step of forming grooves in the wafer having a plurality of areas demarcated by a grid of projected dicing lines on the face side of the wafer and a plurality of devices formed respectively in the areas, to a depth larger than a finished thickness,

a protective member sticking step of sticking the protective member to the face side of the wafer in which the grooves have been formed, and

a grinding step of grinding a reverse side of the wafer, thereby exposing the grooves on the wafer and dividing the wafer into the device chips.

3. The method of manufacturing a molded chip according to claim 1 , wherein

the preparing step includes

a thinning step of grinding a reverse side of the wafer having a plurality of areas demarcated by a grid of projected dicing lines on the face side of the wafer and a plurality of devices formed respectively in the areas, thereby thinning the wafer to a finished thickness, and

a dividing step of dividing the thinned wafer along the projected dicing lines.

4. The method of manufacturing a molded chip according to claim 3 , wherein the protective member is made from a flexible material.

5. The method of manufacturing a molded chip according to claim 3 , wherein the protective member is made from a hard material.

6. The method of manufacturing a molded chip according to claim 1 , wherein

the molding resin supplied to the reverse sides of the device chips is pressed against the reverse sides of the device chips in a mold in the molding step.

7. A method of manufacturing a molded chip, comprising:

a preparing step of sticking device faces of a plurality of device chips arrayed to a protective member that is thermally insulative, thereby forming a chip group of the device chips;

a molding step of, after the preparing step, supplying a molding resin to reverse sides of the device chips and gaps between the device chips, thereby forming a molded wafer in which the reverse sides and side faces of the device chips are covered with a resin molding;

a molded wafer dividing step of, after the molding step, dividing the molded wafer along centers of the gaps filled with the resin molding into molded chips on a basis of an image in which the face side of the molded wafer has been imaged; and

an expanding step of, after the preparing step and before the molding step, expanding the protective member in planar directions, thereby widening distances between the device chips.

8. A method of manufacturing a molded chip, comprising:

a preparing step of sticking device faces of a plurality of device chips arrayed to a protective member that is thermally insulative, thereby forming a chop group of the device chips;

a molding step of, after the preparing step, supplying a molding resin to reverse sides of the device chips and gaps between the device chips, thereby forming a molded wafer in which the reverse sides and side faces of the device chips are covered with a resin molding;

a molded wafer dividing step of, after the molding step, dividing the molded wafer along centers of the gaps filled with the resin molding into molded chips on a basis of image in which the face side of the molded wafer has been imaged;

a protective member peeling step of, after the molding step, sticking an adhesive tape to a reverse side of the molded wafer and peeling off the protective member from the face side of the molded wafer,

wherein the molded wafer is divided from the face side of the molded wafer in the molded wafer dividing step.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2020
From: SUZUKI, KATSUHIKO
To: DISCO CORPORATION
Reel/Frame 052709/0142 →
Priority Claims (1)
JP JP2019-098076 · May 24, 2019 · national
Continuity (1)
Related Publication 20200373172A1 · Nov 26, 2020