IP Library Granted Patent US 10,438,918
Granted Patent B2
US 10,438,918 · App. 15/670,072 · Granted Oct 8, 2019

Bonding apparatus and bonding system

Inventors: Yosuke Omori (Koshi, JP); Kenji Sugakawa (Koshi, JP)
Assignee: TOKYO ELECTRON LIMITED
H01L24/743H01L21/2007H01L21/64H01L21/67092
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Quick Facts
Patent No.
US 10,438,918
App. No.
15/670,072
Granted
Oct 8, 2019
Kind
B2
Abstract

Deformation of substrates after the substrates are bonded can be suppressed. A bonding apparatus includes a first holding unit configured to attract and hold a first substrate from above; a second holding unit provided under the first holding unit and configured to attract and hold a second substrate from below; and a striker configured to press a central portion of the first substrate from above and bring the first substrate into contact with the second substrate. The first holding unit is configured to attract and hold a partial region of a peripheral portion of the first substrate, and the first holding unit attracts and holds the region which intersects with a direction, among directions from the central portion of the first substrate toward the peripheral portion thereof, in which a bonding region between the first substrate and the second substrate is expanded fastest.

Claims (29)

1. A bonding apparatus, comprising:

a first holding unit configured to attract and hold a first substrate from above;

a second holding unit provided under the first holding unit and configured to attract and hold a second substrate from below; and

a striker configured to press a central portion of the first substrate from above and bring the first substrate into contact with the second substrate,

wherein the first holding unit is configured to attract and hold a partial region of a peripheral portion of the first substrate, and the first holding unit attracts and holds the region which intersects with at least a direction, among directions from the central portion of the first substrate toward the peripheral portion thereof, in which a bonding region between the first substrate and the second substrate is expanded fastest.

2. The bonding apparatus of claim 1 ,

wherein the first holding unit comprises:

multiple first suction portions arranged in a first direction, among the directions from the central portion of the first substrate toward the peripheral portion thereof, in which the bonding region between the first substrate and the second substrate is expanded fastest; and

multiple second suction portions arranged in a circumferential direction with the first suction portions therebetween and arranged in a second direction, among the directions from the central portion of the first substrate toward the peripheral portion thereof, in which the bonding region between the first substrate and the second substrate is expanded more slowly than in the first direction,

wherein at least one of an attraction force and a timing for releasing the attraction of the first substrate is set to be different between the first suction portions and the second suction portions.

3. The bonding apparatus of claim 2 ,

wherein each of the first substrate and the second substrate is a single crystal silicon wafer in which a crystal direction of a surface thereof is [100], and

when a direction oriented toward a [0-11] crystal direction parallel to the surface of the first substrate from the central portion of the first substrate is defined as 0°, the multiple first suction portions are arranged at an interval of 90° with respect to a direction of 45°, and the multiple second suction portions are arranged at an interval of 90° with respect to a direction of 0°.

4. The bonding apparatus of claim 2 ,

wherein the first holding unit comprises:

multiple third suction portions arranged at an inner side than the multiple first suction portions in the first direction; and

multiple fourth suction portions arranged at an inner side than the multiple second suction portions in the second direction.

5. The bonding apparatus of claim 4 ,

wherein the first holding unit comprises:

a fifth suction portion which has a circular ring shape and is arranged at an inner side than the multiple third suction portions and the multiple fourth suction portions.

6. A bonding system, comprising:

a surface modifying apparatus configured to modify surfaces of a first substrate and a second substrate;

a surface hydrophilizing apparatus configured to hydrophilize the modified surfaces of the first substrate and the second substrate; and

a bonding apparatus configured to bond the first substrate and the second substrate, which are hydrophilized, by an intermolecular force,

wherein the bonding apparatus comprises:

a first holding unit configured to attract and hold the first substrate from above;

a second holding unit provided under the first holding unit and configured to attract and hold the second substrate from below; and

a striker configured to press a central portion of the first substrate from above and bring the first substrate into contact with the second substrate,

wherein the first holding unit is configured to attract and hold a partial region of a peripheral portion of the first substrate, and the first holding unit attracts and holds the region which intersects with a direction, among directions from the central portion of the first substrate toward the peripheral portion thereof, in which a bonding region between the first substrate and the second substrate is expanded fastest.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2017
From: OMORI, YOSUKE; SUGAKAWA, KENJI
To: TOKYO ELECTRON LIMITED
Reel/Frame 043214/0646 →
Priority Claims (1)
JP 2016-156083 · Aug 9, 2016 · national
Continuity (1)
Related Publication 20180047699A1 · Feb 15, 2018
Cited By (3)
US 12,581,908 US 12,642,013 US 12,660,566