IP Library › Granted Patent US 8,854,613
Granted Patent B2
US 8,854,613 · App. 13/352,663 · Granted Oct 7, 2014

Surface defect inspection apparatus and surface defect inspection method

Inventor: Katsumi Fujihara (Kawasaki, JP)
Assignee: Fujitsu Limited
G01N21/94G01N2021/8825G01N21/9501
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Quick Facts
Patent No.
US 8,854,613
App. No.
13/352,663
Granted
Oct 7, 2014
Kind
B2
Abstract

A surface defect inspection apparatus includes a light source that emits light to a first position on a surface of a target at an angle inclined with respect to the surface of the target, a first photodetector that detects first reflected light of the light from the light source, the first reflected light being reflected at the first position, a second photodetector that detects second reflected light of the light from the light source, the second reflected light being reflected at a second position, the second position being closer to the light source than the first position and being separated from the surface of the target by a given distance, and a determining unit that determines whether or not foreign matter is present on the surface of the target on a basis of detection results obtained from the first photodetector and the second photodetector.

Claims (48)

1. A surface defect inspection apparatus comprising:

a light source that emits light to a first position on a surface of a target at an angle inclined with respect to the surface of the target;

a first photodetector that detects first reflected light of the light from the light source, the first reflected light being reflected at the first position,

a second photodetector that detects second reflected light of the light from the light source, the second reflected light being reflected at a second position on the surface of the target, the second position being different from the first position and closer to the light source than the first position and being separated vertically from the surface of the target by a given distance; and

a determining unit that determines whether or not foreign matter is present on the surface of the target on a basis of detection results obtained from the first photodetector and the second photodetector, the determining unit determining that the foreign matter with a predetermined height or more is present on the surface of the target when the first reflected light is not detected by the first photodetector and the second reflected light is detected by the second photodetector.

2. A surface defect inspection apparatus comprising:

a light source that emits light to a first position on a surface of a target at an angle inclined with respect to the surface of the target;

a first photodetector that detects first reflected light of the light from the light source, the first reflected light being reflected at the first position;

a second photodetector that detects second reflected light of the light from the light source, the second reflected light being reflected at a second position on the surface of the target, the second position being different from the first position and closer to the light source than the first position and being separated vertically from the surface of the target by a given distance; and

a determining unit that determines whether or not foreign matter is present on the surface of the target on a basis of detection results obtained from the first photodetector and the second photodetector, the determining unit determining that the foreign matter with a predetermined height or more is not present on the surface of the target when the first reflected light is detected by the first photodetector and the second reflected light is not detected by the second photodetector and when first reflected light is detected by the first photodetector and the second reflected light is detected by the second photodetector.

3. The surface defect inspection apparatus according to claim 1 , wherein

the first photodetector outputs a first signal, a signal level of which is increased as an amount of the first reflected light detected by the first photodetector is increased,

the second photodetector outputs a second signal, a signal level of which is increased as an amount of the second reflected light detected by the second photodetector is increased; and

the determining unit includes:

a first circuit that generates a differential signal between the first signal and the second signal,

a second circuit that generates a binary signal obtained by binarizing the differential signal, and

a third circuit that determines whether or not the foreign matter is present on the surface of the target on a basis of the binary signal.

4. The surface defect inspection apparatus according to claim 3 , further comprising:

a moving unit that moves the target relative to the light source, the first photodetector, and the second photodetector;

an output unit that outputs relative position information on a position of the target relative to the first photodetector and the second photodetector; and

a generator that generates coordinate information on a coordinate of the foreign matter on the surface of the target on a basis of the binary signal and the relative position information when the foreign matter is present on the surface of the target.

5. The surface defect inspection apparatus according to claim 3 , wherein

the light source is a line light source that emits line-like light to the first position on the surface of the target,

each of the first photodetector and the second photodetector is a line camera including a plurality of detection areas allocated in a longitudinal direction of the light, and

the apparatus further comprises:

a moving unit that moves the target relative to the first photodetector and the second photodetector in a lateral direction of the light;

an output unit that outputs relative position information on a position of the target relative to the first photodetector and the second photodetector; and

a generator that generates coordinate information on a coordinate of the foreign matter on the surface of the target on a basis of the binary signal and the relative position information when the foreign matter is present on the surface of the target.

6. A surface defect inspection method comprising:

emitting light from a light source to a first position on a surface of a target at an angle inclined with respect to the surface of the target; and

determining whether or not foreign matter is present on the surface of the target on a basis of detection results obtained from a first photodetector and a second photodetector, the first photodetector detecting first reflected light of the light from the light source, the first reflected light being reflected at the first position, the second photodetector detecting second reflected light of the light from the light source, the second reflected light being reflected at a second position on the surface of the target, the second position being different from the first position and closer to the light source than the first position and being separated vertically from the surface of the target by a given distance,

wherein the determining determines that the foreign matter with a predetermined height or more is present on the surface of the target when the first reflected light is not detected by the first photodetector and the second reflected light is detected by the second photodetector.

7. The surface defect inspection method according to claim 6 , further comprising:

moving the target relative to the light source, the first photodetector, and the second photodetector;

outputting relative position information on position of the target relative to the first photodetector and the second photodetector; and

generating coordinate information on a coordinate of the foreign matter on the surface of the target on a basis of the relative position information and determination results obtained from the determining.

8. The surface defect inspection method according to claim 6 , wherein

the light source is a line light source that emits line-like light to the first position on the surface of the target;

each of the first photodetector and the second photodetector is a line camera including a plurality of detection areas allocated in a longitudinal direction of the light; and

the determining includes

moving the target relative to the first photodetector and the second photodetector in a lateral direction of the light,

outputting relative position information on position of the target relative to the first photodetector and the second photodetector, and

generating coordinate information on a coordinate of the foreign matter on the surface of the target on a basis of the relative position information and determination results obtained from the plurality of detection areas.

9. The surface defect inspection method according to claim 6 , wherein the target is a wafer.

10. A surface defect inspection method comprising:

emitting light from a light source to a first position on a surface of a target at an angle inclined with respect to the surface of the target; and

determining whether or not foreign matter is present on the surface of the target on a basis of detection results obtained from a first photodetector and a second photodetector, the first photodetector detecting first reflected light of the light from the light source, the first reflected light being reflected at the first position, the second photodetector detecting second reflected light of the light from the light source, the second reflected light being reflected at a second position on the surface of the target, the second position being different from the first position and closer to the light source than the first position and being separated vertically from the surface of the target by a given distance

wherein the determining determines that the foreign matter with a predetermined height or more is not present on the surface of the target when the first reflected light is detected by the first photodetector and the second reflected light is not detected by the second photodetector and when the first reflected light is detected by the first photodetector and the second reflected light is detected by the second photodetector.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2012
From: FUJIHARA, KATSUMI
To: FUJITSU LIMITED
Reel/Frame 027772/0426 →
Priority Claims (1)
JP 2011-063094 · Mar 22, 2011 · national
Continuity (1)
Related Publication 20120242984A1 · Sep 27, 2012