IP Library › Granted Patent US 11,740,186
Granted Patent B2
US 11,740,186 · App. 17/406,784 · Granted Aug 29, 2023

Image acquiring method, image acquiring apparatus and wafer inspection apparatus

Inventor: Myoung Hoon Woo (Cheonan-si, KR)
Assignee: SEMES CO., LTD.
G01N21/95607G01N21/8806G01N21/9501G06T7/001G06T7/11G01N2021/8887G06T2207/30148
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Quick Facts
Patent No.
US 11,740,186
App. No.
17/406,784
Granted
Aug 29, 2023
Kind
B2
Abstract

An image acquiring method, an image acquiring apparatus and a wafer inspection apparatus are disclosed. A line scan camera is disposed above a transfer path of a wafer to continuously acquire partial images having a predetermined size by imaging a scan area including a portion of the transfer path, and the partial images are stored in an image storage unit. A partial image including a predetermined feature point among the partial images is detected by an image analysis unit, and an image merging unit merges a predetermined number of partial images including the detected partial image to acquire an entire image of the wafer. An image inspection unit analyzes the entire image of the wafer to detect defects in the wafer.

Claims (40)

1. An image acquiring method comprising:

continuously acquiring partial images having a predetermined size by imaging a scan area perpendicular to a transfer path of a wafer using a line scan camera disposed above the transfer path of the wafer;

detecting a partial image including a predetermined feature point from among the partial images; and

merging a predetermined number of partial images including the detected partial image to acquire an entire image of the wafer.

2. The image acquiring method of claim 1 , wherein each of the partial images comprises a region of interest (ROI) for detecting the feature point.

3. The image acquiring method of claim 1 , further comprising:

receiving a motion event signal of a wafer transfer robot for transferring the wafer; and

providing an illumination light for acquiring the partial images based on the motion event signal.

4. The image acquiring method of claim 3 , wherein the partial images are continuously acquired for a predetermined time after the illumination light is provided.

5. The image acquiring method of claim 1 , further comprising storing the partial images.

6. The image acquiring method of claim 5 , wherein the partial images are stored in an image storage unit having a predetermined storage space, and when the storage space for storing the partial images is insufficient, the partial images are deleted in an order in which the partial images are stored.

7. An image acquiring apparatus comprising:

a line scan camera disposed above a transfer path of a wafer and for continuously acquiring partial images having a predetermined size by imaging a scan area perpendicular to the transfer path of the wafer;

an image storage unit for storing the partial images;

an image analysis unit for detecting a partial image including a predetermined feature point from among the partial images; and

an image merging unit merging a predetermined number of partial images including the detected partial image to acquire an entire image of the wafer.

8. The image acquiring apparatus of claim 7 , wherein the image analysis unit sets a ROI in the partial images and analyzes ROIs of the partial images to detect the partial image including the feature point.

9. The image acquiring apparatus of claim 7 , further comprising:

an illumination unit for receiving a motion event signal of a wafer transfer robot for transferring the wafer from a wafer processing apparatus including the wafer transfer robot and providing an illumination light for acquiring the partial images based on the motion event signal.

10. The image acquiring apparatus of claim 9 , wherein the line scan camera continuously acquires the partial images for a predetermined time after the illumination light is provided.

11. The image acquiring apparatus of claim 10 , further comprising:

an illumination control unit for controlling operations of the illumination unit based on the motion event signal; and

a camera control unit for controlling operations of the line scan camera to continuously acquire the partial images for the predetermined time after the illumination light is provided.

12. The image acquiring apparatus of claim 7 , wherein the image storage unit has a predetermined storage space for storing the partial images and deletes the partial images in an order in which the partial images are stored when the storage space for storing the partial images is insufficient.

13. A wafer inspection apparatus comprising:

a line scan camera disposed above a transfer path of a wafer and for continuously acquiring partial images having a predetermined size by imaging a scan area perpendicular to the transfer path of the wafer;

an image storage unit for storing the partial images;

an image analysis unit for detecting a partial image including a predetermined feature point from among the partial images;

an image merging unit merging a predetermined number of partial images including the detected partial image to acquire an entire image of the wafer; and

an image inspection unit for detecting defects of the wafer from the entire image of the wafer.

14. The wafer inspection apparatus of claim 13 , wherein each of the partial images comprises a ROI for detecting the feature point.

15. The wafer inspection apparatus of claim 13 , further comprising:

an illumination unit for providing an illumination light on the scan area; and

an illumination control unit connected to a wafer processing apparatus including a wafer transfer robot for transferring the wafer and configured to receive a motion event signal of the wafer transfer robot from the wafer processing apparatus and control operations of the illumination unit based on the motion event signal.

16. The wafer inspection apparatus of claim 15 , wherein the illumination control unit controls the operations of the illumination unit so that the illumination light is provided for a predetermined time after the wafer transfer robot starts transferring the wafer.

17. The wafer inspection apparatus of claim 15 , wherein the illumination control unit controls the operations of the illumination unit so that the illumination light is provided for a predetermined second time after the wafer transfer robot starts transferring the wafer and then a predetermined first time elapses.

18. The wafer inspection apparatus of claim 15 , further comprising:

a camera control unit for controlling operations of the line scan camera to continuously acquire the partial images for a predetermined time after the illumination light is provided.

19. The wafer inspection apparatus of claim 13 , wherein the image storage unit has a predetermined storage space for storing the partial images and deletes the partial images in an order in which the partial images are stored when the storage space for storing the partial images is insufficient.

20. The wafer inspection apparatus of claim 13 , wherein the image inspection unit sets a second ROI on the entire image of the wafer and compares the second ROI with a reference image to detect the defects.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2021
From: WOO, MYOUNG HOON
To: SEMES CO., LTD.
Reel/Frame 057233/0609 →
Priority Claims (1)
KR 10-2020-0110414 · Aug 31, 2020 · national
Continuity (1)
Related Publication 20220065799A1 · Mar 3, 2022