IP Library › Granted Patent US 12,611,733
Granted Patent B2
US 12,611,733 · App. 18/123,315 · Granted Apr 28, 2026

Laser scribing device

Inventors: Beng So Ryu (Incheon, KR); Hark Yong Kim (Seoul, KR); Gwan Yoo Kim (Cheongju-si, KR); Dong Woo Shin (Jincheon-gun, KR); Seong Ho Song (Bucheon-si, KR); Jang Hyun Kim (Seoul, KR)
Assignee: QMC INC.
B23K26/364B23K26/0648B23K26/067
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Quick Facts
Patent No.
US 12,611,733
App. No.
18/123,315
Granted
Apr 28, 2026
Kind
B2
Abstract

The present invention discloses a laser scribing device that produces optimal scribing lines within a target substrate based on its thickness. This is accomplished by generating multiple or an optimum number of focal points, and dynamically adjusting the focal lengths of the focal points to create optimal distances between the scribing lines. The resulting scribing lines are efficient in breaking the target substrate. The position of the focal points and the distance between them are determined based on the thickness of the target substrate, and the distance between focal points or scribing lines can be dynamically adjusted by modifying the focal lengths of the focal points.

Claims (37)

1 . A laser scribing device comprising:

a laser for emitting a laser beam;

a beam splitter for dividing the laser beam into a plurality of laser beams;

a beam expander telescope for modifying a divergence angle of one or more of the laser beams,

wherein the beam expander telescope comprising one or more optical components, and

wherein the divergence angle is modified by adjusting a position of at least one of the optical components;

a beam combiner for combining the plurality of laser beams and emitting coaxially the plurality of laser beams; and

a focusing lens to create a plurality of focal points inside a target substrate from the plurality of laser beams,

wherein each focal point of the plurality of focal points having different focal lengths,

wherein each of the focal lengths is a distance between the focusing lens and a focal point,

wherein one or more of the focal lengths are adjusted by the beam expander telescope by modifying the divergence angle of one or more of the laser beams, and

wherein a plurality of scribing lines is simultaneously generated from each focal point of the plurality of focal points by translating the target substrate.

2 . The laser scribing device of claim 1 , further comprising:

an attenuator positioned on one or more paths of the plurality of laser beams to control energy of one or more of the laser beams.

3 . The laser scribing device of claim 1 or 2 , further comprising:

a first wave plate positioned on one or more paths of the plurality of laser beams to control a polarization state of one or more of the laser beams.

4 . The laser scribing device of claim 3 , further comprising:

a second wave plate coupled to an output terminal of the beam combiner to convert the polarization state of the plurality of laser beams to a circular polarization state.

5 . A laser scribing device comprising:

a laser for emitting a laser beam;

a beam splitter for dividing the laser beam into a first laser beam and a second laser beam;

a beam expander telescope for modifying a divergence angle of at least one of the first and the second laser beams,

wherein the beam expander telescope comprising one or more optical components, and

wherein the divergence angle is modified by adjusting a position of at least one of the optical components;

a beam combiner for combining the first laser beam and the second laser beam and emitting coaxially the first laser beam and the second laser beam; and

a focusing lens to create a first focal point for the first laser beam and a second focal point for the second laser beam inside a target substrate;

wherein the first focal point and the second focal point have different focal lengths,

wherein a first focal length of the first focal point is a distance between the focusing lens and the first focal point,

wherein a second focal length of the second focal point is a distance between the focusing lens and the second focal point,

wherein at least one of the first and the second focal lengths is adjusted by the beam expander telescope by modifying the divergence angle of at least one of the first and second laser beams, and

wherein a first scribing line and a second scribing line are simultaneously generated by each focal point of the first focal point and the second focal point respectively by translating the target substrate.

6 . The laser scribing device of claim 5 , further comprising:

an attenuator positioned on at least one paths of the first and the second laser beams to control energy of at least one of the first and the second laser beams.

7 . The laser scribing device of claim 5 or 6 , further comprising:

a first wave plate positioned on at least one paths of the first and the second laser beams to control a polarization state of at least one of the first and the second laser beams.

8 . The laser scribing device of claim 7 , further comprising:

a second wave plate coupled to an output terminal of the beam combiner to convert the polarization state of the first and the second laser beams to a circular polarization state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2023
From: RYU, BENG SO; KIM, HARK YONG; KIM, GWAN YOO; SHIN, DONG WOO; SONG, SEONG HO; KIM, JANG HYUN
To: QMC. INC.
Reel/Frame 063027/0723 →
Priority Claims (1)
KR 10-2017-0022268 · Feb 20, 2017 · national
Continuity (3)
Continuation In Part 16515614 · Jul 18, 2019
Continuation PCTKR2018002082 · Feb 20, 2018
Related Publication 20230226644A1 · Jul 20, 2023
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