IP Library › Granted Patent US 12,472,585
Granted Patent B2
US 12,472,585 · App. 17/660,119 · Granted Nov 18, 2025

Adjustment method of laser processing apparatus, and laser processing apparatus

Inventors: Yuki Ikku (Tokyo, JP); Jun Abatake (Tokyo, JP)
Assignee: DISCO CORPORATION
B23K26/359B23K26/032B23K26/0676B23K2103/56
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Quick Facts
Patent No.
US 12,472,585
App. No.
17/660,119
Granted
Nov 18, 2025
Kind
B2
Abstract

An adjustment method of a laser processing apparatus includes a spatial light modulator adjustment step of adjusting a spatial light modulator into a state ready for splitting a laser beam emitted from a laser oscillator and applying a plurality of laser beams such that laser beams will have a desired positional relation, a processing mark formation step of operating the laser oscillator to apply the laser beams to a wafer such that a plurality of processing marks is formed, an imaging step of stopping the laser oscillator, and imaging the processing marks formed at the wafer, and an aberration correction step of correcting aberration of the condenser by comparing the desired positional relation and a positional relation among the imaged processing marks, and adjusting the spatial light modulator such that the positional relation among the processing marks conforms to the desired positional relation.

Claims (30)

1 . A laser processing apparatus comprising:

a chuck table that holds a workpiece;

a laser application unit that applies a laser beam to the workpiece held on the chuck table;

a feed mechanism that relatively feeds the chuck table and the laser application unit for processing; and

a control unit,

the laser application unit including

a laser oscillator that emits the laser beam,

a condenser that condenses and applies the laser beam that has been emitted from the laser oscillator to the workpiece held on the chuck table,

a spatial light modulator arranged between the laser oscillator and the condenser,

a spectrometer arranged between the condenser and the spatial light modulator, and

a camera arranged on a side toward which light reflected at the workpiece is split by the spectrometer,

the control unit including

a spatial light modulator adjustment instructions section configured to adjust the spatial light modulator into a state ready for splitting the laser beam that has been emitted from the laser oscillator, and applying a plurality of laser beams such that the laser beams will have a desired positional relation,

a processing mark formation instructions section configured to operate the laser oscillator to apply the laser beams to a wafer held as the workpiece on the chuck table such that a plurality of processing marks is formed at the wafer,

an imaging instructions section configured to stop the operation of the laser oscillator, and to image by the camera the processing marks formed at the wafer held on the chuck table, and

an aberration correction instructions section configured to correct aberration of the condenser by comparing the desired positional relation that has been instructed by the spatial light modulator adjustment instructions sections and a positional relation among the processing marks imaged by the camera, and adjusting the spatial light modulator such that the positional relation among the processing marks conforms to the desired positional relation.

2 . An adjustment method of a laser processing apparatus including a chuck table that holds a workpiece, a laser application unit that applies a laser beam to the workpiece held on the chuck table, a feed mechanism that relatively feeds the chuck table and the laser application unit for processing, and a control unit,

the laser application unit including a laser oscillator that emits the laser beam, a condenser that condenses and applies the laser beam that has been emitted from the laser oscillator to the workpiece held on the chuck table, a spatial light modulator arranged between the laser oscillator and the condenser, a spectrometer arranged between the condenser and the spatial light modulator, and a camera arranged on a side toward which light reflected at the workpiece is split by the spectrometer, and

the control unit including

a spatial light modulator adjustment instructions section configured to adjust the spatial light modulator into a state ready for splitting the laser beam that has been emitted from the laser oscillator, and applying a plurality of laser beams such that the laser beams will have a desired positional relation,

a processing mark formation instructions section configured to operate the laser oscillator to apply the laser beams to a wafer held as the workpiece on the chuck table such that a plurality of processing marks is formed at the wafer,

an imaging instructions section configured to stop the operation of the laser oscillator, and to image by the camera the processing marks formed at the wafer held on the chuck table, and

an aberration correction instructions section configured to correct aberration of the condenser by comparing the desired positional relation that has been instructed by the spatial light modulator adjustment instructions sections and a positional relation among the processing marks imaged by the camera, and adjusting the spatial light modulator such that the positional relation among the processing marks conforms to the desired positional relation,

the adjustment method comprising:

a wafer providing step of providing, as the workpiece, the wafer held on the chuck table at which processing marks are to be formed by the application of the laser beam;

a holding step of holding the wafer on the chuck table;

a spatial light modulator adjustment step of adjusting the spatial light modulator into the state ready for splitting the laser beam that has been emitted from the laser oscillator, and applying the plurality of laser beams such that the laser beams will have desired positional relation;

a processing mark formation step of operating the laser oscillator to apply the laser beams to the wafer held on the chuck table such that a plurality of processing marks is formed at the wafer;

an imaging step of stopping the operation of the laser oscillator, and imaging by the camera the processing marks formed at the wafer held on the chuck table; and

an aberration correction step of correcting aberration of the condenser by comparing the desired positional relation that serves as a reference for the adjustment in the spatial light modulator adjustment step and a positional relation among the processing marks imaged in the imaging step, and adjusting the spatial light modulator such that the positional relation among the processing marks conforms to the desired positional relation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2022
From: IKKU, YUKI; ABATAKE, JUN
To: DISCO CORPORATION
Reel/Frame 059668/0904 →
Priority Claims (1)
JP 2021-073242 · Apr 23, 2021 · national
Continuity (1)
Related Publication 20220339737A1 · Oct 27, 2022
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Cited By (2)
US 12,656,101 US 12,669,404