US Patent Application 17738085. DESIGN OPTIMIZATION FOR RASTER SCANNING simplified abstract

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DESIGN OPTIMIZATION FOR RASTER SCANNING

Organization Name

Intel Corporation


Inventor(s)

Vinith Bejugam of Chandler AZ (US)

Kristof Darmawikarta of Chandler AZ (US)

Yonggang Li of Chandler AZ (US)

Samuel George of Chandler AZ (US)

Srinivas Pietambaram of Chandler AZ (US)

DESIGN OPTIMIZATION FOR RASTER SCANNING - A simplified explanation of the abstract

This abstract first appeared for US patent application 17738085 titled 'DESIGN OPTIMIZATION FOR RASTER SCANNING

Simplified Explanation

The patent application is about a method and system for creating structures on a glass substrate using a pulsed laser tool.

  • The method involves using a pulsed laser tool to create a line-shaped modification on the glass substrate.
  • The laser tool moves in a predetermined pattern, with single steps in one direction and plural lateral steps in a perpendicular direction.
  • This pattern is repeated to create an assembly of line-shaped modifications in parallel rows on the glass substrate.
  • The structures are then formed from these parallel rows of line-shaped modifications.


Original Abstract Submitted

The present disclosure is directed to semiconductor dies and methods that provide a glass substrate, a pulsed laser tool to produce a line-shaped modification to the glass substrate for forming a plurality of structures in the glass substrate. The pulse laser tool may be provided with a predetermined pattern for its movement. The predetermined pattern moves the pulsed laser tool in a series of single steps in a first axial direction and in a series of plural lateral steps in a second axial direction that is perpendicular to the first axial direction, in particular, the single step is followed by the plural lateral steps in a repeating sequence. The series of plural lateral steps form an assembly of line-shaped modifications in parallel rows on the glass substrate, and thereafter the plurality of structures may be formed from the parallel rows of line-shaped modifications in the glass substrate.