20240027897. LAMINATE AND MANUFACTURING METHOD OF LAMINATE simplified abstract (FUJIFILM Corporation)

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LAMINATE AND MANUFACTURING METHOD OF LAMINATE

Organization Name

FUJIFILM Corporation

Inventor(s)

Yohei Aritoshi of Shizuoka (JP)

Kentaro Toyooka of Shizuoka (JP)

LAMINATE AND MANUFACTURING METHOD OF LAMINATE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240027897 titled 'LAMINATE AND MANUFACTURING METHOD OF LAMINATE

Simplified Explanation

The patent application describes a laminate consisting of a base material and a resin pattern. The intensity of sodium or potassium ions detected on the surface of the resin pattern is defined as 100%. The depth of presence of these ions in the resin pattern is between 0.3 μm to 3.0 μm, measured from the surface to the point where the intensity of the ions first reaches 90%. The patent also includes a method for manufacturing the laminate.

  • The laminate includes a base material and a resin pattern.
  • The intensity of sodium or potassium ions detected on the surface of the resin pattern is defined as 100%.
  • The depth of presence of these ions in the resin pattern is between 0.3 μm to 3.0 μm.
  • The depth of presence is measured from the surface of the resin pattern to the point where the intensity of the ions first reaches 90%.
  • The patent application also includes a method for manufacturing the laminate.

Potential Applications:

  • This technology could be used in the manufacturing of electronic devices, such as printed circuit boards, where precise control of ion presence is important.
  • It could also be applied in the production of optical components, where the resin pattern plays a crucial role in light transmission or reflection.

Problems Solved:

  • The patent addresses the need for precise control and measurement of sodium and potassium ions in a resin pattern.
  • It provides a method for determining the depth of presence of these ions, which can be useful in ensuring the quality and performance of the laminate.

Benefits:

  • The technology allows for accurate analysis and control of ion presence in the resin pattern.
  • It enables manufacturers to optimize the composition and properties of the laminate for specific applications.
  • The method for manufacturing the laminate provides a reproducible and reliable process.


Original Abstract Submitted

provided are a laminate including a base material and a resin pattern, in which, in a case where, based on a depth direction analysis of the resin pattern performed along a direction from the resin pattern toward the base material, an intensity of at least one component selected from the group consisting of a sodium ion and a potassium ion, which is detected on a surface of the resin pattern, is defined as 100%, a depth of presence of the at least one component selected from the group consisting of a sodium ion and a potassium ion in the resin pattern is 0.3 �m to 3.0 �m, the depth of presence being defined by a distance from the surface of the resin pattern to a point where the intensity of the at least one component selected from the group consisting of a sodium ion and a potassium ion first reaches 90%; and a manufacturing method of the laminate.