EP0961533A2

Circuit board and method of manufacturing the same

Abstract

Through holes (104) formed in an electrical insulating substrate (102) having adhesive layers (101) on its both surfaces are filled with a conductor (105). Then, supporting bases (106) having wiring layers (107) with a predetermined pattern are laminated on both the surfaces of the electrical insulating substrate (102), which are then heated and pressurized. After that, the supporting bases (106) are removed, thus obtaining a circuit board in which the wiring layers (107) have been embedded in the adhesive layers (101). The conductor (105) within the through holes (104) are compressed sufficiently, thus forming minute via holes with high reliability.

EP0961533A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 12 May 2019, 7.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

34 claims: 7 independent, 27 dependent

  1. 1
    A circuit board comprising:an electrical insulating substrate with through holes that are formed in a thickness direction of the electrical insulating substrate and are filled with a conductor;wiring layers that are formed on both surfaces of the electrical insulating substrate in a predetermined pattern and are electrically connected to each other by the conductor;and adhesive layers that are formed on both surfaces of the electrical insulating substrate, wherein at least one of the wiring layers is embedded in one of the adhesive layers.
  2. 4
    The circuit board according to any of claims 1 to 3, wherein the wiring layers are formed so that a part of the respective though holes is exposed.
  3. 5
    The circuit board according to any of claims 1 to 4, wherein at least a surface of each wiring layer facing the though holes is processed to be rough.
  4. 6
    A method of manufacturing a circuit board, comprising:providing though holes in an electrical insulating substrate having adhesive layers formed on its both surfaces;filling the though holes with a conductive paste;superposing a supporting base on which a wiring layer has been formed in a predetermined pattern at least on one surface of the electrical insulating substrate;embedding the wiring layer in an adhesive layer by compressing the electrical insulating substrate, on which the supporting base has been superposed, by heating and pressurization;and removing the supporting base while leaving the wiring layer.
  5. 7
    A method of manufacturing a circuit board, comprising:laminating release films, each of which has an adhesive layer on one surface, on both surfaces of an electrical insulating substrate so that both surfaces of the electrical insulating substrate come into contact with the adhesive layers;providing through holes in the electrical insulating substrate having the release films;filling the through holes with a conductive paste;peeling off the release films while leaving the adhesive layers on the electrical insulating substrate;superposing a supporting base, on which a wiring layer has been formed in a predetermined pattern, at least on one surface of the electrical insulating substrate;embedding the wiring layer in the adhesive layer by compressing the electrical insulating substrate, on which the supporting base has been superposed, by heating and pressurization;and removing the supporting base while leaving the wiring layer.
  6. 18
    A multilayer circuit board comprising:at least two electrical insulating substrates having through holes formed in a thickness direction and filled with a conductors;and an adhesive layer, wherein the electrical insulating substrates are laminated with the adhesive layer being sandwiched therebetween, the adhesive layer comprises a wiring layer formed in a predetermined pattern, and the wiring layer is electrically connected to the conductors in both the electrical insulating substrates sandwiching the wiring layer by applying a compressive force in a lamination direction.
  7. 19
    A method of manufacturing a multilayer circuit board formed by repeating the steps of:superposing a supporting base, on which a wiring layer has been formed in a predetermined pattern, on one surface of an electrical insulating substrate that has though holes filled with a conductive paste and adhesive layers on its both surfaces;embedding the wiring layer in an adhesive layer by applying a compressive force by heating and pressurization;and removing the supporting base while leaving the wiring layer.