EP1536673A1

Composite multi-layer substrate and module using the substrate

Abstract

A composite multi-layer substrate (20) comprising a flat plate-like core member (21) formed of a material having an excellent electric conductivity, an excellent heat conductivity, and a high rigidity, a front resin layer (22) and a rear resin layer (23) covering at least the front and rear surfaces of the core member (21), and a bottomless hole (24) formed in the core member (21) through the front and rear sides of the core member (21), wherein an electronic component (25) is installed in the bottomless hole (24), whereby since the strength of the composite multi-layer substrate (20) can be assured by the rigidity of the core member (21), conventional prior art glass cloth can be eliminated, deterioration in the electric characteristics caused by ion migration can be avoided and will result in reduced production cost.

EP1536673A1, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 27 May 2023, 3.3 years ago.

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

10 claims: 8 independent, 2 dependent

  1. 1
    A composite multi-layer substrate (20) comprising:a flat plate-like core member (21) formed of a material having excellent electric conductivity, excellent heat conductivity and high rigidity;a front side resin layer (22) and a rear side resin layer (23) covering at least a front surface and a rear surface of said core member(21);and a bottomless hole (24) formed in said core member (21) penetrates said front and rear of said core member (21), wherein an electronic component (25) is mounted in said bottomless hole (24).
  2. 2
    A composite multi-layer substrate (20) comprising:a flat plate-like core member (21) formed of a material having excellent electrical conductivity, excellent heat conductivity and high rigidity;a front side resin layer (22) and a rear side resin layer(23) covering at least a front surface and a rear surface of said core member;and a flat bottomed hole (26) formed in said core member (21) opening in either said front surface side or rear surface side of said core member (21) wherein an electronic component (25) is mounted in said flat bottomed hole (26).
  3. 3
    The composite multi-layer substrate (20) according to claims 1 or 2, wherein said core member (21) is characterized by a metallic core material.
  4. 4
    The composite multi-layer substrate (20) according to claims 1 or 2, further comprises a side surface resin material which covers the side surfaces of said core member (21);and    said core member (21) is entirely covered by said side surface resin material, said front side resin layer and said rear side resin layer.
  5. 5
    The composite multi-layer substrate (20) according to claims 1 through 4, comprises a column segment (33) which divides the structure of said core member (21) and penetrates said front and rear surfaces in the thickness direction of said core member (21);and    said column segment (33) is used as part of an electrical signal transmission path or a power supply voltage transmission path to the direction of the front and rear surfaces of said substrate (20).
  6. 6
    The composite multi-layer substrate (20) according to claims 1 or 2, wherein said core member (21) is used as a heat dissipation path of an electronic component through the inner wall of said bottomless hole (24) or said flat bottomed hole (26) when an electronic component is mounted in said bottomless hole (24) or said flat bottomed hole (26).
  7. 7
    The composite multi-layer substrate (20) according to claims 1 or 2, wherein the upper surface height position of an electronic component after mounting in said bottomless hole (24) or said bottomed hole (26), at least, does not cross the upper surface height position of said core member (21).
  8. 10
    A module is constituted using said composite multi-layer substrate (20) in claims 1 through 9.