EP0805614A1

Multilayered wiring board, prefabricated material for multilayered wiring board, process of manufacturing multilayered wiring board, electronic parts package, and method for forming conductive pillar

Abstract

A multilayered wiring board using conductive pillars for the interconnection of wiring layers. Since through holes are bored in the via lands of the wiring layers of the multilayered wiring board, the stress applied between the conductive pillars and wiring layers can be released at the time of connecting the conducive pillars to the via lands. Since the external side face of each conductive pillar smoothly continues to the surface of the via land at the contact section between the conductive pillar and the via land, the notch effect is relieved. Therefore, the reliability of the interconnection is secured even when a stress is applied to the connections during the manufacturing of the multilayered wiring board, and the mounting of electronic parts, etc.

EP0805614A1, drawing sheet 1
Sheet 1 of 40

Term

Term ended

Projected expiry passed 18 November 2016, 9.8 years ago.

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

63 claims: 13 independent, 50 dependent

  1. 1
    A multilayer wiring board having a lamination of wiring layers and at least an insulating layer, comprising:a first insulating layer having a first face;a first wiring layer formed on the first face of the first insulating layer, the first wiring layer having a first via land, and the first via land having a through hole;a second wiring layer formed on the first wiring layer;a second via land formed on the second insulating layer in face with the first via land;and a conductive pillar connecting the first via land and the second via land, the pillar having an intruded zone in the first insulating layer through the hole of the first via land.
  2. 7
    A multilayer wiring board having a lamination of wiring layers and at least an insulating layer, comprising:a first insulating layer having a first face;a first wiring layer formed on the first face of the first insulating layer, the first wiring layer having a first via land;a second insulating layer formed on the first wiring layer;a second via land formed on the second insulating layer, and the second via land formed in face with the first via land;a conductive pillar connecting the first via land and the second via land;and a stress releasing means formed in the first or the second via land for releasing a stress applied perpendicular to the surface of the first or the second via land.
  3. 14
    A multilayer wiring board having a lamination of a wiring layer and an insulating layer, comprising:an insulating layer having a first face and a second face;a first wiring layer formed on the first face of the insulating layer, and the first wiring layer having a first via land;a second wiring layer formed on the second face of the insulating layer, the second wiring layer having a second via land, and the second via land formed in face with the first via land;and a conductive pillar connecting the first via land and the second via land,    wherein the contact portion of the outer side surface of the conductive pillar and the surface of the first and the second via land having a shape so as to relax a stress concentration applied between the conductive pillar and the first and the second via land.
  4. 23
    A prefabricated material for a multilayer wiring board, comprising:a conductor layer;a conductive pillar formed on the conductor layer, the conductive pillar having substantially conical shape;a insulating layer formed so that a part of the conductive pillar is exposed on the insulating layer, the insulating layer is made of a uncured insulating resin,    wherein the height of the conductive pillar h is approximately in the range from 1.2d to 5d when taking the thickness of the insulating layer as d.
  5. 26
    A method for manufacturing a multilayer wiring board, comprising:a step of forming a first wiring layer having a first via land with a stress releasing means on a first insulating layer;a step of forming a conductive pillar having a substantially conical shape at a region of a conductor layer in face with the first via land when opposed to the first wiring layer;a step of arranging the first insulating layer and the conductor layer so as to face the first via land with the conductive pillar;and a step of pressing the first insulating layer and the conductor layer in the axial direction of the conductive pillar so as to connect the first via land and the conductive pillar.
  6. 28
    A method for manufacturing a multilayer wiring board, comprising:a step of forming a first wiring layer having a first via land with a stress releasing means on a first face of a first insulating layer;a step of forming a conductive pillar having a substantially conical shape on a first via land;a step of laminating a second insulating layer made of an uncured resin so that a part of the conductive pillar is exposed;a step of opposing the first face of the first insulating layer and a conductor layer;and a step of pressing the first insulating layer and the conductor layer in the axial direction of the conductive pillar so as to connect the conductive pillar and the conductor layer.
  7. 30
    A method for manufacturing a multilayer wiring board, comprising:a step of forming a first wiring layer having a first via land with a stress releasing means on a first face of a first insulating layer;a step of forming a first conductive pillar having a substantially conical shape on the first via land;a step of forming a second conductive pillar having a substantially conical shape at a region of a conductor layer in face with the first conductive pillar when opposed to the first wiring layer;a step of arranging a second insulating layer made of an uncured resin intervened between the first insulating layer and the conductor layer so as to face the first conductive pillar with the second conductive pillar;and a step of pressing the first insulating layer and the conductor layer in the axial direction of the conductive pillar so as to connect the first conductive pillar and the second conductive pillar.
  8. 32
    A method for manufacturing a multilayer wiring board, comprising:a step of forming a first conductive pillar having a substantially conical shape on a first conductor layer so that the contact portion of the outer side surface of the conductive pillar and the first conductor layer having a shape so as to relax a stress concentration applied between the conductive pillar and the second conductive layer;a step of laminating a insulating layer made of an uncured resin so that a part of the conductive pillar is exposed;a step of pressing the conductive pillar in its axial direction so that the exposed part of the conductive pillar is plastically crushed;a step of arranging a second conductor layer on the insulating layer;a step of pressing the first conductor layer and the second conductor layer being connected in the axial direction of the conductive pillar;and a step of curing the insulating layer.
  9. 37
    A method for manufacturing a multilayer wiring board, comprising:a step of forming a first conductive pillar on a first conductor layer so that a contact portion of the outer side surface of the first conductive pillar and the first conductor layer having a part smoothly continuous;a step of forming a second conductive pillar on a second conductor layer so that a contact portion of the outer side surface of the second conductive pillar and the second conductor layer having a part smoothly continuous;a step of arranging a insulating layer made of an uncured resin intervened between the first and the second conductor layer so as to face the first conductive pillar with the second conductive pillar;a step of pressing the first and the second conductor layer in the axial direction of the conductive pillar so as to connect the first conductive pillar and the second conductive pillar;and a step of curing the insulating layer.
  10. 40
    An electronic element, comprising:an electrode formed on a first face of the electronic element;and, a conductive pillar formed on the electrode of the electronic element;wherein the contact portion of the outer side surface of the conductive pillar and the surface of the electrode having a shape so as to relax a stress concentration applied between the conductive pillar and the electrode.
  11. 44
    An electronic element package, comprising:an electronic element having an electrode formed on a first face of the electronic element;and a wiring board comprises a first insulating layer having a first face and a second face, the first face of the insulating layer is faced with the first face of the electronic element, a first wiring layer formed on the second face of the first insulating layer, the first wiring layer having a first via land, and a first conductive pillar connecting the first via land and the electrode.
  12. 51
    An electronic element package, comprising:an electronic element having an electrode formed on a first face of the electronic element;and a wiring board, comprises a first insulating layer having a first face and a second face, the first face of the insulating layer is faced with the first face of the electronic element, a first wiring layer formed on the second face of the first insulating layer, the first wiring layer having a first via land, and a first conductive pillar connecting the first via land and the electrode a second insulating layer having a first face and a second face, the first face of the second insulating layer is faced with the second face of the first insulating layer, a second wiring layer formed on the second face of the second insulating layer, the second wiring layer having a second via land, and a second conductive pillar connecting the first via land and the second via land.
  13. 58
    A method for forming a conductive pillar, comprising the steps of:a step of arranging a mask having a through hole onto a conductor layer, the shape of the through hole of the mask is substantially cylindrical;a step of filling a conductive resin into the through hole of the mask;and a step of removing the mask and the conductor layer each other in the normal direction of the conductor layer.