WO1991018491A1 - Process for the production of a multilayer printed circuit board - Google Patents

Process for the production of a multilayer printed circuit board Download PDF

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Publication number
WO1991018491A1
WO1991018491A1 PCT/SE1991/000270 SE9100270W WO9118491A1 WO 1991018491 A1 WO1991018491 A1 WO 1991018491A1 SE 9100270 W SE9100270 W SE 9100270W WO 9118491 A1 WO9118491 A1 WO 9118491A1
Authority
WO
WIPO (PCT)
Prior art keywords
layers
resin
inner layers
printed circuit
circuit board
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/SE1991/000270
Other languages
French (fr)
Inventor
Jiri Masik
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Perstorp AB
Original Assignee
Perstorp AB
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Perstorp AB filed Critical Perstorp AB
Priority to US07/946,429 priority Critical patent/US5336353A/en
Priority to DE69113456T priority patent/DE69113456T2/en
Priority to EP91910236A priority patent/EP0528963B1/en
Priority to JP91509617A priority patent/JPH05507388A/en
Publication of WO1991018491A1 publication Critical patent/WO1991018491A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • H—ELECTRICITY
    • H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K3/00—Apparatus or processes for manufacturing printed circuits
    • H05K3/46—Manufacturing multilayer circuits
    • H05K3/4611—Manufacturing multilayer circuits by laminating two or more circuit boards
    • H05K3/4638—Aligning and fixing the circuit boards before lamination; Detecting or measuring the misalignment after lamination; Aligning external circuit patterns or via connections relative to internal circuits
    • H—ELECTRICITY
    • H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2203/00—Indexing scheme relating to apparatus or processes for manufacturing printed circuits covered by H05K3/00
    • H05K2203/02—Details related to mechanical or acoustic processing, e.g. drilling, punching, cutting, using ultrasound
    • H05K2203/0285—Using ultrasound, e.g. for cleaning, soldering or wet treatment
    • H—ELECTRICITY
    • H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2203/00—Indexing scheme relating to apparatus or processes for manufacturing printed circuits covered by H05K3/00
    • H05K2203/06—Lamination
    • H05K2203/065—Binding insulating layers without adhesive, e.g. by local heating or welding, before lamination of the whole PCB
    • H—ELECTRICITY
    • H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2203/00—Indexing scheme relating to apparatus or processes for manufacturing printed circuits covered by H05K3/00
    • H05K2203/10—Using electric, magnetic and electromagnetic fields; Using laser light
    • H05K2203/102—Using microwaves, e.g. for curing ink patterns or adhesive

Definitions

  • the present invention relates to a process for the production of a multilayer printed circuit board composed of several so-called inner layers each consisting of an insulating base of thin laminate of reinforcement material impregnated with thermosetting resin, said laminate preferably having a layer of metal or metal alloy on both sides, in which layers a wiring pattern has been formed and so-called prepreg sheets of reinforcement material impregnated with thermosetting resin, whereby the resin is not fully cured, which prepreg sheets are placed between the inner layers.
  • Multilayer printed circuit boards are used for advanced electronic purposes and they are often composed of two or more inner layers of the kind mentioned above with intermediate prepreg sheets.
  • one outer layer consisting of a laminate of the above kind having a thin layer of metal or metal alloy on one side is placed on each side of the stack of inner layers. The metal layer is directed outwards.
  • the outer layers consist of a thin foil of metal or metal alloy instead of the disclosed laminate.
  • Prepreg sheets are placed also between the outermost of the inner layers and the outer layers.
  • the wiring pattern on the different inner layers are centered carefully in respect of each other and that they are not displaced at the subsequent pressing under heat and pressure which is used for bonding the different inner layers, outer layers and prepreg sheets together to a multilayer printed circuit board.
  • the lamination holes are namely drilled through the different layers. Then the holes must land in the intended place of the wiring pattern in the different layers. If the layers are displaced a bit in respect of each other so that the holes will land outside the wiring pattern in any layer, the necessary electric connection between the different wiring patterns will not be achieved when the walls of the holes are subsequently metallized. This results in a very costly cassation of the whole multilayer printed circuit board.
  • the outermost metal layers of the multilayer printed circuit board produced are provided with a wiring pattern. Then the different conventional components can be mounted on the printed circuit board.
  • the different inner layers, the prepreg sheets and the outer layers are provided with holes. These holes are drilled with a careful precision and in such a way that the different wiring patterns land in a correct position above each other when turned rivets are inserted through the holes. With this technique a precision of 125/wm can be obtained. Thus, the present demand of needed at the production of multilayer printed circuit boards with close-packed signal circuits cannot be met. Therefore, often the cassation will reach 20 % which is wholly unacceptable from the viewpoint of costs.
  • the process comprises centering the inner layers in respect of each other and fixing them in position by pressing the different layers together along the two long sides. Energy is then supplied within a limited area along the two long sides, whereby the resin is heated and cured so that all layers are bonded together with each other, preferably in a few spots or minor areas. Then the package obtained is laminated under heat and pressure with prepreg sheets and conventional outer layers and/or foils of metal or metal alloy to a multilayer printed circuit board which is then completed in the usual way.
  • the layer of metal or metal alloy consists of copper or copper alloy.
  • the sheets will not be able to move at the subsequent laminating step which takes place at a high pressure and a high temperature. However, in certain cases it can be enough if the resin is only caused to cure to a certain degree from the final curing point.
  • microwaves are used for supplying the energy needed for binding the different layers together in certain spots.
  • microwaves are also possible to use for instance ultrasonics, hot air, infra-red radiation or the like instead.
  • the reinforcement material consists of glass cloth, glass mat, paper or carbon fibre cloth. However, also other materials can be used.
  • Epoxy resin, bismaleamine triazine epoxy resin, phenol-formaldehyde resin, polyimide resin and polyester resin constitute examples on suitable thermosetting resins which can be used according to the invention.
  • the reinforcement material in the inner layers as well as in the prepreg sheets consists of glass cloth impregnated with epoxy resin.
  • the resin in the prepreg sheets is not cured completely but usually to the so-called B-stage.
  • the inner layers are provided with sight marks.
  • these sight marks and cameras the inner layers can be centered in respect of each other.
  • other methods for centering the inner layers can be used.
  • An inner layer consisting of a laminate of two sheets of glass cloth impregnated with epoxy resin and a wiring pattern of copper on both sides was placed on a vacuum table and sucked firmly thereto. Two prepreg sheets of glass cloth impregnated with epoxy resin were placed on top of the first inner layer.
  • Another inner layer with the same composition as the first one was placed on top of the prepreg sheets.
  • the two inner layers were provided with sight marks. By means of these sight marks and two CCD-cameras the two inner layers were centered in respect of each other.
  • the package of inner layers and prepreg sheets was now pressed together in three spots along each side and then heated in these spots by means of microwave energy for about 12 seconds. Then the resin melted in these spots and cured so that the different sheets were bonded together with the wiring patterns on the two inner layers correctly centered in respect of each other.
  • prepreg sheets were placed on each side of the package obtained.
  • a laminate consisting of two sheets of glass cloth impregnated with epoxy resin and a copper foil with a thickness of 18 m was placed.
  • the copper foil was directed outwards from the package and it had no wiring pattern.
  • the whole package was placed in a press and pressed at a pressure of 40 kp/cm and a temperature of 185°C for 50 minutes.

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Production Of Multi-Layered Print Wiring Board (AREA)
  • Laminated Bodies (AREA)

Abstract

Process for the production of a multilayer printed circuit board composed of a plurality of so-called inner layers, each consisting of an insulating base of thin laminate of reinforcement material impregnated with thermosetting resin. The laminate is preferably provided with a layer of metal or metal alloy on both sides, in which layers a wiring pattern has been formed. Prepreg sheets of reinforcement material impregnated with thermosetting resin are placed between the inner layers. The resin is not fully cured. The inner layers are centered in respect of each other and fixed in this position by pressing the different sheets together along the long sides. Energy is then supplied within a limited area along the two long sides. Thereby the resin is heated and cured so that all sheets are bonded together with each other, preferably in a few spots or minor areas. The package obtained is then laminated under heat and pressure together with conventional outer layers and/or foils of metal or metal alloy to a multilayer printed circuit board which is then completed in the usual way.

Description

Process for the production of a multilayer printed circuit board
The present invention relates to a process for the production of a multilayer printed circuit board composed of several so-called inner layers each consisting of an insulating base of thin laminate of reinforcement material impregnated with thermosetting resin, said laminate preferably having a layer of metal or metal alloy on both sides, in which layers a wiring pattern has been formed and so-called prepreg sheets of reinforcement material impregnated with thermosetting resin, whereby the resin is not fully cured, which prepreg sheets are placed between the inner layers.
Multilayer printed circuit boards are used for advanced electronic purposes and they are often composed of two or more inner layers of the kind mentioned above with intermediate prepreg sheets. In addition one outer layer consisting of a laminate of the above kind having a thin layer of metal or metal alloy on one side is placed on each side of the stack of inner layers. The metal layer is directed outwards. In certain cases the outer layers consist of a thin foil of metal or metal alloy instead of the disclosed laminate. Prepreg sheets are placed also between the outermost of the inner layers and the outer layers.
It is very important that the wiring pattern on the different inner layers are centered carefully in respect of each other and that they are not displaced at the subsequent pressing under heat and pressure which is used for bonding the different inner layers, outer layers and prepreg sheets together to a multilayer printed circuit board. After the lamination holes are namely drilled through the different layers. Then the holes must land in the intended place of the wiring pattern in the different layers. If the layers are displaced a bit in respect of each other so that the holes will land outside the wiring pattern in any layer, the necessary electric connection between the different wiring patterns will not be achieved when the walls of the holes are subsequently metallized. This results in a very costly cassation of the whole multilayer printed circuit board.
The outermost metal layers of the multilayer printed circuit board produced are provided with a wiring pattern. Then the different conventional components can be mounted on the printed circuit board.
Efforts have been in different ways to solve the above problem with the costly cassation. According to one known method the different inner layers, the prepreg sheets and the outer layers are provided with holes. These holes are drilled with a careful precision and in such a way that the different wiring patterns land in a correct position above each other when turned rivets are inserted through the holes. With this technique a precision of 125/wm can be obtained. Thus, the present demand of
Figure imgf000004_0001
needed at the production of multilayer printed circuit boards with close-packed signal circuits cannot be met. Therefore, often the cassation will reach 20 % which is wholly unacceptable from the viewpoint of costs.
According to the present invention it has been possible to solve the above cassation problem and bring about a process for the production of a multilayer printed circuit board composed of a plurality of so-called inner layers, each consisting of an insulating base of thin laminate of reinforcement material impregnated with thermosetting resin said laminate preferably being provided with a layer of metal or metal alloy on both sides. In these layers a wiring pattern has been formed. So-called prepreg sheets of reinforcement material impregnated with thermosetting material are placed between the inner layers. The resin in the prepregs is not fully cured.
The process comprises centering the inner layers in respect of each other and fixing them in position by pressing the different layers together along the two long sides. Energy is then supplied within a limited area along the two long sides, whereby the resin is heated and cured so that all layers are bonded together with each other, preferably in a few spots or minor areas. Then the package obtained is laminated under heat and pressure with prepreg sheets and conventional outer layers and/or foils of metal or metal alloy to a multilayer printed circuit board which is then completed in the usual way.
Preferably the layer of metal or metal alloy consists of copper or copper alloy.
Normally, no high pressure is needed when the different inner layers with intermediate prepreg sheets are pressed together for then being bonded together in certain spots. It is enough if all layers have a good contact with each other so that the resin in the different layers at the heating will bind the sheets together in certain spots.
Often it is preferably to get a final curing of the resin in said spots. Then the sheets will not be able to move at the subsequent laminating step which takes place at a high pressure and a high temperature. However, in certain cases it can be enough if the resin is only caused to cure to a certain degree from the final curing point.
At a preferred embodiment of the invention microwaves are used for supplying the energy needed for binding the different layers together in certain spots. However, it is also possible to use for instance ultrasonics, hot air, infra-red radiation or the like instead.
Normally the reinforcement material consists of glass cloth, glass mat, paper or carbon fibre cloth. However, also other materials can be used.
Epoxy resin, bismaleamine triazine epoxy resin, phenol-formaldehyde resin, polyimide resin and polyester resin constitute examples on suitable thermosetting resins which can be used according to the invention.
Preferably the reinforcement material in the inner layers as well as in the prepreg sheets consists of glass cloth impregnated with epoxy resin. As mentioned above the resin in the prepreg sheets is not cured completely but usually to the so-called B-stage.
Suitably the inner layers are provided with sight marks. By means of these sight marks and cameras the inner layers can be centered in respect of each other. However, also other methods for centering the inner layers can be used.
The invention will be further explained in connection with the embodiment example below. Example
An inner layer consisting of a laminate of two sheets of glass cloth impregnated with epoxy resin and a wiring pattern of copper on both sides was placed on a vacuum table and sucked firmly thereto. Two prepreg sheets of glass cloth impregnated with epoxy resin were placed on top of the first inner layer.
Another inner layer with the same composition as the first one was placed on top of the prepreg sheets. The two inner layers were provided with sight marks. By means of these sight marks and two CCD-cameras the two inner layers were centered in respect of each other.
The package of inner layers and prepreg sheets was now pressed together in three spots along each side and then heated in these spots by means of microwave energy for about 12 seconds. Then the resin melted in these spots and cured so that the different sheets were bonded together with the wiring patterns on the two inner layers correctly centered in respect of each other.
Two prepreg sheets were placed on each side of the package obtained. On top of prepreg sheets a laminate consisting of two sheets of glass cloth impregnated with epoxy resin and a copper foil with a thickness of 18 m was placed. The copper foil was directed outwards from the package and it had no wiring pattern.
The whole package was placed in a press and pressed at a pressure of 40 kp/cm and a temperature of 185°C for 50 minutes.
In the multilayer printed circuit board connecting holes for the inner layers were drilled. The holes were metallized whereupon a wiring pattern was etched in the outer layers of copper foil. The connection between the inner layers passed the standards. The multilayer printed circuit board could then be completed in the usual way.
The invention is not limited to the embodiments shown, since these can be modified in different ways within the scope of the invention.

Claims

Claims
1. Process for the production of a multilayer printed circuit board composed of a plurality of so-called inner layers, each consisting of an insulating base of thin laminate of reinforcement material impregnated with thermosetting resin said laminate preferably being provided with a layer of metal or metal alloy on both sides, in which layers a wiring pattern has been formed and so-called prepreg sheets of reinforcement material impregnated with thermosetting resin, whereby the resin is not fully cured, which prepreg sheets are placed between the inner layers, which comprises centering the inner layers in respect of each other and fixing them in this position by pressing the different layers to¬ gether along the two long sides, whereupon energy is supplied within a limited area along the two long sides, whereby the resin is heated and cured so that all layers are bonded together with each other, prefe¬ rably in a few spots or minor areas, whereupon the package obtained is laminated under heat and pressure together with prepreg sheets and ordinary outer layers and/or foils of metal or metal alloy to a multilayer printed circuit board which is completed in the usual way.
2. Process according to claim 1, wherein the energy used for bonding the different layers together is provided by means of microwaves, ultrasonics, hot air, infra-red radiation or the like.
3. Process according to claim 1 or 2, wherein the rein¬ forcement material consists of glass cloth, glass mat, paper or carbon fibre cloth. Process according to any one of claims 1-3, wherein the thermosetting resin used consists of epoxy resin, phenol-formaldehyde resin, polyimide resin, polyester resin or bismaleamine triazine epoxy resin.
Process according to any one of claims 1-4, wherein the reinforcement material in the inner layers as well as in the prepreg sheets consists of glass cloth impregna¬ ted with epoxy resin.
Process according to any one of claims 1-5, wherein the inner layers are provided with sight marks which are used together with cameras for centering the inner layers in respect of each other.
PCT/SE1991/000270 1990-05-16 1991-04-17 Process for the production of a multilayer printed circuit board Ceased WO1991018491A1 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US07/946,429 US5336353A (en) 1990-05-16 1991-04-17 Process for the production of a multilayer printed circuit board
DE69113456T DE69113456T2 (en) 1990-05-16 1991-04-17 METHOD FOR PRODUCING A MULTI-LAYER BOARD.
EP91910236A EP0528963B1 (en) 1990-05-16 1991-04-17 Process for the production of a multilayer printed circuit board
JP91509617A JPH05507388A (en) 1990-05-16 1991-04-17 Method of manufacturing multilayer printed circuit board

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
SE9001766-6 1990-05-16
SE9001766A SE9001766L (en) 1990-05-16 1990-05-16 SET ON MANUFACTURE OF MULTI-LAYER PATTERN CARDS

Publications (1)

Publication Number Publication Date
WO1991018491A1 true WO1991018491A1 (en) 1991-11-28

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PCT/SE1991/000270 Ceased WO1991018491A1 (en) 1990-05-16 1991-04-17 Process for the production of a multilayer printed circuit board

Country Status (8)

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US (1) US5336353A (en)
EP (1) EP0528963B1 (en)
JP (1) JPH05507388A (en)
AT (1) ATE128598T1 (en)
AU (1) AU7970691A (en)
DE (1) DE69113456T2 (en)
SE (1) SE9001766L (en)
WO (1) WO1991018491A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0800337A1 (en) * 1996-04-05 1997-10-08 SO.MA.CI.S. - S.p.A. Blocking system for holding multilayer printed circuit boards in place during polymerisation of the intermediate insulating sheets

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19958644A1 (en) * 1999-12-06 2001-10-04 Schweizer Electronic Ag Method and device for producing multilayers
US6682802B2 (en) * 2000-12-14 2004-01-27 Intel Corporation Selective PCB stiffening with preferentially oriented fibers
EP1220590A1 (en) * 2000-12-22 2002-07-03 TAPEMATIC S.p.A. A process for making multilayered cards for printed circuits
JP2005026608A (en) * 2003-07-02 2005-01-27 Tokyo Electron Ltd Joining method and joining apparatus
CN112533400B (en) * 2019-09-19 2022-04-15 宏启胜精密电子(秦皇岛)有限公司 Method for manufacturing circuit board

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3240754A1 (en) * 1981-11-06 1983-05-19 Sumitomo Bakelite Co. Ltd., Tokyo Printed circuit having a plurality of layers, and a method for its production
DE3423181A1 (en) * 1984-06-22 1986-01-02 Dielektra GmbH, 5000 Köln METHOD FOR PRODUCING PRE-LAMINATES FOR MULTIPLE-LAYER PCB
DE2917472C2 (en) * 1979-04-30 1986-10-16 Telefonbau Und Normalzeit Gmbh, 6000 Frankfurt Non-pinned multi-layer printed circuit board and process for its manufacture

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US4481533A (en) * 1981-11-27 1984-11-06 Lenkeit Industries, Inc. Method and apparatus for successively positioning sheets of material with precision for punching aligning holes in the sheets enabling the sheets to be used in the manufacture of composite circuit boards
US4702785A (en) * 1985-06-24 1987-10-27 President Engineering Corporation Process for manufacturing multilayer PC boards
JPS62233211A (en) * 1986-04-02 1987-10-13 Matsushita Electric Works Ltd Manufacture of laminated sheet
JPH072392B2 (en) * 1986-07-18 1995-01-18 日立化成工業株式会社 Laminate
JPH0728127B2 (en) * 1986-08-28 1995-03-29 東芝ケミカル株式会社 Method for manufacturing multilayer circuit laminate
JPH0298195A (en) * 1988-10-04 1990-04-10 Mitsubishi Electric Corp Manufacture of multilayer printed board

Patent Citations (3)

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Publication number Priority date Publication date Assignee Title
DE2917472C2 (en) * 1979-04-30 1986-10-16 Telefonbau Und Normalzeit Gmbh, 6000 Frankfurt Non-pinned multi-layer printed circuit board and process for its manufacture
DE3240754A1 (en) * 1981-11-06 1983-05-19 Sumitomo Bakelite Co. Ltd., Tokyo Printed circuit having a plurality of layers, and a method for its production
DE3423181A1 (en) * 1984-06-22 1986-01-02 Dielektra GmbH, 5000 Köln METHOD FOR PRODUCING PRE-LAMINATES FOR MULTIPLE-LAYER PCB

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
IBM Technical Disclosure Bulletin, Vol. 27, No. 8, January 1985, page 4841. *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0800337A1 (en) * 1996-04-05 1997-10-08 SO.MA.CI.S. - S.p.A. Blocking system for holding multilayer printed circuit boards in place during polymerisation of the intermediate insulating sheets

Also Published As

Publication number Publication date
SE465399B (en) 1991-09-02
DE69113456D1 (en) 1995-11-02
JPH05507388A (en) 1993-10-21
SE9001766L (en) 1991-09-02
EP0528963A1 (en) 1993-03-03
EP0528963B1 (en) 1995-09-27
ATE128598T1 (en) 1995-10-15
DE69113456T2 (en) 1996-04-04
AU7970691A (en) 1991-12-10
US5336353A (en) 1994-08-09
SE9001766D0 (en) 1990-05-16

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