EP0518005A2

Via paste compositions and use thereof to form conductive vias in circuitized ceramic substrates.

Abstract

Improved via-filling compositions for producing conductive vias in circuitized ceramic substrates, particularly multilayer substrates, without cracking and/or loss of hermetic sealing. The via-filling compositions comprise pastes containing a mixture of (a) ceramic and/or glass spheres of substantially- uniform diameter between about 0.5 and 6 µm, (b) conductive metal particles or spheres having a maximum dimension or diameter between about 1/3 and 1/4 of the diameter of the ceramic and/or glass spheres, and (c) a binder vehicle. The formed conductive via bodies comprise a uniform conductive skeletal network of sintered metal particles densely packed within a uniform matrix of the co-sintered ceramic and/or glass spheres, which matrix is hermetically fused and integrated with ceramic layers forming the wall of the via in the ceramic circuit substrate.

EP0518005A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 18 March 2012, 14.5 years ago.

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17 claims: 6 independent, 11 dependent

  1. 1
    A cosinterable via-fill paste composition comprising a uniform mixture Of (a) spheres Of ceramic composition having a substantially-uniform average diameter between about 0.5 µm and 6 µm, (b) particles of low-resistive metal having a maximum size between about 1/3 and 1/4 the diameter of said ceramic spheres, and (c) a minor amount of an organic binder material in a volatile vehicle, said mixture containing a sufficient volume of said ceramic spheres to form densely packed via fill in which each of said spheres is in surface contact with at least two other spheres and a sufficient volume of said smaller metal particles to fill substantially all of the void spaces surrounding said ceramic spheres, whereby when said uniform mixture of spheres and metal particles is cosintered, there results a conductive via body comprising a continuous skeletal network of said metal contained within a matrix of ceramic composition.
  2. 8
    A composition according to anyone of claims 1 to 7 in which said organic binder material comprises ethyl cellulose.
  3. 9
    A process for producing a ceramic circuit structure comprising the steps of:(a) forming at least one self-supporting layer of a dielectric ceramic composition;(b) forming at least one via in at least one of said layers;(c) filling said via with a via-fill paste composition according to anyone of claims 1 to 8 comprising a mixture of contacting spheres of ceramic material;(d) heating the structure resulting after step (c) to a temperature above the glass transition temperature of the ceramic composition of said at least one layer and of said spheres but below about 1000°C, to cosinter said ceramic spheres, said metal particles and said at least one ceramic layer to form a ceramic circuit structure in which each via is filled with a conductive via body which is integrated with and hermetically sealed to said at least one ceramic layer and comprises a continuous skeletal network Of said metal contained within a ceramic matrix formed from said ceramic spheres, each said via body providing a conductive path.
  4. 10
    A process for producing a multilayer ceramic circuit structure comprising the steps of:(a) forming at least two self-supporting layers of dielectric ceramic composition;(b) forming at least one vertical via hole through at least one of said layers;(c) filling said via hole(s) with a via-fill paste composition according to anyone of claims 1 to 8;comprising a mixture of contacting spheres of ceramic material;(d) applying a thin electrically-conductive body to the surface of said layer(s) containing said via hole(s) to provide communication between said conductive body and said via-fill paste composition;(e) forming a laminate of said layers having said conductive body confined therebetween;and (f) heating said laminate to a temperature above the glass transition temperature of the ceramic composition of said layers and of said spheres but below about 1000°C, to cosinter said ceramic spheres, said metal particles and said ceramic layers to form a multilayer ceramic circuit structure in which each via hole is filled with a conductive via body which is integrated with and hermetically sealed to said ceramic layers and comprises a continuous skeletal network of said metal contained within a ceramic matrix formed from said ceramic spheres, each said via body providing a conductive path between a surface of said structure and at least one said conductive body insulated between said layers.
  5. 14
    A circuitized ceramic structure comprising at least one layer of dielectric ceramic composition and at least one via, said at least one via being filled with a conductive via body according to anyone of claims 1 to 8.
  6. 15
    A multilayer circuitized ceramic structure comprising at least two insulating layers of dielectric ceramic composition having insulated therebetween a thin electrically-conductive body, said structure having one or more vertical via holes formed through at least one insulating layer present at a surface of said structure and communicating with said electrically-conductive body, said via hole(s) being filled with a conductive via body according to anyone of claims 1 to 8.