EP1386355A2

Semiconductor chip having multiple conductive layers in an opening, and method for fabricating same

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 20 February 2022, 4.6 years ago.

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35 claims: 6 independent, 29 dependent

  1. 1
    Claims of equivalent WO 02078087 A2 CLAIMS What is claimed is:1. A circuit manufacturing method comprising: forming an opening in a first side of a semiconductor substrate, with a plurality of conductive layers overlaying each other in the opening, the conductive layers including a first conductive layer and a second conductive layer overlaying the first conductive layer such that the first and second conductive layers either (i) are separated by an insulating layer in the opening, or (ii) form a P-N junction in the opening, or (iii) form a Schottky junction in the opening;removing material from a second side of the semiconductor substrate to expose the second conductive layer in the opening on the second side of the substrate.
  2. 2
    The method of Claim 1 wherein the first and second conductive layers are separated by an insulating layer in the opening.
  3. 3
    The method of Claim 1 wherein the first conductive layer in the opening shields the substrate from an electromagnetic field created by an AC signal carried by the second conductive layer in the opening during operation of the circuit.
  4. 4
    The method of Claim 1 further comprising, before forming the first conductive layer, forming an insulating layer in the opening to insulate the first conductive layer from the substrate in the opening.
  5. 5
    The method of Claim 1 wherein the first conductive layer comprises a doped region of the semiconductor substrate occupying at least a portion of the sidewalls of the opening.
  6. 6
    The method of Claim 1 wherein the semiconductor substrate is processed to provide an integrated circuit, and an exposed portion of the second conductive layer serves as a contact pad of the integrated circuit.
  7. 7
    The method of Claim 1 wherein the semiconductor substrate is processed to provide an integrated circuit, and an exposed portion of the second conductive layer serves as an input, output, or input/output terminal of the integrated circuit.
  8. 8
    The method of Claim 1 wherein removing material from the second side comprises mechanical removal of the material, and wherein the second conductive layer is exposed in the opening on the second side during the mechanical removal of the material.
  9. 9
    The method of Claim 8 wherein mechanical removal of the material comprises chemical mechanical polishing.
  10. 10
    The method of Claim 1 wherein the conductive layers include a third conductive layer overlaying the second conductive layer and filling the opening;and wherein removal of the material from the second side comprises mechanical removal of the material, and wherein the third conductive layer is exposed in the opening on the second side during the mechanical removal of the material.
  11. 11
    The method of Claim 10 wherein the mechanical removal of the material is followed by an etch of material on the second side, and wherein at least one of the second and third conductive layers protrudes from the opening on the second side after the etch.
  12. 12
    The method of Claim 1 wherein after the removing of the material, the first and second conductive layers are exposed in the opening on the second side;and wherein the method further comprises, after said removing of the material, processing the second side with a chemical reagent or reagents that react with the semiconductor substrate and/or the first conductive layer and/or the second conductive layer to form an insulator.
  13. 13
    A circuit structure comprising a semiconductor substrate, an opening passing through the substrate between a first side of the substrate and a second side of the substrate, and a plurality of conductive layers which overlay sidewalls of the opening, wherein the conductive layers include a first conductive layer and a second conductive layer such that the first and second conductive layers either (i) are separated by an insulating layer in the opening, or (ii) form a P-N junction in the opening, or (iii) form a Schottky junction in the opening;wherein the first conductive layer surrounds the second conductive layer in the opening;wherein at least a portion of the second conductive layer is located at the second side;wherein said portion is not covered, when viewed from the second side, by either said substrate, or said insulating layer, or the first conductive layer;and wherein said portion is not covered, when viewed from the first side, by either said substrate, or said insulating layer, or the first conductive layer.
  14. 14
    The circuit structure of Claim 13 wherein the first and second conductive layers are separated by an insulating layer in the opening.
  15. 15
    The circuit structure of Claim 13 further comprising an insulator insulating the first conductive layer from the sidewalls of the opening.
  16. 16
    The circuit structure of Claim 13 wherein the conductive layers include one or more conductive layers surrounding the first conductive layer in the opening and insulated from the first conductive layer in the opening.
  17. 17
    The circuit structure of Claim 16 wherein said portion is not covered, when viewed from either the first side or the second side, by any one of said conductive layers surrounding the first conductive layer in the opening.
  18. 18
    The structure of Claim 13 wherein the conductive layers include a third conductive layer surrounded by the first and second conductive layers in the opening and filling the opening, wherein at least a portion of the third conductive layer is not covered, when viewed from the second side, by either said substrate, or by said insulating layer, or by the first and second conductive layers.
  19. 19
    The circuit structure of Claim 13 wherein the substrate has been processed to form at least a portion of a circuit element over the first side of the substrate and a transistor region in the substrate.
  20. 20
    A circuit manufacturing method comprising:forming an opening in a first side of a semiconductor substrate;forming at least three conductive layers overlaying each other in the opening, such that each two consecutive conductive layers either (i) are separated by an insulating layer in the opening, or (ii) form a P-N junction in the opening, or (iii) form a Schottky junction in the opening;removing material from a second side of the semiconductor substrate to expose at least one of said conductive layers in the opening on the second side of the substrate.
  21. 21
    The method of Claim 20 wherein all of said conductive layers are metal layers which are separated from each other by insulating layers in the opening.
  22. 22
    The method of Claim 20 wherein at least two of said conductive layers are connected through a permanent or programmable connection outside of the opening.
  23. 23
    A circuit manufacturing method comprising:forming an opening in a first side of a semiconductor substrate;forming a plurality of conductive layers overlaying each other in the opening, the conductive layers including a first conductive layer and a second conductive layer overlaying the first conductive layer such that the first and second conductive layers either (i) form a P-N junction, or (ii) form a Schottky diode junction;removing material from a second side of the semiconductor substrate to expose at least one of the first and second conductive layers on the second side.
  24. 24
    A circuit structure comprising:a semiconductor substrate, and an opening passing through the substrate between a first side of the substrate and a second side of the substrate;a plurality of conductive layers overlaying each other in the opening, the conductive layers including first and second conductive layers which either (i) form a P- N junction in the opening, or (ii) form a Schottky junction in the opening;wherein at least one of the first and second conductive layers is exposed on the second side.
  25. 25
    The circuit structure of Claim 24 wherein an exposed portion of one of the first and second conductive layers on the second side provides an input, output, or input/output terminal of an integrated circuit.
  26. 26
    A circuit structure comprising:a semiconductor substrate which has been processed to form at least a portion of a circuit element above the substrate;an opening passing through the substrate between a top side of the substrate and a bottom side of the substrate, and a plurality of conductive layers which overlay sidewalls of the opening, wherein the conductive layers include a first conductive layer and a second conductive layer which are separated by an insulating layer in the opening;wherein the first conductive layer surrounds the second conductive layer in the opening;wherein at least a portion of the second conductive layer is located on the bottom side of the substrate;wherein said portion is not covered, when viewed from below the substrate, by either said substrate, or said insulating layer, or the first conductive layer.
  27. 27
    The circuit structure of Claim 26 wherein the substrate comprises a transistor region.
  28. 28
    The circuit structure of Claim 13 or 26 wherein said portion of the second conductive layer provides an input, output, or input/output terminal of an integrated circuit.
  29. 29
    The circuit structure of Claim 26 further comprising an insulator insulating the first conductive layer from the sidewalls of the opening.
  30. 30
    The circuit structure of Claim 26 wherein:the conductive layers include one or more conductive layers surrounding the first conductive layer in the opening and insulated from the first conductive layer in the opening;and said portion is not covered, when viewed from the bottom side of the substrate, by any one of said conductive layers surrounding the first conductive layer in the opening.
  31. 31
    The circuit structure of Claim 13 or 26 wherein the first conductive layer comprises a doped region of the semiconductor substrate on the sidewalls of the opening.
  32. 32
    The structure of Claim 26 wherein the conductive layers include a third conductive layer surrounded by the first and second conductive layers in the opening and filling the opening, wherein at least a portion of the third conductive layer is not covered, when viewed from the bottom side of the substrate, by either said substrate, or by said insulating layer, or by the first and second conductive layers.
  33. 33
    The circuit structure of Claim 13 or 26 wherein the plurality of conductive layers include one or more conductive layers surrounded by the first and second conductive layers in the opening and separated from the first and second conductive layers by one or more insulating layers in the opening.
  34. 34
    The circuit structure of Claim 13 or 26 wherein the plurality of conductive layers include two or more conductive layers surrounded by the first and second conductive layers in the opening and separated from each other, and from the first and second conductive layers, by insulating layers in the opening.
  35. 35
    The circuit structure of Claim 13 or 26 wherein during operation the first conductive layer in the opening is held at a constant voltage.
Independent claims35