Nova Patents
EP0841572A2

Wafer-level burn-in system

Abstract

The present invention relates to a system and method for performing reliability screening on semi-conductor wafers and particularly to a highly planar burn in apparatus and method for uses including wafer level burn-in (WLBI), diced die burn-in (DDBI), and packaged die burn-in (PDBI). The burn-in system includes a burn-in substrate with a planar base. a temporary Z-axis connecting member, and a Z-axis wafer level contact sheet electrically coupled to one another for screening wafers, diced die, and packaged electronic components, their assembly and use.

EP0841572A2, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Projected expiry passed 5 November 2017, 8.9 years ago.

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107 claims: 13 independent, 94 dependent

  1. 1
    A device for burn-in screening of integrated circuits having a plurality of contact pads, comprising:a high planarity base unit having a low CTE or matched composite CTE base unit with a plurality of first and second terminals at a lower surface thereof, said second terminals connectable to a test signal generator and said first terminals coupled to a wafer level contact sheet;and a laminated wafer level contact sheet including a Z-axis conductive layer and a plurality of uniformly configured conductive bumps on a lower surface thereof that register with contacts on a semiconductor wafer.
  2. 4
    The device according to any of claims 1 to 3, wherein said high planarity base unit further includes alternating conductive and dielectric layers.
  3. 26
    The device according to any of claims 23 to 25, wherein said nickel alloy contains about 36 wt% to about 40 wt% nickel.
  4. 27
    The device according to any of claims 23 to 26, wherein said nickel alloy has a coefficient of thermal expansion of between about less than 1 to about 4 ppm/°C.
  5. 39
    The device according to any of claims 23 to 38, wherein each nickel alloy sheet has upper and lower machine ground surfaces and is approximately 115 mils thick.
  6. 40
    The device according to any of claims 25 to 39, wherein each of said first and second dielectric layers is approximately 0.001 inch to 0.02 inches.
  7. 41
    The device according to any of claims 23 to 40, wherein said nickel alloy sheets have a dimension of between 6"x6" and 20"x20".
  8. 47
    The device according to any of claims 32 to 38, wherein said porous polymer has a void volume of between 50 and 90%.
  9. 63
    The device according to any of claims 2 to 62, wherein said Z-axis member includes a silicone elastomer.
  10. 75
    The contact device according to any of claims 65 to 74, wherein said porous, Z-axis layer is formed from a fluoropolymer substrate.
  11. 76
    The device according to any of claims 65 to 75, wherein said Z-axis layer includes an adhesive that has a T g of at least 200°C.
  12. 85
    The device according to any of claims 3 to 84, wherein said conductive pathways are formed from copper;nickel;silver;gold;platinum;palladium;rhodium;cobalt;aluminum or chromium.
  13. 97
    The device according to any of claims 91 to 96, wherein said filler includes silica.