Nova Patents
US20030193088A1

Untitled record

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Integrated circuit packages that connect solder balls between solder ball pads of a die and substrate pads of a printed circuit board (PCB). The solder balls are electrically disconnected from any circuit of the die, i.e., "dummy" solder balls, and are used to temporarily hold the die in position with respect to the PCB until the circuit is wire bonded and an underfill material is cured between the die and the PCB to more permanently connect them together. The underfill material is selected to have a coefficient of thermal expansion (CTE) that is substantially equal to the CTE of the solder balls to prevent thermal mismatch problems. An overmolding compound is disposed about the die and the underfill material and about the wire bonds to complete the package. Various arrangements of the solder ball pads on the die include columnar and row, corner, diagonal, cross, and periphery arrangements. Integrated circuit packages that connect solder balls between solder ball pads of a die and substrate pads of a printed circuit board (PCB). The solder balls are electrically disconnected from any circuit of the die, i.e., "dummy" solder balls, and are used to temporarily hold the die in position with respect to the PCB until the circuit is wire bonded and an underfill material is cured between the die and the PCB to more permanently connect them together. The underfill material is selected to have a coefficient of thermal expansion (CTE) that is substantially equal to the CTE of the solder balls to prevent thermal mismatch problems. An overmolding compound is disposed about the die and the underfill material and about the wire bonds to complete the package. Various arrangements of the solder ball pads on the die include columnar and row, corner, diagonal, cross, and periphery arrangements.

US20030193088A1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 15 April 2022, 4.4 years ago.

  1. Priority and filed
  2. Published
  3. Projected expiry
  4. Today

53 claims: 12 independent, 41 dependent

  1. 1
    Broadest claimClaim Score 94, very broad(NHIP)An apparatus, comprising:a die having a circuit;a solder ball pad;and a solder ball on the solder ball pad, the solder ball being electrically disconnected from the circuit.
  2. 1
    Broadest claimClaim Score 94, very broad(NHIP)An apparatus, comprising:a die having a circuit;a solder ball pad;and a solder ball on the solder ball pad, the solder ball being electrically disconnected from the circuit.
  3. 5
    An apparatus, comprising:a plurality of solder balls;a printed circuit board having a plurality of substrate pads;and a die having a circuit and a plurality of solder ball pads, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit.
  4. 5
    An apparatus, comprising:a plurality of solder balls;a printed circuit board having a plurality of substrate pads;and a die having a circuit and a plurality of solder ball pads, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit.
  5. 13
    An integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a plurality of substrate pads;a die having a circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die to the printed circuit board.
  6. 13
    An integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a plurality of substrate pads;a die having a circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die to the printed circuit board.
  7. 18
    A board-on-chip semiconductor integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a slot and a plurality of substrate pads, a die having a circuit wire bonded to the printed circuit board and a plurality of solder balls pads arranged about the die on a circuit side thereof such that when the die and the printed circuit board are brought into proximity with one another the plurality of solder ball pads are not disposed adjacent to the slot, each of the plurality of solder balls being connected between one of the plurality of substrate pads and one of the plurality of solder ball pads, each of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die and the printed circuit board.
  8. 18
    A board-on-chip semiconductor integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a slot and a plurality of substrate pads, a die having a circuit wire bonded to the printed circuit board and a plurality of solder balls pads arranged about the die on a circuit side thereof such that when the die and the printed circuit board are brought into proximity with one another the plurality of solder ball pads are not disposed adjacent to the slot, each of the plurality of solder balls being connected between one of the plurality of substrate pads and one of the plurality of solder ball pads, each of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die and the printed circuit board.
  9. 20
    A board-on-chip semiconductor integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a plurality of slots and a plurality of substrate pads;a plurality of dies each having a circuit wire bonded to the printed circuit board via one of the slots and a plurality of solder balls pads arranged about the die on a circuit side thereof such that when the die and the printed circuit board are brought into proximity with one another the plurality of solder ball pads are not disposed adjacent to the slot, each of the plurality of solder balls being connected between one of the plurality of substrate pads and one of the plurality of solder ball pads, each of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting each of the plurality of dies and the printed circuit board.
  10. 20
    A board-on-chip semiconductor integrated circuit package, comprising:a plurality of solder balls;a printed circuit board having a plurality of slots and a plurality of substrate pads;a plurality of dies each having a circuit wire bonded to the printed circuit board via one of the slots and a plurality of solder balls pads arranged about the die on a circuit side thereof such that when the die and the printed circuit board are brought into proximity with one another the plurality of solder ball pads are not disposed adjacent to the slot, each of the plurality of solder balls being connected between one of the plurality of substrate pads and one of the plurality of solder ball pads, each of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting each of the plurality of dies and the printed circuit board.
  11. 22
    A method, comprising:providing a die having a circuit;forming a solder ball pad on the die;and forming a solder ball on the solder ball pad, the solder ball being formed in an electrically disconnected manner from the circuit.
  12. 22
    A method, comprising:providing a die having a circuit;forming a solder ball pad on the die;and forming a solder ball on the solder ball pad, the solder ball being formed in an electrically disconnected manner from the circuit.
  13. 28
    A method, comprising:providing a die having a circuit;depositing a solder ball pad on a circuit side of the die;evaporating a solder ball on the solder ball pad, the solder ball being formed in an electrically disconnected manner from the circuit;providing a printed circuit board with a substrate pad thereon;connecting the solder ball the substrate pad;and disposing an underfill material between the die and the printed circuit board.
  14. 28
    A method, comprising:providing a die having a circuit;depositing a solder ball pad on a circuit side of the die;evaporating a solder ball on the solder ball pad, the solder ball being formed in an electrically disconnected manner from the circuit;providing a printed circuit board with a substrate pad thereon;connecting the solder ball the substrate pad;and disposing an underfill material between the die and the printed circuit board.
  15. 34
    A method of forming an integrated circuit package, comprising:providing a die having a circuit;forming a plurality of solder ball pads on a circuit side of the die;forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from the circuit at a position on the die having no electrical connection;providing a printed circuit board with a plurality of substrate pads thereon;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding the circuit to the printed circuit board;disposing an underfill material between the die and the printed circuit board and substantially about the plurality of solder balls;and curing the underfill material.
  16. 34
    A method of forming an integrated circuit package, comprising:providing a die having a circuit;forming a plurality of solder ball pads on a circuit side of the die;forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from the circuit at a position on the die having no electrical connection;providing a printed circuit board with a plurality of substrate pads thereon;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding the circuit to the printed circuit board;disposing an underfill material between the die and the printed circuit board and substantially about the plurality of solder balls;and curing the underfill material.
  17. 39
    A method of forming a board-on-chip semiconductor integrated circuit package, comprising:providing a die having a circuit;forming a plurality of solder ball pads on a circuit side of the die about a periphery thereof, forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from the circuit, the plurality of solder balls having a substantially equal first coefficient of thermal expansion;providing a printed circuit board having a slot and a plurality of substrate pads thereon;bringing the printed circuit board and die into proximity with one another, the plurality of solder ball pads not being adjacent to the slot;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding the circuit to the printed circuit board;disposing an underfill material between the die and the printed circuit board and substantially about the plurality of solder balls, the underfill material having a second coefficient of thermal expansion substantially equal to the first coefficient of thermal expansion;curing the underfill material so that the die and the printed circuit board become connected;and disposing an overmolding compound substantially about the die and the underfill material.
  18. 39
    A method of forming a board-on-chip semiconductor integrated circuit package, comprising:providing a die having a circuit;forming a plurality of solder ball pads on a circuit side of the die about a periphery thereof, forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from the circuit, the plurality of solder balls having a substantially equal first coefficient of thermal expansion;providing a printed circuit board having a slot and a plurality of substrate pads thereon;bringing the printed circuit board and die into proximity with one another, the plurality of solder ball pads not being adjacent to the slot;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding the circuit to the printed circuit board;disposing an underfill material between the die and the printed circuit board and substantially about the plurality of solder balls, the underfill material having a second coefficient of thermal expansion substantially equal to the first coefficient of thermal expansion;curing the underfill material so that the die and the printed circuit board become connected;and disposing an overmolding compound substantially about the die and the underfill material.
  19. 43
    A method of forming a board-on-chip semiconductor integrated circuit package, comprising:providing a plurality of dies, each having a circuit;forming a plurality of solder ball pads on a circuit side of each of the plurality of dies about a periphery thereof;forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from each of the circuits;providing a printed circuit board having a plurality of slots and a plurality of substrate pads thereon;bringing the printed circuit board and each of the plurality of dies into proximity with one another, the plurality of solder ball pads not being adjacent any of the plurality of slots;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding each of the circuits to the printed circuit board;and disposing an underfill material between the plurality of dies and the printed circuit board and substantially about the plurality of solder balls.
  20. 43
    A method of forming a board-on-chip semiconductor integrated circuit package, comprising:providing a plurality of dies, each having a circuit;forming a plurality of solder ball pads on a circuit side of each of the plurality of dies about a periphery thereof;forming a plurality of solder balls, each of the plurality of solder balls being formed on one of the plurality of solder ball pads and being formed in an electrically disconnected manner from each of the circuits;providing a printed circuit board having a plurality of slots and a plurality of substrate pads thereon;bringing the printed circuit board and each of the plurality of dies into proximity with one another, the plurality of solder ball pads not being adjacent any of the plurality of slots;connecting each of the plurality of solder balls to one of the plurality of the substrate pads;wire bonding each of the circuits to the printed circuit board;and disposing an underfill material between the plurality of dies and the printed circuit board and substantially about the plurality of solder balls.
  21. 47
    An electronic system, comprising:a processor;and a memory system coupled to the processor, wherein the memory system is contained in a package having: a plurality of solder balls;a printed circuit board having a plurality of substrate pads;a die having a memory circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die to the printed circuit board.
  22. 47
    An electronic system, comprising:a processor;and a memory system coupled to the processor, wherein the memory system is contained in a package having: a plurality of solder balls;a printed circuit board having a plurality of substrate pads;a die having a memory circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit;and an underfill material between and connecting the die to the printed circuit board.
  23. 50
    An electronic system, comprising:a processor;and a memory system coupled to the processor, wherein the memory system is contained in a package having: a plurality of solder balls;a printed circuit board having a plurality of substrate pads;and a plurality of dies each having a memory circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit.
  24. 50
    An electronic system, comprising:a processor;and a memory system coupled to the processor, wherein the memory system is contained in a package having: a plurality of solder balls;a printed circuit board having a plurality of substrate pads;and a plurality of dies each having a memory circuit and a plurality of solder ball pads on a circuit side thereof, each of the plurality of solder balls being connected to one of the plurality of substrate pads and one of the plurality of solder ball pads, one or more of the plurality of solder balls being electrically disconnected from the circuit.
Independent claims24