2002Unpublished venueRequires access

New chip scale package with CTE matching to the board

Randy Schueller, J. Geissinger

Open publisher page 4 citations

Abstract

This paper outlines a few of the more promising chip scale package configurations and discusses where they stand with respect to some of the ideal requirements for a CSP, these criteria being low cost, good fit to the infrastructure, and excellent board level reliability. Measured against these criteria, none of these packages has emerged as a clear winner. This paper addresses a new patent pending chip scale package concept which has low cost potential, uses conventional wire bonding and overmolding processes and has been predicted through mechanical modeling to have excellent board level reliability. Instead of using an elastomeric interposer which decouples the die stress from the board, the strategy is to minimize solder joint stress by instead incorporating a copper interposer which has a matching CTE to that of the board. The die is directly attached to the copper interposer using a standard low stress die attach adhesive. The carrier is supplied in a rigid strip format which can be easily handled with the conventional industry infrastructure. This package is currently being assembled for both a cavity up configuration (peripheral wire bonding to the die) and a cavity down variety (central bonding to the die, e.g. DRAM).

About this research paper

What this paper is about

This paper outlines a few of the more promising chip scale package configurations and discusses where they stand with respect to some of the ideal requirements for a CSP, these criteria being low cost, good fit to the infrastructure, and excellent board level reliability. Measured against these criteria, none of these packages has emerged as a clear winner. This paper addresses a new patent pending chip scale package concept which has low cost potential, uses conventional wire bonding and overmolding processes and has been predicted through mechanical modeling to have excellent board level reliability. Instead of using an elastomeric interposer which decouples the die stress from the board, the strategy is to minimize solder joint stress by instead incorporating a copper interposer which has a matching CTE to that of the board. The die is directly attached to the copper interposer using a standard low stress die attach adhesive. The carrier is supplied in a rigid strip format which can be easily handled with the conventional industry infrastructure. This package is currently being assembled for both a cavity up configuration (peripheral wire bonding to the die) and a cavity down variety (central bonding to the die, e.g. DRAM).

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper outlines a few of the more promising chip scale package configurations and discusses where they stand with respect to some of the ideal requirements for a CSP, these criteria being low cost, good fit to the infrastructure, and excellent board level reliability. Measured against these criteria, none of these packages has emerged as a clear winner. This paper addresses a new patent pending chip scale package concept which has low cost potential, uses conventional wire bonding and overmolding processes and has been predicted through mechanical modeling to have excellent board level reliability. Instead of using an elastomeric interposer which decouples the die stress from the board, the strategy is to minimize solder joint stress by instead incorporating a copper interposer which has a matching CTE to that of the board. The die is directly attached to the copper interposer using a standard low stress die attach adhesive. The carrier is supplied in a rigid strip format which can be easily handled with the conventional industry infrastructure. This package is currently being assembled for both a cavity up configuration (peripheral wire bonding to the die) and a cavity down variety (central bonding to the die, e.g. DRAM).

Key concepts: Interposer, Chip-scale package, Quad Flat No-leads package, Soldering, Die (integrated circuit), Reliability (semiconductor), Chip, Integrated circuit packaging

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