2003•Unpublished venueRequires access

Nondestructive evaluation of debonding within plastic integrated circuit packages using different methods of acoustic microscopy

Janet E. Semmens, L. W. Kessler

Open publisher page 2 citations

Abstract

Summary form only given. A number of plastic encapsulated devices in the as-received condition were screened and documented using SLAM (scanning laser acoustic microscopy). Those parts containing flaws were then examined using a C-SAM (C-mode scanning acoustic microscope) to characterize the type of flaw and depth of the defect. Several of the defect-free parts were also evaluated on the C-SAM to characterize the appearance of typical devices. After the initial investigation, all the devices were thermally shocked. The devices were again screened and documented on SLAM to note any changes from their previous condition. The defective parts were again evaluated and documented on C-SAM to further characterize the defects. Several interesting results were observed from this investigation. In general, a difference in the acoustic properties of the encapsulants was noticed from manufacturer to manufacturer. This may be related to the appearance of defects in certain devices.>

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What this paper is about

Summary form only given. A number of plastic encapsulated devices in the as-received condition were screened and documented using SLAM (scanning laser acoustic microscopy). Those parts containing flaws were then examined using a C-SAM (C-mode scanning acoustic microscope) to characterize the type of flaw and depth of the defect. Several of the defect-free parts were also evaluated on the C-SAM to characterize the appearance of typical devices. After the initial investigation, all the devices were thermally shocked. The devices were again screened and documented on SLAM to note any changes from their previous condition. The defective parts were again evaluated and documented on C-SAM to further characterize the defects. Several interesting results were observed from this investigation. In general, a difference in the acoustic properties of the encapsulants was noticed from manufacturer to manufacturer. This may be related to the appearance of defects in certain devices.>

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Summary form only given. A number of plastic encapsulated devices in the as-received condition were screened and documented using SLAM (scanning laser acoustic microscopy). Those parts containing flaws were then examined using a C-SAM (C-mode scanning acoustic microscope) to characterize the type of flaw and depth of the defect. Several of the defect-free parts were also evaluated on the C-SAM to characterize the appearance of typical devices. After the initial investigation, all the devices were thermally shocked. The devices were again screened and documented on SLAM to note any changes from their previous condition. The defective parts were again evaluated and documented on C-SAM to further characterize the defects. Several interesting results were observed from this investigation. In general, a difference in the acoustic properties of the encapsulants was noticed from manufacturer to manufacturer. This may be related to the appearance of defects in certain devices.>

Key concepts: Acoustic microscopy, Materials science, Scanning acoustic microscope, Microscopy, Composite material, Nondestructive testing, Optical microscope, Acoustics

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Nondestructive evaluation of debonding within plastic integrated circuit packages using different methods of acoustic microscopy — Research Paper | ScholarLens