3D X-Ray Laminography with CMOS Image Sensor Using a Projection Method for Reconstruction of Arbitrary Cross-Sectional Images

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Key Engineering Materials (Volumes 270-273)

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192-197

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August 2004

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© 2004 Trans Tech Publications Ltd. All Rights Reserved

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[1] H. Matsuo, Three dimensional image reconstruction by digital tomosynthesis using inverse filtering, IEEE Trans on Med. Imaging, Vol. 12 (1993), pp.307-313.

DOI: 10.1109/42.232260

Google Scholar

[2] Z. Kolitsi, A multiple projection method for digital tomogynthesis, Med. Phys., Vol. 19 (1992), pp.1045-1050.

Google Scholar

[3] S. Rook, Development of an inspection process for ball grid array technology using scanned-beam X-ray laminography, IEEE Trans on Comp. Packag. Manuf. Tech. - Part A, Vol. 18(1995), pp.851-856.

DOI: 10.1109/95.477473

Google Scholar

[4] S. Gondrom, X-ray computed laminography: an approach of computed tomography for application with limited access, Nuclear Eng. And Design, Vol. 190 (1999), pp.141-147.

DOI: 10.1016/s0029-5493(98)00319-7

Google Scholar

[5] S. T. Kang, A projection method for reconstructing X-ray images of arbitrary cross-section, NDT&E International, Vol. 32(1999), pp.9-20.

DOI: 10.1016/s0963-8695(98)00031-0

Google Scholar

[6] S. K. Ahn, Y. K. Chi, A Computer Code for the Simulation of X-ray Imaging Systems, IEEE NSS/MIC conference, October 19-25 (2003), Portland, Oregon, USA.

Google Scholar

[7] S. T. Kang, A new digital tomosynthesis system to monitor the soldering state of a ball grid array, SPIE, Vol. 3518(1998), pp.52-56.

Google Scholar

[8] TRADIX 100 Model, Star V-ray, http: /www. starvray. com, Daejeon, Korea.

Google Scholar