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Updated: July 8th, 2008 05:26 PM CDT

Xilinx at the 2007 IEEE Nuclear and Space Radiation Effects Conference

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SAN JOSE, Calif., July 16 /PRNewswire/ -- What: From Space to Base Xilinx presents and demonstrates its reconfigurable solutions for space at the 2007 IEEE Nuclear and Space Radiation Effects Conference (NSREC) Where: Hilton Hawaiian Village, Honolulu, Hawaii Booth # 107 When: July 23 - July 27, 2007 Exhibits: Tuesday, July 24 10:15 a.m. - 3:30 p.m. | 6:00 - 10:00 p.m. Wednesday, July 25 7:30 a.m. - 2:45 p.m. (Logo: http://www.newscom.com/cgi-bin/prnh/20020822/XLNXLOGO)

Xilinx, Inc. (Nasdaq: XLNX) today announced that its industry-leadingprogrammable logic solutions for enabling space applications, will beshowcased at the 2007 IEEE Nuclear and Space Radiation Effects Conference(NSREC), July 23-27, 2007 in Honolulu , Hawaii. Xilinx in-booth demonstrationand technology presentations are available for show registered attendeesthroughout the conference.

Booth Demonstration - Xilinx TMRTool

Demonstration of the industry's first Triple Modular Redundancydevelopment tool for reconfigurable Xilinx(R) Virtex(TM) FPGA design. Moreinformation on the Xilinx TMRTool can be found at:http://www.xilinx.com/ise/optional_prod/tmrtool.htm.

Technical Papers Highlighting Xilinx Technology Tuesday, July 24 Domain Crossing Events: Limitations on Single Device Triple-Modular Redundancy Circuits in Xilinx FPGAs (C-5) H. Quinn, K. Morgan, P. Graham, J. Krone, M. Caffrey, Los Alamos National Laboratory; K. Lundgren, Brigham Young University Risk Reduction for Use of Complex Devices in Space Projects (PD-2) M. Berg, C. Poivey, MEI Technologies, Inc., NASA-GSFC; D. Petrick, K. LaBel, M. Friendlich, S. Stansberry, NASA-GSFC Wednesday, July 25 Upset Characterization and Test Methodology of the PowerPC405 Hard-Core Processor Embedded in Xilinx Field Programmable Gate Arrays (W-29) G. Allen, G. Swift, JPL; G. Miller, Xilinx Dose Rate Upset Investigations on the Xilinx Virtex-4 Field Programmable Gate Arrays (W-30) A. Vera, D. Llamocca, M. Pattichis, University of New Mexico; W. Kemp, W. Sheed, D. Alexander, J. Lyke, Air Force Research Laboratory Static Proton and Heavy Ion Testing of the Xilinx Virtex-5 Device (W-31) H. Quinn, K. Morgan, P. Graham, J. Krone, M. Caffrey, Los Alamos National Laboratory; K. Lundgren, Brigham Young University Thursday, July 26 Experimental Validation of a Tool for Predicting the Effects of Soft Errors in SRAM-based Field Programmable Gate (PJ-8) L. Sterpone, M. Violante, Politecnico di Torino; R. Harboe-Sørensen, D. Merodio, F. Sturesson, R. Weigand, European Space Agency; S. Mattsson, Saab Ericsson Space A Comparison of TMR with Alternative Fault Tolerant Design Techniques for FPGAs (PC-3) K. S. Morgan, Los Alamos National Laboratory; D. L. McMurtrey, B. H. Pratt, M. J. Wirthlin, Brigham Young University Experimental Validation of a Tool for Predicting the Effects of Soft Errors in SRAM-based Field Programmable Gate (PJ-8) L. Sterpone, M. Violante, Politecnico di Torino; R. Harboe-Sørensen, D. Merodio, F. Sturesson, R. Weigand, European Space Agency; S. Mattsson, Saab Ericsson Space

About Xilinx Aerospace and Defense

Xilinx is the worldwide leader in complete programmable logic solutionsproviding uninterrupted support to the Aerospace and Defense (A&D) communitysince 1989. Comprehensive solutions include commercial grade to radiationtolerant field programmable gate arrays (FPGAs), A&D focused intellectualproperty (IP) for applications from image processing to waveform generation,and advanced technology such as partial reconfiguration and Single Chip Crypto.Xilinx offers long product lifecycles, high reliability devices, uniquemanufacturing flows, specialized design services, and advanced securitysolutions for High Assurance applications to support the long term programneeds of the A&D industry. For more information, visithttp://www.xilinx.com/esp/mil_aero

0791 Editorial contact: Silvia Gianelli Xilinx, Inc. (408) 626-4328 silvia.gianelli@xilinx.com

SOURCE Xilinx, Inc.


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