2011•Unpublished venueRequires access

Interconnect resources testing and faults diagnosis in field programmable gate arrays

Yongbo Liao, Ruan Aiwu, Yu Wang, Xiang Chuanyin, Lin Wang, Haocheng Huang, Jianhua Zhu

Open publisher page 5 citations

Abstract

This paper presents a testing method of the interconnect resource (IR) for Field programmable gate arrays (FPGAs) which takes the programmable switch boxes (SBs) as the core of faults testing and diagnosis by mapping faults to their corresponding configurable logic blocks (CLBs). CLBs in FPGA have also been employed to enhance driving capability. The proposed technology can achieve 100% test coverage of the SB faults in IRs, as well as precisely identify the fault type and locate faults. An in-house developed FPGA test system based on SOC hardware/software verification technology has been applied to test XC4000E family of Xilinx. The experiment results revealed that the IRs in FPGA can be tested by 6 test patterns with test vectors.

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What this paper is about

This paper presents a testing method of the interconnect resource (IR) for Field programmable gate arrays (FPGAs) which takes the programmable switch boxes (SBs) as the core of faults testing and diagnosis by mapping faults to their corresponding configurable logic blocks (CLBs). CLBs in FPGA have also been employed to enhance driving capability. The proposed technology can achieve 100% test coverage of the SB faults in IRs, as well as precisely identify the fault type and locate faults. An in-house developed FPGA test system based on SOC hardware/software verification technology has been applied to test XC4000E family of Xilinx. The experiment results revealed that the IRs in FPGA can be tested by 6 test patterns with test vectors.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a testing method of the interconnect resource (IR) for Field programmable gate arrays (FPGAs) which takes the programmable switch boxes (SBs) as the core of faults testing and diagnosis by mapping faults to their corresponding configurable logic blocks (CLBs). CLBs in FPGA have also been employed to enhance driving capability. The proposed technology can achieve 100% test coverage of the SB faults in IRs, as well as precisely identify the fault type and locate faults. An in-house developed FPGA test system based on SOC hardware/software verification technology has been applied to test XC4000E family of Xilinx. The experiment results revealed that the IRs in FPGA can be tested by 6 test patterns with test vectors.

Key concepts: Field-programmable gate array, Embedded system, Interconnection, Programmable Array Logic, Computer science, Programmable logic array, Programmable logic device, Automatic test equipment

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