GMI Effect Automatic Test System Based on Network Analyzer
Zhi Zhao, Hengchang Rao, Fang Jin, Jinchao Wang, Lei Zhu, Junlei Song, Kaifeng Dong, Wenqin Mo
Abstract
Zhi Zhao, Hengchang Rao, Fang Jin, Jinchao Wang, Lei Zhu, Junlei Song, Kaifeng Dong, Wenqin Mo
Abstract
The measuring instrument selects the network analyzer, combines the direct current source and the Helmholtz coil to form the GMI effect test system. PC program written in Lab View, network analyzer and DC current source is controlled by the host computer. The host computer can process and plot the impedance data collected by the network analyzer, and save the data and images locally. The test system by measuring the commercial Vitrovac6025 strip material, found that the material all showed a strong GMI effect at different frequencies. By comparing the measured data of the network analyzer and the impedance analyzer measured in the same frequency band, we found that the two are consistent, which verifies the accuracy and reliability of the test system.
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The measuring instrument selects the network analyzer, combines the direct current source and the Helmholtz coil to form the GMI effect test system. PC program written in Lab View, network analyzer and DC current source is controlled by the host computer. The host computer can process and plot the impedance data collected by the network analyzer, and save the data and images locally. The test system by measuring the commercial Vitrovac6025 strip material, found that the material all showed a strong GMI effect at different frequencies. By comparing the measured data of the network analyzer and the impedance analyzer measured in the same frequency band, we found that the two are consistent, which verifies the accuracy and reliability of the test system.
Key concepts: Spectrum analyzer, Network analyzer (electrical), Reliability (semiconductor), Computer science, Electrical impedance, Host (biology), Electronic engineering, Electrical engineering