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"Nano-crystal"

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"Nano-crystal"

Comparison of Stability on the Nano-crystalline Embedded InGaZnO and Amorphous InGaZnO Oxide Thin-film Transistors
Hyun Soo Shin, Byung Du Ahn, Yoo Seung Rim, Hyun Jae Kim
J Electr Electron Mater 2011;24(6):473-479.   Published online June 1, 2011
In this paper, we have compared amorphous InGaZnO (a-IGZO) thin-film transistor (TFT) with the nano-crystalline embedded-IGZO (Nc-embedded-IGZO) TFT fabricated by solid-phase crystallization (SPC) technique. The field effect mobility (μFE) of Nc-embedded-IGZO TFT was 2.37 cm2/Vs and the subthreshold slope (S-factor) was 0.83 V/decade, which showed lower performance than those of a-IGZO TFT (μFE of a-IGZO was 9.67 cm2/Vs and S-factor was 0.19 V/decade). This results originated from generation of oxygen vacancies in oxide semiconductor and interface between gate insulator and semiconductor due to high temperature annealing process. However, the threshold voltage shift (△V(TH)) of Nc-embedded-IGZO TFT was 0.5 V, which showed 1 V less shift than that of a-IGZO TFT under constant current stress during 10(5) s. This was because there were additionally less increase of interface trap charges in Nc-embedded-IGZO TFT than a-IGZO TFT.
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Study on Design and Application of an Inductive Coupler for Power Transmission Line
Hyun Sik Kim, Dong Chul Lee, Min Ho Kim, Gean Lee, Young Woo Oh, Byung Hoon Min
J Electr Electron Mater 2010;23(3):234-239.   Published online March 1, 2010
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Signal Transmission Properties of the Inductive Coupler using the High Permeability Magnetic Materials
Hyun Sik Kim, Jong Ryung Kim, Hae Yeon Lee, Ki Uk Kim, Jeong Seob Huh, Jun Hui Lee, Young Woo Oh, Woo Bong Byon, Kwi Yil Gwak, Seong Ho Ju
J Electr Electron Mater 2006;19(4):339-343.   Published online April 1, 2006
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