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J Electr Electron Mater : Journal of Electrical and Electronic Materials

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"Cylindric"

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"Cylindric"

SPICE Model of Drain Induced Barrier Lowering in Junctionless Cylindrical Surrounding Gate (JLCSG) MOSFET
Hak Kee Jung
J Electr Electron Mater 2018;31(5):278-282.   Published online July 1, 2018
We propose a SPICE model of drain-induced barrier lowering (DIBL) for a junctionless cylindrical surrounding gate (JLCSG) MOSFETs. To this end, the potential distribution in the channel is obtained via the Poisson equation, and the threshold voltage model is presented for the JLCSG MOSFET. In a JLCSG nano-structured MOSFET, a channel radius affects the carrier transfer as well as the channel length and oxide thickness; therefore, DIBL should be expressed as a function of channel length, channel radius, and oxide thickness. Consequently, it can be seen that DIBLs are proportional to the power of -3 for the channel length, 2 for the channel radius, 1 for the thickness of the oxide film, and the constant of proportionality is 18.5 when the SPICE parameter, the static feedback coefficient η, is between 0.2 and 1.0. In particular, as the channel radius and the oxide film thickness increase, the value of η remains nearly constant.
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Energy Materials : Design and Analysis of Vibration Driven Cylindric Electromagnetic Energy Harvester
Gwiy Sang Chung, Kyeong Il Ryu
J Electr Electron Mater 2010;23(11):906-910.   Published online November 1, 2010
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