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Featured researches published by J.L. Wang.


Microelectronics Reliability | 2011

Trench MOS barrier Schottky rectifier formed by counter-doping trench-bottom implantation

Miin-Horng Juang; Jim Yu; C.C. Hwang; D.C. Shye; J.L. Wang

Abstract A trench MOS barrier Schottky (TMBS) rectifier has been formed by carrying out trench bottom counter-doping implantation for improving the blocking voltage and the device reliability. By additionally implementing a counter-doped region enclosing the trench bottom, the reverse blocking voltage of the conventional TMBS rectifier can be significantly enhanced without considerable degradation of on-state characteristics. In addition, the device reliability can be significantly improved. The large peak electric field in the corner of trench bottom, which limits the blocking voltage of the conventional TMBS rectifier, can be largely alleviated due to charge compensation. Though the counter-doped region enclosing the trench bottom may partly encroach into the mesa region, no considerable deterioration of on-state characteristics is caused. In addition, a too low-dose trench-bottom implantation cannot provide sufficient charge compensation, and a too high-dose trench-bottom implantation would create a large peak electric field below the trench bottom. As a result, a proper trench-bottom implantation may be employed to significantly enhance the blocking voltage without considerable degradation of on-state characteristics.


Solid-state Electronics | 2009

The formation of polycrystalline-Si thin-film transistors by using large-angle-tilt-implantation of dopant through gate sidewall spacer

Miin-Horng Juang; C.W. Huang; C.W. Chang; D.C. Shye; C.C. Hwang; J.L. Wang; Sheng-Lyang Jang


Solid-state Electronics | 2010

Formation of n-channel polycrystalline-Si thin-film transistors by dual source/drain implantation

Miin-Horng Juang; C.W. Chang; J.L. Wang; D.C. Shye; C.C. Hwang; Sheng-Lyang Jang


Microelectronic Engineering | 2010

Formation of n-channel polycrystalline-Si thin-film transistors by using retrograde channel scheme with double implantation

Miin-Horng Juang; C.W. Huang; M.-L. Wu; C.C. Hwang; J.L. Wang; D.C. Shye; Sheng-Lyang Jang


Thin Solid Films | 2011

Formation of polycrystalline thin-film transistors with stacked poly-SiGe/poly-Si channel layer for low-voltage applications

Miin-Horng Juang; C.W. Chang; Y.S. Peng; C.C. Hwang; J.L. Wang; D.C. Shye


Microelectronic Engineering | 2011

Submicron-meter tunneling field-effect poly-Si thin-film transistors with a thinned channel layer

Miin-Horng Juang; Y.S. Peng; D.C. Shye; J.L. Wang; C.C. Hwang; Sheng-Lyang Jang


Solid-state Electronics | 2010

Microcrystalline-Si thin-film transistors formed by using palladium silicided source/drain contact electrode

Miin-Horng Juang; Y.S. Peng; J.L. Wang; D.C. Shye; C.C. Hwang; Sheng-Lyang Jang


Microelectronic Engineering | 2010

Study of polycrystalline-Si thin-film transistors with different channel layer thickness at low bias voltage

Miin-Horng Juang; C.W. Chang; J.L. Wang; D.C. Shye; C.C. Hwang; Sheng-Lyang Jang


Microelectronic Engineering | 2011

Effects of channel layer thickness on the electrical characteristics of top-gate staggered microcrystalline-Si thin-film transistors

Miin-Horng Juang; Y.S. Peng; D.C. Shye; C.C. Hwang; J.L. Wang


Solid-state Electronics | 2010

Submicron-meter polycrystalline-SiGe thin-film transistors with tunneling field-effect-transistor structure

Miin-Horng Juang; Y.S. Peng; J.L. Wang; D.C. Shye; C.C. Hwang; Sheng-Lyang Jang

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C.C. Hwang

Ming Chi University of Technology

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D.C. Shye

Ming Chi University of Technology

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Miin-Horng Juang

National Taiwan University of Science and Technology

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Sheng-Lyang Jang

National Taiwan University of Science and Technology

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C.W. Chang

National Taiwan University of Science and Technology

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Y.S. Peng

National Taiwan University of Science and Technology

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C.W. Huang

National Taiwan University of Science and Technology

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Jim Yu

National Taiwan University of Science and Technology

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M.-L. Wu

National Taiwan University of Science and Technology

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