Wee Jae-kyung | School Of Electronic Engineering Soongsil University
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概要
関連著者
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Wee Jae-kyung
School Of Electronic Engineering Soongsil University
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KIM Yong-Ju
Memory R&D Center
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KIM Yong-Ju
Memory Research & Development Division, Hynix Semiconductor Inc.
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Kim Yong-ju
Memory R&d Center Hynix
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Jung Won‐young
Device Engineering Team Dongbu Hitek Co. Ltd.
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Jung Won-young
Technical Engineering Center Dongbu Hitek
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Jung Won‐young
Soongsil Univ. Seoul Kor
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Jung Won-young
School Of Electronic Engineering Soongsil University:(present Office)r & D Nanno Solutions Inc.
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Jung Won-young
School Of Electronic Engineering Soongsil University
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WEE Jae-Kyung
School of Electronic Engineering, Soongsil University
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Lim Ji-hoon
School Of Electronic Engineering Soongsil University
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Lee Seongsoo
School Of Electronic Engineering Soongsil University
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Ha Jong‐chan
Dongbu Hitek Co. Ltd. Gyeonggi‐do Kor
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Lee Jaejin
School of Electronic Engineering, Soongsil University
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Wee J‐k
Hynix Semiconductor Icheon Kor
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Kim Y‐j
Memory Research & Development Division Hynix Semiconductor Inc.
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LEE Seongsoo
School of Electronic Engineering, Soongsil University
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KIM Hyungon
Nanno Solutions, Inc.
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HA Jong-Chan
School of Electronic Engineering, Soongsil University
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Kim Hyungon
Nanno Solutions Inc.
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Kim Yong-ju
Memory Research & Development Division Hynix Semiconductor Inc.
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Kim Yong-ju
Department Of Eecs Korea Advanced Institute Of Science And Technology
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Hong Min-cheol
School Of Electronic Engineering Soongsil University
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Ha Jong-chan
School Of Electronic Engineering Soongsil University
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Wee Jae-Kyung
School of Electronic Engineering, Soongsil University, 511 Sangdo-dong, Dongjak-gu, Seoul 156-743, Korea
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Kim Jinyoung
School of Electronic Engineering, Soongsil University, 511 Sangdo-dong, Dongjak-gu, Seoul 156-743, Korea
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SONG Inchae
School of Electronic Engineering, Soongsil University
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JUNG Won-Young
Dongbu Hitek Ltd.
著作論文
- Power Distribution Network Design Using Network Synthesis in High-Speed Digital Systems(Microwaves, Millimeter-Waves)
- Novel Method of Interconnect Worstcase Establishment with Statistically-Based Approaches
- A Novel High-Speed and Low-Voltage CMOS Level-Up/Down Shifter Design for Multiple-Power and Multiple-Clock Domain Chips(Electronic Circuits)
- Fast and Accurate Power Bus Designer for Multi-Layers High-Speed Digital Boards(Integrated Electronics)
- Low-Hardware-Cost Motion Estimation with Large Search Range for VLSI Multimedia Processors(Image Processing and Video Processing)
- Error Correcting 4/6 Modulation Codes for Holographic Data Storage
- A Digitally-Controlled SMPS Using a Novel High-Resolution DPWM Generator Based on a Pseudo Relaxation-Oscillation Technique