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Journals

[ Book ]

ü         Byunghoo Jung and Ramesh Harjani, High-speed Analog IC Design For Wireless And Wireline Communications, Kluwer Academic Publishers. (Preparing the book).

ü         Byunghoo Jung and Ramesh Harjani, ¡°Designing LC VCOs Using Capacitive Degeneration Techniques,¡± Design of High-Speed Communications Circuits, World Scientific, 2006. (ISBN 981-256-590-6)

[ Journal ]

ü        Byunghoo Jung and Ramesh Harjani, ¡°High-frequency LC VCO Design Using Capacitive Degeneration¡±, IEEE Journal of Solid-State Circuits, vol. 39, pp 2359-2370, Dec. 2004.

ü        Mi-Kyung Oh, Byunghoo Jung, Ramesh Harjani, and Dong-Jo Park, ¡°A New Noncoherent UWB Impulse Radio Receiver¡±, IEEE Communication Letters, vol. 9, pp 151-153, Feb. 2005.

ü        Byunghoo Jung and Ramesh Harjani, ¡°LC VCO Design Using Capacitive Source Degeneration¡±, International Journal of High Speed Electronics and Systems, vol. 15, pp 319-351, 2005

ü        DaeGyu Moon, ByungHoo Jung, JeongNo Lee, ByungTae Ahn and HoBin Im, "Structural and optical properties of microcrystalline silicon films deposited by plasma enhanced chemical vapor deposition", J. of Mat. Sci.: Mat. In Electronics, vol.5, pp364- 369, 1994. 


Conferences

ü        Jaehyuk Jang, Minho Kwon, Edwin Tjandranegara, Kwyro Lee, and Byunghoo Jung, ¡°Digital Driving Technique for 8-bit QVGA AMOLED Display using SD Modulation¡±, IEEE ISSCC, Feb 2009.

ü        Meggie Grafton, Lisa M. Reece, Pedro P. Irazoqui, Byunghoo Jung, Huw D. Summers, Rashid Bashir, James F. Leary, ¡°Design of a multi-stage microfluidics system for high-speed flow cytometry and closed system cell sorting for cytomics,¡± Proc. of SPIE, vol. 6859, 68590V, (2008).

ü        Niharika Varanasi, Byunghoo Jung, and Dimitrios Peroulis, ¡°On-chip bond-wire antennas on CMOS-grade Silicon substrate¡±, IEEE Int. Sym. Antennas and Propagation, Jul 2008.

ü        Tamer Cakici, Byunghoo Jung, and Kaushik Roy, ¡°High Q and High Tuning Range FinFET Based Varactors for Low Cost SoC Integration¡±, IEEE International SOI Conference, Oct 2006.

ü         Ruilin Wang, Cheng-Kok Koh, Byunghoo Jung, and William Chappell, ¡°Clock Generation and Distribution Using Traveling-Wave Oscillators with Reflection and Regeneration,¡± IEEE Custom Integrated Circuits Conference, Sept 2006.

ü        Sanghoon Joo, Dongkyu Park, and Byunghoo Jung, ¡°Programmable RF Front-End Design for Cognitive Radio,¡± IEEE International Mixed-Signal Testing Workshop, pp 174-177, June 2006.

ü        Dongkyu Park and Byunghoo Jung, ¡°Low Power LC-VCO Design using Direct Cross-coupled Cell Biasing,¡± IEEE International Symposium on Circuits and Systems, pp ?-?, May 2006.

ü        Mi-Kyung Oh, Byunghoo Jung, and Dong-Jo Park, ¡°Low-Complexity Hop Timing Synchronization in Frequency Hopping Systems,¡± IEEE International Symposium on Circuits and Systems, pp?-?, May 2006.

ü        Byunghoo Jung, Yi-Hung Tseng, Jackson Harvey and Ramesh Harjani, ¡°Pulse Generator Design for UWB IR Communication Systems¡±, IEEE International Symposium on Circuits and Systems, pp 4381-4384, May 2005.

ü        Byunghoo Jung, Shubha Bommalingaiahnapallya, and Ramesh Harjani, ¡°Power Optimized LC VCO and Mixer Co-design¡±, IEEE International Symposium on Circuits and Systems, pp 4393-4396, May 2005.

ü        Byunghoo Jung and Ramesh Harjani, ¡°A 20GHz VCO with 5GHz Tuning Range in 0.25mm SiGe BiCMOS¡±, ISSCC Dig. Tech. Papers, pp 178-179, Feb 2004.

ü        Byunghoo Jung and Ramesh Harjani, ¡°A Wide Tuning Range VCO Using Capacitive Source Degeneration¡±, IEEE International Symposium on Circuits and Systems, pp23-26, May 2004.

ü        Jaewon Kim, Byunghoo Jung, Philip Cheung, and Ramesh Harjani, ¡°Novel CMOS Low-loss Transmission Line Structure¡±, IEEE Radio and Wireless Conference, pp235-238, Sept. 2004.

ü        Byunghoo Jung, Jaewon Kim, Philip Cheng and Ramesh Harjani, ¡°20GHz Wide Tuning Range Low Noise VCO and Monolithic Clock and Data Recovery Circuit¡±, Techcon, Jul 2003.

ü        Byunghoo Jung, Anand Gopinath and Ramesh Harjani, ¡°A Novel Noise Optimization Design Technique for Radio Frequency Low Noise Amplifiers¡±, IEEE International Symposium on Circuits and Systems, pp I209-I212, May 2003.

ü        I.G. Kim, Byunghoo Jung, H.H. Lee, D.H. Kim, W.Y. Park, B.H. Min, J.H. Souk, "Multisync Poly-Si AMLCD", SID Inter. Sym. Dig. of Tech. Papers, vol. 31, pp1199-1201, May 2000.

ü        H.J. Kim, Byunghoo Jung, D.H. Kim, G.S. Moon, J.W. Hwang, T.H. Jung, C.W. Kim, J.H. Souk, "Low temperature polycrystalline Si TFT-LCDs with a novel storage capacitor", Pro. of 18th Int. Display Research Conference, pp31-34, Sept. 1998.

ü        H.J. Kim, C.J. Yoon, Byunghoo Jung, G.S. Moon, C.W. Hwang, B.S. Bae, S.H. Park and J.H. Souk, "A One-million-pixel low-temperature poly-Si TFT-LCD for a projection device", Pro. of 17th Int. Display Research Conference, pp41-44, Sept. 1997.

ü        ByungHoo Jung, IlGon Kim, GyuSun Moon, YoonSeok Jang and JunHo Joung, "Improved Aperture Ratio Through Asymmetric Pixel Electrode Design", Pro. of 4th Asian Symposium on Information Display, pp103-106, Feb. 1997.


Patents

Inventor or co-inventor of following US patents:

ü         Voltage controlled oscillator architecture: In process.

ü         Ultra wideband (UWB) radio receiver: In process.

ü         Multisync display device and driver, US Patent Number: 6,417,829

ü         Liquid crystal display devices having redundant gate line driver circuits therein which can be selectively disabled,

      US Patent Number: 5,815,129

ü         Liquid crystal displays, manufacturing methods and a driving method thereof, US Patent Number: 6,317,173

ü         Method for manufacturing semiconductor device for enhancing hydrogenation effect, US Patent Number: 5,674,759

ü         Thin film transistor array panels for liquid crystal displays, US Patent Number: 6,300,987

ü         Method for fabricating a thin film transistor and a substrate and thin film transistor manufactured using the same,

      US Patent Number: 6,265,290

ü         Thin film transistor-liquid crystal display and a manufacturing method thereof, US Patent Number: 6,251,715

ü         Method for forming a TFT in a liquid crystal display, US Patent Number: 6,226,150

ü         Thin film transistor-liquid crystal display and a manufacturing method thereof, US Patent Number: 5,858,820

ü         Method for forming a TFT in a liquid crystal display, US Patent Number: 6,225,150 

 


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