APMC 2010 HomeTechnical Programs > Technical Session

Technical Programs

Technical Session

Thursday, December 09  10:50-12:30

Room A (301)

TH2A

Frequency Conversion Techniques
Chairs : R. Fujimoto, STARC, JAPAN | J. Machác, Czech Technical Univ. in Prague, CZECH REPUBLIC
TH2A-1
17-GHz pHEMT Gilbert Single-Quadrature Downconverter with Polyphase Filters for Image Rejection
H.-J. Wei¹, C.-C. Meng¹, J.-Y. Su¹, S.-W. Yu¹, G.-W. Huang², ¹National Chiao Tung Univ., TAIWAN, ²National Nano Device Lab., TAIWAN
TH2A-2
Reconfigurable Up-Converter with Image Rejection
X.-Y. Zhang¹, H.-L. Zhang¹, B.-J. Hu¹, Q. Xue², ¹South China Univ. of Technology, CHINA, ²City Univ. of Hong Kong, HONG KONG
TH2A-3
A Low-IF Direct Sampling Mixer with Complex Transfer Function for ISDB-T One Segment Applications
Y. Morishita¹, N. Saito¹, K. Araki², ¹Panasonic Corp., JAPAN, ²Tokyo Institute of Technology, JAPAN
TH2A-4
Nonlinear Analysis of Direct Sampling Mixers Using F-Matrix
K. Aio, K. Araki, Tokyo Institute of Technology, JAPAN
TH2A-5
A Passive 8 to 24GHz Frequency Tripler Based on Microstrip Line Circuits and Schottky Diodes
C. Baer, T. Musch, Ruhr-Universität Bochum, GERMANY
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Room B (302)

TH2B

Power Dividers
Chairs : K.-K.M. Cheng, The Chinese Univ. of Hong Kong, HONG KONG | I. Sakagami, Univ. of Toyama, JAPAN
TH2B-1
Design Method of Lumped-Element Dual-Band Wilkinson Power Dividers Based on Frequency Transformation
T. Kawai, I. Ohta, A. Enokihara, Univ. of Hyogo, JAPAN
TH2B-2
A Planar Three-Way Dual-Band Power Divider Using Two Generalized Open Stub Wilkinson Dividers
X. Wang, I. Sakagami, K. Takahashi, S. Okamura, Univ. of Toyama, JAPAN
TH2B-3
A C-Band Thin-Film Three-Way Wilkinson Power Divider / Combiner Using Microstrip Technology on Alumina
J. Nath, Y. Shen, E. Nealis, Aviat Networks, U.S.A.
TH2B-4
Design of Planar Dual-Band Multi-Way Power Dividers
X. Liu, C. Yu, Y. Liu, S. Li, F. Wu, Y. Wu, Beijing Univ. of Posts and Telecommunications, CHINA
TH2B-5
Optimum Design for 6-way Power Divider with Inductive Post
D.-H. Kim¹, S.-S. Oh², K.-S. Min¹, ¹Korea Maritime Univ., REPUBLIC of KOREA, ²Electronics and Telecommunications Research Institute (ETRI), REPUBLIC of KOREA
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Room C (303)

TH2C

UWB Antennas 2
Chairs : T. Fukusako, Kumamoto Univ., JAPAN | E. T. Rahardjo, Universitas Indonesia, INDONESIA
TH2C-1
Compact UWB Chip Antenna Design
S.Y. Park, J.H. Jung, J.M. Song, J.K. Park, Hanbat National Univ., REPUBLIC of KOREA
TH2C-2
A Circularly Polarized L-Shaped and Rectangular Slot Antenna With An L-Shaped Probe For Wideband Characteristics
S. Nakao, R. Joseph, T. Fukusako, Kumamoto Univ., JAPAN
TH2C-3
Planar Wideband Adaptive Antenna Consisting of Radially Arrayed Multiple Taper-Slot Antenna Elements Having Wide Fins
T. Baba, A. Hirose, The Univ. of Tokyo, JAPAN
TH2C-4
Design of Broadband Multi-Layered Circular Microstrip Antenna for Modern Communication Systems
M.M. Sharma¹, S. Yadav¹, A. Kumar¹, D. Bhatnagar², R.P. Yadav¹, ¹Malaviya National Institute of Technology, INDIA, ²Univ. of Rajasthan, INDIA
TH2C-5
A Miniaturized Ultra Wideband Antenna with Single Tunable Band-Notched Characterisrics
A.M.A. Salem, S.I. Shams, A.M.M.A. Allam, German Univ. in Cairo (GUC), EGYPT
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Room D (304)

TH2D

MIMO Antennas
Chairs : K.-L. Wong, National Sun Yat-sen Univ., TAIWAN | M. Fujimoto, Univ. of Fukui, JAPAN
TH2D-1
Adaptive Control of Radiation Patterns for Monopole Antenna with Frequency-Selective Reflector with Loading Varactor
Y. Hoshino, A. Saitou, K. Honjo, The Univ. of Electro-Communications, JAPAN
TH2D-2
Compact Linear Antenna Arrays for MIMO Applications
L.K. Yeung, The Chinese Univ. of Hong Kong, HONG KONG
TH2D-3
MIMO Antenna with Isolation Enhancement for Wireless USB Dongle Application at WLAN Band
Z. Li, M.-S. Han, X. Zhao, J. Choi, Hanyang Univ., REPUBLIC of KOREA
TH2D-4
A Polarization Diversity MIMO Antenna Design for WiMAX Dongle Application
L.-C. Chang¹², C.-H. Tsai¹, P. Hsu², C.-C. Liu¹, ¹Industrial Technology Research Institute (ITRI), TAIWAN, ²National Taiwan Univ., TAIWAN
TH2D-5
Compact Dual-Band MIMO Antenna with High Isolation Performance
I. Yeom¹, J. Kim², C. Jung¹, ¹Seoul National Univ. of Technology, REPUBLIC of KOREA, ²Mobitech Corp., REPUBLIC of KOREA
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Room E (311+312)

TH2E

Si-Based Milliimeter-Wave ICs
Chairs : T. Nagatsuma, Osaka Univ., JAPAN | K. Sano, NTT Corp., JAPAN
TH2E-1
60-80GHz Frequency Doubler Operating Close to fmax
G. Liu, A.C. Ulusoy, A. Trasser, H. Schumacher, Ulm Univ., GERMANY
TH2E-2
A 50-mW, 386GHz/mm² Wideband Amplifier in 0.13-μm CMOS Technology
H.-K. Chen¹, T. Wang², K.-T. Lin¹, H.-C. Chen³, S.-S. Lu¹, ¹National Taiwan Univ., TAIWAN, ²Chang Gung Univ., TAIWAN, ³National Taiwan Univ. of Science and Technology, TAIWAN
TH2E-3
An Innovative Injection-Locked Frequency Divider with Transformer Transconductance-Boosted Technique
Y.-L. Yeh¹, H.-Y. Chang¹, K. Chen², S.-H. Wu², ¹National Central Univ., TAIWAN, ²Industrial Technology Research Institute (ITRI), TAIWAN
TH2E-4
Admittance-Transforming Injection-Locked Frequency Divider and Low-Supply-Voltage Current Mode Logic Divider
Y.-H. Kuo¹, J.-H. Tsai², W.-H. Chou¹, T.-W. Huang¹, ¹National Taiwan Univ., TAIWAN, ²National Taiwan Normal Univ., TAIWAN
TH2E-5
116GHz CMOS Injection Locked Oscillator with -99.3dBc/Hz at 1MHz Offset Phase Noise
M. Motoyoshi¹², M. Fujishima¹, ¹Hiroshima Univ., JAPAN, ²The Univ. of Tokyo, JAPAN
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Room F (313+314)

TH2F

Miniaturized and Multi-Band Directional Couplers
Chairs : C.-H. Tseng, National Taiwan Univ., TAIWAN | T. Kawai, Univ. of Hyogo, JAPAN
TH2F-1
A Miniaturized Wide Band Micromachined Directional Coupler
C.-P. Lin, Y.-H. Li, C.F. Jou, National Chiao Tung Univ., TAIWAN
TH2F-2
A Novel Microstrip Forward Directional Coupler Using Defected Ground Structure
S.-K. Hsu, J.-C. Yen, T.-L. Wu, National Taiwan Univ., TAIWAN
TH2F-3
Dual-Band Rat-Race Coupler Design in Multilayer LTCC
T.-M. Shen, C.-R. Chen, T.-Y. Huang, R.-B. Wu, National Taiwan Univ., TAIWAN
TH2F-4
A Compact Branch-Line Coupler Using π-Equivalent Shunt-Stub-Band Artificial Transmission Lines
C.-H. Wu, C.-H. Tseng, National Taiwan Univ. of Science and Technology, TAIWAN
TH2F-5
Directional Couplers from 30 to 140GHz in Silicon
B. Laemmle¹, K. Schmalz², C. Scheytt², A. Koelpin¹, R. Weigel¹, ¹Univ. of Erlangen-Nuremberg, GERMANY, ²IHP Microelectronics GmbH, GERMANY
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