244 results on '"Tsai, Jeng-Han"'
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52. A 37–40 GHz power amplifier for 5G phased array applications using 0.1-μm GaAs pHEMT process
53. A review of microwatt low-noise amplifier for microwave and millimeter-wave IoT applications
54. A 224-448 MHz low-power fully integrated phase-locked loop using 0.18-μm CMOS process
55. An $X$ -Band Half-Watt CMOS Power Amplifier Using Interweaved Parallel Combining Transformer
56. A 38GHz 27dBm power amplifier in enhancement mode GaAs PHEMT technology
57. An integrated Ka-band VCO and divide-by-4 frequency divider with 30.2% tuning range in 90-nm CMOS
58. A 6-GHz spread spectrum clock generation with EMI reduction of 30.2 dB for SATA-III applications
59. Millimeter-wave ultra-broadband IQ transceiver design - current status and future outlook
60. Design of a 90.9% Locking Range Injection-Locked Frequency Divider With Device Ratio Optimization in 90-nm CMOS
61. Ka-band up-link CMOS/GaAs power amplifier design for satellite-based wireless sensor
62. A K-band low phase noise and low power CMOS voltage-controlled oscillator
63. A Novel 30–90-GHz Singly Balanced Mixer With Broadband LO/IF
64. A 40-GHz 4-Bit Digitally Controlled VGA With Low Phase Variation Using 65-nm CMOS Process.
65. A 3.5 GHz low insertion loss variation CMOS phase shifter.
66. An integrated dual-band transmitter for vital sign detection radar applications in 0.18-μm CMOS
67. Miniature fully-integrated 2.5 and 3.5 GHz LDMOS power amplifiers in 40-nm CMOS technology
68. Design of 15–34 GHz low-power up-conversion ring mixer using 0.18 μm CMOS technology
69. A low-power Ku-band transformer-based receiver using low-cost 180nm CMOS for IoT applications
70. A 5 GHz fully-integrated low-power phase-locked loop using 0.18-μm CMOS technology
71. A 6-GHz integer frequency synthesizer for SATA III applications in 0.18-μm CMOS technology
72. A X-band digitally controlled 5-bit phase shifter in 0.18-μm CMOS technology
73. A X-band frequency synthesizer for FMCW radar in 180-nm CMOS
74. A 24-GHz transformer-based stacked-FET power amplifier in 90-nm CMOS technology
75. A 2-30 GHz ring mixer with active baluns in 0.18-µm CMOS technology for vital sign detection application
76. A 3.7 mW 75-87-GHz injection-locked frequency tripler using bandwidth-enhanced transformer-coupled topology for automatic radar applications
77. An X-band 9.75/10.6 GHz low-power phase-locked loop using 0.18-μm CMOS technology
78. MMW Ultra-Compact ${\rm N}$-Way Transformer PAs Using Bowtie-Radial Architecture in 65-nm CMOS
79. A 0.33 V 683$\mu{\rm W}$ K-Band Transformer-Based Receiver Front-End in 65 nm CMOS Technology
80. A Ku‐band 3‐bit phase shifter MMIC using GaAs phemt technology for phased array system
81. A K-band phase-locked loop in 0.18 μm CMOS technology for vital sign detection radar
82. A K-band low phase noise and low power CMOS voltage-controlled oscillator.
83. A 12 GHz 6-Bit switch-type phase shifter MMIC
84. An X-band low-power CMOS low noise amplifier with transformer inter-stage matching networks
85. A 57–66 GHz power amplifier with a linearization technique in 65-nm CMOS process
86. A 4.32~8.64-GHz receiver front-end with variable gain amplifier and I/Q mixer for 60-GHz heterodyne system in 65nm CMOS technology
87. A V-band variable gain amplifier with low phase variation using 90-nm CMOS technology
88. A 5–5.8 GHz fully-integrated CMOS PA for WLAN applications
89. A 5.5 GHz low-power PLL using 0.18-µm CMOS technology
90. A 2-30 GHz ring mixer with active baluns in 0.18-?m CMOS technology for vital sign detection application.
91. An X-band 9.75/10.6 GHz low-power phase-locked loop using 0.18-?m CMOS technology.
92. 1024-QAM High Image Rejection $E$-Band Sub-Harmonic IQ Modulator and Transmitter in 65-nm CMOS Process
93. A 0.6-V 336-μW 5-GHz LNA using a low-voltage and gain-enhancement architecture
94. A 453-/spl mu/W 53 - 70-GHz Ultra-Low-Power Double-Balanced Source-Driven Mixer Using 90-nm CMOS Technology
95. A low-power Ka-band frequency synthesizer with transformer feedback VCO embedded in 90-nm COMS technology
96. 60-GHz 5-bit Phase Shifter With Integrated VGA Phase-Error Compensation
97. A 60-GHz Power Amplifier Design Using Dual-Radial Symmetric Architecture in 90-nm Low-Power CMOS
98. A K-band low-power CMOS transformer-feedback VCO
99. A low-power 24 GHz phase lock loop with gain-boosted charge pump embedded in 0.18 μm COMS technology
100. A X-band fully integrated CMOS frequency synthesizer
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