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A fully integrated 2 stage K-band power amplifier is designed, fabricated and measured. The amplifier is realized utilizing standard 0.18 μm CMOS process. A novel simplified matching and bias network is used in order to reduce the input and output losses and to achieve a high output power and PAE. At 24 GHz, the measured results of the amplifier are, a small-signal power gain of 16.2 dB, a maximum...
Modern wireless communication standards, e.g. UMTS, are making use of modulation schemes, resulting in signals with high levels of peak-to-average power ratio (PAR). For example, the W-CDMA signal used in UMTS-standard has typical PAR levels above 6 dB. Conventional single-ended power amplifiers will result in low levels of average efficiency, if they were implemented in the transmitters of such communication...
A 60 GHz SiGe HBT chipset for high speed wireless communication systems has been developed. The functionalities of LNA, up-converter, down-converter and PA have been realized with good performance. Design strategy, achieved results and comparison with state-of-the-art work will be presented. The work proves that single chip integration of the whole 60 GHz RF-frond-end will be possible using silicon...
A monolithic power amplifier (PA) operating in the 60 GHz band is presented. The circuit has been designed utilizing an advanced 0.25 SiGe-heterojunction bipolar transistor (HBT) technology, featuring npn transistors with and . A two-stage cascode architecture has been chosen for the implementation. Design techniques and optimization procedure are explained in detail. Measurements show a small signal...
In this work we report on the importance of electromagnetic analysis for the layout design of monolithic 60 GHz power amplifiers (PA) in SiGe HBT technology. To facilitate this, two different layouts of the same circuit architecture were investigated. The circuits were originally designed using the circuit simulator of Agilentpsilas ADStrade and realized in a high performance 0.25 mum SiGe BiCMOS...
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