Paganelli, R. ; Santarelli, A. ; Zucchelli, G. ; Costantini, A. ; Vannini, G. ; Filicori, F.
(2002)
A computationally efficient approach for the design of RF power amplifiers.
In: Gallium Arsenide applications symposium. GAAS 2002, 23-27 september 2002, Milano.
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Abstract
A computationally efficient procedure for the design of RF power amplifiers is presented. The proposed approach allows for the identification of “near-optimal” source and load terminations of the amplifier stage providing maximum output power under assigned linearity, minimum gain and other possible constraints. The design procedure is completely based on closed form numerical computations, without requiring non linear optimisations as normally happens in standard design approaches. A single-stage 2.4 GHz amplifier prototype has been designed and manufactured in Silicon BJT MMIC technology, according to the criteria provided by the new methodology. Experimental results are in good agreement with simulations and confirm the validity of the proposed approach.
Abstract
A computationally efficient procedure for the design of RF power amplifiers is presented. The proposed approach allows for the identification of “near-optimal” source and load terminations of the amplifier stage providing maximum output power under assigned linearity, minimum gain and other possible constraints. The design procedure is completely based on closed form numerical computations, without requiring non linear optimisations as normally happens in standard design approaches. A single-stage 2.4 GHz amplifier prototype has been designed and manufactured in Silicon BJT MMIC technology, according to the criteria provided by the new methodology. Experimental results are in good agreement with simulations and confirm the validity of the proposed approach.
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Conference or Workshop Item
(Paper)
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DOI
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17 Jun 2004
Last modified
17 Feb 2016 13:50
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Document type
Conference or Workshop Item
(Paper)
Creators
Subjects
DOI
Deposit date
17 Jun 2004
Last modified
17 Feb 2016 13:50
URI
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