In this paper a low-cost direct-conversion UWB transmitter, based on single balanced sub-harmonic mixers, is described. The UWB transmitter prototype is implemented by a laboratory set-up composed of subsystems designed and fabricated in hybrid technology. The key subsystems are represented by the IQ up-converters, each of them consisting of two couple of anti-parallel diodes connected by a wideband balun. The measurements highlight a conversion loss ranging from 12dB to 15dB, and a minimum isolation, related to second order LO harmonic, of 53 dB. Due to the diodes characteristic no DC supply is needed and the optimum functionality is achieved with a LO power of 7 dBm. The transmitter includes power splitter for the LO distribution to the IQ mixers, the power combiner and a band-pass output filter. All the subsystems are optimized in the 3.1-4.8 GHz band. Finally, in order to assess the transmitter performances in a realistic environment, system level simulations have been performed compliant with MBOA specifications.
A low-cost direct conversion transmitter suitable for multi-OFDM ultra wide band / Magrini I.; Cidronali A.; Manes G.. - STAMPA. - (2008), pp. 1-4. (Intervento presentato al convegno 2008 17th International Conference on Microwaves, Radar and Wireless Communications, MIKON 2008 tenutosi a Wroclaw, pol nel 2008).
A low-cost direct conversion transmitter suitable for multi-OFDM ultra wide band
Magrini I.;Cidronali A.
;Manes G.
2008
Abstract
In this paper a low-cost direct-conversion UWB transmitter, based on single balanced sub-harmonic mixers, is described. The UWB transmitter prototype is implemented by a laboratory set-up composed of subsystems designed and fabricated in hybrid technology. The key subsystems are represented by the IQ up-converters, each of them consisting of two couple of anti-parallel diodes connected by a wideband balun. The measurements highlight a conversion loss ranging from 12dB to 15dB, and a minimum isolation, related to second order LO harmonic, of 53 dB. Due to the diodes characteristic no DC supply is needed and the optimum functionality is achieved with a LO power of 7 dBm. The transmitter includes power splitter for the LO distribution to the IQ mixers, the power combiner and a band-pass output filter. All the subsystems are optimized in the 3.1-4.8 GHz band. Finally, in order to assess the transmitter performances in a realistic environment, system level simulations have been performed compliant with MBOA specifications.File | Dimensione | Formato | |
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