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.
2008
2008 17th International Conference on Microwaves, Radar and Wireless Communications, MIKON 2008
2008 17th International Conference on Microwaves, Radar and Wireless Communications, MIKON 2008
Wroclaw, pol
2008
Magrini I.; Cidronali A.; Manes G.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1308361
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