DocumentCode :
2026999
Title :
Highly integrated and solderless LTCC based C-band T/R module
Author :
Giordani, Roberto ; Amici, Marco ; Barigelli, Alessandro ; Conti, Franco ; Marro, Marco Del ; Feudale, Marziale ; Imparato, Massimiliano ; Suriani, Andrea
Author_Institution :
Thales Alenia Space Italia, Rome, Italy
fYear :
2009
fDate :
Sept. 29 2009-Oct. 1 2009
Firstpage :
1760
Lastpage :
1763
Abstract :
This paper describes a C-Band T/R Module (TRM) developed by Thales Alenia Space Italia as element of the electronic front-end (EFE) for synthetic aperture radar (SAR) antenna developed for Sentinel-1 Program under the responsibility of the European Commission and the European Space Agency in the frame of the global monitoring for environment and security (GMES). TRM includes power and low noise amplification as well as phase and amplitude control in order to realize different radiation patterns in active antenna in TX operation and processing of received signal in RX operation. A calibration path and a temperature sensor are also implemented inside the module. The above mentioned functions are implemented using MMIC technology. In particular the phase/amplitude control is implemented through an highly integrated solution (core-chip) inside the TRM. In transmission mode the TRM is able to provide an output power in excess of +42 dBm (15.85 W) whereas in receiving mode a gain in excess of +41.3 dB with +3.5 dB associated noise figure has been measured. HPA and Driver MMIC have been manufactured with PPH25X process from UMS whereas LNA and LLA have been developed using PH25 UMS process. The integrated core-chip has been manufactured using the ED02H OMMIC process. The full TRM has been realized in ISP (integrated substrate package) technology based on low temperature cofired ceramic (LTCC) substrate to improve integration factor and have a reduction of the overall size.
Keywords :
antenna radiation patterns; radar antennas; synthetic aperture radar; temperature sensors; C-Band T/R Module; European Commission; European Space Agency; MMIC technology; PH25 UMS process; Sentinel-1 Program; amplitude control; calibration path; electronic front-end; global monitoring for environment and security; integrated core-chip; integrated substrate package technology; low temperature cofired ceramic substrate; phase control; radiation patterns; synthetic aperture radar antenna; temperature sensor; Active noise reduction; Aperture antennas; MMICs; Manufacturing processes; Monitoring; Radar antennas; Security; Spaceborne radar; Synthetic aperture radar; Transmission line measurements;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 2009. EuMC 2009. European
Conference_Location :
Rome
Print_ISBN :
978-1-4244-4748-0
Type :
conf
Filename :
5296520
Link To Document :
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