A high-power solid state amplifier for Galileo satellite system exploiting European GaN technology

Author:

Giofré Rocco,Colantonio Paolo,Cipriani Elisa,Giannini Franco,Gonzalez Laura,De Arriba Francisco,Cabria Lorena

Abstract

This paper describes the development of an L-Band (f0= 1.575 GHz) high power and efficient solid state power amplifier (SSPA) designed for the European satellite navigation system (i.e. Galileo). The amplifier, developed in the framework of the European Project named SLOGAN, exploits the GH50-10 GaN technology available at United Monolithic Semiconductor foundry. The aim of the project is to offer, using as much as possible European technologies, a valid alternative to replace traveling wave tube amplifiers with more compact and reliable systems. All the SSPA functionalities, i.e. power supply, power conditioning and radio frequency amplification, are integrated in the developed architecture and accommodated in a single box with limited volume and mass. The required output power level is achieved by parallelizing several GaN die power bars of 12 and/or 25.6 mm. In continuous wave operating mode, the overall SSPA delivers an output power higher than 250 W at less than 2 dB of gain compression in the whole E1-band. Moreover, the registered gain and efficiency are higher than 67 dB and 54%, respectively.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Reference15 articles.

1. Rochette S. : A high efficiency 140 W power amplifier based on a single GaN HEMT device for space applications in L-band, in 2012 7th European Microwave Integrated Circuits Conf. (EuMIC), October 2012, 127–130.

2. Giofré R. ; Colantonio P. ; Gonzalez L. ; De Arriba F. ; Cabria L. ; Baglieri D. : Evaluation of GaN technology for Galileo Satellite System, in Int. Symp. on Microwave and Optical Technologies, 2014, 4.

3. Wojtasiak W. ; Gryglewski D. ; Sedek E. : The 100 W class a power amplifier for L-band T/R module, in 13th Int. Conf. on microwaves, radar and wireless communications, 2000. MIKON-2000, vol. 2, 2000, 675–677.

4. Giofré R. ; Colantonio P. ; Gonzalez L. ; De Arriba F. ; Cabria L. ; Baglieri D. : A first step towards a 230 W SSPA for Galileo system exploiting European GaN technology, in European Microwave Integrated Circuit Conf. (EuMiC), September 2015, 4

5. L-Band TWTAs for Navigation Satellites

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