DocumentCode :
2390684
Title :
A low phase noise integrated SiGe 18..20 GHz fractional-N synthesizer
Author :
Follmann, R. ; Kother, D. ; Engels, Mike ; Heyer, V. ; Schmalz, K. ; Herzel, F. ; Winkler, Wolfgang ; Osmany, S. ; Jagdhold, U.
Author_Institution :
IMST GmbH, Kamp-Lintfort
fYear :
2007
fDate :
8-10 Oct. 2007
Firstpage :
343
Lastpage :
346
Abstract :
The communication market demands broadband transmission, high density television (HDTV) and interactivity, whereby HDTV will become the leading application. All applications require a high number of individual channels, leading to a large number of up-and down-converters. These high needs can be served best with highly integrated SiGe MMICs. It has been demonstrated that the best suited RF-element to be developed is the Local Oscillator (LO) synthesizer, which fits well to the SiGe technology. The most critical building blocks of the LO are the voltage controlled oscillator (VCO) which is challenging in its phase noise behavior and the fractional-iN divider with its large influence on phase noise and spurs. This paper will describe the flexible design of a MMIC, which can be used also as a PLL circuit together with an external oscillator in a broad frequency range.
Keywords :
Ge-Si alloys; MMIC; frequency synthesizers; phase locked loops; phase noise; voltage-controlled oscillators; MMIC; PLL circuit; SiGe; broadband transmission; external oscillator; fractional-N divider; frequency 18 GHz to 20 GHz; high density television; integrated fractional-N synthesizer; local oscillator synthesizer; low phase noise; voltage controlled oscillator; Broadband communication; Germanium silicon alloys; HDTV; Local oscillators; MMICs; Phase noise; Silicon germanium; Synthesizers; TV; Voltage-controlled oscillators; CMOS; PLL; SiGe; VCO; downconverter; mixed signal; satellite applications; synthesizer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Technologies, 2007 European Conference on
Conference_Location :
Munich
Print_ISBN :
978-2-87487-003-3
Type :
conf
DOI :
10.1109/ECWT.2007.4404017
Filename :
4404017
Link To Document :
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