DocumentCode :
2461793
Title :
SAW filters for Global Positioning Satellite (GPS) receivers
Author :
De Escobar, Anna Leese ; McGinnis, Wayne C. ; Pulling, Michael J. ; Whitehouse, Harper J.
Author_Institution :
SPAWAR Syst. Center, San Diego, CA, USA
fYear :
2002
fDate :
2002
Firstpage :
4
Lastpage :
11
Abstract :
Interference, whether intentional (jamming) or unintentional, both in-band and out-of-band, can be a significant problem for receivers that operate in close proximity to high power transmitters. Out-of-band interference protection can be provided by high performance Radio Frequency (RF) filters used between the antenna and the receiver. These RF filters need to be low loss, have high out-of-band rejection and have nearly constant group delay to preserve the incoming signal characteristics. Well-designed superconducting filters can provide this level of performance and may also aid solutions for in-band interference, as the low loss of these devices allows their placement before the first Low-Noise Amplifier (LNA) in the system. We will summarize the results of experiments conducted with a set of electromagnetic HTS filters specially constructed for GPS frequency bands L1 and L2. We will also present recent data characterizing Lithium Niobate from room temperature to cryogenic temperatures. Although the temperature coefficient of delay of a Y-cut Z-propagating Lithium Niobate delay line is large at room temperature the coefficient of delay decreases as the temperature decreases until it becomes zero near 25K. Thus a combination of an ambient temperature quartz or Gallium Orthophosphate SAW bypass filter with either an HTS electromagnetic or an HTS Lithium Niobate SAW filter can provide linear phase filtering without impulse response ringing even in tactical applications.
Keywords :
Global Positioning System; high-temperature superconductors; interference suppression; linear phase filters; radio receivers; radiofrequency filters; superconducting filters; surface acoustic wave delay lines; surface acoustic wave filters; GPS receiver; GaPO4; L1 band; L2 band; LiNbO3; RF filter; SAW filter; SiO2; electromagnetic HTS filter; gallium orthophosphate SAW bypass filter; in-band interference; linear phase filtering; lithium niobate SAW filter; lithium niobate delay line; out-of-band interference; quartz SAW bypass filter; superconducting filter; temperature coefficient of delay; Delay; Global Positioning System; High temperature superconductors; Interference; Lithium niobate; Radio frequency; Receivers; SAW filters; Satellites; Superconducting filters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Position Location and Navigation Symposium, 2002 IEEE
Print_ISBN :
0-7803-7251-4
Type :
conf
DOI :
10.1109/PLANS.2002.998882
Filename :
998882
Link To Document :
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