Title :
Miniaturized fiber coupled RF E-field sensor with high sensitivity
Author :
Heinzelmann, R. ; Stöhr, A. ; Kalinowski, D. ; Jager, D.
Author_Institution :
Gerhard-Mercater-Univ. Duisburg, Germany
Abstract :
Electric field measurements with high spatial resolution and high sensitivity are desirable in many technical and medical applications, such as EMC or antenna measurements. Furthermore, the possibility to measure single field components on board during the design and development phase of printed circuit boards is another envisaged market for microwave E-field sensors. Obviously, utilizing optical sensor systems for E-field measurements in the RF frequency range offer the advantage of minimizing interference with the measured field together with the potential to obtain frequency selective amplitude and phase information of the measured field. Due to the availability of efficient small-size electrooptic converters it is possible to develop miniaturized sensor heads with large dynamic range and high sensitivity. We present the results of small-size (l0mmx8mmx2mm) optically powered sensor that uses the sensitivity of an electroabsorption modulator linked to a short monopole antenna via a transimpedance amplifier
Keywords :
antenna feeds; electric field measurement; electro-optical modulation; electroabsorption; fibre optic sensors; integrated optics; microwave photonics; monopole antennas; optical fibre couplers; sensitivity; EMC measurements; RF electric-field sensor; RF frequency range; antenna measurements; design; development phase; electric field measurements; electric-field measurements; electroabsorption modulator; frequency selective amplitude; high sensitivity; high spatial resolution; interference minimisation; large dynamic range; measured field; medical applications; microwave electric-field sensors; miniaturized fiber coupled RF electric-field sensor; miniaturized sensor heads; optical sensor systems; phase information; printed circuit boards; sensitivity; short monopole antenna; single field components; small-size electrooptic converter; small-size optically powered sensor; technical applications; transimpedance amplifier; Antenna measurements; Coupling circuits; Electric variables measurement; Frequency measurement; Medical services; Optical fiber sensors; Optical sensors; Phase measurement; Radio frequency; Spatial resolution;
Conference_Titel :
Lasers and Electro-Optics Society 2000 Annual Meeting. LEOS 2000. 13th Annual Meeting. IEEE
Conference_Location :
Rio Grande
Print_ISBN :
0-7803-5947-X
DOI :
10.1109/LEOS.2000.893947