Packaging and antenna design for wireless SAW temperature sensors in metallic environments

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Autoren

  • A. Binder
  • R. Fachberger
  • E. Kaldjob
  • B. Geck

Externe Organisationen

  • Carinthian Tech Research (CTR)
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Titel des SammelwerksIEEE Sensors 2009 Conference
UntertitelSENSORS 2009
Seiten807-810
Seitenumfang4
PublikationsstatusVeröffentlicht - 2009
VeranstaltungIEEE Sensors 2009 Conference - SENSORS 2009 - Christchurch, Neuseeland
Dauer: 25 Okt. 200928 Okt. 2009

Publikationsreihe

NameProceedings of IEEE Sensors

Abstract

We have developed a radio frequency (RF) transponder based on a surface acoustic wave (SAW) device specifically optimized for wireless temperature measurement of rotating shafts. The SAW sensing element is a reflective delay line type with 3 reflectors. The main foci of the paper are on a new compact packaging, and on antenna simulations for 2.4 GHz radio signal transmission to the interrogator. The novel metallic packaging has been designed for smallest possible outer dimensions of 10.0 x 3.1 x 2.0 mm3. In order to streamline the housing for insertion in a borehole, the electrical feedthroughs have been oriented in the longitudinal axis, contrary to the standard vertical axis approach. Antenna simulations were performed to find an optimized design tuned to the metallic surrounding. A slot antenna type was identified as best joint solution for the objectives radiation pattern and antenna gain.

ASJC Scopus Sachgebiete

Zitieren

Packaging and antenna design for wireless SAW temperature sensors in metallic environments. / Binder, A.; Fachberger, R.; Kaldjob, E. et al.
IEEE Sensors 2009 Conference : SENSORS 2009. 2009. S. 807-810 5398549 (Proceedings of IEEE Sensors).

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Binder, A, Fachberger, R, Kaldjob, E & Geck, B 2009, Packaging and antenna design for wireless SAW temperature sensors in metallic environments. in IEEE Sensors 2009 Conference : SENSORS 2009., 5398549, Proceedings of IEEE Sensors, S. 807-810, IEEE Sensors 2009 Conference - SENSORS 2009, Christchurch, Neuseeland, 25 Okt. 2009. https://doi.org/10.1109/ICSENS.2009.5398549
Binder, A., Fachberger, R., Kaldjob, E., & Geck, B. (2009). Packaging and antenna design for wireless SAW temperature sensors in metallic environments. In IEEE Sensors 2009 Conference : SENSORS 2009 (S. 807-810). Artikel 5398549 (Proceedings of IEEE Sensors). https://doi.org/10.1109/ICSENS.2009.5398549
Binder A, Fachberger R, Kaldjob E, Geck B. Packaging and antenna design for wireless SAW temperature sensors in metallic environments. in IEEE Sensors 2009 Conference : SENSORS 2009. 2009. S. 807-810. 5398549. (Proceedings of IEEE Sensors). doi: 10.1109/ICSENS.2009.5398549
Binder, A. ; Fachberger, R. ; Kaldjob, E. et al. / Packaging and antenna design for wireless SAW temperature sensors in metallic environments. IEEE Sensors 2009 Conference : SENSORS 2009. 2009. S. 807-810 (Proceedings of IEEE Sensors).
Download
@inproceedings{59eed2c07f2c46a895026dfa47c5fb02,
title = "Packaging and antenna design for wireless SAW temperature sensors in metallic environments",
abstract = "We have developed a radio frequency (RF) transponder based on a surface acoustic wave (SAW) device specifically optimized for wireless temperature measurement of rotating shafts. The SAW sensing element is a reflective delay line type with 3 reflectors. The main foci of the paper are on a new compact packaging, and on antenna simulations for 2.4 GHz radio signal transmission to the interrogator. The novel metallic packaging has been designed for smallest possible outer dimensions of 10.0 x 3.1 x 2.0 mm3. In order to streamline the housing for insertion in a borehole, the electrical feedthroughs have been oriented in the longitudinal axis, contrary to the standard vertical axis approach. Antenna simulations were performed to find an optimized design tuned to the metallic surrounding. A slot antenna type was identified as best joint solution for the objectives radiation pattern and antenna gain.",
author = "A. Binder and R. Fachberger and E. Kaldjob and B. Geck",
year = "2009",
doi = "10.1109/ICSENS.2009.5398549",
language = "English",
isbn = "9781424445486",
series = "Proceedings of IEEE Sensors",
pages = "807--810",
booktitle = "IEEE Sensors 2009 Conference",
note = "IEEE Sensors 2009 Conference - SENSORS 2009 ; Conference date: 25-10-2009 Through 28-10-2009",

}

Download

TY - GEN

T1 - Packaging and antenna design for wireless SAW temperature sensors in metallic environments

AU - Binder, A.

AU - Fachberger, R.

AU - Kaldjob, E.

AU - Geck, B.

PY - 2009

Y1 - 2009

N2 - We have developed a radio frequency (RF) transponder based on a surface acoustic wave (SAW) device specifically optimized for wireless temperature measurement of rotating shafts. The SAW sensing element is a reflective delay line type with 3 reflectors. The main foci of the paper are on a new compact packaging, and on antenna simulations for 2.4 GHz radio signal transmission to the interrogator. The novel metallic packaging has been designed for smallest possible outer dimensions of 10.0 x 3.1 x 2.0 mm3. In order to streamline the housing for insertion in a borehole, the electrical feedthroughs have been oriented in the longitudinal axis, contrary to the standard vertical axis approach. Antenna simulations were performed to find an optimized design tuned to the metallic surrounding. A slot antenna type was identified as best joint solution for the objectives radiation pattern and antenna gain.

AB - We have developed a radio frequency (RF) transponder based on a surface acoustic wave (SAW) device specifically optimized for wireless temperature measurement of rotating shafts. The SAW sensing element is a reflective delay line type with 3 reflectors. The main foci of the paper are on a new compact packaging, and on antenna simulations for 2.4 GHz radio signal transmission to the interrogator. The novel metallic packaging has been designed for smallest possible outer dimensions of 10.0 x 3.1 x 2.0 mm3. In order to streamline the housing for insertion in a borehole, the electrical feedthroughs have been oriented in the longitudinal axis, contrary to the standard vertical axis approach. Antenna simulations were performed to find an optimized design tuned to the metallic surrounding. A slot antenna type was identified as best joint solution for the objectives radiation pattern and antenna gain.

UR - http://www.scopus.com/inward/record.url?scp=77951099881&partnerID=8YFLogxK

U2 - 10.1109/ICSENS.2009.5398549

DO - 10.1109/ICSENS.2009.5398549

M3 - Conference contribution

AN - SCOPUS:77951099881

SN - 9781424445486

T3 - Proceedings of IEEE Sensors

SP - 807

EP - 810

BT - IEEE Sensors 2009 Conference

T2 - IEEE Sensors 2009 Conference - SENSORS 2009

Y2 - 25 October 2009 through 28 October 2009

ER -