DocumentCode
2986083
Title
Electric characteristics of double convex lens type quartz resonators on one quartz blank
Author
Nagaura, Yoshiaki ; Nagaura, Kumiko ; Nagaura, Zen-Ichiro
Author_Institution
Nagaura Lab. Co. Inc., Fukuoka, Japan
fYear
2004
fDate
23-27 Aug. 2004
Firstpage
665
Lastpage
671
Abstract
The objective of this research is to study electric characteristics of double identical two-steps quartz resonators in two concave lens-shapes on one quartz blank. After two concave quartz pockets of single-sided inverted mesa type were made by chemical etching, they were machined from front and rear sides by a dual-face polishing table, and we discovered the following. 1) Two concave pockets were found to become identical convex lens shapes. 2) The longer they were machined the higher they grew stepwise with identical geometry. 3) The deeper the concave blank was polished, the longer the separation between the primary oscillation and secondary and higher ones became. 4) When the quartz plate is etched by HF acid, the damaged amorphous layer becomes approximately 0.2 μm. After this was removed by mechanical polishing, the surface became extremely smooth, and these double resonators could be used as an accurate bio-sensor to measure chemical reactions such as an allergy-reargin reaction. 5) When the quartz blank was processed as above, the sensor was discovered to show a intrinsic higher electrical performance.
Keywords
biosensors; crystal resonators; etching; polishing; 0.2 micron; HF; SiO2; allergy-reargin reaction; biosensors; chemical etching; concave quartz pockets; damaged amorphous layer removal; double convex lens type resonators; double identical resonators; dual-face polishing; primary/secondary oscillation separation; quartz blank processing; quartz resonators; single-sided inverted mesa type pockets; Amorphous materials; Chemicals; Electric variables; Electric variables measurement; Etching; Geometry; Hafnium; Lenses; Mechanical variables measurement; Shape;
fLanguage
English
Publisher
ieee
Conference_Titel
Frequency Control Symposium and Exposition, 2004. Proceedings of the 2004 IEEE International
ISSN
1075-6787
Print_ISBN
0-7803-8414-8
Type
conf
DOI
10.1109/FREQ.2004.1418542
Filename
1418542
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