Title :
Love-mode surface acoustic wave liquid sensors using a polyimide waveguide layer
Author :
Turton, A. ; Battacharyya, D. ; Wood, D.
Author_Institution :
Sch. of Eng., Durham Univ., UK
Abstract :
Love-mode surface acoustic wave devices with polyimide waveguide layers between 0.65 and 1.50 μm thick have been constructed on ST quartz. The devices incorporate a smooth delay line and a corrugated delay line to trap the liquid, preventing viscous entrainment. This could be used as a method to calculate the liquid density from the density-viscosity product. The smooth devices exhibit sensitivities up to 2.6 times greater than for SiO2 waveguide devices, with a larger response from the corrugated devices. The frequency response is linear for small viscosities, but non linear with higher viscosity liquids, suggesting non-Newtonian liquid behavior. Temperature measurements show the temperature coefficient of frequency varies between +30 ppm°C-1 and -53 ppm°C-1 for different polyimide thicknesses, with a temperature independent response estimated for layers 0.95 μm thick.
Keywords :
Love waves; density; density measurement; surface acoustic wave delay lines; surface acoustic wave sensors; surface acoustic wave waveguides; viscosity; 0.65 to 1.50 micron; Love-mode surface acoustic wave devices; ST quartz; corrugated delay line; density-viscosity product; liquid density; liquid sensors; nonNewtonian liquid behavior; polyimide waveguide layer; smooth delay line; temperature coefficient of frequency; viscous entrainment; Acoustic sensors; Acoustic waveguides; Acoustic waves; Corrugated surfaces; Delay lines; Liquid waveguides; Polyimides; Surface acoustic wave devices; Surface acoustic waves; Viscosity;
Conference_Titel :
Frequency Control Symposium and Exposition, 2004. Proceedings of the 2004 IEEE International
Print_ISBN :
0-7803-8414-8
DOI :
10.1109/FREQ.2004.1418461