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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 6 of 6  /   
Committee Date Time Place Paper Title / Authors Abstract Paper #
US 2018-10-04
12:40
Miyagi   Evaluation of fluid viscosity in the ultrahigh frequency range using quasi-shear mode c-axis tilted ScAlN thin film resonators
Yui Yamakawa, Takumi Soutome, Rei Karasawa, Takahiko Yanagitani (Waseda Univ.) US2018-53
In the fluid viscosity evaluation based on the QCM (Quartz Crystal Microbalance), the quartz crystal plate is required t... [more] US2018-53
pp.25-29
US 2018-10-04
13:05
Miyagi   c-Axis tilted ScAlN film shear mode resonators for detection of biomolecular interactions in liquid
Hana Yazaki, Takumi Soutome, Rei Karasawa (Waseda Univ.), Shinji Takayanagi (Nagoya Inst. Tech.), Kenji Yoshida (Chiba Univ.), TakahikoYanagitani (Waseda Univ.) US2018-54
Miniature and highly sensitive biosensors are required. c-Axis tilted ScAlN film resonator is suitable for sensing biomo... [more] US2018-54
pp.31-35
US 2018-10-04
13:30
Miyagi   The influence of negative ions generation on various ScAl alloy sputtering targets to ScAlN film properties -- Comparison of EB-melted, arc-melted and hot press sintered ScAl alloy targets --
Rei Karasawa (Waseda Univ.), Shinji Takayanagi (Nagoya Inst. Tech.), Yuka Endo (Waseda Univ.), Makoto Imasaka, Keisuke Morisaka, Yu Suzuki (Furuya Metal Co., Ltd.), Takahiko Yanagitani (Waseda Univ.) US2018-55
 [more] US2018-55
pp.37-42
US 2018-05-21
15:20
Tokyo   Polarity inverted ScAlN multilayer for voltage transformer in rectenna
Rei Karasawa, Yanagitani Takahiko (Waseda Univ) US2018-15
 [more] US2018-15
pp.23-27
US 2017-07-27
15:40
Okayama   Simultaneous viscosity evaluation in the MHz to GHz range by using shear mode HBAR consisting of ScAlN thin film/low TCF substrate
Yui Yamakawa, Ko-hei Sano, Rei Karasawa (Waseda Univ.), Takahiko Yanagitani (Waseda Univ./JST) US2017-42
In order to study relaxation characteristics of viscoelasticity of the liquid, a wide frequency sweep in the range of MH... [more] US2017-42
pp.61-66
US 2017-04-27
16:50
Tokyo   High electromechanical coupling kt2=19% thick ScAlN piezoelectric films for ultrasonic transducer in low frequency of 80MHz
Ko-hei Sano, Rei Karasawa (Waseda Univ.), Yanagitani Takahiko (Waseda Univ./JST-PRESTO) US2017-12
 [more] US2017-12
pp.59-63
 Results 1 - 6 of 6  /   
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