• Title/Summary/Keyword: $LiTaO_3$ 단결정

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Characteristics Analysis of Piezoelectric Transformer using Piezoelectric Single Crystal (압전 단결정을 이용한 압전변압기의 특성해석)

  • Hwang Sung-Phil;Ko Young-In;Kim Moo-Joon;Ha Kang-Lyeol
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.201-204
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    • 2001
  • Rosen형 또는 적층 Rosen형과 같은 압전세라믹 변압기는 고전압, 고효율의 출력특성과 소형이라는 장점을 가지는 반면에, 온도에 따른 압전 특성의 변화가 심하다는 단점을 가진다. 이러한 이유로 압전 단결정과 같은 온도특성이 안정적인 재료를 이용한 변압기의 개발이 진 행되고 있다. 따라서, 본 연구에서는 온도계수가 낮은 $LiTaO_3$ 단 결정$(X-112^\circ\;Y)$을 이용한 압전변압기를 제작 그 특성을 시뮬레이션 및 실험으로 해석하였다.

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Development of an SH-SAW sensor for detection of DNA (DNA 측정용 SH-SAW 센서 개발)

  • Hur Youngjune;Seon Jooheon;Roh Yongrae
    • Proceedings of the Acoustical Society of Korea Conference
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    • spring
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    • pp.319-322
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    • 2004
  • 본 연구에서는 DNA의 상보적인 결합을 이용하여 DNA 혼성화 반응을 감지할 수 있는 SH형 SAW 센서를 개발하였다. 측정에 사용된 DNA는 15개의 염기를 가진 올리고 뉴클레오티드를 사용하였으며 이에 대해 상보적 결합이 가능한 염기서열을 가진 것과 그렇지 않은 미스매치 형태의 DNA 올리고뉴클레오티드를 이용하여 DNA 혼성화 반응 특성을 측정하였다. SH형 SAW 센서는 압전 단결정 $LiTaO_{3}$를 사용하여 100 MHz 발진되는 형태로 제작하였으며, 센서의 지연선 위에 Ti/Au 층을 증착하여 SH기가 수식된 탐침 DNA의 고정화가 가능하게 하였다. 제작된 센서는 Au가 증착된 박막위에 탐침 DNA를 SAM 방법으로 고정화 시켰을 경우와 고정화된 탐침 DNA와 표적 DNA와의 혼성화 반응을 시키고 난 후의 센서의 주파수 변화를 각각 측정하였다. 개발된 DNA 혼성화 반응 측정용 SH형 SAW센서는 DNA 혼성화 특성에 기인한 질량하중 효과에 따른 안정적인 주파수 변화를 나타내었다.

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Development of an SH-SAW Sensor for Detection of DNA (DNA 측정용 SH-SAW 센서 개발)

  • Hur Youngjune;Pak Yukeun Eugene;Roh Yongrae
    • The Journal of the Acoustical Society of Korea
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    • v.24 no.3
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    • pp.160-165
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    • 2005
  • We have developed SH (shear horizontal) surface acoustic wave (SAW) sensors for detection of the immobilization and hybridization of DNA (deoxyribonucleic acid) on the gold coated delay line of transverse SAW devices. The experiments of DNA immobilization and hybridization were performed with 15-mer oligonucleotides (probe and complementary target DNA). The sensor consists of twin SAW delay line oscillators operating at 100 MHz fabricated on $36^{\circ}$ rotated Y-cut $LiTaO_3$ piezoelectric single crystals. The relative change in the frequency of the two oscillators was monitored to detect the hybridization between target DNA and immobilized probe DNA in pH 7.4 PBS (phosphate buffered saline) solution. The measurement results showed a good response of the sensor to the mass loading effects of the DNA immobilization and hybridization with the sensitivity up to $1.55{\cal}ng/{\cal}ml/Hz$.

Improvement in Sensitivity by Increasing the Frequency of SAW Sensors for DNA Detection (DNA 측정용 SAW 센서의 주파수 증대에 의한 감도향상)

  • Sakong, Jung-Yul;Kim, Jae-Ho;Lee, Soo-Suk;Roh, Yong-Rae
    • The Journal of the Acoustical Society of Korea
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    • v.26 no.1
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    • pp.42-47
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    • 2007
  • In this paper. we have studied improvement in sensitivity by increasing the frequency of SAW sensors for detecting the immobilization and hybridization of DNA. The sensor consists of twin SAW delay lines operating at 200MHz, a sensing channel and a reference channel. fabricated on $36^{\circ}$ rotated Y-cut X-propagation $LiTaO_3$ crystals. The optimum concentration of probe and target DNA was decided for the improvement of detection mechanism. and digital syringe pump system was used to reduce the human errors. The hybridization between immobilized probe DNA and target DNA on the gold-coated delay line results in mass loading on the delay line of the sensing channel. Thus, the relative frequency change was monitored in relation to the mass loading. The measurement results showed a good response of the sensor to the DNA hybridization with a maximum sensitivity level up to 0.066ng/m1/Hz.

The Study on development of a SAW SO$_2$ gas sensor (표면탄성파를 이용한 아황산 가스센서 개발에 관한 연구)

  • Lee, Young-Jin;Kim, Hak-Bong;Roh, Yong-Rae;Cho, Hyun-Min;Baik, Sung;,
    • The Journal of the Acoustical Society of Korea
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    • v.16 no.2
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    • pp.89-94
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    • 1997
  • A new type SO$_2$ gas sensor with a particular inorganic thin film on SAW devices was developed. The sensor consisted of twin SAW oscillators of the center frequency of 54 MHz fabricated on the LiTaO$_3$ piezoelectric single crystal. One delay line of the sensor was coated with a CdS thin film that selectively adsorbed and desorbed SO$_2$, while the other was uncoated for use as a stable reference. Deposition of the CdS thin film was carried out by the spray pyrolysis method using an ultrasonic nozzle. The sensor could measure the concentration in air less than 0.25 parts per million of SO$_2$. Stability of the sensor turned out to be as good as less than 20ppm, recovery time after each measurement was as short as 5 minutes. Repeatability of the measurement was confirmed through so many reiterated experiments. Hence, the SAW sensor developed through this work showed promising performance as a microsensing tool of SO$_2$. Further work required to improve the performance of the sensor includes enhancement of the reactivity of the CdS thin film with SO$_2$ through appropriate dopant addition, an increase of the center frequency of the SAW device.

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