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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Platinum and palladium high-temperature transducers on langasite
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Platinum and palladium high-temperature transducers on langasite

机译:兰加石上的铂和钯高温传感器

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摘要

There is a pressing need for the fabrication of surface acoustic wave (SAW) devices capable of operating in harsh environments, at elevated temperature and pressure, or under high power conditions. These SAW devices operate as frequency-control elements, signal-processing filters, and pressure, temperature , and gas sensors. Applications include gas and oil wells, high-power duplexers in communication systems, and automobile and aerospace combustion engines. Under these high-temperature and power-operating conditions, which can reach several hundred degrees centigrade, the typically fabricated aluminum (Al) thin film interdigital transducer (IDT) fails due to electro and stress migration. This work reports on high temperature SAW transducers that have been designed, fabricated, and tested on langasite (LGS) piezoelectric substrates. Platinum (Pt) and palladium (Pd) (melting points at 1769/spl deg/C and 1554.9/spl deg/C, respectively) have been used as thin metallic films for the SAW IDTs fabricated. Zirconium (Zr) was originally used as an adhesion layer on the fabricated SAW transducers to avoid migration into the Pt or Pd metallic films. The piezoelectric LGS crystal, used as the substrate upon which the SAW devices were fabricated, does not exhibit any phase transition up to its melting point at 1470/spl deg/C. A radio frequency (RF) test and characterization system capable of withstanding 1000/spl deg/C has been designed and constructed. The LGS SAW devices with Pt and Pd electrodes and the test system have been exposed to temperatures in the range of 250/spl deg/C to 750/spl deg/C over periods of up to 6 weeks, with the Saw devices showing a reduced degradation better than 7 dB in the magnitude of transmission coefficient, |S/sub 21/|, with respect to room temperature. These results qualify the Pt and Pd LGS SAW IDTs fabricated for the above listed modern applications in harsh environments.
机译:迫切需要制造能够在苛刻的环境中,在升高的温度和压力下或在高功率条件下运行的表面声波(SAW)设备。这些SAW设备用作频率控制元件,信号处理滤波器以及压力,温度和气体传感器。应用包括气井和油井,通信系统中的大功率双工器以及汽车和航空航天内燃机。在这些可以达到数百摄氏度的高温和高功率条件下,通常制造的铝(Al)薄膜叉指式换能器(IDT)由于电迁移和应力迁移而失效。这项工作报告了在硅酸铝(LGS)压电基板上已设计,制造和测试的高温SAW传感器。铂(Pt)和钯(Pd)(熔点分别为1769 / spl deg / C和1554.9 / spl deg / C)已用作制造的SAW IDT的金属薄膜。锆(Zr)最初用作制造的SAW换能器上的粘附层,以避免迁移到Pt或Pd金属膜中。用作制造SAW器件的基板的压电LGS晶体在其1470 / spl deg / C的熔点下均不显示任何相变。设计并构建了能够承受1000 / spl deg / C的射频(RF)测试和表征系统。具有Pt和Pd电极的LGS SAW设备和测试系统已暴露在250 / spl deg / C至750 / spl deg / C的温度下,长达6周,Saw设备的温度降低了。相对于室温,传输系数| S / sub 21 / |的幅度优于7 dB。这些结果证明了为上述恶劣环境下的现代应用而制造的Pt和Pd LGS SAW IDT。

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