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    • 5. 发明授权
    • Surface acoustic wave device
    • 表面声波装置
    • US5838090A
    • 1998-11-17
    • US972162
    • 1997-11-17
    • Hideaki NakahataKenjiro HigakiSatoshi FujiiHiroyuki KitabayashiShin-ichi Shikata
    • Hideaki NakahataKenjiro HigakiSatoshi FujiiHiroyuki KitabayashiShin-ichi Shikata
    • H03H3/08H03H3/10H03H9/02H03H9/145H03H9/25H03H9/00
    • H03H9/02582
    • An object of the present invention is to improve an SAW propagation velocity V, an electromechanical coupling coefficient (K.sup.2), and a delay time temperature coefficient (TCD) to achieve a high-frequency SAW device and power saving and size reduction of the device. An SAW device according to the present invention includes at least diamond as a substrate material, a c-axis oriented polycrystalline LiNbO.sub.3 layer, arranged on the diamond, an SiO.sub.2 layer arranged on the LiNbO.sub.3 layer, and an interdigital transducer and uses an SAW in an nth mode (n=0, 1, 2: wavelength: .lambda. .mu.m). When the thickness of the LiNbO.sub.3 layer is t.sub.1 (.mu.m), and the thickness of the SiO.sub.2 layer is t.sub.2 (.mu.m), kh.sub.1 =2.pi.(t.sub.1 /.lambda.) and kh.sub.2 =2.pi.(t.sub.2 /.lambda.) fall within predetermined ranges. In addition, the mode of the SAW is selected. With this arrangement, an SAW device having a propagation velocity (V) of 7,000 m/s or more, an electromechanical coupling coefficient (K.sup.2) of 2% or more, and a coefficient TCD of .+-.10 ppm/.degree.C. or less, which is the stability of the device frequency with respect to the temperature, can be provided.
    • 本发明的目的是提高SAW传播速度V,机电耦合系数(K2)和延迟时间温度系数(TCD),以实现高频SAW器件,并且节省设备的功率和尺寸。 根据本发明的SAW器件至少包括作为衬底材料的金刚石,布置在金刚石上的c轴取向的多晶LiNbO 3层,布置在LiNbO 3层上的SiO 2层,以及叉指换能器,并且使用 第n个模式(n = 0,1,2:波长:λm)。 当LiNbO 3层的厚度为t1(μm),SiO 2层的厚度为t2(μm)时,kh1 =2π(t1 /λ),kh2 =2π(t2 /λ)落在规定的范围内 范围。 此外,选择SAW的模式。 根据该结构,具有传播速度(V)为7000m / s以上,机电耦合系数(K2)为2%以上,系数TCD为+/- 10ppm /℃的SAW器件,或 可以提供相对于温度的装置频率的稳定性。