Smythe R C, Helmbold R C, Hague G E, Snow K A
Piezo Technol. Inc., Orlando, FL.
IEEE Trans Ultrason Ferroelectr Freq Control. 2000;47(2):355-60. doi: 10.1109/58.827420.
Materials in the langasite family are of current interest for both bulk wave and surface wave devices. Piano-convex Y-cut bulk wave resonators have been built and tested on overtones 1 through 9 using LGS (langasite; La(3)Ga(5)SiO(14)), LGN (langanite; La(3)Ga(5.5)Nb(0.5)O(14)), and LGT (langatate; La(3)Ga(5.5)Ta(5.5)O(14)). Frequencies and motional inductances are compared with calculated values, with good agreement except for the motional inductance of LGT. For all three materials, frequency variation is an essentially parabolic function of temperature. For LGN and LGT, reported values of the Q-frequency product are significantly above the classical limit for AT-cut quartz. A maximum 4 f value of 25.6x10(6), where frequency is in megahertz;, was observed for an LGT resonator; for an unplated resonator, 29.2x10(6) was measured. Still higher values are believed possible.
硅酸镧镓钽(langasite)族材料目前在体波和表面波器件方面受到关注。已使用硅酸镧镓钽(LGS;硅酸镧镓钽(La(3)Ga(5)SiO(14)))、铌酸镧镓钽(LGN;铌酸镧镓钽(La(3)Ga(5.5)Nb(0.5)O(14)))和钽酸镧镓钽(LGT;钽酸镧镓钽(La(3)Ga(5.5)Ta(5.5)O(14)))构建并测试了钢琴凸面Y切体波谐振器的1至9次泛音。将频率和运动电感与计算值进行比较,除了LGT的运动电感外,一致性良好。对于所有三种材料,频率变化基本上是温度的抛物线函数。对于LGN和LGT,报道的Q频率乘积值明显高于AT切石英的经典极限。对于一个LGT谐振器,观察到最大4f值为25.6×10(6),其中频率单位为兆赫兹;对于一个未镀膜的谐振器,测量值为29.2×10(6)。人们认为可能会有更高的值。