Surface acoustic wave device with lithium tantalate on a sapphire substrate and filter using the same
A surface acoustic wave device includes a piezoelectric substrate having a first surface on which comb-like electrodes are formed, and a second surface, and a support substrate joined to the second surface of the piezoelectric substrate. The piezoelectric substrate is made of lithium, tantalate, and the support substrate is made of sapphire. The following expressions being satisfied: T/t< ⅓ ( 1 ) T/λ> 10 ( 2 ) where T is a thickness of the piezoelectric substrate, t is a thickness of the support substrate, and λ is a wavelength of a surface acoustic filter, propagated along the first surface of the piezoelectric substrate.
1. A surface acoustic wave device comprising:
a piezoelectric substrate having a first surface on which comb-like electrodes are formed, and a second surface; and
a support substrate joined to the second surface of the piezoelectric substrate,
the piezoelectric substrate being made of lithium tantalate, and the support substrate being made of sapphire,
the following expressions being satisfied:
T/t< ⅓ (1)
T/λ> 10 (2)
where T is a thickness of the piezoelectric substrate, t is a thickness of the support substrate, and λ is a wavelength of an IDT forming a resonator including the comb-like electrodes, wherein a wave with the wavelength λ is propagated along the first surface of the piezoelectric substrate.
2. The surface acoustic wave device as claimed in claim 1 ,
wherein the piezoelectric substrate is a Y-cut X-propagation piezoelectric substrate.
3. The surface acoustic wave device as claimed in claim 1 ,
wherein the surface acoustic wave device is a filter.
4. A filter comprising:
a piezoelectric substrate having a first surface on which comb-like electrodes are arranged so as to form a transmit filter and a receive filter, and a second surface; and
a support substrate joined to the second surface of the piezoelectric substrate,
the piezoelectric substrate being made of lithium tantalate, and the support substrate being made of sapphire,
the following expressions being satisfied:
T/t< ⅓ (1)
T/λ> 10 (2)
where T is a thickness of the piezoelectric substrate, t is a thickness of the support substrate, and λ is a wavelength of an IDT forming a resonator including the comb-like electrodes, wherein a wave with the wavelength λ is propagated along the first surface of the piezoelectric substrate.