Claims
- 1. A surface acoustic wave element, comprising:
a base member which has an annular surface formed by at least one portion of a spherical surface and continuing annularly, and which is made of a single crystal; and a surface acoustic wave exciting unit which excites a surface acoustic wave propagating along the annular surface.
- 2. A surface acoustic wave element according to claim 1, wherein the annular surface is formed so as to be along a predetermined route determined by a crystal orientation of the single crystal making the base member.
- 3. A surface acoustic wave element according to claim 1, wherein at least one portion of the base member is made of a piezoelectric material.
- 4. A surface acoustic wave element according to claim 1, wherein a crystal system of the single crystal making the base member is a trigonal system.
- 5. A surface acoustic wave element according to claim 4, wherein the single crystal making the base member is quarts.
- 6. A surface acoustic wave element according to claim 4, wherein the single crystal making the base member is a single crystal selected from a group consisting of a single crystal of LiNbO3 and a single crystal of LiTaO3.
- 7. A surface acoustic wave element according to claim 4, wherein a crystal system of the single crystal making the base member is a trigonal system, and the predetermined route determined by the crystal orientation includes an intersection line between the spherical surface and a plane passing through a center of the spherical surface and crossing a Z-axis of the single crystal of the trigonal system at right angles.
- 8. A surface acoustic wave element according to claim 4, wherein a crystal system of the single crystal making the base member is a trigonal system, and the predetermined route determined by the crystal orientation includes an intersection line between the spherical surface and a plane passing through a center of the spherical surface and being in parallel to a Z-axis of the single crystal of the trigonal system at right angles.
- 9. A surface acoustic wave element according to claim 1, wherein a wavelength of the surface acoustic wave excited by the acoustic wave exciting unit is less than or equal to {fraction (1/10)} of a radius of the spherical surface of the base member.
- 10. A surface acoustic wave element according to claim 1, wherein the acoustic wave exciting unit is provided so as to be along the annular surface, and includes a comb-shaped electrode connected to a high frequency power source.
- 11. A surface acoustic wave element according to claim 10, wherein the branches of the comb-shaped electrode faces each other for over a length which is less than or equal to half of a diameter of the spherical surface of the base member and which is greater than or equal to {fraction (1/100)} of a radius of the spherical surface.
- 12. A surface acoustic wave element according to claim 1, wherein the acoustic wave exciting unit is provided on the annular surface, and has a laser beam absorbing member which absorbs laser beam and excites the surface acoustic wave by a thermoelastic effect.
- 13. A surface acoustic wave element, comprising:
a base member which has an annular surface formed by at least one portion of a spherical surface and continuing annularly, and at least one portion of which is made of a piezoelectric material; and a surface acoustic wave exciting unit which excites a surface acoustic wave propagating along the annular surface, the surface acoustic wave exciting unit facing the annular surface with a gap therebetween.
- 14. A surface acoustic wave element according to claim 13, wherein a wavelength of the surface acoustic wave excited by the acoustic wave exciting unit is less than or equal to {fraction (1/10)} of a radius of the spherical surface of the base member.
- 15. A surface acoustic wave element according to claim 13, wherein the acoustic wave exciting unit is provided so as to be along the annular surface, and includes a comb-shaped electrode connected to a high frequency power source.
- 16. A surface acoustic waste element according to claim 15, wherein the comb-shaped electrode is spaced from the annular surface.
- 17. A surface acoustic wave element according to claim 16, wherein a gap between the comb-shaped electrode and the annular surface is less than or equal to ¼ of an interval of branches of the comb-shaped electrode.
- 18. A surface acoustic wave element according to claim 15, wherein the branches of the comb-shaped electrode faces each other for over a length which is less than or equal to half of a diameter of the spherical surface of the base member and which is greater than or equal to {fraction (1/100)} of a radius of the spherical surface.
- 19. A surface acoustic wave element according to claim 13, wherein the acoustic wave exciting unit is provided on the annular surface, and has a laser beam absorbing member which absorbs laser beam and excites the surface acoustic wave by a thermoelastic effect.
- 20. An electric signal processing apparatus, comprising:
a surface acoustic wave element according to claim 1 or 13; an input portion which inputs a predetermined electric signal to the acoustic wave exciting unit so that a surface acoustic wave propagating along the annular surface is excited by the acoustic wave exciting unit; a detecting unit which detects the surface acoustic wave propagating along the annular surface; and an output portion which outputs an electric signal corresponding to the surface acoustic wave detected by the detecting unit.
- 21. An electric signal processing apparatus, comprising; a surface acoustic wave element according to claim 10 or 15;
the comb-shaped electrode exciting a surface acoustic wave propagating along the annular surface when an electric signal is inputted, and generating an electric signal corresponding to the surface acoustic wave when the surface acoustic wave propagating along the annular surface is received by the comb-shaped electrode, and the electric signal processing apparatus further comprising an input/output portion which inputs a predetermined electric signal to the comb-shaped electrode, and outputs an electric signal generated by the comb-shaped electrode.
- 22. An environment evaluating apparatus, comprising:
an electric signal processing apparatus according to claim 20; and a processing portion which evaluates an environment around the base member or an environment in which the base member is placed, on the basis of at least one of a frequency of the electric signal outputted by the electric signal processing apparatus, an intensity of the electric signal, and time elapsing from the time when an electric signal is inputted to the electric signal processing apparatus to the time when an electric signal is outputted by the electric signal processing apparatus.
- 23. An environment evaluating apparatus, comprising:
an electric signal processing apparatus according to claim 21; and a processing portion which evaluates an environment around the base member or an environment in which the base member is placed, on the basis of at least one of a frequency of the electric signal outputted by the electric signal processing apparatus, an intensity of the electric signal, and time elapsing from the time when an electric signal is inputted to the electric signal processing apparatus to the time when an electric signal is outputted by the electric signal processing apparatus.
- 24. An analyzing method, comprising:
preparing a base member in which a base member is prepared, the base member having an annular surface formed by at least one portion-of a spherical surface and continuing annularly, and a reacting portion which is formed along the annular surface and reacts with a material to be inspected; reacting the reacting portion to the material to be inspected; propagating a surface acoustic wave along the annular surface; and detecting the surface acoustic wave propagating.
- 25. An analyzing method according to claim 19, wherein the material to be inspected is an internal material of an animal, and the reacting of the reacting portion has orally dosing the animal with the base member, and recovering the base member orally dosed.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-311788 |
Oct 2001 |
JP |
|
2001-311789 |
Oct 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JP02/10477, filed Oct. 9, 2002, which was not published under PCT Article 21 (2) in English.
[0002] This application is based upon and claims the benefit of priority from prior Japanese Patent Applications No. 2001-311788, filed Oct. 9, 2001; and No. 2001-311789, filed Oct. 9, 2001, the entire contents of both of which are incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP02/10477 |
Oct 2002 |
US |
Child |
10819365 |
Apr 2004 |
US |