Claims
- 1. A surface acoustic wave filter having an input end and an output end, said filter comprising:
- a piezoelectric substrate;
- a plurality of interdigital transducers located on said piezoelectric substrate and arranged along a surface wave propagation direction in a surface wave propagating region, said plurality of interdigital transducers forming a surface acoustic wave filter part having a pass band and having input and output sides directly coupled to said input and output ends of said surface acoustic wave filter, respectively; and
- a one-port SAW resonator, having at least one interdigital transducer and being connected at least between one of said input and output sides of said surface acoustic wave filter part and a ground potential, said one-port SAW resonator being located in a region of the piezoelectric substrate other than said surface wave propagating region,
- a resonance frequency of said one-port SAW resonator being set at a frequency region lower than the pass band of said surface acoustic wave filter part.
- 2. A surface acoustic wave filter in accordance with claim 1, wherein said one-port SAW resonator is formed on said piezoelectric substrate.
- 3. A surface acoustic wave filter in accordance with claim 1, wherein said piezoelectric substrate is formed by a 36.degree. Y cut-LiTaO.sub.3 substrate,
- said interdigital transducer of said one-port SAW resonator being so structured that the following equation (1) is satisfied when said SAW filter is provided with a single said one-port surface acoustic wave resonator: ##EQU3## while the sum of (N.times.A)/f.sub.0 of respective said resonators is not more than 30 when a plurality of said one-port SAW resonators are connected in parallel with each other, assuming that f.sub.0 (MHz) represents the resonance frequency of said one-port SAW resonator, N represents the number of pairs of electrode fingers, and A (.mu.m) represents an overlap length.
- 4. A surface acoustic wave filter in accordance with claim 1, wherein said piezoelectric substrate consists of 64.degree. Y cut-LiNbO.sub.3,
- said interdigital transducer of said one-port SAW resonator being so structured that the following equation (2) is satisfied when said SAW filter is provided with a single said one-port surface acoustic wave resonator: ##EQU4## while the sum of (N.times.A)/f.sub.0 of respective said resonators is not more than 45 when a plurality of said one-port SAW resonators are connected in parallel with each other, assuming that f.sub.0 (MHz) represents the resonance frequency of said one-port SAW resonator, N represents the number of pairs of electrode fingers, and A (.mu.m) represents an overlap length.
- 5. A surface acoustic wave filter in accordance with claim 1, wherein said one-port SAW resonator is connected to said surface acoustic wave filter part to be in parallel with said input or output side of said surface acoustic wave filter part.
- 6. A surface acoustic wave filter in accordance with claim 1, wherein more than two said one-port SAW resonators are connected in parallel with each other to be connected in parallel with said input or output side of said surface acoustic wave filter part.
- 7. A surface acoustic wave filter in accordance with claim 1, wherein said one-port SAW resonator is connected in parallel with each of said input and output sides of said surface acoustic wave filter part.
- 8. A surface acoustic wave filter in accordance with claim 1, wherein said surface acoustic wave filter part is formed by a interdigited interdigital type SAW filter.
- 9. A surface acoustic wave filter in accordance with claim 1, wherein said surface acoustic wave filter part is formed by a two IDTs type SAW filter.
- 10. A surface acoustic wave filter in accordance with claim 1, wherein said surface acoustic wave filter part is formed by a three IDTs type SAW filter.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-169001 |
Jul 1993 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 08/272,151 filed on July 8, 1994, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (7)
Number |
Date |
Country |
0600705 |
Jun 1994 |
EPX |
5210944 |
Feb 1977 |
JPX |
5219044 |
Feb 1977 |
JPX |
0054805 |
Mar 1989 |
JPX |
3222512 |
Oct 1991 |
JPX |
0222512 |
Oct 1991 |
JPX |
2116387 |
Sep 1983 |
GBX |
Non-Patent Literature Citations (4)
Entry |
Patent Abstract of Japan, vo. 15, No. 510 (E-1149) 25 Dec. 1991 & JP-A-03 222 512 (OKI Electric) 1 Oct. 1991 (Abstract). |
Co-pending U.S. Patent Application No. 08/271,195. |
IEEE Transactions on Microwave Theory And Techniques, "Miniature SAW Antenna Duplexer for 800 -MHz Portable Telephone Used in Cellular in Cellular Radio Systems", vol.36, No. 6, Jun. 1988, New York, pp. 1047-1056. |
English Translation of Japan Patent 52-10944. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
272151 |
Jul 1994 |
|