Claims
- 1. A surface acoustic wave filter, comprising:a substrate having mutually parallel tracks for surface acoustic waves; at least three resonators in said tracks, each of said resonators having reflectors, an interdigital transducer disposed between two of said reflectors, a pair of electrical connections, and a plurality of electrode fingers disposed at a finger periodicity; said resonators including a first type of resonator connected in series through said connections and a second type of resonator connected in parallel with said first type of resonator; and said resonators including n series-connected resonators Rs1, . . . Rsx, . . . Rsn having a different finger periodicity ps1, . . . psx, . . . psn of said electrode fingers in said interdigital transducers, wherein n and x are integers, n≧3 and 1<x<n, and a resonator with a smallest finger periodicity disposed on an inside, so that for at least one value of x: psx<ps1<psn.
- 2. The SAW filter according to claim 1, wherein:said resonators include a resonator having a greatest finger periodicity disposed on an outside.
- 3. The SAW filter according to claim 1, including:four basic members, one of said basic members having a series-connected resonator and a parallel-connected resonator, one of said resonators belonging to up to two of said basic members; and ps2<ps1=ps3<ps4 or ps3<ps1=ps2<ps4, for said finger periodicity of said electrode fingers of said series resonators.
- 4. The SAW filter according to claim 1, wherein said finger periodicity of said interdigital transducers has a discrepancy of 0.1-3% from a standard finger periodicity corresponding to a mid-frequency of a pass band of the SAW filter.
- 5. The SAW filter according to claim 1, wherein said resonators include r series resonators having a standard finger periodicity, and s series resonators having a finger periodicity differing from said standard finger periodicity, wherein: s/r≦2.
- 6. The SAW filter according to claim 1, including basic members each having a series-connected resonator and an associated parallel-connected resonator, said series-connected resonator of at least one of said basic members having a resonant frequency equal to an antiresonant frequency of said associated parallel resonator.
- 7. The SAW filter according to claim 1, including basic members each having a series-connected resonator and an associated parallel-connected resonator, said series-connected resonator of at least one of said basic members having a resonant frequency greater than an antiresonant frequency of said associated parallel resonator.
- 8. The SAW filter according to claim 1, including a SAW filter surface and a metallization on said surface, said resonators having steady-state capacitances, said steady-state capacitance of at least one parallel resonator being influenced deliberately by a physically close configuration of said metallization on said surface, and said metallization forming a capacitance with parts or supply lines of said parallel resonator to produce a desired ratio to said steady-state capacitance of said series resonator.
- 9. The SAW filter according to claim 1, including a SAW filter surface and a metallization on said surface, said metallization having a ratio η formed from a quotient b/P of a width b of said fingers of said interdigital transducers and a period P of said fingers of said interdigital transducers, wherein η=0.6 to 0.8.
Priority Claims (1)
Number |
Date |
Country |
Kind |
197 30 710 |
Jul 1997 |
DE |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of copending International Application No. PCT/DE98/01972, filed Jul. 14, 1998, which designated the United States.
US Referenced Citations (9)
Foreign Referenced Citations (5)
Number |
Date |
Country |
44 08 989 |
Dec 1994 |
DE |
196 38 627 |
Apr 1998 |
DE |
0 614 272 |
Sep 1994 |
EP |
9-93072 |
Apr 1997 |
JP |
10-242799 |
Sep 1998 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/DE98/01972 |
Jul 1998 |
US |
Child |
09/484798 |
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US |