IP Library Granted Patent US 9,467,117
Granted Patent B2
US 9,467,117 · App. 14/248,111 · Granted Oct 11, 2016

Ladder-type elastic wave filter and antenna duplexer using same

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Quick Facts
Patent No.
US 9,467,117
App. No.
14/248,111
Granted
Oct 11, 2016
Kind
B2
Abstract

In a ladder-type elastic wave filter, a resonance frequency of a second parallel resonator is higher than that of a series resonator and lower than an antiresonance frequency of a series resonator. With this configuration, an attenuation pole is formed by the second parallel resonator at a frequency region lower than an attenuation pole formed by the series resonator in a frequency region higher than the passband of the ladder-type elastic wave filter.

Claims (45)

1. A ladder-type elastic wave filter comprising:

an input terminal, an output terminal, and a ground terminal;

a series resonator connected between the input terminal and the output terminal;

a first parallel resonator connected between the series resonator and the ground terminal and having a resonance frequency lower than an antiresonance frequency of the series resonator; and

a second parallel resonator connected between the series resonator and the ground terminal, a resonance frequency of the second parallel resonator being higher than a resonance frequency of the series resonator and lower than the antiresonance frequency of the series resonator, the second parallel resonator including cascade-connected resonators, each of the cascade-connected resonators having an equal capacitance.

2. The ladder-type elastic wave filter of claim 1 wherein the second parallel resonator is connected in parallel to the first parallel resonator.

3. The ladder-type elastic wave filter of claim 1 wherein the second parallel resonator has a capacitance smaller than a capacitance of the first parallel resonator.

4. The ladder-type elastic wave filter of claim 3 further comprising a plurality of parallel arms, the first parallel resonator being connected to the series resonator via one of the plurality of parallel arms, and the second parallel resonator being connected to the series resonator via one of the plurality of parallel arms that is other than a parallel arm among the plurality of parallel arms which is nearest to the input terminal.

5. The ladder-type elastic wave filter of claim 1 further comprising:

a piezoelectric substrate;

comb electrodes formed on the piezoelectric substrate, the comb electrodes including a first comb electrode included in the first parallel resonator and a second comb electrode included in the second parallel resonator; and

a dielectric layer covering the comb electrodes and having a frequency temperature coefficient with an opposite sign to a frequency temperature coefficient of the piezoelectric substrate, a part of the dielectric layer covering the second comb electrode being thicker than a part of the dielectric layer covering the first comb electrode.

6. The ladder-type elastic wave filter of claim 1 further comprising:

a piezoelectric substrate;

comb electrodes formed on the piezoelectric substrate, the comb electrodes including a first comb electrode included in the first parallel resonator and a second comb electrode included in the second parallel resonator; and

a dielectric layer covering the second comb electrode and having a frequency temperature coefficient with an opposite sign to a frequency temperature coefficient of the piezoelectric substrate, the dielectric layer not covering the first comb electrode.

7. An antenna duplexer comprising;

a first filter including the ladder-type elastic wave filter of claim 1 ; and

a second filter having a passband higher than a passband of the first filter.

8. The ladder-type elastic wave filter of claim 1 wherein the resonance frequency of the first parallel resonator is lower than the resonance frequency of the series resonator.

9. A ladder-type elastic wave filter comprising:

an input terminal, an output terminal, and a ground terminal;

a series resonator connected between the input terminal and the output terminal;

a first parallel resonator connected between the series resonator and the ground terminal and having a resonance frequency lower than an antiresonance frequency of the series resonator;

a second parallel resonator connected between the series resonator and the ground terminal, a resonance frequency of the second parallel resonator being higher than a resonance frequency of the series resonator and lower than the antiresonance frequency of the series resonator; and

a third parallel resonator connected between the series resonator and the ground terminal and having a resonance frequency higher than the antiresonance frequency of the series resonator.

10. The ladder-type elastic wave filter of claim 9 wherein the second parallel resonator has a capacitance smaller than a capacitance of the third parallel resonator.

11. The ladder-type elastic wave filter of claim 10 wherein the second parallel resonator includes cascade-connected resonators, and the third parallel resonator includes fewer cascade-connected resonators than a number of cascade-connected resonators included in the second parallel resonator.

12. An antenna duplexer comprising:

a first filter including the ladder-type elastic wave filter of claim 9 ; and

a second filter having a passband higher than a passband of the first filter.

13. The ladder-type elastic wave filter of claim 9 wherein the resonance frequency of the first parallel resonator is lower than the resonance frequency of the series resonator.

14. A ladder-type elastic wave filter comprising:

an input terminal, an output terminal, and a ground terminal;

a series resonator connected between the input terminal and the output terminal;

a first parallel resonator connected between the series resonator and the ground terminal and having a resonance frequency lower than an antiresonance frequency of the series resonator; and

a second parallel resonator connected between the series resonator and the ground terminal and having a resonance frequency higher than the antiresonance frequency of the series resonator, the second parallel resonator including cascade-connected resonators, each of the cascade-connected resonators having an equal capacitance.

15. The ladder-type elastic wave filter of claim 14 wherein a relation between a capacitance C1 of the first parallel resonator and a capacitance C2 of the second parallel resonator satisfies a condition of 0.1≦C2/(C1+C2)≦0.7.

16. The ladder-type elastic wave filter of claim 14 wherein a relation between a capacitance C1 of the first parallel resonator and a capacitance C2 of the second parallel resonator satisfies a condition of 0.1≦C2/(C1+C2)≦0.5.

17. The ladder-type elastic wave filter of claim 14 wherein the first parallel resonator includes a plurality of first parallel resonators, the ladder-type elastic wave filter includes the plurality of first parallel resonators and parallel arms each connecting the series resonator to one of the plurality of first parallel resonators, and the second parallel resonator is connected in parallel to one of the plurality of first parallel resonators via one of the parallel arms, the one of the plurality of first parallel resonators having a smallest capacitance among the plurality of first parallel resonators.

18. The ladder-type elastic wave filter of claim 14 further comprising a plurality of parallel arms, the first parallel resonator being connected to the series resonator via one of the plurality of parallel arms, and the second parallel resonator being connected to the series resonator via one of the plurality of parallel arms that is other than a parallel arm among the plurality of parallel arms which is nearest to the input terminal.

19. The ladder-type elastic wave filter of claim 14 wherein the resonance frequency of the first parallel resonator is lower than a resonance frequency of the series resonator.

20. An antenna duplexer comprising:

a first filter including the ladder-type elastic wave filter of claim 14 ; and

a second filter having a passband higher than a passband of the first filter.

Assignments (3)
CHANGE OF NAME Recorded Oct 3, 2016
From: SKYWORKS PANASONIC FILTER SOLUTIONS JAPAN CO., LTD.
To: SKYWORKS FILTER SOLUTIONS JAPAN CO., LTD.
Reel/Frame 040209/0113 →
ASSIGNMENT AND ACKNOWLEDGMENT Recorded May 12, 2015
From: PANASONIC CORPORATION
To: SKYWORKS PANASONIC FILTER SOLUTIONS JAPAN CO., LTD.
Reel/Frame 035649/0570 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2014
From: FUJIWARA, JOJI; TSURUNARI, TETSUYA; KOMATSU, TOMOYA; NAKAMURA, HIROYUKI
To: PANASONIC CORPORATION
Reel/Frame 033244/0212 →