IP Library › Granted Patent US 10,355,667
Granted Patent B2
US 10,355,667 · App. 15/610,872 · Granted Jul 16, 2019

Ladder filter, elastic wave filter module, and duplexer

Inventor: Toshiaki Takata (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H03H9/6406H01L41/047H01L41/107H03H7/38H03H9/6483H03H9/725
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,355,667
App. No.
15/610,872
Granted
Jul 16, 2019
Kind
B2
Abstract

A ladder filter defines a transmission filter and has a structure such that a resonator located closest to an input terminal is a parallel-arm resonator, and the parallel-arm resonator located closest to the input terminal includes a plurality of division resonators connected in parallel. At least one division resonator has a resonant frequency and an anti-resonant frequency that are located outside a passband of the ladder filter, and the remaining division resonators and parallel-arm resonators each have an anti-resonant frequency located within the passband.

Claims (60)

1. A ladder filter including a passband, comprising:

an input terminal;

an output terminal;

a series-arm resonator provided at a series arm connecting the input terminal and the output terminal to each other; and

a plurality of parallel-arm resonators provided at respective parallel-arms each connecting the series arm and a ground potential to each other; wherein

each of the series-arm resonator and the plurality of parallel-arm resonators is an elastic wave resonator;

the plurality of parallel-arm resonators include an input-terminal-side parallel-arm resonator located closest to the input terminal;

the input-terminal-side parallel-arm resonator includes a plurality of division resonators connected in parallel;

at least one division resonator among the plurality of division resonators has a resonant frequency and an anti-resonant frequency that are located outside the passband;

remaining ones of the plurality of division resonators other than the at least one division resonator and remaining ones of the plurality of parallel-arm resonators other than the input-terminal-side parallel-arm resonator each have an anti-resonant frequency that is located within the passband; and

the resonant frequency of the at least one division resonator having the resonant frequency and the anti-resonant frequency that are located outside the passband is located within a passband of a second filter connected to the ladder filter.

2. The ladder filter according to claim 1 , wherein the at least one division resonator has an electrode finger pitch that is different from electrode finger pitches of the remaining ones of the plurality of division resonators and the remaining ones of the plurality of parallel-arm resonators.

3. The ladder filter according to claim 1 , further comprising:

a piezoelectric substrate; and

a plurality of IDT electrodes disposed on the piezoelectric substrate.

4. The ladder filter according to claim 1 , wherein an impedance of the ladder filter seen from the input terminal is lower than an impedance of the ladder filter seen from the output terminal.

5. An elastic wave filter module comprising:

a ladder filter with a passband and including:

an input terminal;

an output terminal;

a series-arm resonator provided at a series arm connecting the input terminal and the output terminal to each other; and

a plurality of parallel-arm resonators provided at respective parallel-arms each connecting the series arm and a ground potential to each other; wherein

each of the series-arm resonator and the plurality of parallel-arm resonators is an elastic wave resonator;

the plurality of parallel-arm resonators include an input-terminal-side parallel-arm resonator located closest to the input terminal;

the input-terminal-side parallel-arm resonator includes a plurality of division resonators connected in parallel;

at least one division resonator among the plurality of division resonators has a resonant frequency and an anti-resonant frequency that are located outside the passband;

remaining ones of the plurality of division resonators other than the at least one division resonator and remaining ones of the plurality of parallel-arm resonators other than the input-terminal-side parallel-arm resonator each have an anti-resonant frequency that is located within the passband; and

the resonant frequency of the at least one division resonator having the resonant frequency and the anti-resonant frequency that are located outside the passband is located within a passband of a second filter connected to the ladder filter; and

an amplifier is connected to the input terminal of the ladder filter.

6. The elastic wave filter module according to claim 5 , wherein the ladder filter is a first electronic component chip including the piezoelectric substrate, and the amplifier is a second electronic component chip including an amplifier substrate.

7. The elastic wave filter module according to claim 6 , wherein the first electronic component chip and the second electronic component chip are mounted on a case substrate.

8. The elastic wave filter module according to claim 5 , further comprising a matching circuit connected between the ladder filter and the amplifier.

9. The elastic wave filter module according to claim 5 , wherein the at least one division resonator has an electrode finger pitch that is different from electrode finger pitches of the remaining ones of the plurality of division resonators and the remaining ones of the plurality of parallel-arm resonators.

10. The elastic wave filter module according to claim 5 , wherein the ladder filter further includes:

a piezoelectric substrate; and

a plurality of IDT electrodes disposed on the piezoelectric substrate.

11. The elastic wave filter module according to claim 5 , wherein an impedance of the ladder filter seen from the input terminal is lower than an impedance of the ladder filter seen from the output terminal.

12. A duplexer comprising:

a transmission filter including an elastic wave filter module that includes a ladder filter with a passband; and

a reception filter; wherein

the ladder filter includes:

an input terminal;

an output terminal;

a series-arm resonator provided at a series arm connecting the input terminal and the output terminal to each other; and

a plurality of parallel-arm resonators provided at respective parallel-arms each connecting the series arm and a ground potential to each other; wherein

each of the series-arm resonator and the plurality of parallel-arm resonators is an elastic wave resonator;

the plurality of parallel-arm resonators include an input-terminal-side parallel-arm resonator located closest to the input terminal;

the input-terminal-side parallel-arm resonator includes a plurality of division resonators connected in parallel;

at least one division resonator among the plurality of division resonators has a resonant frequency and an anti-resonant frequency that are located outside the passband;

remaining ones of the plurality of division resonators other than the at least one division resonator and remaining ones of the plurality of parallel-arm resonators other than the input-terminal-side parallel-arm resonator each have an anti-resonant frequency that is located within the passband; and

the resonant frequency of the at least one division resonator having the resonant frequency and the anti-resonant frequency that are located outside the passband is located within a passband of the reception filter; and

an amplifier is connected to the input terminal of the ladder filter.

13. The duplexer according to claim 12 , wherein the ladder filter is a first electronic component chip including the piezoelectric substrate, and the amplifier is a second electronic component chip including an amplifier substrate.

14. The duplexer according to claim 13 , wherein the first electronic component chip and the second electronic component chip are mounted on a case substrate.

15. The duplexer according to claim 12 , further comprising a matching circuit connected between the ladder filter and the amplifier.

16. The duplexer according to claim 12 , wherein the at least one division resonator has an electrode finger pitch that is different from electrode finger pitches of the remaining ones of the plurality of division resonators and the remaining ones of the plurality of parallel-arm resonators.

17. The duplexer according to claim 12 , wherein the ladder filter further includes:

a piezoelectric substrate; and

a plurality of IDT electrodes disposed on the piezoelectric substrate.

18. The duplexer according to claim 12 , wherein an impedance of the ladder filter seen from the input terminal is lower than an impedance of the ladder filter seen from the output terminal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2017
From: TAKATA, TOSHIAKI
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 042563/0204 →
Priority Claims (1)
JP 2014-245793 · Dec 4, 2014 · national
Continuity (2)
Continuation PCTJP2015083433 · Nov 27, 2015
Related Publication 20170272057A1 · Sep 21, 2017
Cited By (2)
US 12,323,168 US 12,323,169