IP Library Granted Patent US 10,097,160
Granted Patent B2
US 10,097,160 · App. 15/166,631 · Granted Oct 9, 2018

Ladder-type filter, duplexer, and module

Inventors: Eiji Kuwahara (Tokyo, JP); Yuki Endo (Tokyo, JP)
Assignee: TAIYO YUDEN CO., LTD.
H03H9/542H03H7/1775H03H7/1783H03H9/0566H03H9/568H03H9/605H03H9/6483H03H9/706H03H9/725
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Quick Facts
Patent No.
US 10,097,160
App. No.
15/166,631
Granted
Oct 9, 2018
Kind
B2
Abstract

A ladder-type filter includes: one or more series resonators connected in series between an input terminal and an output terminal; two or more parallel resonators connected in parallel between the input terminal and the output terminal; a first inductor connected in series between at least two nodes, each of the at least two nodes being located between a corresponding parallel resonator of at least two parallel resonators of the two or more parallel resonators and ground; and a first capacitor connected in series with the first inductor between the at least two nodes.

Claims (45)

1. A ladder-type filter comprising:

one or more series resonators connected in series between an input terminal and an output terminal;

two or more parallel resonators connected in parallel between the input terminal and the output terminal;

a first inductor connected in series between at least two nodes, each of the at least two nodes being located between a corresponding parallel resonator of at least two parallel resonators of the two or more parallel resonators and ground; and

a first capacitor connected in series with the first inductor between the at least two nodes,

wherein each of the at least two nodes is connected to the ground via neither the first inductor nor the first capacitor,

each of the at least two nodes is connected to the corresponding parallel resonator via neither the first inductor nor the first capacitor, and

any capacitor are not connected in parallel with the first inductor and the first capacitor between the at least two nodes.

2. The ladder-type filter according to claim 1 , further comprising:

a filter chip including the one or more series resonators and the two or more parallel resonators formed therein; and

a substrate on which the filter chip is mounted,

wherein at least one of the first inductor and the first capacitor is a chip component mounted on the substrate.

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

a filter chip including the one or more series resonators and the two or more parallel resonators formed therein; and

a substrate on which the filter chip is mounted,

wherein at least one of the first inductor and the first capacitor is formed in the substrate.

4. A duplexer comprising:

a transmit filter connected between a transmit terminal and a common terminal; and

a receive filter connected between a receive terminal and the common terminal,

wherein at least one of the transmit filter and the receive filter is the ladder-type filter according to claim 1 .

5. A module comprising:

a ladder-type filter according to claim 1 .

6. A ladder-type filter comprising:

a first ladder-type filter being a ladder-type filter according to claim 1 ;

a second ladder-type filter being a ladder-type filter according to claim 1 ;

a second inductor connected in series between a first node being one of the at least two nodes in the first ladder-type filter and a second node being one of the at least two nodes in the second ladder-type filter; and

a second capacitor connected in series with the second inductor between the first node and the second node.

7. A ladder-type filter comprising:

one or more series resonators connected in series between an input terminal and an output terminal;

two or more parallel resonators connected in parallel between the input terminal and the output terminal;

a first inductor connected in series between at least two nodes, each of the at least two nodes being located between a corresponding parallel resonator of at least two parallel resonators of the two or more parallel resonators and ground;

a first capacitor connected in series with the first inductor between the at least two nodes;

a second inductor connected in series between at least one node of the at least two nodes and the ground; and

a second capacitor connected in parallel to the second inductor between the at least one node and the ground.

8. The ladder-type filter according to claim 7 , further comprising:

a third inductor connected in parallel to the second inductor and connected in series with the second capacitor between the at least one node and the ground.

9. A ladder-type filter comprising:

one or more series resonators connected in series between an input terminal and an output terminal;

two or more parallel resonators connected in parallel between the input terminal and the output terminal;

a first inductor connected in series between at least two nodes, each of the at least two nodes being located between a corresponding parallel resonator of at least two parallel resonators of the two or more parallel resonators and ground;

a first capacitor connected in series with the first inductor between the at least two nodes;

second inductors, each of the second inductors being connected in series between a corresponding node of the at least two nodes and the ground; and

second capacitors, each of the second capacitors being connected in parallel to a corresponding second inductor of the second inductors between a corresponding node of the at least two nodes and the ground.

10. The ladder-type filter according to claim 9 , further comprising:

third inductors, each of the third inductors being connected in parallel to a corresponding second inductor of the second inductors and connected in series with a corresponding second capacitor of the second capacitors between a corresponding node of the at least two nodes and the ground.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2016
From: KUWAHARA, EIJI; ENDO, YUKI
To: TAIYO YUDEN CO., LTD.
Reel/Frame 038737/0114 →
Priority Claims (1)
JP 2015-115178 · Jun 5, 2015 · national
Continuity (1)
Related Publication 20160359470A1 · Dec 8, 2016