IP Library Granted Patent US 12665574
Granted Patent B2
US 12665574 · App. 18/613,675 · Granted Jun 23, 2026

Switchable acoustic filter topologies with improved performance

Inventors: Kun Chen (Thousand Oaks, CA); Hao Wang (San Jose, CA); Li Chen (Irvine, CA); Ahmad Adel Ahmad Gheethan (Newbury Park, CA); Zhi Shen (Aliso Viejo, CA)
Assignee: SKYWORKS SOLUTIONS, INC.
H03H9/70
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Quick Facts
Patent No.
US 12665574
App. No.
18/613,675
Granted
Jun 23, 2026
Kind
B2
Abstract

An adjustable filter having a first contact; a second contact; and one or more switchable resonator circuits coupled between the first contact and the second contact, each switchable resonator circuit including a switch, a first impedance, and a resonator coupled in parallel with a second impedance, a parallel combination of the resonator and second impedance being coupled in series with the first impedance.

Claims (59)

1 . An adjustable filter comprising:

a first contact;

a second contact; and

one or more switchable resonator circuits coupled between the first contact and the second contact, the one or more switchable resonator circuits being coupled in series with one another between the first contact and the second contact, each switchable resonator circuit including

a switch,

a first impedance, and

a resonator coupled in parallel with a second impedance, a parallel combination of the resonator and second impedance being coupled in series with the first impedance.

2 . An adjustable filter comprising:

a first contact;

a second contact; and

one or more switchable resonator circuits coupled between the first contact and the second contact, each switchable resonator circuit including a switch, a first impedance, and a resonator coupled in parallel with a second impedance, a parallel combination of the resonator and second impedance being coupled in series with the first impedance; and

a resonator circuit coupled in parallel with the one or more switchable resonator circuits between the first contact and second contact, the resonator circuit including

a second parallel combination of a resonator and an impedance, and

a series impedance coupled in series with the second parallel combination.

3 . An adjustable filter comprising:

a first contact;

a second contact; and

one or more switchable resonator circuits coupled between the first contact and the second contact, each switchable resonator circuit including a switch, a first impedance, and a resonator coupled in parallel with a second impedance, a parallel combination of the resonator and second impedance being coupled in series with the first impedance; and

the switch is coupled in parallel with the first impedance and the parallel combination of the resonator and second impedance.

4 . The adjustable filter of claim 1 wherein the switch is coupled in series with the first impedance.

5 . The adjustable filter of claim 1 further comprising a series resonator coupled in series with a first switchable resonator circuit of the one or more switchable resonator circuits.

6 . The adjustable filter of claim 1 wherein the one or more switchable resonator circuits are coupled in parallel with one another between the first contact and the second contact.

7 . The adjustable filter of claim 1 wherein resonator circuits of the one or more resonator circuits further include a parallel resonator coupled in parallel with the parallel combination.

8 . The adjustable filter of claim 1 further comprising a parallel impedance coupled in parallel with the switch.

9 . The adjustable filter of claim 1 further comprising a second switch coupled in series with the second impedance, a series combination of the second switch and second impedance being coupled in parallel with the first impedance.

10 . The adjustable filter of claim 1 further comprising a plurality of resonators including a first group of series resonators and second group of parallel resonators, the first group of series resonators being coupled between an output of a switchable resonator circuit of the one or more switchable resonator circuits and the second contact.

11 . The adjustable filter of claim 10 wherein each second group resonator of the second group of parallel resonators being coupled to a reference node and to a respective first group resonator of the first group of series resonators.

12 . The adjustable filter of claim 10 wherein at least one resonator of the first group and the second group is a variable resonator and at least one resonator of the first group and the second group is a fixed resonator.

13 . An adjustable filter comprising:

a contact;

a first contact;

a second contact;

a third contact;

a first branch coupled between the contact and the first contact;

a second branch coupled between the contact and the second contact;

a third branch coupled between the contact and the third contact; and

one or more switchable resonators coupled to one or more of the first branch, the second branch, and the third branch, the first contact, second contact, and third contact each being located at a respective unique node.

14 . The adjustable filter of claim 13 further wherein the first branch further comprises:

a first plurality of impedances coupled in series with respect to one another; and

a second plurality of impedance coupled to the first plurality of impedance, the third contact, and a reference node.

15 . The adjustable filter of claim 13 wherein the first branch comprises a plurality of resonators coupled in series between the contact and the first contact, and one or more switchable resonators coupled between one or more resonators of the plurality of resonators and a reference node.

16 . The adjustable filter of claim 13 wherein the second branch comprises a first plurality of resonators coupled in series between the contact and the second contact, and a second plurality of resonators, each resonator of the second plurality of resonators being coupled between a resonator of the first plurality of resonators and a reference node,

wherein at least one resonator of the first plurality of resonators is a switchable resonator.

17 . The adjustable filter of claim 16 wherein each switch of the one or more switches is located on a same substrate.

18 . The adjustable filter of claim 13 wherein

the first branch further comprises

a first pair of resonators;

a first impedance coupled to the first pair of resonators;

a parallel combination of at least one impedance and at least one resonator, the parallel combination coupled in series with the first pair of resonators with respect to the first contact and the contact;

at least one second impedance coupled to the first contact;

at least one third impedance coupled between the at least one second impedance and a reference node;

at least two resonators coupled in series with one another with respect to the contact and the reference node, and further coupled to the parallel combination and the first impedance; and

a switch coupled in parallel with one or more resonators of the at least two resonators and configured to selectively bypass the one or more resonators; and

the second branch further comprises

a first plurality of resonators coupled in series with respect to the contact and the second contact;

at least one impedance coupled to the first plurality of resonators;

a second plurality of resonators coupled in parallel with the first plurality of resonators with respect to the contact and first contact;

a module coupled in series with the first plurality of resonators and the second contact; and

a switch coupled between the first plurality of resonators and the contact.