IP Library Granted Patent US 11,476,823
Granted Patent B2
US 11,476,823 · App. 17/032,694 · Granted Oct 18, 2022

Method, system, and apparatus for resonator circuits and modulating resonators

Inventors: Mark L. Burgener (San Diego, CA); James S. Cable (San Diego, CA)
Assignee: pSemi Corporation
H03H9/0009H01Q1/50H03H7/38H03H7/40H03H7/48H03H9/0014H03H9/542H03H9/547H03H9/6403H03H9/6483H03H9/6489H03H9/706H03H9/725H03H2009/02204H03H2210/015H03H2210/025H03H2210/036H03H2210/04H03H2240/00H03H2250/00H03J2200/10
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Quick Facts
Patent No.
US 11,476,823
App. No.
17/032,694
Granted
Oct 18, 2022
Kind
B2
Abstract

Embodiments of resonator circuits and modulating resonators and are described generally herein. One or more acoustic wave resonators may be coupled in series or parallel to generate tunable filters. One or more acoustic wave resonances may be modulated by one or more capacitors or tunable capacitors. One or more acoustic wave modules may also be switchable in a filter. Other embodiments may be described and claimed.

Claims (51)

1. A tunable resonator module comprising a variable capacitor coupled in parallel with a resonator module including one or more resonators and one or more switches to switch in or switch out corresponding one or more resonators:

wherein the tunable resonator module is implementable in a:

A) series configuration wherein:

a1) a passband of the tunable resonator module:

i) is a function of a fixed resonant frequency of each resonators of the one or more resonators; and

ii) is to be modulated by closing and/or opening switches of the one or more switches to bypass and/or include resonators of the one or more resonators, and

a2) a stopband of the tunable resonator module is to be modulated by varying the variable capacitor; and/or

B) shunt configuration wherein:

b1) a stopband of the tunable resonator module:

i) is a function of a fixed resonant frequency of each resonator of the one or more resonators; and

ii) is to be modulated by closing and/or opening switches of the one or more switches to bypass and/or include resonators of the one or more resonators;

b2) a passband of the tunable resonator module:

iii) is a function of the fixed anti-resonant frequency of each resonators of the one or more resonators, and

vi) is to be modulated by the variable capacitor.

2. The tunable resonator module of claim 1 , wherein the one or more switches are controlled by one or more switch control signals.

3. A tunable resonator module system comprising a plurality of tunable resonator modules according to claim 2 .

4. The tunable resonator module system of claim 3 including a plurality of tunable resonator modules comprising at least a first tunable resonator module implemented in the series configuration and connected to at least a second tunable resonator module implemented in the shunt configuration.

5. The tunable resonator module system of claim 4 , wherein the plurality of tunable resonator modules form a lattice configuration.

6. The tunable resonator module system of claim 4 , wherein the plurality of tunable resonator modules form a T configuration.

7. A tunable resonator module comprising a tunable resonator coupled in parallel with a first variable capacitor, a second variable capacitor coupled in series with a combination of the tunable resonator and the first variable capacitor,

wherein the tunable resonator module is implementable in a:

A) series configuration wherein:

a1) a passband of the tunable resonator module:

i) is a function of a fixed resonant frequency of the tunable resonator; and

ii) is to be modulated by varying the second variable capacitor, and

a2) a stopband of the tunable resonator module:

iii) is a function of a fixed anti-resonant frequency of the tunable resonator

vi) is to be modulated by varying the first variable capacitor; and/or

B) shunt configuration wherein:

a1) a passband of the tunable resonator module:

i) is a function of a fixed anti-resonant frequency of the tunable resonator; and

ii) is to be modulated by varying the first variable capacitor, and

a2) a stopband of the tunable resonator module:

iii) is a function of a fixed resonant frequency of the tunable resonator; and

vi) is to be modulated by varying the second variable capacitor.

8. A tunable resonator block comprising a first tunable resonator module coupled with the tunable resonator module of claim 7 , the first tunable resonator module comprising a variable capacitor coupled in parallel with a resonator module including one or more resonators and one or more switches to switch in or switch out corresponding one or more resonators:

wherein the first tunable resonator is implemented in series configuration and the tunable resonator module of claim 7 is implemented in shunt configuration, and

wherein the first tunable resonator module is implementable in a:

A) series configuration wherein:

a1) a passband of the first tunable resonator module:

i) is a function of a fixed resonant frequency of each resonators of the one or more switchable resonators; and

ii) is to be modulated by closing and/or opening switches of the one or more switches to bypass and/or include resonators of the one or more resonators, and

a2) a stopband of the first tunable resonator module is to be modulated by varying the variable capacitor; and/or

B) shunt configuration wherein:

b1) a stopband of the first tunable resonator module:

i) is a function of a fixed resonant frequency of each resonator of the one or more resonators; and

ii) is to be modulated by closing and/or opening switches of the one or more switches to bypass and/or include resonators of the one or more resonators;

b2) a passband of the first tunable resonator module:

iii) is a function of the fixed anti-resonant frequency of each resonators of the one or more resonators, and

iv) is to be modulated by the variable capacitor.

9. A tunable resonator system comprising a plurality of the tunable resonator blocks of claim 8 coupled with one another to form a ladder configuration.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2025
From: BURGENER, MARK L.; CABLE, JAMES S.
To: PEREGRINE SEMICONDUCTOR CORPORATION
Reel/Frame 070702/0242 →
CHANGE OF NAME Recorded Apr 1, 2025
From: PEREGRINE SEMICONDUCTOR CORPORATION
To: PSEMI CORPORATION
Reel/Frame 070705/0117 →
Continuity (13)
Continuation 16453409 · Jun 26, 2019
Continuation 15607388 · May 26, 2017
Continuation 15046363 · Feb 17, 2016
Division 14214119 · Mar 14, 2014
Continuation In Part 13316243 · Dec 9, 2011
Provisional Application 61801699 · Mar 15, 2013
Provisional Application 61565413 · Nov 30, 2011
Provisional Application 61542783 · Oct 3, 2011
Provisional Application 61521590 · Aug 9, 2011
Provisional Application 61497819 · Jun 16, 2011
Provisional Application 61438204 · Jan 31, 2011
Provisional Application 61422009 · Dec 10, 2010
Related Publication 20210099151A1 · Apr 1, 2021
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