IP Library › Granted Patent US 10,432,163
Granted Patent B2
US 10,432,163 · App. 15/666,869 · Granted Oct 1, 2019

Variable filter circuit, high frequency module circuit, and communication device

Inventor: Hirotsugu Mori (Kyoto, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H03H7/12H03H7/0115H03H7/0161H03H7/075H03H7/09H03H7/1766H03H7/1775H03H7/38
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Quick Facts
Patent No.
US 10,432,163
App. No.
15/666,869
Granted
Oct 1, 2019
Kind
B2
Abstract

The present disclosure provides a variable filter circuit capable of controlling a band width and a center frequency of a pass band, and also capable of suppressing the total number of pieces of variable reactance. That is, a variable filter circuit includes a serial arm in which a plurality of circuit elements are connected in series with respect to a signal path and a parallel arm in which a plurality of circuit elements are connected in parallel with respect to the signal path, wherein the serial arm and the parallel arm each includes a variable reactance element, a series reactance element that is connected in series to the variable reactance element and resonates therewith, and a parallel reactance element that is connected in parallel to the variable reactance element and resonates therewith.

Claims (64)

1. A variable filter circuit comprising:

a plurality of serial arms, a first serial arm including a plurality of circuit elements that are connected in series with respect to a signal path; and

a first parallel arm including a plurality of circuit elements that are connected between the signal path and ground,

wherein the first serial arm and the first parallel arm each includes:

a variable reactance element;

a series reactance element connected in series to the variable reactance element and that resonates with the variable reactance element; and

a parallel reactance element connected in parallel to the variable reactance element and that resonates with the variable reactance element,

wherein, in each of the first serial arm and the first parallel arm, a frequency at which the variable reactance element and the parallel reactance element resonate is lower than a frequency at which the variable reactance element and the series reactance element resonate, and

wherein at least one of the plurality of serial arms is connected on each side of the first parallel arm.

2. The variable filter circuit according to claim 1 ,

wherein, in the first serial arm, the variable reactance element and the parallel reactance element are connected in parallel and form a parallel circuit, and the series reactance element is connected in series to the parallel circuit.

3. The variable filter circuit according to claim 2 ,

wherein, in the first parallel arm, the variable reactance element and the parallel reactance element are connected in parallel and form a parallel circuit, and the series reactance element is connected in series with the parallel circuit.

4. The variable filter circuit according to claim 2 ,

wherein, in the first parallel arm, the variable reactance element and the series reactance element are connected in series, and the parallel reactance element is connected in parallel with the variable reactance element and the series reactance element.

5. The variable filter circuit according to claim 1 ,

wherein, in the first parallel arm, the variable reactance element and the series reactance element are connected in series, and the parallel reactance element is connected in parallel with the variable reactance element and the series reactance element.

6. The variable filter circuit according to claim 1 ,

wherein, in the first parallel arm, the variable reactance element and the parallel reactance element are connected in parallel and form a parallel circuit, and the series reactance element is connected in series with the parallel circuit.

7. The variable filter circuit according to claim 1 ,

wherein the variable reactance element is a variable capacitance element, and

the series reactance element and the parallel reactance element are inductors.

8. The variable filter circuit according to claim 1 , further comprising:

a second serial arm of the plurality of serial arms having a same configuration as the first serial arm, the first serial arm and the second serial arm being respectively connected to each side of the first parallel arm in the signal path,

wherein the parallel reactance element of the first serial arm and the parallel reactance element of the second serial arm are inductors connected by a magnetic field coupling.

9. The variable filter circuit according to claim 8 ,

wherein the inductors connected by the magnetic field coupling are components mounted on a chip, and

wherein each of the inductors has a first mounting terminal on a first side of the chip where components are connected to each other, and a second mounting terminal on a second side where the components are connected to circuit input/output portions.

10. The variable filter circuit according to claim 1 ,

wherein a matching circuit is provided at an input or output end of the signal path, the matching circuit making a normalized impedance of the variable filter circuit approach a value of 1 when viewed from the input or output end.

11. A high frequency module circuit comprising:

the variable filter circuit according to claim 1 ;

an antenna tuner connected to an antenna;

a separation circuit configured to separate a transmission signal and a reception signal;

a transmission filter that filters the transmission signal and outputs a filtered signal to the separation circuit; and

a reception filter that filters the reception signal separated by the separation circuit,

wherein the variable filter circuit is disposed between the separation circuit and the antenna tuner.

12. The high frequency module circuit according to claim 11 , further comprising:

a power amplifier,

wherein the power amplifier amplifies a transmission signal and outputs the amplified signal to the transmission filter.

13. A communication device comprising:

the high frequency module circuit according to claim 12 ; and

a radio frequency integrated circuit (RFIC),

wherein the RFIC outputs a transmission signal to the power amplifier.

14. A variable filter circuit comprising:

a serial arm including a plurality of circuit elements that are connected in series with respect to a signal path; and

a parallel arm including a plurality of circuit elements that are connected between the signal path and ground,

wherein the serial arm and the parallel arm each includes:

a variable reactance element;

a series reactance element connected in series to the variable reactance element and that resonates with the variable reactance element; and

a parallel reactance element connected in parallel to the variable reactance element and that resonates with the variable reactance element,

wherein, in each of the serial arm and the parallel arm, a frequency at which the variable reactance element and the parallel reactance element resonate is lower than a frequency at which the variable reactance element and the series reactance element resonate, and

wherein, in the serial arm, the variable reactance element and the series reactance element are connected in series, and the parallel reactance element is connected in parallel with the variable reactance element and the series reactance element.

15. The variable filter circuit according to claim 14 ,

wherein, in the parallel arm, the variable reactance element and the series reactance element are connected in series, and the parallel reactance element is connected in parallel with the variable reactance element and the series reactance element.

16. A variable filter circuit comprising:

a serial arm including a plurality of circuit elements that are connected in series with respect to a signal path; and

a parallel arm including a plurality of circuit elements that are connected between the signal path and ground,

wherein the serial arm and the parallel arm each includes:

a variable reactance element;

a series reactance element connected in series to the variable reactance element and that resonates with the variable reactance element; and

a parallel reactance element connected in parallel to the variable reactance element and that resonates with the variable reactance element,

wherein, in each of the serial arm and the parallel arm, a frequency at which the variable reactance element and the parallel reactance element resonate is lower than a frequency at which the variable reactance element and the series reactance element resonate, and

wherein, in the parallel arm, the variable reactance element and the parallel reactance element are connected in parallel and form a parallel circuit, and the series reactance element is connected in series with the parallel circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2017
From: MORI, HIROTSUGU
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 043172/0780 →
Priority Claims (2)
JP 2015-018322 · Feb 2, 2015 · national
JP 2015-168411 · Aug 28, 2015 · national
Continuity (2)
Continuation PCTJP2016050181 · Jan 6, 2016
Related Publication 20170331444A1 · Nov 16, 2017