IP Library Patent Application 18588166
Patent Application
App. No. 18/588,166

FILTER WITH MULTIPLE OUTPUTS OR INPUTS TO IMPLEMENT MULTIPLE FILTER FREQUENCY RESPONSES

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Quick Facts
Patent No.
US None
App. No.
18/588,166
Abstract

A filter is provided that includes a set of cascaded resonator stages coupled between a filter input and a first filter output, wherein the filter includes a second filter output coupled to an output of a first or an intermediate one of the set of cascaded resonator stages. Another filter includes a set of cascaded resonator stages coupled between a first filter input and a filter output, wherein the filter includes a second filter input coupled to an input of an intermediate or a last one of the set of cascaded resonator stages. Both filters are configured to apply a first filter frequency response to a first signal propagating via the set of cascaded resonator stages, and apply a second filter frequency response to a second signal propagating via a subset of one or more of the set of cascaded resonator stages.

Claims (60)

1 - 30 . (canceled)

31 . An apparatus, comprising:

a first low noise amplifier (LNA);

a second low noise amplifier (LNA);

a first filter comprising a plurality of micro-acoustic resonators and coupled between an antenna and the first and second LNAs, the plurality of micro-acoustic resonators coupled between a first input to the first filter and a first output of the first filter, a sub-set of the plurality of micro-acoustic resonators coupled between the first input to the first filter and a second output of the first filter, the second output bypassing a portion of the plurality of micro-acoustic resonators, wherein the first filter is configured to:

apply a first filter frequency response to a first signal propagating from the first input to the first filter to the first output of the first filter; and

apply a second filter frequency response to a second signal propagating from the first input to the first filter to the second output of the first filter;

a first switch coupled between the first output of the first filter and the first LNA; and

a second switch coupled between the second output of the first filter and the second LNA.

32 . The apparatus of claim 31 , wherein the first filter frequency response is configured for a first communication band and the second filter frequency response is configured for a second communication band different from the first communication band.

33 . The apparatus of claim 31 , further comprising a controller configured to: apply one or more control signals configured to close the first switch and open the second switch based on a first operating mode associated with a first communication band; and apply the one or more control signals to open the first switch and close the second switch based on a second operating mode associated with a second communication band, wherein the first filter frequency response is configured for the first communication band and the second filter frequency response is configured for the second communication band.

34 . The apparatus of claim 31 , wherein the plurality of micro-acoustic resonators comprise one or more series resonators and one or more parallel resonators, the sub-set of the plurality of micro-acoustic resonators including at least a portion of the one or more series resonators and at least a portion of the one or more parallel resonators.

35 . The apparatus of claim 31 , further comprising:

a third switch coupled between the antenna and the first input to the first filter;

a second filter;

a third low noise amplifier (LNA);

a fourth switch coupled between the antenna and the second filter; and

a fifth switch coupled between the second filter and the third LNA.

36 . The apparatus of claim 35 , further comprising a controller configured to apply one or more control signals configured to close the second, third, fourth, and fifth switches and open the first switch based on a first operating mode associated with a carrier aggregation mode; and apply the one or more control signals to close the second and third switches and open the first, fourth, and fifth switches based on a second operating mode.

37 . The apparatus of claim 31 , further comprising:

a second filter including a second input and a third output, wherein the second input is coupled to the first input to the first filter;

a third low noise amplifier (LNA); and

a third switch coupled between the third output of the second filter and the third LNA.

38 . The apparatus of claim 31 , further comprising:

a third low noise amplifier (LNA);

a third switch; and

a second filter including a second input and a third output, wherein the third switch is coupled between the third output of the second filter and the third LNA, wherein the second filter is configured to apply a third filter frequency response to a third signal propagating from the second input to the third output of the second filter.

39 . The apparatus of claim 38 , wherein:

the first filter frequency response is configured for a first communication band and the second filter frequency response is configured for a second communication band different from the first communication band;

the third filter frequency response is configured for a third communication band different from the first communication band and the second communication band; and

the first filter frequency response includes a notch to achieve a specified rejection associated with the third communication band.

40 . The apparatus of claim 38 , wherein:

the first filter frequency response is configured for a first communication band and the second filter frequency response is configured for a second communication band different from the first communication band;

the third filter frequency response is configured for a third communication band different from the first communication band and the second communication band; and

the second filter frequency response includes a notch to achieve a specified rejection associated with the third communication band.

41 . The apparatus of claim 31 , wherein at least one of the plurality of micro-acoustic resonators includes a surface acoustic wave (SAW) resonator or a bulk acoustic wave (BAW) resonator.

42 . An apparatus, comprising:

a first low noise amplifier (LNA);

a first filter comprising a plurality of micro-acoustic resonators and coupled between an antenna and the first LNA, the plurality of micro-acoustic resonators coupled between a first filter input to the first filter input and a filter output of the first filter, a sub-set of the plurality of micro-acoustic resonators coupled between a second filter input to the first filter and the filter output of the first filter, the second filter input to the first filter bypassing a portion of the plurality of micro-acoustic resonators, wherein the first filter is configured to:

apply a first filter frequency response to a first signal propagating from the first filter input to the filter output; and

apply a second filter frequency response to a second signal propagating from the second filter input to the filter output;

a first switch coupled between the antenna and the first filter input; and

a second switch coupled between the antenna and the second filter input.

43 . The apparatus of claim 42 , wherein the first filter frequency response is configured for a first communication band and the second filter frequency response is configured for a second communication band different from the first communication band.

44 . The apparatus of claim 42 , further comprising a controller configured to: apply one or more control signals configured to close the first switch and open the second switch based on a first operating mode associated with a first communication band; and apply the one or more control signals to open the first switch and close the second switch based on a second operating mode associated with a second communication band, wherein the first filter frequency response is configured for the first communication band and the second filter frequency response is configured for the second communication band.

45 . The apparatus of claim 42 , wherein the plurality of micro-acoustic resonators comprise one or more series resonators and one or more parallel resonators, the sub-set of the plurality of micro-acoustic resonators including at least a portion of the one or more series resonators and at least a portion of the one or more parallel resonators.

46 . The apparatus of claim 42 , further comprising:

a second low noise amplifier (LNA);

a second filter coupled between the antenna and the second LNA; and

a third switch coupled between the antenna and a third filter input to the second filter.

47 . The apparatus of claim 46 , further comprising a controller configured to apply one or more control signals configured to close the second and third switches and open the first switch based on a first operating mode associated with a carrier aggregation mode; and apply the one or more control signals to close the second switch and open the first and third switches based on a second operating mode.

48 . The apparatus of claim 42 , further comprising:

a second low noise amplifier (LNA); and

a second filter coupled between the antenna and the second LNA, wherein the second filter includes a third filter input coupled to the first filter input of the first filter.

49 . The apparatus of claim 42 , wherein at least one of the plurality of micro-acoustic resonators includes a surface acoustic wave (SAW) or bulk acoustic wave (BAW) resonator.

50 . An apparatus, comprising:

at least one low noise amplifier (LNA); and

a filter comprising a plurality of micro-acoustic resonators and coupled between an antenna and the at least one LNA, the plurality of micro-acoustic resonators coupled between a first port and a second port of the filter, a sub-set of the plurality of micro-acoustic resonators coupled between the second port and a third port of the filter, the third port bypassing a portion of the plurality of micro-acoustic resonators, wherein the filter is configured to:

apply a first filter frequency response to a first signal propagating from the first port to the second port of the filter; and

apply a second filter frequency response to a second signal propagating from the first port to the third port of the filter or from the third port to the second port of the filter.

Assignments (3)
CHANGE OF OWNER'S ADDRESS Recorded Aug 27, 2024
From: RF360 SINGAPORE PTE. LTD.
To: RF360 SINGAPORE PTE. LTD.
Reel/Frame 068788/0486 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2024
From: TOIVANEN, LASSE JALMARI
To: RF360 EUROPE GMBH
Reel/Frame 066673/0315 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2024
From: RF360 EUROPE GMBH
To: RF360 SINGAPORE PTE. LTD
Reel/Frame 066747/0533 →