IP Library Granted Patent US 11,671,122
Granted Patent B2
US 11,671,122 · App. 17/445,924 · Granted Jun 6, 2023

Filter reuse in radio frequency front-ends

Inventors: Lup Meng Loh (Plano, TX); Aleksey A. Lyalin (Moorpark, CA); David Richard Pehlke (Westlake Village, CA); Anand Raghavan (Middleton, WI); Jin Hoon Cho (Newbury Park, CA)
Assignee: Skyworks Solutions, Inc.
H04B1/0078H04B1/0458H04B2001/0408
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Quick Facts
Patent No.
US 11,671,122
App. No.
17/445,924
Granted
Jun 6, 2023
Kind
B2
Abstract

Radio frequency front-end systems with filter reuse. In certain embodiments, a front-end system includes a filter, a low noise amplifier (LNA), and a switch interposed between the filter and an input to the LNA. In a first state of the switch, the filter serves to filter a radio frequency signal that is amplified by the LNA. The front-end system further includes a power amplifier that is coupled to the switch. Additionally, in a second state of the switch, the filter serves to filter an amplified radio frequency transmit signal provided by the power amplifier. Accordingly, a filter along a receive path of the front-end system is reused for transmit.

Claims (33)

1. A radio frequency front-end system with filter reuse, the radio frequency front-end system comprising:

an antenna switch;

a filter coupled to an antenna port through the antenna switch;

a filter reuse switch;

a power amplifier having an output coupled to the filter through the filter reuse switch; and

a low noise amplifier having an input coupled to the filter through the filter reuse switch, the low noise amplifier, the filter reuse switch, the filter, and the antenna switch are implemented on a receive module, and the power amplifier is implemented on a power amplifier module.

2. The radio frequency front-end system of claim 1 wherein the filter is a first bandpass filter for a first frequency band.

3. The radio frequency front-end system of claim 2 wherein the power amplifier is operable over the first frequency band and a second frequency band.

4. The radio frequency front-end system of claim 3 further comprising a second bandpass filter for the second frequency band, the output of the power amplifier connected to the first bandpass filter in a first state of the filter reuse switch, and to the second bandpass filter in a second state of the filter reuse switch.

5. The radio frequency front-end system of claim 3 further comprising a second bandpass filter for the second frequency band and a transmit/receive switch, the output of the power amplifier connected to the first bandpass filter in a first state of the transmit/receive switch, and to the second bandpass filter in a second state of the transmit/receive switch.

6. The radio frequency front-end system of claim 3 wherein the first frequency band is n41 and the second frequency band is n78.

7. The radio frequency front-end system of claim 3 wherein the first frequency band is n77 and the second frequency band is n79.

8. A mobile device comprising:

an antenna; and

a radio frequency front-end system including an antenna switch, a filter coupled to the antenna through the antenna switch, a filter reuse switch, a power amplifier having an output coupled to the filter through the filter reuse switch, and a low noise amplifier having an input coupled to the filter through the filter reuse switch, the low noise amplifier and the antenna switch implemented on a receive module, and the power amplifier, the filter reuse switch, and the filter implemented on a power amplifier module.

9. The mobile device of claim 8 wherein the filter is a first bandpass filter for a first frequency band.

10. The mobile device of claim 9 wherein the power amplifier is operable over the first frequency band and a second frequency band.

11. The mobile device of claim 10 wherein the front-end system further includes a second bandpass filter for the second frequency band, the output of the power amplifier connected to the first bandpass filter in a first state of the filter reuse switch, and to the second bandpass filter in a second state of the filter reuse switch.

12. The mobile device of claim 10 wherein the front-end system further includes a second bandpass filter for the second frequency band and a transmit/receive switch, the output of the power amplifier connected to the first bandpass filter in a first state of the transmit/receive switch, and to the second bandpass filter in a second state of the transmit/receive switch.

13. The mobile device of claim 10 wherein the first frequency band is n41 and the second frequency band is n78.

14. The mobile device of claim 10 wherein the first frequency band is n77 and the second frequency band is n79.

15. A method of filter reuse in a mobile device, the method comprising:

generating a radio frequency transmit signal using a power amplifier operating over a first frequency band and a second frequency band;

operating a filter reuse switch in a first state to couple an output of the power amplifier to a filter that is a first bandpass filter for the first frequency band;

providing a filtered transmit signal from the filter to an antenna through an antenna switch;

filtering a radio frequency receive signal received from the antenna switch using the filter;

operating the filter reuse switch in a second state to couple an input of a low noise amplifier to the filter; and

connecting the output of the power amplifier to a second bandpass filter for the second frequency band in a first state of a transmit/receive switch, and connecting the output of the power amplifier to the filter reuse switch in a second state of the transmit/receive switch.

16. The method of claim 15 wherein the first frequency band is n41 and the second frequency band is n78.

17. The method of claim 15 wherein the first frequency band is n77 and the second frequency band is n79.

18. The method of claim 15 further comprising providing filtering in the second frequency band using a second bandpass filter in the second state of the transmit/receive switch.

19. The method of claim 15 wherein the low noise amplifier, the filter reuse switch, the filter, and the antenna switch are implemented on a receive module, and the power amplifier is implemented on a power amplifier module.

20. The method of claim 15 wherein the low noise amplifier and the antenna switch are implemented on a receive module, and the power amplifier, the filter reuse switch, and the filter are implemented on a power amplifier module.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2022
From: LOH, LUP MENG; LYALIN, ALEKSEY A.; PEHLKE, DAVID RICHARD; RAGHAVAN, ANAND; CHO, JIN HOON
To: SKYWORKS SOLUTIONS, INC.
Reel/Frame 060156/0621 →
Continuity (2)
Provisional Application 62706581 · Aug 26, 2020
Related Publication 20220069850A1 · Mar 3, 2022
Cited By (8)
US 12,261,635 US 12,476,595 US 12,500,557 US 12,531,527 US 12,537,487 US 12,574,060 US 12,592,725 US 12,627,339