IP Library › Granted Patent US 11,646,757
Granted Patent B2
US 11,646,757 · App. 17/086,346 · Granted May 9, 2023

Notch filters for selective emissions suppression

Inventor: David Richard Pehlke (Westlake Village, CA)
Assignee: Skyworks Solutions, Inc.
H04B1/1036H04B1/006H04B1/0057H04B2001/1063
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Quick Facts
Patent No.
US 11,646,757
App. No.
17/086,346
Granted
May 9, 2023
Kind
B2
Abstract

Architectures and techniques relate to selectively implementing certain components to suppress emissions. For example, an emissions-suppression circuit can include a notch filter associated with a first frequency range, a switch assembly coupled to the notch filter, and a duplexer coupled to the switch assembly. The switch assembly can be configured to, in a filter state, couple the notch filter to a transmit path and configured to, in a bypass state, decouple the notch filter from the transmit path. The transmit path can be associated with two or more switch connections in the notch-filter state and associated with one switch connection in the bypass state. The duplexer can include a transmit filter that is associated with a second frequency range.

Claims (40)

1. An emissions-suppression circuit comprising:

a notch filter associated with a first frequency range;

a switch assembly including a first switch, the switch assembly being configured to: in a filter state, couple the notch filter and the first switch to a transmit path, and in a bypass state, decouple the notch filter and the first switch from the transmit path, the transmit path being associated with a first number of switch connections in the filter state and being associated with a second number of switch connections in the bypass state, the first number being more than the second number; and

a duplexer coupled to the switch assembly, the duplexer including a transmit filter that is associated with a second frequency range.

2. The emissions-suppression circuit of claim 1 wherein the first frequency range is associated with a public safety frequency band and the notch filter is configured to implement a specification associated with the public safety frequency band.

3. The emissions-suppression circuit of claim 1 wherein the first frequency range is about 769 MHz to 775 MHz and the second frequency range is about 777 MHz to 787 MHz.

4. The emissions-suppression circuit of claim 1 wherein the duplexer includes a receive filter, the transmit filter and the receive filter being associated with a same frequency band.

5. The emissions-suppression circuit of claim 1 wherein the switch assembly includes an input node, a first filter node coupled to the notch filter, a second filter node coupled to the notch filter, an output node, and a second switch, the switch assembly being configured to, in the filter state, control the second switch to couple the input node to the first filter node and control the first switch to couple the output node to the second filter node, the switch assembly being configured to, in the bypass state, control the second switch to couple the input node to the output node.

6. The emissions-suppression circuit of claim 1 wherein the switch assembly includes a single-pole-double-throw switch and the first switch is a single-pole-single-throw switch, the switch assembly being configured to, in the bypass state, control the single-pole-double-throw switch to bypass the notch filter and the single-pole-single-throw switch.

7. The emissions-suppression circuit of claim 5 wherein the single-pole-double-throw switch is configured to couple to a power amplifier and the duplexer is configured to couple to an antenna.

8. A radio-frequency module comprising:

a packaging substrate;

a first filter implemented on the packaging substrate and configured to attenuate signals associated with one or more frequencies;

a switch assembly implemented on the packaging substrate and coupled to the first filter, the switch assembly including a first switch, the switch assembly being configured to (i) implement a filter state in which the first filter and the first switch are part of a transmit path, and (ii) implement a bypass state in which the transmit path bypasses the first filter and the first switch, the filter state being associated with a first number of enabled switch connections and the bypass state being associated with a second number of enabled switch connections, the first number being more than the second number; and

a second filter implemented on the packaging substrate and coupled to the switch assembly.

9. The radio-frequency module of claim 8 wherein the one or more frequencies are associated with a public safety frequency band and the first filter is configured to implement a specification associated with the public safety frequency band.

10. The radio-frequency module of claim 8 wherein the first filter is configured to attenuate signals associated with a first frequency range and the second filter is configured to pass signals associated with a second frequency range that is adjacent to the first frequency range.

11. The radio-frequency module of claim 8 wherein the second filter is a transmit filter that is implemented in a duplexer, the duplexer including a receive filter that is associated with a same frequency band as the transmit filter.

12. The radio-frequency module of claim 8 wherein the switch assembly includes an input node, a first filter node coupled to the first filter, a second filter node coupled to the first filter, and an output node coupled to the second filter.

13. The radio-frequency module of claim 12 wherein the switch assembly further includes a second switch and, in the filter state, the second switch couples the input node to the first filter node and the first switch couples the output node to the second filter node, and, in the bypass state, the second switch couples the input node to the output node.

14. The radio-frequency module of claim 8 wherein the first switch includes a single-pole-single-throw switch.

15. A radio-frequency device comprising:

a power amplifier;

a notch filter;

a switch assembly coupled to the power amplifier and the notch filter, the switch assembly including a first switch, the switch assembly being configured to, in a filter state, couple the notch filter and the first switch to a transmit path and configured to, in a bypass state, decouple the notch filter and the first switch from the transmit path, the filter state being associated with a first number of enabled switch connections and the bypass state being associated with a second number of enabled switch connections, the first number being more than the second number;

a controller coupled to the switch assembly and configured to provide a control signal to the switch assembly;

a duplexer coupled to the switch assembly; and

an antenna coupled to the duplexer.

16. The radio-frequency device of claim 15 wherein the notch filter is associated with a first frequency range and the duplexer includes a transmit filter that is associated with a second frequency range that is adjacent to the first frequency range.

17. The radio-frequency device of claim 15 wherein the switch assembly includes an input node, a first filter node coupled to the notch filter, a second filter node coupled to the notch filter, an output node, and a second switch, the switch assembly being configured to, in the filter state, control the second switch to couple the input node to the first filter node and control the first switch to couple the output node to the second filter node, the switch assembly being configured to, in the bypass state, control the second switch to couple the input node to the output node.

18. The radio-frequency device of claim 15 wherein the notch filter is associated with a public safety frequency band.

19. An emissions-suppression circuit comprising:

a notch filter associated with a first frequency range;

a switch assembly including a first switch, an input node, a first filter node coupled to the notch filter, a second filter node coupled to the notch filter, an output node, and a second switch, the switch assembly being configured to, in the filter state, control the second switch to couple the input node to the first filter node and control the first switch to couple the output node to the second filter node, the switch assembly being configured to, in the bypass state, control the second switch to couple the input node to the output node; and

a duplexer coupled to the switch assembly, the duplexer including a transmit filter that is associated with a second frequency range.

20. A radio-frequency module comprising:

a packaging substrate;

a first filter implemented on the packaging substrate and configured to attenuate signals associated with one or more frequencies;

a switch assembly implemented on the packaging substrate and coupled to the first filter, the switch assembly including a first switch, an input node, a first filter node coupled to the first filter, a second filter node coupled to the first filter, an output node, and a second switch, the switch assembly being configured to (i) implement a filter state in which the second switch couples the input node to the first filter node and the first switch couples the output node to the second filter node, and (ii) implement a bypass state in which the second switch couples the input node to the output node; and

a second filter implemented on the packaging substrate and coupled to the switch assembly.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2021
From: PEHLKE, DAVID RICHARD
To: SKYWORKS SOLUTIONS, INC.
Reel/Frame 056660/0800 →
Continuity (2)
Provisional Application 62929664 · Nov 1, 2019
Related Publication 20210143852A1 · May 13, 2021
Cited By (1)
US 12,627,339