IP Library Granted Patent US 12683639
Granted Patent B2
US 12683639 · App. 18/453,205 · Granted Jul 14, 2026

Antenna switch for time division duplexing and frequency division duplexing

Inventors: Joshua Haeseok Cho (Irvine, CA); Stephane Richard Marie Wloczysiak (Irvine, CA); Thomas Obkircher (Santa Ana, CA); Junhyung Lee (Irvine, CA); Rimal Deep Singh (Irvine, CA); Bipul Agarwal (Irvine, CA)
Assignee: Skyworks Solutions, Inc.
H04B1/1638H04B1/1615H04B1/18H04J4/00H04L5/14
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Quick Facts
Patent No.
US 12683639
App. No.
18/453,205
Granted
Jul 14, 2026
Kind
B2
Abstract

Radio frequency front end modules implementing coexisting time division duplexing and frequency division duplexing are provided. In one aspect, a front end system includes a time-division duplexing transmit terminal, a time-division duplexing receive terminal, a frequency division duplexing terminal, and an antenna terminal. The front end system further includes first, second, and third switches configured to selectively connect the terminals to either a node or the antenna. The front end system also includes a controller configured to provide delays between disconnecting the terminals from the antenna and connecting the terminals to the node.

Claims (35)

1 . A wireless front end system comprising:

a first terminal coupled to a time-division duplexing transmit path, a second terminal coupled to a time-division duplexing receive path, a third terminal coupled to a frequency division duplexing path, and a fourth terminal coupled to an antenna;

a first switch configured to selectively connect the first terminal to either a first node or the fourth terminal based on a first control signal, a second switch configured to selectively connect the second terminal to either a second node or the fourth terminal based on a second control signal, and a third switch configured to connect the third terminal to the fourth terminal based on a third control signal; and

a controller configured to generate the first control signal, the second control signal, and the third control signal, and to provide: i) a first delay between switching connection of the first terminal from the fourth terminal to the first node, and ii) a second delay between switching connection of the second terminal from the fourth terminal to the second node.

2 . The wireless front end system of claim 1 wherein the controller is further configured to adjust a length of the first delay and the second delay.

3 . The wireless front end system of claim 1 wherein the controller includes both digital and analog circuitry configured to implement the first delay and the second delay.

4 . The wireless front end system of claim 1 wherein the controller is further configured to switch between connecting the first terminal and the second terminal to the fourth terminal while the third terminal remains connected to the fourth terminal.

5 . The wireless front end system of claim 1 wherein the first node and the second node are ground nodes.

6 . The wireless front end system of claim 1 wherein the first switch includes a first serial sub-switch configured to selectively connect the first terminal to the fourth terminal and a first shunt sub-switch configured to selectively connect the first terminal to the first node, and the second switch includes a second serial sub-switch configured to selectively connect the second terminal to the fourth terminal and a second shunt sub-switch configured to selectively connect the second terminal to the second node.

7 . The wireless front end system of claim 6 wherein the first control signal includes a first serial control signal configured to control the first serial sub-switch and a first shunt control signal configured to control the first shunt sub-switch, and the second control signal includes a second serial control signal configured to control the second serial sub-switch and a second shunt control signal configured to control the second shunt sub-switch.

8 . A wireless front end system comprising:

a first terminal coupled to a time-division duplexing transmit path, a second terminal coupled to a time-division duplexing receive path, a third terminal coupled to a frequency division duplexing path, and a fourth terminal coupled to an antenna;

a first switch configured to selectively connect the first terminal to either a first node or the fourth terminal based on a first control signal, a second switch configured to selectively connect the second terminal to either a second node or the fourth terminal based on a second control signal, and a third switch configured to connect the third terminal to the fourth terminal based on a third control signal, the first switch including a first serial sub-switch configured to selectively connect the first terminal to the fourth terminal and a first shunt sub-switch configured to selectively connect the first terminal to the first node, and the second switch including a second serial sub-switch configured to selectively connect the second terminal to the fourth terminal and a second shunt sub-switch configured to selectively connect the second terminal to the second node.

9 . The wireless front end system of claim 8 wherein the first control signal includes a first serial control signal configured to control the first serial sub-switch and a first shunt control signal configured to control the first shunt sub-switch, and the second control signal includes a second serial control signal configured to control the second serial sub-switch and a second shunt control signal configured to control the second shunt sub-switch.

10 . The wireless front end system of claim 8 wherein the first node and the second node are ground nodes.

11 . A mobile device comprising:

an antenna configured to transmit and receive radio frequency signals with a base station;

a time-division duplexing transmit amplifier;

a time-division duplexing receive amplifier;

a frequency division duplexing terminal coupled to a frequency division duplexing path; and

a front end system coupled to the antenna, the time-division duplexing transmit amplifier, the time-division duplexing receive amplifier, and the frequency division duplexing terminal, the front end system including a first switch configured to selectively connect the time-division duplexing transmit amplifier to either a first node or the antenna based on a first control signal, a second switch configured to selectively connect the time-division duplexing receive amplifier to either a second node or the antenna based on a second control signal, a third switch configured to connect the frequency division duplexing terminal to the antenna based on a third control signal, and a controller configured to generate the first control signal, the second control signal, and the third control signal, and to provide: i) a first delay between switching connection of the time-division duplexing transmit amplifier from the antenna to the first node, and ii) a second delay between switching connection of the time-division duplexing receive amplifier from the antenna to the second node.

12 . The mobile device of claim 11 wherein the controller is further configured to adjust a length of the first delay and the second delay.

13 . The mobile device of claim 11 wherein the controller includes both digital and analog circuitry configured to implement the first delay and the second delay.

14 . The mobile device of claim 11 wherein the controller is further configured to switch between connecting the time-division duplexing transmit amplifier and the time-division duplexing receive amplifier to the antenna while the frequency division duplexing terminal remains connected to the antenna.

15 . The mobile device of claim 11 wherein the first node and the second node are ground nodes.

16 . The mobile device of claim 11 wherein the first switch includes a first serial sub-switch configured to selectively connect the time-division duplexing transmit amplifier to the antenna and a first shunt sub-switch configured to selectively connect the time-division duplexing transmit amplifier to the first node, and the second switch includes a second serial sub-switch configured to selectively connect the time-division duplexing receive amplifier to the antenna and a second shunt sub-switch configured to selectively connect the time-division duplexing receive amplifier to the second node.

17 . The mobile device of claim 16 wherein the first control signal includes a first serial control signal configured to control the first serial sub-switch and a first shunt control signal configured to control the first shunt sub-switch, and the second control signal includes a second serial control signal configured to control the second serial sub-switch and a second shunt control signal configured to control the second shunt sub-switch.

18 . A mobile device comprising:

an antenna configured to transmit and receive radio frequency signals with a base station;

a time-division duplexing transmit amplifier;

a time-division duplexing receive amplifier;

a frequency division duplexing terminal coupled to a frequency division duplexing path; and

a front end system coupled to the antenna, the time-division duplexing transmit amplifier, the time-division duplexing receive amplifier, and the frequency division duplexing terminal, the front end system including a first switch configured to selectively connect the time-division duplexing transmit amplifier to either a first node or the antenna based on a first control signal, a second switch configured to selectively connect the time-division duplexing receive amplifier to either a second node or the antenna based on a second control signal, and a third switch configured to connect the frequency division duplexing terminal to the antenna based on a third control signal, the first switch including a first serial sub-switch configured to selectively connect the time-division duplexing transmit amplifier to the antenna and a first shunt sub-switch configured to selectively connect the time-division duplexing transmit amplifier to the first node, and the second switch including a second serial sub-switch configured to selectively connect the time-division duplexing receive amplifier to the antenna and a second shunt sub-switch configured to selectively connect the time-division duplexing receive amplifier to the second node.

19 . The mobile device of claim 18 wherein the first control signal includes a first serial control signal configured to control the first serial sub-switch and a first shunt control signal configured to control the first shunt sub-switch, and the second control signal includes a second serial control signal configured to control the second serial sub-switch and a second shunt control signal configured to control the second shunt sub-switch.

20 . The mobile device of claim 18 wherein the first node and the second node are ground nodes.