IP Library Granted Patent US 12665618
Granted Patent B2
US 12665618 · App. 18/202,020 · Granted Jun 23, 2026

Electronic device, antenna control method and communication chip

Inventors: Jian-Jun Zhou (Suzhou, TW); Jie-Hong Yu (Suzhou, TW)
Assignee: REALTEK SEMICONDUCTOR CORPORATION
H04B1/006H04W72/0446
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Quick Facts
Patent No.
US 12665618
App. No.
18/202,020
Granted
Jun 23, 2026
Kind
B2
Abstract

An electronic device, an antenna control method, and a communication chip are provided. The electronic device includes an antenna, a line switching circuit, a first communication chip, and a second communication chip. The line switching circuit is coupled to the antenna. The first communication chip is coupled to the antenna through the line switching circuit and configured to generate a slot allocation signal. The second communication chip is coupled to the antenna through the line switching circuit and configured to generate a packet distribution signal. The first communication chip and the second communication chip are communication chips of different types. The line switching circuit switches the antenna to the first communication chip or the second communication chip according to the packet distribution signal.

Claims (27)

1 . An electronic device, comprising:

an antenna;

a line switching circuit coupled to the antenna;

a first communication chip coupled to the antenna through the line switching circuit and configured to generate a slot allocation signal; and

a second communication chip coupled to the antenna through the line switching circuit and configured to generate a packet distribution signal, wherein the first communication chip and the second communication chip are communication chips of different types;

wherein the line switching circuit switches the antenna to the first communication chip or the second communication chip according to the packet distribution signal.

2 . The electronic device of claim 1 , wherein the line switching circuit switches the antenna to the first communication chip when the packet distribution signal is at a first level and switches the antenna to the second communication chip when the packet distribution signal is at a second level, the first level being different from the second level.

3 . The electronic device of claim 2 , wherein the second communication chip transmits or receives a packet when the packet distribution signal is at the second level.

4 . The electronic device of claim 2 , wherein the slot allocation signal comprises a first slot and a second slot, and the second communication chip moves a packet that is originally scheduled in the first slot for transmission or reception to the second slot for transmission or reception, the second slot being later than the first slot.

5 . The electronic device of claim 1 , wherein the first communication chip generates the slot allocation signal according to a beacon reception time.

6 . The electronic device of claim 1 further comprising:

a control circuit coupled to the first communication chip and the second communication chip and configured to transmit a current operating profile of the second communication chip to the first communication chip;

wherein the first communication chip generates the slot allocation signal according to the current operating profile.

7 . The electronic device of claim 1 , wherein the first communication chip and the second communication chip are not coupled and electrically connected to other antennas.

8 . An antenna control method of switching an antenna to a first communication chip or a second communication chip, the first communication chip and the second communication chip being communication chips of different types, the first communication chip outputting a slot allocation signal to the second communication chip, and the second communication chip outputting a packet distribution signal, the method comprising:

electrically connecting the antenna to the first communication chip and not electrically connected the antenna to the second communication chip when the packet distribution signal is at a first level; and

electrically connecting the antenna to the second communication chip and not electrically connected the antenna to the first communication chip when the packet distribution signal is at a second level;

wherein the first level is different from the second level;

wherein the second communication chip generates the packet distribution signal according to the slot allocation signal.

9 . The method of claim 8 , wherein the packet distribution signal being at the first level is indicative of the second communication chip being not transmitting or receiving a packet, and the packet distribution signal being the second level is indicative of the second communication chip being transmitting or receiving the packet.

10 . The method of claim 8 , wherein the first communication chip is a wireless local area network (WLAN) chip, and the second communication chip is a Bluetooth chip.

11 . A communication chip that shares an antenna with a target communication chip, one of the communication chip and the target communication chip switching the antenna to the communication chip when a packet distribution signal is at a first level, so that the communication chip can use the antenna and the target communication chip cannot use the antenna, one of the communication chip and the target communication chip switching the antenna to the target communication chip when the packet distribution signal is at a second level, so that the target communication chip can use the antenna and the communication chip cannot use the antenna, the first level being different from the second level, and the communication chip and the target communication chip being communication chips of different types, wherein the target communication chip generates a slot allocation signal according to a beacon reception time, and the communication chip generates the packet distribution signal according to the slot allocation signal.

12 . The communication chip of claim 11 , wherein the communication chip generates the packet distribution signal.

13 . The communication chip of claim 11 , wherein the slot allocation signal comprises a first slot and a second slot, the communication chip moves a packet that is originally scheduled in the first slot for transmission or reception to the second slot for transmission or reception, and the second slot is later than the first slot.

14 . The communication chip of claim 11 , wherein the target communication chip generates the slot allocation signal according to a current operating profile of the communication chip.

15 . The communication chip of claim 12 , wherein the target communication chip is a wireless local area network (WLAN) chip, and the communication chip is a Bluetooth chip.

16 . The electronic device of claim 1 , wherein the second communication chip generates the packet distribution signal according to the slot allocation signal.