IP Library › Granted Patent US 11,662,800
Granted Patent B2
US 11,662,800 · App. 17/470,586 · Granted May 30, 2023

Electronic device with power-off partition and partition-based power-off method therefor

Inventors: Hsu-Jung Tung (HsinChu, TW); Yu-Pin Lin (HsinChu, TW); Lien-Hsiang Sung (HsinChu, TW); Wei-Liang Cheng (HsinChu, TW)
Assignee: AICONNX TECHNOLOGY CORPORATION
G06F1/3287G06F1/3206G06F1/3296
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Quick Facts
Patent No.
US 11,662,800
App. No.
17/470,586
Granted
May 30, 2023
Kind
B2
Abstract

The electronic device with power-off partition includes a signal transmitting module, two repeater modules, and a working module. Each of the repeater modules includes a first power domain, a second power domain, and a transceiver circuit. A transmission path between the first power domain and the second power domain is maintained at a logic state when the second power domain is in power off mode. The transceiver circuit of one of the two repeater modules encodes a standby signal obtained from the signal transmitting module and transmits an encoded standby signal. The transceiver circuit of the other of the repeater modules decodes the encoded standby signal and transmits a decoded standby signal. The working module transmits, according to the decoded standby signal, a power-off signal to the transceiver circuits of the two repeater modules, so that the second power domains enter the power-off mode in response to the power-off signal.

Claims (34)

1. An electronic device with power-off partition, wherein the electronic device comprises:

a signal transmitting module configured to transmit a standby signal;

two repeater modules, wherein each of the repeater modules comprises:

a first power domain;

a second power domain, wherein when the second power domain is in a power off mode, a transmission path between the first power domain and the second power domain is maintained in a logic state; and

a transceiver circuit is in the first power domain, wherein the transceiver circuit of one of the two repeater modules encodes the standby signal obtained from the signal transmitting module and transmits an encoded standby signal, and the transceiver circuit of the other of the repeater modules decodes the encoded standby signal and transmits a decoded standby signal; and

a working module which transmits, according to the decoded standby signal, a power-off signal to the transceiver circuits of the two repeater modules, so that the second power domains of the two repeater modules enter the power off mode in response to the power-off signal.

2. The electronic device with power-off partition according to claim 1 , wherein the first power domain is in a power on mode.

3. The electronic device with power-off partition according to claim 1 , wherein the first power domain and the second power domain are coupled to a power supply, and the power supply stops supply of power to the second power domain in response to the power-off signal, so that the second power domain enters the power off mode.

4. The electronic device with power-off partition according to claim 1 , wherein the signal transmitting module transmits a wake-up signal, the transceiver circuit of one of the two repeater modules encodes the wake-up signal obtained from the signal transmitting module and transmits an encoded wake-up signal, the transceiver circuit of the other of the repeater modules decodes the encoded wake-up signal and transmits a decoded wake-up signal, and the working module transmits a power-on signal to the transceiver circuits of the two repeater modules according to the decoded wake-up signal, so that the second power domains of the two repeater modules enter a power on mode in response to the power-on signal.

5. The electronic device with power-off partition according to claim 4 , wherein the working module enters a standby mode in response to the decoded standby signal and enters a working mode in response to the decoded wake-up signal.

6. The electronic device with power-off partition according to claim 4 , wherein the first power domain and the second power domain are coupled to a power supply, and the power supply restores supply of power to the second power domain in response to the power-on signal, so that the second power domain enters the power on mode.

7. The electronic device with power-off partition according to claim 1 , wherein the first power domain has a first connection pad, and the second power domain has a second connection pad, and the second connection pad is coupled to the first connection pad to form the transmission path.

8. The electronic device with power-off partition according to claim 1 , wherein each of the repeater modules further comprises a weakly push circuit in the first power domain, and when the second power domain is in the power off mode, the transmission path is maintained in the logic state in response to a voltage state signal generated by the weakly push circuit.

9. The electronic device with power-off partition according to claim 8 , wherein the weakly push circuit is a weakly pull-low circuit, the voltage state signal is a pull-down voltage signal, and the logic state is a low logic state.

10. The electronic device with power-off partition according to claim 8 , wherein the weakly push circuit is a weakly pull-high circuit, the voltage state signal is a pull-up voltage signal, and the logic state is a high logic state.

11. A partition-based power-off method for an electronic device, wherein the electronic device comprises a signal transmitting module, two repeater modules, and a working module, each of the repeater modules comprises a first power domain, a second power domain, and a transceiver circuit in the first power domain, and the partition-based power-off method comprises:

encoding, by the transceiver circuit of one of the two repeater modules, a standby signal from the signal transmitting module and transmitting an encoded standby signal;

decoding, by the transceiver circuit of the other of the repeater modules, the encoded standby signal and transmitting a decoded standby signal; and

transmitting, by the working module, a power-off signal to the transceiver circuits of the two repeater modules according to the decoded standby signal, so that the second power domains of the two repeater modules enter a power off mode in response to the power-off signal, wherein when the second power domain of each of the repeater modules is in the power off mode, a transmission path between the first power domain and the second power domain of each of the repeater modules is maintained in a logic state.

12. The partition-based power-off method for an electronic device according to claim 11 , wherein the first power domain is in a power on mode.

13. The partition-based power-off method for an electronic device according to claim 11 , wherein the first power domain and the second power domain are coupled to a power supply, and the power supply stops supply of power to the second power domain in response to the power-off signal, so that the second power domain enters the power off mode.

14. The partition-based power-off method for an electronic device according to claim 11 , further comprising:

encoding, by the transceiver circuit of one of the two repeater modules, a wake-up signal from the signal transmitting module and transmitting an encoded wake-up signal;

decoding, by the transceiver circuit of the other of the repeater modules, the encoded wake-up signal and transmitting a decoded wake-up signal; and

transmitting, by the working module, a power-on signal to the transceiver circuits of the two repeater modules according to the decoded wake-up signal, so that the second power domains of the two repeater modules enter a power on mode in response to the power-on signal.

15. The partition-based power-off method for an electronic device according to claim 14 , further comprising:

causing the working module to enter a standby mode in response to the decoded standby signal; and

causing the working module to enter a working mode in response to the decoded wake-up signal.

16. The partition-based power-off method for an electronic device according to claim 14 , wherein the first power domain and the second power domain are coupled to a power supply, and the power supply restores supply of power to the second power domain in response to the power-on signal, so that the second power domain enters the power on mode.

17. The partition-based power-off method for an electronic device according to claim 11 , wherein the first power domain has a first connection pad, the second power domain has a second connection pad, and the second connection pad is coupled to the first connection pad to form the transmission path.

18. The partition-based power-off method for an electronic device according to claim 11 , wherein each of the repeater modules further comprises a weakly push circuit in the first power domain, and the transmission path is maintained in the logic state in response to a voltage state signal generated by the weakly push circuit when the second power domain is in the power off mode.

19. The partition-based power-off method for an electronic device according to claim 18 , wherein the weakly push circuit is a weakly pull-low circuit, the voltage state signal is a pull-down voltage signal, and the logic state is a low logic state.

20. The partition-based power-off method for an electronic device according to claim 18 , wherein the weakly push circuit is a weakly pull-high circuit, the voltage state signal is a pull-up voltage signal, and the logic state is a high logic state.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ADDRESS OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 060670 FRAME: 0178. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 15, 2022
From: REALTEK SEMICONDUCTOR CORP.
To: AICONNX TECHNOLOGY CORPORATION
Reel/Frame 061175/0011 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2022
From: REALTEK SEMICONDUCTOR CORP.
To: AICONNX TECHNOLOGY CORPORATION
Reel/Frame 060670/0178 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2021
From: TUNG, HSU-JUNG; LIN, YU-PIN; SUNG, LIEN-HSIANG; CHENG, WEI-LIANG
To: REALTEK SEMICONDUCTOR CORP.
Reel/Frame 057448/0161 →
Priority Claims (1)
TW 110101513 · Jan 14, 2021 · national
Continuity (2)
Provisional Application 63079059 · Sep 16, 2020
Related Publication 20220083124A1 · Mar 17, 2022