IP Library › Granted Patent US 12,027,973
Granted Patent B2
US 12,027,973 · App. 17/383,594 · Granted Jul 2, 2024

Multi-phase voltage regulator and temperature monitoring method thereof

Inventor: Shun-Gen Sun (Shanghai, CN)
Assignee: SHANGHAI BRIGHT POWER SEMICONDUCTOR CO., LTD.
H02M3/04G01K1/026G01K7/00
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Quick Facts
Patent No.
US 12,027,973
App. No.
17/383,594
Granted
Jul 2, 2024
Kind
B2
Abstract

The present invention relates to a multi-phase voltage regulator and a temperature monitoring method thereof. The method includes the following steps of: step 1a: providing a multi-phase voltage regulator including a controller and a plurality of power stages, wherein the controller transmits a corresponding control signal to each of the plurality of power stages, each of the plurality of power stages including a temperature sampling unit, outputs of the temperature sampling units connected to the controller and in parallel with each other; Step 1b: performing time-sharing signal exchange with the temperature sampling unit of the power stages; and Step 1c: when the controller exchanges signals with the temperature sampling unit of a certain power stage, the temperature sampling unit transmits an output signal representing the temperature thereof to the controller via the output.

Claims (16)

1. A temperature monitoring method of a multi-phase voltage regulator, comprising the following steps of: step 1a: providing a multi-phase voltage regulator, wherein the multi-phase voltage regulator comprises a controller and a plurality of power stages, the controller transmits a plurality of control signals to the plurality of power stages via a control terminal corresponding to each power stage, and wherein each of the plurality of power stages comprises a temperature sampling unit, outputs of the plurality of temperature sampling units connected in parallel with each other and connected to the controller; step 1b: exchanging a signal with each of the plurality of power stages by the controller in a time-sharing manner, wherein the controller pulls up voltage levels of the outputs of the plurality of temperature sampling units which are connected in parallel,

and when one of the plurality of power stages detects that the control signal thereof and the output of the temperature sampling unit are both of high voltage level, the controller starts to exchange the signal; and step 1c: when the controller exchanges the signal with one of the plurality of power stages, transmitting an output signal representing a temperature corresponding to the power stage to the controller via the control terminal of the power stage.

2. The temperature monitoring method according to claim 1 , wherein the step 1b, when the control signal correspondingly output by the controller generates a rising edge, the voltage levels of the outputs of the plurality of temperature sampling units connected in parallel are synchronously pulled up.

3. The temperature monitoring method according to claim 1 , wherein in step 1c, the output signal representing the temperature corresponding to one of the plurality of power stages comprises a pulse width modulation signal having a pulse width related to the temperature of the power stage.

4. The temperature monitoring method according to claim 1 , wherein in step 1c, the output signal representing the temperature corresponding to one of the plurality of power stages comprises a pulse width modulation signal, and a number of pulses of the pulse width modulation signal during a period of the controller exchanging signal with the corresponding power stage relates to the temperature of the power stage.

5. The temperature monitoring method according to claim 1 , wherein in the step 1b, when the controller pulls up the voltage levels of the outputs of the plurality of temperature sampling units of the plurality of power stages connected in parallel, only one of the plurality of power stages receives the control signal of high voltage level.

6. The temperature monitoring method according to claim 1 , wherein the controller further adjusts the control signal corresponding to the plurality of power stages according to the output signals after the controller collects the output signals representing the temperatures of the plurality of power stages, so that the temperatures of the plurality of power stages approach the same.

7. The temperature monitoring method according to claim 1 , wherein in the plurality of power stages, the voltage levels of the outputs of the plurality of temperature sampling units are kept in high voltage level during the controller exchanging the signals with the plurality of power stages.

8. A multi-phase voltage regulator, comprising: a controller; and a plurality of power stages, wherein the controller transmits a control signal to a control terminal of each of the plurality of power stages, and each of the plurality of power stages comprises a temperature sampling unit, outputs of the plurality of temperature sampling units connected in parallel with each other and connected to the controller, wherein the controller exchanges a signal with each of the plurality of power stages in a time-sharing manner, wherein the controller pulls up voltage levels of the outputs of the plurality of temperature sampling units; when one of the plurality of power stages detects that the control signal thereof and the output of the temperature sampling unit thereof are both of high voltage level, and the power stage starts to exchange the signal with the controller, and when the controller exchanges the signal with one of the plurality of power stages, the power stage transmits an output signal representing a temperature corresponding to the power stage to the controller via the control terminal thereof.

9. The multi-phase voltage regulator according to claim 8 , wherein the output signal representing the temperature corresponding to the power stage comprises a pulse width modulation signal, and a number of pulses of the pulse width modulation signal during a period of the controller exchanging signal with the corresponding power stage relates to the temperature of the power stage.

10. The multi-phase voltage regulator according to claim 9 , wherein the output signal comprises a count value which is obtained by counting the number of pulses of the pulse width modulation signal, and the count value relates to the temperature of one of the plurality of power stages.

11. The multi-phase voltage regulator according to claim 8 , wherein when the control signal correspondingly output by the controller generates a rising edge, the voltage levels of the outputs of the plurality of temperature sampling units connected in parallel are synchronously pulled up.

12. The multi-phase voltage regulator according to claim 8 , wherein the output signal representing the temperature corresponding to one of the plurality of power stage comprises a pulse width modulation signal having a pulse width related to the temperature of the power stage.

13. The multi-phase voltage regulator according to claim 8 , wherein only one of the plurality of power stages receives the control signal of high voltage level when the controller pulls up the voltage levels of the outputs of the plurality of temperature sampling units of the plurality of power stages connected in parallel.

14. The multi-phase voltage regulator according to claim 8 , wherein the controller adjusts the control signals corresponding to the plurality of power stages according to the output signals after the controller collecting the output signals representing the temperatures of the plurality of power stages so that the temperatures of the plurality of power stages approach the same.

15. The multi-phase voltage regulator according to claim 8 , wherein in the plurality of power stages, the voltage levels of the outputs of the plurality of temperature sampling units are kept in high voltage levels during the controller exchanging the signals with the plurality of power stages.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S STREET ADDRESS PREVIOUSLY RECORDED AT REEL: 057008 FRAME: 0350. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Jul 30, 2021
From: SUN, SHUN-GEN
To: SHANGHAI BRIGHT POWER SEMICONDUCTOR CO., LTD.
Reel/Frame 057038/0871 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2021
From: SUN, SHUN-GEN
To: SHANGHAI BRIGHT POWER SEMICONDUCTOR CO., LTD.
Reel/Frame 057008/0350 →
Priority Claims (1)
CN 202011070110.7 · Sep 30, 2020 · national
Continuity (1)
Related Publication 20220103064A1 · Mar 31, 2022