IP Library Patent Application 15193644
Patent Application
App. No. 15/193,644

POWER SUPPLY OPERATING IN RIPPLE MODE AND CONTROL METHOD THEREOF

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Quick Facts
Patent No.
US None
App. No.
15/193,644
Abstract

A power supply for powering a load includes a power converter, a remote output node, a transmission line, a feedback circuit and a power controller. The power converter converts an input power to a near output power, and includes a power input node receiving the input power and an output node outputting the near output power. The remote output node provides a remote output power to the load. The transmission line is connected between the near output node and the remote output node. The feedback circuit generates a feedback signal according to voltage levels of the remote output node and the near output node. The power controller controls the power converter, and outputs a control signal to the power converter according to the feedback signal and a reference signal to accordingly convert the input power to the near output power.

Claims (38)

1 . A power supply, powering a load, comprising:

a power converter, converting an input power to a near output power, comprising:

a power input node, receiving the input power; and

a near output node, outputting the near output power;

a remote output node, providing a remote output power to the load;

a transmission line, connected between the near output node and the remote output node;

a feedback circuit, generating a feedback signal according to a voltage level of the remote output power and a voltage level of the near output power; and

a power controller, outputting control signal to the power converter according to the feedback signal and a reference signal, the power converter converting the input power to the near output power according to the control signal.

2 . The power supply according to claim 1 , wherein the feedback circuit comprises:

a voltage dividing circuit, comprising two resistors, connected in series between the remote output node and a ground node via a feedback node; and

a feedback capacitor, connected between the feedback node and the near output node.

3 . The power supply according to claim 1 , wherein the power converter is a buck converter and comprises a power switch controlled by the control signal, the control signal comprises a pulse, and a pulse width of the pulse is associated with an on-time of the power switch.

4 . The power supply according to claim 3 , wherein the power controller detects the input power to control the pulse width.

5 . The power supply according to claim 3 , wherein the power controller detects the near output power to control the pulse width.

6 . The power supply according to claim 3 , wherein the power controller detects a conversion cycle of the power converter to control the pulse width.

7 . The power supply according to claim 1 , wherein the control signal comprises a pulse, the power converter comprises:

a comparator, comparing the feedback signal with a reference signal to generate a digital comparison result; and

a pulse generator, connected to the comparator, outputting the pulse when the digital comparison result changes state.

8 . The power supply according to claim 1 , wherein the remote output power is a low-pass signal, and the near output power is a high-pass signal.

9 . A control method, controlling a power supply to power a load, the power supply comprising a power input node receiving an input power, a near output node outputting a near output power converted from the input power, and a remote output node providing a remote output power to the load, the near output node and the remote output node connected via a transmission line, the control method comprising:

receiving the remote output power;

receiving the near output power;

generating a feedback signal according to a level of the remote output power and a level of the near output power;

generating a control signal according to the feedback signal and a reference signal; and

converting the input power to the near output power according to the control signal.

10 . The control method according to claim 9 , wherein the power converter further comprises a power switch, the control method further comprising:

turning on the power switch to adjust a voltage of the near output power;

wherein, the control signal comprises a pulse, and a pulse width of the pulse is associated with an on-time of the power switch.

11 . The control method according to claim 10 , further comprising:

detecting the input power to control the pulse width.

12 . The control method according to claim 10 , further comprising:

detecting the near output power to control the pulse width.

13 . The control method according to claim 10 , wherein the step of converting the input power to the near output power comprises a conversion cycle, the control method further comprising:

detecting the conversion cycle to control the pulse width.

14 . The control method according to claim 9 , wherein the step of generating the control signal according to the feedback signal and the reference signal comprises:

comparing the feedback signal with the reference signal to generate a digital comparison result; and

outputting the control signal when the digital comparison result changes state.

15 . The control method according to claim 9 , wherein the remote output power is a low-pass signal, and the near output power is a high-pass signal.

Assignments (2)
MERGER Recorded Oct 8, 2019
From: MSTAR SEMICONDUCTOR, INC.
To: MEDIATEK INC.
Reel/Frame 050665/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2016
From: HO, KAI-TING; LIN, TSANG-CHUAN
To: MSTAR SEMICONDUCTOR, INC.
Reel/Frame 039018/0894 →