IP Library Granted Patent US 7,423,415
Granted Patent B2
US 7,423,415 · App. 11/350,720 · Granted Sep 9, 2008

DC-DC converter and its control method, and switching regulator and its control method

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Quick Facts
Patent No.
US 7,423,415
App. No.
11/350,720
Granted
Sep 9, 2008
Kind
B2
Abstract

A differential output DC-DC converter capable of decreasing power consumption is presented. The differential output DC-DC converter 1 comprises output terminals VP and VM connected to both ends of load, and a switching regulator 10 for passing a source current. It further comprises a third transistor FET 3 , a choke coil L 2 , and a fourth transistor FET 4 for rectifying a sink current in a flowing direction, and further a second regulator for allowing the sink current to flow, and issuing a voltage higher than a grounding point GND voltage and lower than a voltage of an output terminal VP, to an output terminal VM.

Claims (32)

1. A DC-DC converter comprising:

a first terminal electrically connected to one end of a load;

a second terminal electrically connected to another end of the load;

a first regulator for passing a current in a direction from the first terminal toward the load, and issuing a first voltage to the first terminal; and

a second regulator for passing a current in a direction from the load toward the second terminal, and issuing a second voltage, being higher than a grounding voltage and lower than the first voltage, to the second terminal;

wherein the second regulator is a switching regulator, including a main inductor and a main switch provided sequentially in a pathway from the second terminal to the grounding voltage, and a rectifying circuit provided in a direction of passing the current from an electrical connection point of the main inductor and the main switch, toward the first terminal or a power supply terminal.

2. The DC-DC converter of claim 1 , wherein the first regulator and the second regulator are both a switching regulator of step-down type, including a synchronous signal generator for generating a synchronous signal, a first synchronous circuit for starting increase of current in a direction from the first terminal toward the load depending on the synchronous signal, and a second synchronous circuit for starting increase of current in a direction from the load toward the second terminal depending on the synchronous signal.

3. The DC-DC converter of claim 2 , wherein the first synchronous circuit makes the main switch of the first regulator conductive, depending on the synchronous signal, and the second synchronous circuit makes the main switch of the second regulator conductive, depending on the synchronous signal.

4. The DC-DC converter of claim 3 , wherein the first synchronous circuit is a first latch circuit that has an output terminal and a set terminal, the output terminal of the first latch circuit being connected to a conduction control terminal of the main switch in the first regulator and the set terminal of the first latch circuit being inputted by the synchronous signal, and the second synchronous circuit is a second latch circuit that has an output terminal and a set terminal, the output terminal of the second latch circuit being connected to a conduction control terminal of the main switch in the second regulator and the set terminal of the second latch circuit being inputted by the synchronous signal.

5. The DC-DC converter of claim 1 , further comprising:

a voltage dividing circuit provided between the first voltage and the second voltage, for issuing a voltage divided between the first voltage and the second voltage,

a base voltage unit having a positive terminal connected to the first voltage, and

an error amplifier having an inversion input terminal connected to a negative terminal of the base voltage unit, and a non-inversion terminal connected to an output terminal of the voltage dividing circuit.

6. A switching regulator comprising:

a main inductor and a main switch provided sequentially in a pathway from a low voltage side terminal of a load to a grounding voltage, and

a rectifying circuit provided in a direction of a passing current from a connection point of the main inductor and the main switch toward a high voltage side terminal of the load, wherein the current is passed from the load to a lead-in direction, and an output voltage higher than the grounding voltage and lower than a voltage supplied to the load is issued to the low voltage side terminal of the load.

7. The switching regulator of claim 6 , further comprising:

a voltage dividing circuit provided between the high voltage side terminal of the load and the low voltage side terminal of the load, for issuing a voltage divided between the voltage supplied to the high voltage side terminal of the load and the output voltage,

a base voltage unit having a positive terminal connected to the high voltage side terminal of the load, and

an error amplifier having an inversion input terminal connected to a negative terminal of the base voltage unit, and a non-inversion input terminal connected to an output terminal of the voltage dividing circuit.

8. A control method of a DC-DC converter including a first terminal electrically connected to one end of a load, a second terminal electrically connected to another end of the load, a first regulator of a switching regulator of step-down type for passing a current in a direction from the first terminal toward the load, and issuing a first voltage to the first terminal, and a second regulator of the switching regulator of step-down type for passing a current in a direction from the load toward the second terminal, and issuing a second voltage, being higher than a grounding voltage and lower than the first voltage, to the second terminal, comprising:

a step of generating a synchronous signal,

a step of starting increase of a current in a direction from the first terminal to the load depending on the synchronous signal, and

a step of starting increase of a current in a direction from the load to the second terminal depending on the synchronous signal.

9. The control method of a DC-DC converter of claim 8 , wherein the step of starting increase of a current in a direction from the first terminal to the load is a step of conducting a main switch of the first regulator, and the step of starting increase of a current in a direction from the load to the second terminal is a step of conducting a main switch of the second regulator.

10. A control method of a DC-DC converter including a first terminal electrically connected to one end of a load, a second terminal electrically connected to another end of the load, first regulator for passing a current in a direction from the first terminal toward the load, and issuing a first voltage to the first terminal, and a second regulator of a switching regulator of step-down type for passing a current in a direction from the load toward the second terminal, and issuing a second voltage, being higher than a grounding voltage and lower than the first voltage, to the second terminal, comprising:

a step of issuing a divided voltage divided between the first voltage and the second voltage,

a step of generating a threshold voltage by subtracting a specified voltage from the first voltage, and

a step of generating an error signal by subtracting the threshold voltage from the divided voltage and amplifying the error signal.

11. A control method of a switching regulator for passing a current from a load to a lead-in direction, and issuing an output voltage higher than a voltage and lower than a voltage supplied to the load, to a low voltage side terminal of the load, comprising:

a step of issuing a divided voltage divided between the voltage supplied to a high voltage side terminal of the load and the output voltage,

a step of generating a threshold voltage by subtracting a specified voltage from the voltage supplied to the high voltage side terminal of the load, and a step of generating an error signal by subtracting the threshold voltage from the divided voltage and amplifying the error signal.

Assignments (9)
CORRECTIVE ASSIGNMENT TO CORRECT THE 8647899 PREVIOUSLY RECORDED ON REEL 035240 FRAME 0429. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTERST. Recorded Nov 3, 2020
From: CYPRESS SEMICONDUCTOR CORPORATION; SPANSION LLC
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 058002/0470 →
RELEASE OF SECURITY INTEREST Recorded Jun 12, 2017
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: CYPRESS SEMICONDUCTOR CORPORATION
Reel/Frame 042769/0227 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2017
From: CYPRESS SEMICONDUCTOR CORPORATION
To: MONTEREY RESEARCH, LLC
Reel/Frame 042108/0880 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2015
From: SPANSION, LLC
To: CYPRESS SEMICONDUCTOR CORPORATION
Reel/Frame 036039/0406 →
SECURITY INTEREST Recorded Mar 21, 2015
From: CYPRESS SEMICONDUCTOR CORPORATION; SPANSION LLC
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 035240/0429 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2013
From: FUJITSU SEMICONDUCTOR LIMITED
To: SPANSION LLC
Reel/Frame 031205/0461 →
CHANGE OF NAME Recorded Jul 22, 2010
From: FUJITSU MICROELECTRONICS LIMITED
To: FUJITSU SEMICONDUCTOR LIMITED
Reel/Frame 024982/0245 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2008
From: FUJITSU LIMITED
To: FUJITSU MICROELECTRONICS LIMITED
Reel/Frame 021998/0645 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2006
From: HASEGAWA, MORIHITO; OZAWA, HIDEKIYO
To: FUJITSU LIMITED
Reel/Frame 017559/0542 →