IP Library Granted Patent US 10,468,988
Granted Patent B2
US 10,468,988 · App. 16/058,859 · Granted Nov 5, 2019

Three-level converter using an auxiliary switched capacitor circuit

Inventors: Kevin Scoones (San Jose, CA); Orlando Lazaro (Dallas, TX); Alvaro Aguilar (Irving, TX); Jeffrey Anthony Morroni (Parker, TX); Reza Sharifi (Sunnyvale, CA); Saurav Bandyopadhyay (Dallas, TX)
Assignee: Texas Instruments Incorporated
H02M3/1588H02M3/158H02M7/483H02M2001/0006
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Quick Facts
Patent No.
US 10,468,988
App. No.
16/058,859
Granted
Nov 5, 2019
Kind
B2
Abstract

In a described example, an apparatus includes a first switch coupled between a terminal for receiving an input voltage and a top plate node, and having a first control terminal; a second switch coupled between the top plate node and a switching node, and having a second control terminal; a third switch coupled between the switching node and a bottom plate node and having a third control terminal; a fourth switch coupled between the bottom plate node and a ground terminal, and having a fourth control terminal; a flying capacitor coupled between the top plate node and the bottom plate node; a fifth switch coupled between the top plate node and an auxiliary node; a sixth switch coupled between the auxiliary node and the bottom plate node; and an auxiliary capacitor coupled between the auxiliary control terminal and a ground terminal.

Claims (90)

1. An apparatus comprising:

a multi-level switching power supply coupled between a voltage input terminal and a ground terminal, the multi-level switching power supply including a switching node, a first node between the voltage input terminal and the switching node, and a second node between the switching node and the ground terminal; and

an auxiliary circuit having:

an auxiliary node;

a first auxiliary switch coupled between the first node and the auxiliary node;

a capacitor coupled between the auxiliary node and the ground terminal; and

a second auxiliary switch coupled between the auxiliary node and the second node.

2. The apparatus of claim 1 , further comprising:

a voltage output terminal; and

an inductor coupled between the switching node and the voltage output terminal.

3. The apparatus of claim 1 , wherein the multi-level switching power supply includes a capacitor coupled between the first node and the second node.

4. The apparatus of claim 1 , wherein the multi-level switching power supply includes:

a first switch coupled between the voltage input terminal and the first node; and

a second switch coupled between the first node and the switching node.

5. The apparatus of claim 1 , wherein the multi-level switching power supply includes:

a first switch coupled between the switching node and the second node; and

a second switch coupled between the second node and the ground terminal.

6. The apparatus of claim 1 , wherein the multi-level switching power supply includes:

a first switch coupled between the voltage input terminal and the first node;

a second switch coupled between the first node and the switching node;

a third switch coupled between the switching node and the second node; and

a fourth switch coupled between the second node and the ground terminal.

7. The apparatus of claim 1 , further comprising:

a precondition circuit having:

a current source coupled between the voltage input terminal and the first node;

a first transistor coupled between the first node and the second node; and

a second transistor coupled between the second node and the ground terminal.

8. The apparatus of claim 7 , wherein the precondition circuit includes:

an error amplifier having a non-inverting input coupled to the first node, an inverting input coupled to a voltage output terminal, and an error amplified output coupled to a gate terminal of the second transistor.

9. The apparatus of claim 1 , further comprising:

a precondition circuit having:

a current source coupled between the voltage input terminal and the auxiliary node; and

a transistor coupled between the auxiliary node and the ground terminal.

10. An integrated circuit (IC) comprising:

a switching power supply coupled between a voltage input terminal and a ground terminal, the switching power supply including a switching node, a first node between the voltage input terminal and the switching node, and a second node between the switching node and the ground terminal; and

an auxiliary circuit having:

an auxiliary node;

a first auxiliary switch coupled between the first node and the auxiliary node;

a capacitor coupled between the auxiliary node and the ground terminal; and

a second auxiliary switch coupled between the auxiliary node and the second node.

11. The IC of claim 10 , wherein the switching power supply includes:

a first switch coupled between the voltage input terminal and the first node; and

a second switch coupled between the first node and the switching node.

12. The IC of claim 10 , wherein the switching power supply includes:

a first switch coupled between the switching node and the second node; and

a second switch coupled between the second node and the ground terminal.

13. The IC of claim 10 , wherein the switching power supply includes:

a first switch coupled between the voltage input terminal and the first node;

a second switch coupled between the first node and the switching node;

a third switch coupled between the switching node and the second node; and

a fourth switch coupled between the second node and the ground terminal.

14. An apparatus comprising:

a voltage input terminal, a ground terminal, and a voltage output terminal;

a flyback capacitor, an auxiliary capacitor, and an inductor coupled between a switching node and the voltage output terminal; and

a switching network configured to:

during a charging state:

establish a first circuit path from the voltage input terminal to a first plate of the flyback capacitor, and from a second plate of the flyback capacitor to the switching node; and

establish a second circuit path from the switching node to a first plate of the auxiliary capacitor, and from a second plate of the auxiliary capacitor to the ground terminal; and

during a discharging state:

decouple the first circuit path and the second circuit path;

establish a third circuit path from the switching node to the first plate of the flyback capacitor, and from the second plate of the flyback capacitor to the ground terminal; and

establish a fourth circuit path from the switching node to the first plate of the auxiliary capacitor.

15. The apparatus of claim 14 , wherein the switching network is configured to, during a low voltage transition state between the charging state and the discharging state:

decouple the first circuit path and the second circuit path;

establish a fifth circuit path from the first plate of the auxiliary capacitor to the first plate of the flyback capacitor, and from the second plate of the flyback capacitor to the ground terminal; and

establish a sixth circuit path from the switching node to the ground terminal.

16. The apparatus of claim 14 , wherein the switching network is configured to, during a high voltage transition state between the charging state and the discharging state:

decouple the first circuit path and the second circuit path from the switching node;

establish a fifth circuit path from the second plate of the flyback capacitor to the first plate of the auxiliary capacitor; and

establish a sixth circuit path from the voltage input terminal to the switching node.

17. The apparatus of claim 14 , wherein the switching network includes:

a first switch coupled between the voltage input terminal and a first node, the first node coupled to the first plate of the flyback capacitor;

a second switch coupled between the first node and the switching node;

a third switch coupled between the switching node and a second node, the second node coupled to the second plate of the flyback capacitor;

a fourth switch coupled between the second node and the ground terminal;

a fifth switch coupled between the first node and an auxiliary node, the auxiliary node coupled to the first plate of the auxiliary capacitor; and

a sixth switch coupled between the auxiliary node and the second node.

18. The apparatus of claim 17 , wherein:

the first circuit path includes:

the first switch turned on to couple the voltage input terminal to the first plate of the flyback capacitor; and

the third switch turned on to couple the second plate of the flyback capacitor to the switching node; and

the second circuit path includes:

the sixth switch turned on to couple the first plate of the auxiliary capacitor to the second node; and

the third switch turned on to couple the second node to the switching node.

19. The apparatus of claim 17 , wherein:

the third circuit path includes:

the second switch turned on to couple the switching node to the first plate of the flyback capacitor; and

the fourth switch turned on to couple the second plate of the flyback capacitor to the ground terminal; and

the fourth circuit path includes:

the second and fifth switches turned on to couple the switching node to the first plate of the auxiliary capacitor.

Continuity (3)
Continuation 15697275 · Sep 6, 2017
Provisional Application 62533963 · Jul 18, 2017
Related Publication 20190028031A1 · Jan 24, 2019
Cited By (4)
US 12,191,766 US 12,665,525 US 12,671,318 US 12,732,094