IP Library Granted Patent US 11,843,316
Granted Patent B2
US 11,843,316 · App. 16/932,574 · Granted Dec 12, 2023

Wide-voltage-range DC-DC converters

Inventors: Liming Ye (Frisco, TX); Heping Dai (Plano, TX)
Assignee: Huawei Digital Power Technologies Co., Ltd.
H02M3/158H02M3/01H02M3/33573H02M3/33592H02M7/4837H02M1/0003
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Quick Facts
Patent No.
US 11,843,316
App. No.
16/932,574
Granted
Dec 12, 2023
Kind
B2
Abstract

According to one aspect, an apparatus comprising a two stage DC-DC converter is provided. The converter consists of a multilevel DC-DC converter stage cascaded with a fixed voltage ratio DC-DC converter stage. The converter is controlled so that a first stage of the converter provides an optimized output (a regulated bus voltage) which serves as the input to the second stage. The multilevel DC-DC converter may be the first stage and the fixed voltage ratio, unregulated DC-DC converter may be the second stage converter. Alternatively, the fixed voltage ratio, unregulated DC-DC converter may be the first stage and the multilevel DC-DC converter may be the second stage.

Claims (24)

1. A DC-DC converter, comprising:

a first converter stage comprising a voltage ratio converter stage having a first stage input and including a first stage output, the first stage input configured to receive an input voltage in a range from a minimum voltage (Vin_min) of approximately 36 V to a maximum voltage (Vin_max) of approximately 75V, with a typical voltage (Vin_typ) being approximately within the range, and the voltage ratio converter stage configured to output a non-regulated bus voltage to the first stage output; and

a second converter stage comprising a multi-level converter stage including a second stage input coupled to the first stage output to receive the non-regulated bus voltage and also including a second stage output, the multi-level converter stage configured to output a second stage output voltage (Vout) to the second stage output, the output voltage having an output voltage range from a minimum output voltage (Vout_min) to a maximum output voltage (Vout_max) with a typical output voltage (Vout_typ),

wherein the non-regulated bus voltage defined by a voltage conversion ratio (“n”) of the input voltage over the non-regulated bus voltage of the first converter stage,

the multi-level converter stage comprises a buck converter and the Vout_max is less than Vout_typ*2;

the voltage conversion ratio (“n”) of the first stage is equal to or less than Vin_min/Vout_max, and

the non-regulated bus voltage is within the wider of a range of Vout_max to Vout_typ*2 or a range of Vout_max to Vin_max/n.

2. The DC-DC converter of claim 1 wherein the voltage ratio converter stage comprises an open loop isolated LLC converter, an open loop isolated phase shifted full-bridge converter, or a dual-active bridge converter.

3. The DC-DC converter of claim 1 wherein the voltage conversion ratio “n” is fixed or wherein the voltage ratio “n” is within a range of +/10% of a fixed ratio.

4. The DC-DC converter of claim 1 wherein the DC-DC converter has an output of 12V+/−10%.

5. The DC-DC converter of claim 1 wherein a conversion efficiency of the first stage voltage ratio converter stage is within a range of 97.5 to 99.5%.

6. The converter of claim 1 wherein a conversion efficiency of the second stage multilevel converter stage is within a range of 97.0% to 99.0%.

7. A DC-DC converter, comprising:

a first converter stage comprising a voltage ratio converter stage having a first stage input and including a first stage output, the first stage input configured to receive an input voltage in a range from a minimum voltage (Vin_min) of approximately 36V to a maximum voltage (Vin_max) of approximately 75V, with a typical voltage (Vin_typ) being within the range, and the voltage ratio converter stage configured to output a non-regulated bus voltage to the first stage output; and

a second converter stage comprising a multi-level converter stage including a second stage input coupled to the first stage output to receive the non-regulated bus voltage and also including a second stage output, the multi-level converter stage configured to output a second stage output voltage (Vout) to the second stage output, the output voltage range from a minimum output voltage (Vout_min) to a maximum output voltage (Vout_max) with a typical output voltage (Vout_typ) wherein,

the non-regulated bus voltage defined by a voltage conversion ratio (“n”) of the input voltage over the non-regulated bus voltage of the first converter stage,

the multi-level converter stage comprises a boost converter and the Vout_min is greater than Vout_typ/2,

the voltage conversion ratio (“n”) of the first stage is equal to or greater than Vin_max/Vout_min, and

the non-regulated bus voltage is within the wider of a range of Vout_typ/2 to Vout_min or a range of Vin_min/n to Vout_min.

8. The DC-DC converter of claim 7 wherein the voltage ratio converter stage comprises an open loop isolated LLC converter, an open loop isolated phase shifted full-bridge converter, or a dual-active bridge converter.

9. The DC-DC converter of claim 7 wherein the voltage conversion ratio “n” is fixed or wherein the voltage ratio “n” is within a range of +/−10% of a fixed ratio.

10. The DC-DC converter of claim 7 wherein the DC-DC converter has an output of 12V+/−10%.

11. The DC-DC converter of claim 7 wherein the conversion efficiency of the first stage voltage ratio converter stage is within a range of 97.5 to 99.5%.

12. The converter of claim 7 wherein the conversion efficiency of the second stage multilevel converter stage is within a range of 97.0% to 99.0%.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2021
From: HUAWEI TECHNOLOGIES CO., LTD.
To: HUAWEI DIGITAL POWER TECHNOLOGIES CO., LTD.
Reel/Frame 058601/0734 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2020
From: YE, LIMING; DAI, HEPING
To: FUTUREWEI TECHNOLOGIES, INC.
Reel/Frame 053278/0832 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2020
From: FUTUREWEI TECHNOLOGIES, INC.
To: HUAWEI TECHNOLOGIES, INC.
Reel/Frame 053279/0100 →
Continuity (2)
Continuation PCTUS2019052879 · Sep 25, 2019
Related Publication 20210091677A1 · Mar 25, 2021