IP Library › Granted Patent US 10,358,041
Granted Patent B2
US 10,358,041 · App. 15/833,678 · Granted Jul 23, 2019

Electric vehicle

Inventors: Woo Young Lee (Yongin-si, KR); Gyu Yeong Choe (Suwon-si, KR); Jung Hong Joo (Suwon-si, KR); Dong Sup Ahn (Seoul, KR); Jin Hwan Jung (Suwon-si, KR); Byeong Seob Song (Yongin-si, KR); Sihun Yang (Hwaseong-si, KR)
Assignees: Hyundai Motor Company; Kia Motors Corporation
B60L11/1812B60L53/11B60L53/14B60L53/22B60L53/24H02J7/0068H02P27/06B60L2210/14B60L2210/40
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,358,041
App. No.
15/833,678
Granted
Jul 23, 2019
Kind
B2
Abstract

An electric vehicle includes: a battery configured to be charged with a first voltage; and a converter configured to boost, when power of a second voltage that is lower than the first voltage is received, the power of the second voltage to the first voltage, and to transfer the first voltage to the battery, so that the battery is charged with power of the first voltage, wherein when the power of the first voltage is received, the power of the first voltage is transferred to the battery to charge the battery.

Claims (59)

1. An electric vehicle comprising:

a battery configured to be charged with a first voltage;

a converter configured to boost, when power of a second voltage that is lower than the first voltage is received, the power of the second voltage to the first voltage, the converter further configured to transfer the first voltage to the battery so that the battery is charged with power of the first voltage; and

a switch disposed at an input side of the converter, and configured to open or close a path through which the power of the second voltage is transferred to the converter and the battery,

wherein the switch includes a first switch, a second switch, and a third switch,

the first switch and the third switch are turned on when the power of the first voltage is received so that the power of the first voltage is transferred to the battery,

the second switch and the third switch are turned on when the power of the second voltage is received so that the power of the second voltage is boosted by the converter and then transferred to the battery, and

when the power of the first voltage is received, the power of the first voltage is transferred to the battery to charge the battery.

2. The electric vehicle according to claim 1 , wherein the switch includes a diode, a second switch, and a third switch,

the power of the first voltage is transferred to the battery through the diode and the third switch which is turned on; and

the second switch and the third switch are turned on when the power of the second voltage is received so that the power of the second voltage is boosted by the converter and then transferred to the battery.

3. The electric vehicle according to claim 1 , wherein the switch is selectively turned on and off in a charging mode, and

in a driving mode, the switch is turned off.

4. The electric vehicle according to claim 1 , wherein the switch is disposed inside the converter.

5. The electric vehicle according to claim 1 , wherein the switch is disposed outside the converter.

6. An electric vehicle comprising:

a battery configured to be charged with a first voltage;

a motor configured to drive a driving wheel; and

an inverter configured to convert power of the battery, and to provide the power of the battery to the motor,

wherein when power of a second voltage that is lower than the first voltage is received, the motor and the inverter operate as a converter to boost the power of the second voltage to the first voltage and to transfer the first voltage to the battery, so that the battery is charged with power of the first voltage, and

when the power of the first voltage is received, the power of the first voltage is transferred to the battery so that the battery is charged with the power of the first voltage.

7. The electric vehicle according to claim 6 , further comprising a switch configured to open or close a path through which the power of the second voltage is transferred to the inverter and the motor.

8. The electric vehicle according to claim 7 , wherein the switch includes a first switch, a second switch, and a third switch,

the first switch and the third switch are turned on when the power of the first voltage is received so that the power of the first voltage is transferred to the battery through the inverter; and

the second switch and the third switch are turned on when the power of the second voltage is received so that the power of the second voltage is boosted by the inverter and the motor and then transferred to the battery.

9. The electric vehicle according to claim 7 , wherein the switch is selectively turned on and off in a charging mode, and

in a driving mode, the switch is turned off.

10. The electric vehicle according to claim 6 , wherein the switch includes a diode, a second switch, and a third switch,

the power of the first voltage is transferred to the inverter through the diode and the third switch which is turned on; and

the second switch and the third switch are turned on if the power of the second voltage is received so that the power of the second voltage is boosted by the inverter and the motor and then transferred to the battery.

11. The electric vehicle according to claim 10 , wherein the switch includes a first switch, a second switch, and a third switch,

the first switch and the third switch are turned on when the power of the first voltage is received so that the power of the first voltage is transferred to the battery through the inverter; and

the second switch and the third switch are turned on when the power of the second voltage is received so that the power of the second voltage is boosted by the inverter and the motor and then transferred to the battery.

12. An electric vehicle comprising:

a battery configured to be charged with a first voltage;

a motor configured to drive a driving wheel;

an inverter configured to convert power of the battery, and to provide the power of the battery to the motor;

a switch configured to open or close a path through which power is transferred to the inverter and the motor; and

an external inductor configured to connect the switch to the motor,

wherein when power of a second voltage that is lower than the first voltage is received, the motor and the inverter operate as a converter to boost the power of the second voltage to the first voltage and to transfer the first voltage to the battery, so that the battery is charged with power of the first voltage, and

when power of the first voltage is received, the power of the first voltage is transferred to the battery so that the battery is charged with the power of the first voltage.

13. The electric vehicle according to claim 12 , wherein the switch includes a diode, a second switch, and a third switch,

the power of the first voltage is transferred to the inverter through the diode and the third switch which is turned on; and

the second switch and the third switch are turned on when the power of the second voltage is received so that the power of the second voltage is boosted by the inverter and the motor and then transferred to the battery.

14. The electric vehicle according to claim 12 , wherein the switch is selectively turned on and off in a charging mode, and

in a driving mode, the switch is turned off.

15. The electric vehicle according to claim 12 , wherein the external inductor is connected to a neutral terminal of the motor.

16. An electric vehicle comprising:

a battery configured to be charged with a first voltage;

a motor configured to drive a driving wheel;

an inverter configured to convert power of the battery, and to provide the power of the battery to the motor; and

a switch disposed in the inverter to be integrated into the inverter, and configured to open or close a path through which received power is transferred to the inverter and the motor,

wherein when power of a second voltage that is lower than the first voltage is received, the motor and the inverter operate as a converter to boost the power of the second voltage to the first voltage, and to transfer the first voltage to the battery so that the battery is charged with power of the first voltage, and

when power of the first voltage is, the power of the first voltage is transferred to the battery so that the battery is charged with the power of the first voltage.

17. An electric vehicle comprising:

a battery configured to be charged with a first voltage;

a motor configured to drive a driving wheel; and

an inverter configured, to convert power of the battery, and to provide the power of the battery to the motor,

wherein when power of a second voltage that is lower than the first voltage is received, the motor and the inverter operate as a converter to boost the power of the second voltage to the first voltage and to transfer the first voltage to the battery.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE THIRD INVENTOR NAMES PREVIOUSLY RECORDED AT REEL: 044321 FRAME: 0032. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Dec 20, 2017
From: LEE, WOO YOUNG; CHOE, GYU YEONG; JOO, JUNG HONG; AHN, DONG SUP; JUNG, JIN HWAN; SONG, BYEONG SEOB; YANG, SIHUN
To: HYUNDAI MOTOR COMPANY; KIA MOTORS CORPORATION
Reel/Frame 044920/0957 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2017
From: LEE, WOO YOUNG; CHOE, GYU YEONG; JOO, JUN HONG; AHN, DONG SUP; JUNG, JIN HWAN; SONG, BYEONG SEOB; YANG, SIHUN
To: HYUNDAI MOTOR COMPANY; KIA MOTORS CORPORATION
Reel/Frame 044321/0032 →
Priority Claims (1)
KR 10-2017-0092450 · Jul 21, 2017 · national
Continuity (1)
Related Publication 20190023136A1 · Jan 24, 2019
Cited By (1)
US 12,746,833