Pre-charge system and method

US10076964B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10076964-B2
Application numberUS-201514969572-A
CountryUS
Kind codeB2
Filing dateDec 15, 2015
Priority dateDec 15, 2015
Publication dateSep 18, 2018
Grant dateSep 18, 2018

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A system is disclosed for connecting a battery string to a direct-current (DC) bus of a vehicle. The system may include a pre-charge circuit coupled between the battery string and the DC bus. The pre-charge circuit may include a first transistor. The system may also include a first contactor connected to the pre-charge circuit in series. The system may further include a controller configured to close the first contactor and switch on the first transistor.

First claim

Opening claim text (preview).

What is claimed is: 1. A system for connecting a battery string to a direct-current (DC) bus of a vehicle, comprising: a pre-charge circuit coupled between the battery string and the DC bus, the pre-charge circuit comprising a first transistor; a first contactor connected to the pre-charge circuit in series; a controller configured to: close the first contactor; and switch on the first transistor; and a second contactor connected to the pre-charge circuit in parallel; wherein the controller is further configured to close the second contactor after a voltage of the DC bus reaches a steady state. 2. The system of claim 1 , wherein the pre-charge circuit further comprises a pre-charge resistor. 3. The system of claim 1 , wherein the first transistor is a MOSFET or an IGBT. 4. The system of claim 1 , further comprising: monitoring circuitry configured to detect the voltage of the DC bus. 5. The system of claim 1 , wherein the controller is further configured to switch off the first transistor after closing the second contactor. 6. The system of claim 1 , wherein: the first contactor is configured to connect or disconnect a first terminal of the battery string with the DC bus; and the second contactor is configured to connect or disconnect a second terminal of the battery string with the DC bus. 7. The system of claim 1 , further comprising a discharge circuit connected to the DC bus, the discharge circuit including a discharge resistor. 8. The system of claim 7 , wherein the discharge circuit further comprises a second transistor connected to the discharge resistor in series, and wherein the controller is further configured to switch on the second transistor when the battery string is disconnected from the DC bus. 9. The system of claim 8 , wherein the controller is further configured to switch off the second transistor when the first transistor is switched on. 10. The system of claim 1 , further comprising: monitoring circuitry configured to detect a voltage across the first transistor after the first transistor is switched on, wherein the controller is further configured to switch off the first transistor after the detected voltage reaches a threshold voltage level. 11. A system for connecting a battery string to a DC bus of a vehicle, comprising: a pre-charge circuit coupled between the battery string and the DC bus; a discharge circuit connected to the DC bus; a controller configured to: decrease a first impedance of the pre-charge circuit; and increase a second impedance of the discharge circuit; and a second transistor; wherein the controller is further configured to operate the second transistor to change the second impedance. 12. The system of claim 11 , wherein the controller is further configured to: increase the first impedance after a voltage of the DC bus reaches a steady state. 13. The system of claim 11 , wherein the controller is further configured to: decrease the second impedance when the battery string is disconnected from the DC bus. 14. The system of claim 11 , wherein the pre-charge comprises a first transistor, and wherein the controller is further configured to operate the first transistor to change the first impedance. 15. A method for connecting a battery string to a DC bus of a vehicle, comprising: closing, by a controller, a first contactor coupled between the battery string and the DC bus; switching on, by the controller, a first transistor connected to the first contactor and the battery string in series; and closing, by the controller, a second contactor after a voltage of the DC bus reaches a steady state, the second contactor being connected to the first transistor in parallel. 16. The method of claim 15 , further comprising: switching off, by the controller, the first transistor after the second contactor is closed. 17. The method of claim 15 , further comprising: decreasing, by the controller, an impedance of a second transistor when the battery string is disconnected from the DC bus, the second transistor being connected to the DC bus and configured to discharge a leakage current of the first transistor.

Assignees

Inventors

Classifications

  • exchanging power with electric vehicles [EV] or with hybrid electric vehicles [HEV] · CPC title

  • with circuits adapted for supplying loads from the battery · CPC title

  • in response to battery voltage · CPC title

  • Control of state of health [SOH] · CPC title

  • Control of state of charge [SOC] · CPC title

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Frequently asked questions

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What does patent US10076964B2 cover?
A system is disclosed for connecting a battery string to a direct-current (DC) bus of a vehicle. The system may include a pre-charge circuit coupled between the battery string and the DC bus. The pre-charge circuit may include a first transistor. The system may also include a first contactor connected to the pre-charge circuit in series. The system may further include a controller configured to…
Who is the assignee on this patent?
Faraday & Future Inc
What technology area does this patent fall under?
Primary CPC classification H02J7/50. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Sep 18 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).