IP Library Granted Patent US 10,784,668
Granted Patent B2
US 10,784,668 · App. 16/230,499 · Granted Sep 22, 2020

Laminate busbars for battery module design

Inventors: Adam H. Ing (San Francisco, CA); Shubham Saurav (San Jose, CA); Alexander J. Smith (Mountain View, CA)
Assignee: NIO USA, Inc.
H02G5/005H01M2/206H01M2/30H01M10/425H01M10/482H01M10/486H05K1/118H01M2004/025
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Quick Facts
Patent No.
US 10,784,668
App. No.
16/230,499
Granted
Sep 22, 2020
Kind
B2
Abstract

A laminated busbar assembly includes positive and negative leads supported by an insulative layer. The insulative layer as well as the positive and negative leads are thin and flexible, thus facilitating connection of the positive and negative leads with the terminals of the electric cells of a battery module. The laminated busbar assembly may include voltage measurement wires and/or temperature sensors for measuring voltage and/or temperature, respectively.

Claims (40)

1. A laminate busbar assembly, comprising:

a first plurality of first leads arranged in a first row, and a second plurality of first leads arranged in a second row;

a first plurality of second leads arranged in the first row, and a second plurality of second leads arranged in the second row, each of the first plurality of second leads adjacent to a corresponding one of the first plurality of first leads, and each of the second plurality of second leads adjacent to a corresponding one of the second plurality of first leads;

a heat-resistant dielectric sheet having an upper surface and a lower surface opposite the upper surface, the heat-resistant dielectric sheet supporting the first plurality of first leads, the second plurality of first leads, the first plurality of second leads, and the second plurality of second leads;

a ceramic coating on at least one of the upper surface or the lower surface of the heat-resistant dielectric sheet;

a connector with a plurality of voltage measurement wires extending therefrom, the connector and the plurality of voltage measurement wires being secured to the dielectric sheet,

wherein each first lead in the first plurality of first leads and the second plurality of first leads and each second lead in the first plurality of second leads and the second plurality of second leads is formed of metal foil,

wherein each of the first plurality of first leads is electrically connected, via a fusible link, to one of the second plurality of second leads, and

wherein the fusible link is not in contact with the heat-resistant dielectric sheet.

2. The laminate busbar assembly of claim 1 , wherein a portion of each of the first plurality of first leads, the second plurality of first leads, the first plurality of second leads, and the second plurality of second leads is sandwiched within the heat-resistant dielectric sheet.

3. The laminate busbar assembly of claim 2 , wherein the heat-resistant dielectric sheet has a maximum thickness between about 100 microns and about 1000 microns.

4. The laminate busbar assembly of claim 1 , wherein each of the first plurality of first leads is connected, via a fusible link, to one of the second plurality of second leads.

5. The laminate busbar assembly of claim 1 , wherein adjacent ones of the first plurality of second leads are connected via a flexible joint, and adjacent ones of the second plurality of second leads are connected via a flexible joint.

6. The laminate busbar assembly of claim 1 , further comprising a current collector in electrical communication with the first plurality of second leads.

7. The laminate busbar assembly of claim 1 , wherein the metal foil has a thickness between about 100 and 1000 microns.

8. The laminate busbar assembly of claim 1 , further comprising a plurality of temperature sensors.

9. The laminate busbar assembly of claim 1 , wherein the metal foil comprises aluminum.

10. The laminate busbar assembly of claim 1 , further comprising a plurality of alignment apertures.

11. An electrical assembly comprising:

a cell bank comprising a plurality of electric cells arranged in adjacent rows, each of the plurality of electrical cells comprising a first terminal and a second terminal;

a laminate busbar assembly comprising:

a dielectric sheet comprising a plurality of alignment apertures, the dielectric sheet having an upper surface and a lower surface opposite the upper surface;

a ceramic coating on at least one of the upper surface and the lower surface of the dielectric sheet;

a plurality of temperature sensors secured to the dielectric sheet;

a plurality of lead pairs partially sandwiched within the dielectric sheet, each lead pair of the plurality of lead pairs comprising a first lead and a second lead, each of the first lead and the second lead comprising a metal foil,

wherein the plurality of lead pairs are arranged in a plurality of rows, with a flexible joint establishing electrical communication between the second leads of adjacent ones of the plurality of lead pairs in each row,

wherein each of the first leads of the plurality of lead pairs in a row is electrically connected, via a fusible link, to one of the second leads of the plurality of lead pairs in another row, and

wherein the fusible link is not in contact with the dielectric sheet; and

a plurality of alignment posts extending from the cell bank, each alignment post extending through one of the plurality of alignment apertures.

12. The electrical assembly of claim 11 , wherein a first lead of each lead pair in one of the plurality of rows is in electrical communication with a corresponding second lead of the lead pairs in another of the plurality of rows.

13. The electrical assembly of claim 11 , wherein the second leads of each lead pair in one of the plurality of rows and the flexible joints therebetween comprise a continuous piece of the metal foil.

14. The electrical assembly of claim 11 , wherein the second lead of each lead pair at least partially surrounds the first lead of the lead pair.

15. The electrical assembly of claim 11 , wherein the first lead of each of the plurality of lead pairs is in electrical communication with the first terminal of a corresponding one of the plurality of electric cells.

16. The electrical assembly of claim 15 , wherein the first lead of each of the plurality of lead pairs is secured to the first terminal of the corresponding one of the plurality of electric cells with adhesive.

17. The electrical assembly of claim 15 , wherein the first lead of each of the plurality of lead pairs is welded to the first terminal of the corresponding one of the plurality of electric cells.

18. The electrical assembly of claim 11 , wherein the laminate busbar assembly further comprises:

a first current collector in independent electrical communication with the first lead of each lead pair in one of the plurality of rows; and

a second current collector in independent electrical communication with the second lead of each lead pair in another one of the plurality of rows.

19. A busbar assembly comprising: a plurality of first leads and a plurality of second leads partially embedded in a heat-resistant sheet, the plurality of first leads being arranged in rows, with each of the plurality of second leads partially surrounding a corresponding one of the plurality of first leads; a ceramic coating on at least one of an upper surface of the heat-resistant sheet or a lower surface of the heat-resistant sheet, the upper surface opposite the lower surface, and a connector with a plurality of voltage measurement wires extending therefrom, the connector and the plurality of voltage measurement wires being secured to the heat-resistant sheet, wherein each of the plurality of first leads in a row is electrically connected by a fusible link to one of the plurality of second leads in another row, each of the plurality of second leads is connected by a flexible joint to another of the plurality of second leads, and the heat-resistant sheet has a maximum thickness between about 100 microns and about 600 microns, and wherein the fusible link is not in contact with the heat-resistant sheet.

20. The busbar assembly of claim 19 , wherein each of the plurality of first leads and each of the plurality of second leads comprises a metal foil.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2022
From: NIO USA, INC.
To: NIO TECHNOLOGY (ANHUI) CO., LTD.
Reel/Frame 060171/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2020
From: ING, ADAM H.; SAURAV, SHUBHAM; SMITH, ALEXANDER J.
To: NIO USA, INC.
Reel/Frame 052648/0683 →
Continuity (1)
Related Publication 20200203941A1 · Jun 25, 2020
Cited By (3)
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