IP Library Granted Patent US 10,950,840
Granted Patent B2
US 10,950,840 · App. 15/535,904 · Granted Mar 16, 2021

Module of primary cells and device for storing electrical energy

Inventors: Caroline Marchal (Paris, FR); Philippe Recouvreur (Montrouge, FR); Fabrice Bidault (Paris, FR)
Assignee: RENAULT s.a.s.
H01M2/206B60L3/0046B60L50/64B60L58/16B60L58/21H01M10/0445H01M10/617B60L2240/545H01M10/0525H01M10/625H01M10/647H01M2220/20Y02E60/10Y02T10/70
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Quick Facts
Patent No.
US 10,950,840
App. No.
15/535,904
Granted
Mar 16, 2021
Kind
B2
Abstract

A module of elementary electrical energy storage cells includes a first set of elementary cells that are interconnected so as to supply a first voltage in a first voltage range and a second set of elementary cells that are interconnected so as to supply a second voltage in a second voltage range. At least one elementary cell from the second set is arranged between two elementary cells from the first set.

Claims (27)

1. A module of elementary electrical energy storage cells, the module comprising:

a first set of elementary cells that are interconnected, each elementary cell of the first set of elementary cells supplying a first voltage in a first voltage range;

a second set of elementary cells that are interconnected, each elementary cell of the second set of elementary cells supplying a second voltage in a second voltage range, at least one elementary cell from the second set being, arranged between two elementary cells from the first set, and the first voltage being higher than the second voltage;

connection elements from a first group of connection elements that are located on a first portion of the module and are configured to electrically link positive and negative electrical contacts of the first set of elementary cells to one another so as to supply the first voltage;

connection elements from a second and from a third group of connection elements that are located on a second portion of the module and are configured to electrically link positive and negative electrical contacts of the second set of elementary cells to one another so as to supply the second voltage; and

an electrical linking element located on a third portion of the module and configured to connect a first electrical circuit formed of the first set of elementary cells and of the connection elements from the first group to a second electrical circuit formed of the second set of elementary cells and of the connection elements from the second and third groups, wherein

the connection elements of the first group of connecting elements, the connection elements of the second and third groups of connecting elements, and the electrical linking element are located on different sides of the module, and the connection elements of the first group of connecting elements and the connection elements of the second and third groups of connecting elements are located on opposite sides of the module.

2. The module as claimed in claim 1 , wherein the first and second sets of elementary cells are arranged in the module in a succession of elementary cells alternating between at least one elementary cell from the first set and at least one elementary cell from the second set.

3. The module as claimed in claim 1 , wherein the positive and negative electrical contacts of each of the elementary cells of the first set of elementary cells are situated on a part of the module that is opposite another part of the module on which the positive and negative electrical contacts of each of the elementary cells from the second set of elementary cells are located.

4. The module as claimed in claim 1 , wherein the positive and negative electrical contacts of the first and second sets of elementary cells are situated on a same part of the module.

5. The module as claimed in claim 1 , further comprising:

first and second positive voltage terminals supplying the first and the second voltage, respectively, and a third negative voltage terminal.

6. An electrical energy storage device, comprising:

the module as claimed in claim 1 .

7. A method for assembling a module of elementary cells, the method comprising:

arranging at least one elementary cell from a second set of elementary cells that are interconnected between two elementary cells from a first set of elementary cells that are interconnected, each elementary cell of the first set of elementary cells having a first voltage, each elementary cell of the second set of elementary cells having a second voltage, and the first voltage is higher than the second voltage;

electrically linking, by connection elements from a first group of connection elements that are located on a first portion of the module, positive and negative electrical contacts of the first set of elementary cells to one another so as to supply the first voltage;

electrically linking, by connection elements from a second and from a third group of connection elements that are located on a second portion of the module, link positive and negative electrical contacts of the second set of elementary cells to one another so as to supply the second voltage; and

connecting, by an electrical linking element located on a third portion of the module, a first electrical circuit formed of the first set of elementary cells and of the connection elements from the first group to a second electrical circuit formed of the second set of elementary cells and of the connection elements from the second and third groups, the connection elements of the first group of connecting elements, the connection elements of the second and third groups of connecting elements, and the electrical linking element being located on different sides of the module, and the connection elements of the first group of connecting elements and the connection elements of the second and third groups of connecting elements being located on opposite sides of the module.

8. A motor vehicle, comprising:

the electrical energy storage device as claimed in claim 6 .

9. The module as claimed in claim 1 , wherein a total number of elementary cells in the first set of elementary cells is greater than a total number of the elementary cells of the second set of elementary cells.

10. The module as claimed in claim 1 , wherein the first portion of the module corresponds to a first lateral side of the module, the second portion of the module corresponds to a second lateral side of the module, and the third portion of the module corresponds to a back of the module.

11. The module as claimed in claim 10 , wherein the elementary cells of the first set of elementary cells form a front part and the back part of the module.

12. The module as claimed in claim 1 , wherein each elementary cell of the first and second sets of elementary cells includes a single cathode and a single anode separated by an electrolyte.

13. The module as claimed in claim 1 , wherein each of the connection elements of the first group of connecting elements connects two elementary cells from the first group of elementary cells that are disposed on opposite sides of an elementary cell of the second set of elementary cells, and

each of the connection elements of the second and third groups of connecting elements connects two elementary cells from the second group of elementary cells that are disposed on opposite sides of an elementary cell of the first set of elementary cells.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2024
From: RENAULT S.A.S.
To: AMPERE S.A.S.
Reel/Frame 067526/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2020
From: MARCHAL, CAROLINE; BIDAULT, FABRICE
To: RENAULT S.A.S.
Reel/Frame 054529/0648 →
Priority Claims (1)
FR 14 62736 · Dec 18, 2014 · national
Continuity (1)
Related Publication 20180351151A1 · Dec 6, 2018