IP Library Patent Application 18380731
Patent Application
App. No. 18/380,731

CELL MODULE WITH RECHARGEABLE CELLS

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Quick Facts
Patent No.
US None
App. No.
18/380,731
Abstract

A cell module has rechargeable cells for storing electrical current, each cell having a positive pole and a negative pole, and a connecting structure, which has at least one first connecting element for connecting positive poles in an electrically conductive manner and at least one second connecting element for connecting negative poles in an electrically conductive manner. The first connecting element and the second connecting element are arranged on the same side of the cells connected thereto.

Claims (15)

1 . A cell module ( 1 ) with a plurality of rechargeable cells ( 2 ) for storing electrical current, each cell ( 2 ) having a positive pole ( 5 ) and a negative pole ( 6 ), and having a connecting structure, which has at least one first connecting element ( 7 ) for connecting a plurality of positive poles ( 5 ) in an electrically conductive manner and at least one second connecting element ( 8 ) for connecting a plurality of negative poles ( 6 ) in an electrically conductive manner, wherein the first connecting element ( 7 ) and the second connecting element ( 8 ) are arranged on the same side of the cells ( 2 ) connected thereto.

2 . The cell module ( 1 ) according to claim 1 , wherein the first and the second connecting elements ( 7 , 8 ) are configured together as one piece.

3 . The cell module ( 1 ) according claim 1 , wherein the positive poles ( 5 ) of the cells ( 2 ) are connected to the first connecting element ( 7 ) in an electrically conductive manner in a first plane and the negative poles ( 6 ) are connected to the second connecting element ( 7 ) in an electrically conductive manner in a different second plane.

4 . The cell module ( 1 ) according to claim 1 , wherein the first connecting element ( 7 ) has contact portions ( 10 ), in which the positive poles ( 5 ) are connected to the first connecting element ( 7 ) in an electrically conductive manner, and intermediate portions ( 11 ), which connect the contact portions ( 10 ) to one another, the intermediate portions ( 11 ) being arranged in a different plane than the contact portions ( 10 ).

5 . The cell module ( 1 ) according to claim 1 , wherein the first and the second connecting elements ( 7 , 8 ) are arranged on a frame element ( 19 ).

6 . The cell module ( 1 ) according to claim 5 , wherein the frame element ( 19 ) has support surfaces ( 23 ) for the first and the second connecting elements ( 7 , 8 ).

7 . The cell module ( 1 ) according to claim 5 , wherein the frame element ( 19 ) is part of a cell holder ( 20 ), in which the cells ( 2 ) are at least partially arranged.

8 . The cell module ( 1 ) according to claim 5 , wherein at least 95% of the end faces of the cells ( 2 ) is covered by the frame element ( 19 ) and the first and second connecting elements ( 7 , 8 ) in a plan view of the positive poles ( 5 ) and the negative poles ( 6 ).

9 . A cell pack ( 28 ) comprising at least two cell modules ( 1 ), wherein the cell modules ( 1 ) are configured according to claim 1 .

10 . The cell pack ( 28 ) according to claim 9 , wherein the first and second connecting elements ( 7 , 8 ) of the first cell module ( 1 ) and the first and second connecting elements ( 7 , 8 ) of the second cell module ( 1 ) are arranged between the cells ( 2 ) of the first and second cell module ( 1 ).

11 . The cell pack ( 28 ) according to claim 10 , wherein a temperature control element ( 29 ), in particular a liquid cooler, is arranged between the cells ( 2 ) of the first and second cell modules ( 1 ).

12 . A method for producing a cell module ( 1 ) with a plurality of rechargeable cells ( 2 ) for storing electrical current, each cell ( 2 ) having a positive pole ( 5 ) and a negative pole ( 6 ), and having a connecting structure, which has at least one first connecting element ( 7 ) and one second connecting element ( 8 ), wherein a plurality of positive poles ( 5 ) are connected to one another by the first connecting element ( 7 ) in an electrically conductive manner and a plurality of negative poles ( 6 ) are connected to one another by the second connecting element ( 8 ) in an electrically conductive manner, wherein the first connecting element ( 7 ) and the second connecting element ( 8 ) are arranged on the same side of the cells ( 2 ) connected thereto.

13 . The method according to claim 12 , wherein the first and the second connecting elements ( 7 , 8 ) are configured as one piece.

14 . The method according to claim 12 , wherein the first and the second connecting element ( 7 , 8 ) are arranged on a frame element ( 19 ).

15 . The method according to claim 14 , wherein the frame element ( 19 ) is configured as part of a cell holder ( 20 ), wherein the cell holder ( 20 ) equipped with the connecting elements ( 7 , 8 ) is pushed onto the cells ( 2 ) and wherein the first connecting element ( 7 ) is subsequently connected to the positive poles ( 5 ) in an electrically conductive manner and the second connecting element ( 8 ) is connected to the negative poles ( 6 ) of a plurality of rechargeable cells ( 2 ) in an electrically conductive manner.

Assignments (2)
CHANGE OF NAME Recorded Aug 21, 2026
From: MIBA BATTERY SYSTEMS GMBH
To: VOLTFACTORY GMBH
Reel/Frame 075733/0951 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 17, 2023
From: GAIGG, STEFAN; HOCHREITER, GEORG
To: MIBA BATTERY SYSTEMS GMBH
Reel/Frame 065246/0588 →