Cell connector for connecting round cells of a battery
A cell connector for connecting round cells of a battery includes a plurality of electrical contact elements that are each configured to electrically connect a first round cell to a second round cell. The each electrical contact element includes a contact base. The electrical contact elements can each be connected via the contact base to a positive terminal of the first round cell in a material-bonded manner. The electrical contact elements each includes a plurality of contact tabs, with which the electrical contact elements can each be contacted to a negative terminal of the second round cell. An electrical contact element is respectively connected via an electrically conductive connecting bridge to a further electrical contact element. In an area between the electrically conductive connecting bridge and at least one contact tab adjacent to the electrically conductive connecting bridge material of the electrical contact element is recessed.
1 . A cell connector for connecting round cells of a battery, the cell connector comprising:
a plurality of electrical contact elements, wherein each of the plurality of electrical contact elements is configured to electrically connect a first round cell to a second round cell, wherein:
each of the plurality of electrical contact elements comprises a contact base, wherein each of the plurality of electrical contact elements is connected via the contact base to a positive terminal of the first round cell in a material-bonded manner,
each of the plurality of electrical contact elements comprises a plurality of contact tabs, wherein the plurality of contact tabs of each of the electrical contact elements is configured to connect to a negative terminal of the second round cell; and
an electrical contact element among the plurality of electrical contact elements is respectively connected via an electrically conductive connecting bridge to a further electrical contact element,
wherein material of the electrical contact element is recessed in an area between the electrically conductive connecting bridge and at least one contact tab adjacent to the electrically conductive connecting bridge, and the recessed material is directly adjacent to the contact base.
2 . The cell connector according to claim 1 , wherein the electrically conductive connecting bridge comprises a slope relative to the contact base in the area of the recessed material configured to absorb mechanical stresses.
3 . The cell connector according to claim 1 , wherein the plurality of electrical contact elements are disposed in a plurality of rows and columns with respect to one another, and respective directly adjacent electrical contact elements are each connected to one another by one of a plurality of electrically conductive connecting bridges.
4 . The cell connector according to claim 1 , wherein the plurality of contact tabs are spring-loaded.
5 . The cell connector according to claim 1 , wherein each of the plurality of contact tabs comprise curved surfaces, thereby enabling the contact tabs to nestle flatly against the negative terminal of the second round cell.
6 . The cell connector according to claim 1 , wherein a voltage tap is disposed on at least one of the plurality of electrical contact elements, wherein the voltage tap is configured to measure a voltage of the first round cell and of the second round cell.
7 . The cell connector according to claim 1 , wherein the cell connector is made from at least one stamped bent part.