Structural battery pack cell signal and conversion pass-through
A battery pack for use in an electric vehicle having two longitudinal sill members extending in a length direction, interconnected at a front side by front and rear transverse members, a number of rectangular battery cells being placed between the sill members, the front transverse member and the rear transverse member, the cells being mutually adjacent in the length direction. The battery pack has at least a chamber integrated in the rear transverse beam, said chamber being configured to accommodate an analog-to-digital converter.
1 . A battery pack for use in an electric vehicle, the battery pack comprising:
two spaced-apart longitudinal sill members extending in a length direction L, interconnected at front portions thereof by a front transverse member and interconnected at a rear portions thereof by a rear transverse member, said front transverse member and rear transverse member extending in a width direction W, and
a number of battery cells being placed between the sill members, the front transverse member and the rear transverse member, said cells being mutually adjacent in the length direction L,
the rear transverse beam having an inward side contacting the battery cells and an outward side facing away from the battery cells, the rear transverse beam having opposite upward and downward sides that are spaced apart in a depth direction D, and
the battery pack having at least a chamber integrated in the rear transverse beam, said chamber being configured to receive an analog-to-digital converter through the upward side of the rear transverse beam with a flange of the analog-to-digital converter contacting the upward side of the rear transverse beam.
2 . The battery pack according to claim 1 , the chamber defining a passage through the rear transverse beam extending from the upward side to the downward side, and
the chamber opening onto the exterior of the rear transverse beam through an upward opening in the upward side and through a downward opening in the downward side.
3 . The battery pack according to claim 1 , said battery cells being bonded to each other and to each one of the sill members and the transverse members.
4 . The battery pack according to claim 3 , the battery cells being further bonded to a cover plate provided underneath the battery cells.
5 . The battery pack according to claim 1 , further comprising an analog-to-digital converter (ADC) cassette provided in the chamber, the ADC configured to convert an analog signal corresponding to an output of the battery cells into a digital signal and configured to balance the voltage of the battery cells.
6 . The battery pack according to claim 5 , the ADC having an analog input connection connected with the battery cells and a digital output connection connected to a battery management system (BMS) of the battery pack.
7 . The battery pack according to claim 6 , said ADC having an upper connection end and a lower connection end spaced apart in the depth direction D, the analog input connection being provided at the lower connection end of the ADC and the digital output connection is provided at the upper connection end of the ADC.
8 . The battery pack according to claim 6 , the analog input connection being connected with the battery cells via at least one of a flexible PCB extending in the length direction L, a flexible flat cable (FFC) and another signal cable.
9 . The battery pack according to claim 8 , the battery cells being further bonded to the at least one of the flexible PCB extending in the length direction L, the FFC, and the other signal cable.
10 . The battery pack according to claim 1 , the chamber being closed at the upward side of the rear transverse beam by a removable cover.
11 . The battery pack according to claim 1 , comprising two or more rows of battery cells being placed side by side in a width direction W, and
a plurality of adjacent chambers being integrated in the rear transverse beam, each chamber corresponding to a row of battery cells, said chambers being configured to accommodate analog-to-digital converters (ADCs).
12 . The battery pack according to claim 11 , the plurality of chambers being closed by a common cover.
13 . The battery pack according to claim 11 , each one of the plurality of chambers comprising an analog-to-digital converter (ADC) cassette connected with the battery cells via separate connections means extending in the length direction L from the rear transverse member to the front transverse member, wherein each connection means corresponds to different rows of battery cells.
14 . The battery pack according to claim 1 , the front transverse member and the rear transverse member arranged to exert a compressive force of between 20 and 200 kN/m2 on the cells in the length direction L based on a length of the interconnecting sill members in the length direction L as compared to a length of the cells in the length direction L.
15 . An electric vehicle, comprising:
a battery pack, comprising:
two spaced-apart longitudinal sill members extending in a length direction L, interconnected at front portions thereof by a front transverse member and interconnected at a rear portions thereof by a rear transverse member, said front transverse member and rear transverse member extending in a width direction W, and
a number of battery cells being placed between the sill members, the front transverse member and the rear transverse member, said cells being mutually adjacent in the length direction L,
the rear transverse beam having an inward side contacting the battery cells and an outward side facing away from the battery cells, the rear transverse beam having opposite upward and downward sides that are spaced apart in a depth direction D, and
the battery pack having at least a chamber integrated in the rear transverse beam, said chamber being configured to receive an analog-to-digital converter through the upward side of the rear transverse beam with a flange of the analog-to-digital converter contacting the upward side of the rear transverse beam.