Sensing assembly, manufacturing method for thereof and battery module comprising the same
Provided are a sensing assembly and a battery module including the same, having improved economical efficiency in such a manner that a relatively expensive flexible printed circuit board is used in a smaller amount by allowing a relatively inexpensive rigid printed circuit board to replace a portion of the flexible printed circuit board used for a conventional sensing assembly.
1. A sensing assembly coupling both ends of a battery cell stack, the sensing assembly comprising:
two first substrates respectively coupled to both ends of the battery ends of the battery cell stack;
a second substrate including sensing lines crossing the battery cell stack and coupling the first substrates respectively coupled to both ends of the battery cell stack; and
first electrical bonding portions formed between each of the first substrates and the second substrate and coupling the first substrates and the second substrate,
wherein the first substrates are made of a rigid printed circuit board and include:
at least one first terminal at a first end of each first substrate electrically bonded to one of the sensing lines on one surface of the at least one first terminal,
a second terminal at a second end of each first substrate,
a sensing leg having one end electrically bonded to the second terminal, and
a second electrical bonding portion at the second end of each first substrate to electrically bond the second terminal and the sensing leg to each other,
wherein the second substrate and the sensing leg of each first substrate are made of a flexible printed circuit board, and
wherein at least one of the first electrical bonding portions and the second electrical bonding portion are formed using an electroconductive film.
2. A battery module comprising:
a battery cell stack including a plurality of battery cells stacked on each other in one direction;
a bus bar coupling member coupled to opposite ends of the battery cell stack and having cell tabs of each of the battery cells, the cell tabs each being inserted into and exposed to the outside of the bus bar coupling member; and
a sensing assembly electrically connected to the cell tabs exposed to the outside of each of the bus bar coupling member to sense a voltage of the battery cell,
wherein the sensing assembly includes:
two first substrates respectively coupled to both ends of the battery ends of the battery cell stack;
a second substrate including sensing lines crossing the battery cell stack and coupling the first substrates respectively coupled to both ends of the battery cell stack; and
first electrical bonding portions formed between each of the first substrates and the second substrate and coupling the first substrates and the second substrate,
wherein the first substrates are made of a rigid printed circuit board and include:
at least one first terminal at a first end of each first substrate electrically bonded to one of the sensing lines on one surface of the at least one first terminal,
a second terminal at a second end of each first substrate, and
a sensing leg having one end electrically bonded to the second terminal, and
a second electrical bonding portion at the second end of each first substrate to electrically bond the second terminal and the sensing leg to each other,
wherein the second substrate and the sensing leg of each first substrate are made of a flexible printed circuit board, and
wherein at least one of the first electrical bonding portion and the second electrical bonding portion are formed using an electroconductive film.