Battery Interconnect System
A system and a corresponding method are provided for interconnecting the batteries in a battery pack in a manner that is designed to simplify the connection process, thereby improving throughput. The system uses two different types of interconnects; wire and ribbon interconnects. The wire interconnects are attached to each battery's large contact area terminal nub while the ribbon interconnects are attached to the crimped edge region of each battery's case.
1 . A method of electrically interconnecting a plurality of batteries contained within a battery pack, said method comprising:
coupling a first terminal of each battery of said plurality of batteries to a first bus bar using a plurality of wire interconnects, wherein each wire interconnect of said plurality of wire interconnects has a substantially circular cross-section; and
coupling a second terminal of each battery of said plurality of batteries to a second bus bar using a plurality of ribbon interconnects, wherein each ribbon interconnect of said plurality of ribbon interconnects has a substantially rectangular cross-section.
2 . The method of claim 1 , said step of coupling said first terminal of each battery of said plurality of batteries to said first bus bar further comprises coupling a large contact area terminal nub corresponding to said first terminal of each battery of said plurality of batteries to said first bus bar using said plurality of wire interconnects, wherein said large contact area terminal nub is integrated into a central region of a battery cap assembly.
3 . The method of claim 2 , further comprising the step of attaching each wire interconnect of said plurality of wire interconnects to said large contact area terminal nub and to said first bus bar using a technique selected from the group consisting of laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding.
4 . The method of claim 1 , said step of coupling said second terminal of each battery of said plurality of batteries to said second bus bar further comprises coupling a crimped edge region corresponding to said second terminal of each battery of said plurality of batteries to said second bus bar using said plurality of ribbon interconnects, wherein said crimped edge region of each battery is integral to a battery casing corresponding to each battery.
5 . The method of claim 4 , further comprising the step of attaching each ribbon interconnect of said plurality of ribbon interconnects to said crimped edge region and to said second bus bar using a technique selected from the group consisting of laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding.
6 . The method of claim 1 , wherein:
said step of coupling said first terminal of each battery of said plurality of batteries to said first bus bar further comprises coupling a large contact area terminal nub corresponding to said first terminal of each battery of said plurality of batteries to said first bus bar using said plurality of wire interconnects, wherein said large contact area terminal nub is integrated into a central region of a battery cap assembly; and
said step of coupling said second terminal of each battery of said plurality of batteries to said second bus bar further comprises coupling a crimped edge region corresponding to said second terminal of each battery of said plurality of batteries to said second bus bar using said plurality of ribbon interconnects, wherein said crimped edge region of each battery is integral to a battery casing corresponding to each battery.
7 . The method of claim 6 , further comprising:
attaching each wire interconnect of said plurality of wire interconnects to said large contact area terminal nub and to said first bus bar using a technique selected from the group consisting of laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding; and
attaching each ribbon interconnect of said plurality of ribbon interconnects to said crimped edge region and to said second bus bar using a technique selected from the group consisting of laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding.
8 . A battery pack, comprising:
a plurality of batteries, each battery of said plurality of batteries comprising a first battery terminal and a second battery terminal, said first battery terminal of each battery of said plurality of batteries comprising a large contact area terminal nub integrated into a central region of a battery cap assembly, and said second battery terminal of each battery of said plurality of batteries comprising a crimped edge region integral to a battery casing corresponding to each battery of said plurality of batteries;
a first bus bar;
a second bus bar;
a first plurality of interconnects comprising a plurality of wire interconnects, wherein each wire interconnect of said plurality of wire interconnects has a substantially circular cross-section, wherein a first end portion of each wire interconnect is attached to said first bus bar, and wherein a second end portion of each wire interconnect distal from said first end portion is attached to said large contact area terminal nub of one of said plurality of batteries; and
a second plurality of interconnects comprising a plurality of ribbon interconnects, wherein each ribbon interconnect of said plurality of ribbon interconnects has a substantially rectangular cross-section, wherein a first end portion of each ribbon interconnect is attached to said second bus bar, and wherein a second end portion of each ribbon interconnect distal from said first end portion is attached to said crimped edge region of one of said plurality of batteries.
9 . The battery pack of claim 8 , wherein each wire interconnect of said plurality of wire interconnects is comprised of a fusible interconnect.
10 . The battery pack of claim 8 , wherein said first end portion of each wire interconnect is attached to said first bus bar via a first bond, wherein said second end portion of each wire interconnect is attached to said large contact area terminal nub via a second bond, and wherein said first and second bonds are formed via a technique selected from laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding.
11 . The battery pack of claim 8 , wherein said first end portion of each ribbon interconnect is attached to said second bus bar via a third bond, wherein said second end portion of each ribbon interconnect is attached to said crimped edge region via a fourth bond, and wherein said third and fourth bonds are formed via a technique selected from the group consisting of laser welding, e-beam welding, resistance welding, ultrasonic bonding, thermocompression bonding and thermosonic bonding.