BATTERY SYSTEM WITH CYLINDRICAL CELLS
A battery system which includes a plurality of cylindrical cells, including a first cylindrical cell and a second cylindrical cell, an electrical tab that is connected to the first cylindrical cell and the second cylindrical cell using spot welding, and a battery management printed circuit board, where the electrical tab provides a connecting surface for a battery management signal between (1) the first cylindrical cell and the second cylindrical cell and (2) the battery management printed circuit board.
1 . A battery system, comprising:
a first end plate including a plurality of cutouts;
a plurality of cylindrical cells, including a first cylindrical cell and a second cylindrical cell;
an electrical tab fitting entirely within a cutout of the plurality of cutouts wherein the cutout is a single cutout, wherein the cutout exposes one terminal end of the first cylindrical cell and one terminal end of the second cylindrical cell, and wherein the electrical tab is connected to the first cylindrical cell and the second cylindrical cell using spot welding; and
a battery management printed circuit board, wherein the electrical tab provides a connecting surface for a battery management signal between (1) the first cylindrical cell and the second cylindrical cell and (2) the battery management printed circuit board.
2 . The battery system recited in claim 1 further comprising a second end plate, wherein:
the cutout is configured to hold the one terminal end of the first cylindrical cell and the one terminal end of the second cylindrical cell; and
the second end plate includes a plurality of cutouts configured to hold another terminal end of the first cylindrical cell and another terminal end of the second cylindrical cell.
3 . The battery system recited in claim 1 further comprising a second end plate, wherein:
the cutout is configured to hold the one terminal end of the first cylindrical cell and the one terminal end of the second cylindrical cell;
the second end plate includes a plurality of cutouts configured to hold another terminal end of the first cylindrical cell and another terminal end of the second cylindrical cell; and
the battery system is exposed on four sides other than a first side associated with the first end plate and a second side associated with the second end plate.
4 . The battery system recited in claim 1 , wherein the plurality of cylindrical cells is electrically connected in a plurality of three-in-parallel groups.
5 . The battery system recited in claim 1 , wherein the plurality of cylindrical cells is electrically connected in a 3-in-parallel, 21-in-series connection.
6 . The battery system recited in claim 1 further comprising a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells; and
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series.
7 . The battery system recited in claim 1 further comprising a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells;
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series;
the first cylindrical cell and the third cylindrical cell are in a first row of cells; and
the second cylindrical cell and the fourth cylindrical cell are in a second row of cells.
8 . The battery system recited in claim 1 further comprising a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells;
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series; and
the first cylindrical cell, the second cylindrical cell, the third cylindrical cell, and the fourth cylindrical cell are in a first row of cells, a second row of cells, a third row of cells, and a fourth row of cells, respectively.
9 . The battery system recited in claim 1 , wherein the plurality of cylindrical cells is electrically connected in a plurality of two-in-parallel groups.
10 . The battery system recited in claim 1 , wherein the plurality of cylindrical cells is electrically connected in a 2-in-parallel, 36-in-series connection.
11 . The battery system recited in claim 1 further comprising a case with a handle and one or more vertical guide rails, wherein the battery system is configured to be vertically lowered into one or more slide-in brackets.
12 . The battery system recited in claim 1 further comprising:
a case with a handle and one or more vertical guide rails, wherein the battery system is configured to be vertically lowered into one or more slide-in brackets;
a battery management system inside the case; and
a display disposed on a top surface of the case, wherein the display is configured to display information from the battery management system.
13 . A method, comprising:
providing a first end plate including a plurality of cutouts;
providing a plurality of cylindrical cells, including a first cylindrical cell and a second cylindrical cell;
providing an electrical tab fitting entirely within a cutout of the plurality of cutouts, wherein the cutout is a single cutout, wherein the cutout exposes one terminal end of the first cylindrical cell and one terminal end of the second cylindrical cell, and wherein the electrical tab is connected to the first cylindrical cell and the second cylindrical cell using spot welding; and
providing a battery management printed circuit board, wherein the electrical tab provides a connecting surface for a battery management signal between (1) the first cylindrical cell and the second cylindrical cell and (2) the battery management printed circuit board.
14 . The method recited in claim 13 further comprising providing a second end plate, wherein:
the cutout is configured to hold the one terminal end of the first cylindrical cell and the one terminal end of the second cylindrical cell; and
the second end plate includes a plurality of cutouts configured to hold a another terminal end of the first cylindrical cell and another terminal end of the second cylindrical cell.
15 . The method recited in claim 13 further comprising providing a second end plate, wherein:
the cutout is configured to hold the one terminal end of the first cylindrical cell and the one terminal end of the second cylindrical cell;
the second end plate includes a plurality of cutouts configured to hold another terminal end of the first cylindrical cell and another terminal end of the second cylindrical cell; and
a battery system, which includes the plurality of cylindrical cells, the electrical tab, the battery management printed circuit board, the first end plate, and the second end plate, is exposed on four sides other than a first side associated with the first end plate and a second side associated with the second end plate.
16 . The method recited in claim 13 further comprising providing a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells; and
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series.
17 . The method recited in claim 13 further comprising providing a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells;
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series;
the first cylindrical cell and the third cylindrical cell are in a first row of cells; and
the second cylindrical cell and the fourth cylindrical cell are in a second row of cells.
18 . The method recited in claim 13 further comprising providing a third cylindrical cell and a fourth cylindrical cell, wherein:
the first cylindrical cell and the second cylindrical cell are in a first group of in-parallel cells;
the third cylindrical cell and the fourth cylindrical cell are in a second group of in-parallel cells;
the electrical tab connects: (1) the first cylindrical cell and the second cylindrical cell in parallel, (2) the third cylindrical cell and the fourth cylindrical cell in parallel, and (3) the first group of in-parallel cells and the second group of in-parallel cells in series; and
the first cylindrical cell, the second cylindrical cell, the third cylindrical cell, and the fourth cylindrical cell are in a first row of cells, a second row of cells, a third row of cells, and a fourth row of cells, respectively.
19 . The method recited in claim 13 further comprising providing a case with a handle and one or more vertical guide rails, wherein a battery system, which includes the plurality of cylindrical cells, the electrical tab, the battery management printed circuit board, and the case, is configured to be vertically lowered into one or more slide-in brackets.
20 . The method recited in claim 13 further comprising:
providing a case with a handle and one or more vertical guide rails, wherein a battery system, which includes the plurality of cylindrical cells, the electrical tab, the battery management printed circuit board, and the case, is configured to be vertically lowered into one or more slide-in brackets;
providing a battery management system inside the case; and
providing a display disposed on a top surface of the case, wherein the display is configured to display information from the battery management system.
21 . (canceled)