Patent classifications
H01M50/291
Battery pack and production method for same
A battery pack includes: a connector holder that is fixed to an exterior case and has two main surfaces that include a first main surface exposed through an opening of the exterior case; a floating connector connected with a center of the connector holder in such a manner that the floating connector floats in such a manner that an orientation or a position of the floating connector is variable upward, downward, leftward, and rightward; a lead wire fixed to an inner surface of the floating connector, the lead wire extending through an inside of the exterior case, and the lead wire connecting floating connector with a circuit board; and a positioning buffer that pushes the floating connector, and positions the floating connector at a predetermined original state when an external force is not applied to the floating connector.
ENERGY STORAGE DEVICE ENCLOSURE SYSTEM
In an example implementation, an energy storage device storage system is disclosed. The energy storage device storage system may include an energy storage device enclosure configured to be disposed between a first longitudinal support structure and a second longitudinal support structure. The first and second longitudinal support structures can extend between first and second support structures. The energy storage device enclosure may include one or more slots configured to receive an energy storage device. The one or more slots each include one or more ports configured to provide an electrical connection to the energy storage device. The energy storage device enclosure may further include one or more jammers attached to outer sidewalls of the energy storage device enclosure. The one or more jammers configured to hold the energy storage device enclosure between the first and second support structures.
ENERGY STORAGE DEVICE ENCLOSURE SYSTEM
In an example implementation, an energy storage device storage system is disclosed. The energy storage device storage system may include an energy storage device enclosure configured to be disposed between a first longitudinal support structure and a second longitudinal support structure. The first and second longitudinal support structures can extend between first and second support structures. The energy storage device enclosure may include one or more slots configured to receive an energy storage device. The one or more slots each include one or more ports configured to provide an electrical connection to the energy storage device. The energy storage device enclosure may further include one or more jammers attached to outer sidewalls of the energy storage device enclosure. The one or more jammers configured to hold the energy storage device enclosure between the first and second support structures.
RESIN FRAME AND BATTERY MODULE
A resin frame in which a battery cell is held includes a positioning portion and a protruding portion. The positioning portion positions the top surface of the battery cell in the up-down direction by abutting with the top surface of the battery cell. The protruding portion is provided in a bottom portion of the resin frame. The protruding portion projects in the thickness direction of the battery cell. The protruding portion includes an inclined portion inclined from the thickness direction of the battery cell.
BATTERY PACK WITH REINFORCING ELEMENTS
A battery pack having a plurality of reinforcing elements disposed between cell holders and separating the cell connectors of the battery pack. Thereby, the battery pack according to the invention provides improved protection against short circuits during manufacture.
ENERGY STORAGE APPARATUS
An energy storage apparatus includes an energy storage unit including an energy storage device, the energy storage apparatus including a substrate unit including a substrate electrically connected to the energy storage unit and a substrate accommodating unit accommodating the substrate, the substrate unit being attached to the energy storage unit. The substrate accommodating unit includes a gripping unit to grip the energy storage apparatus.
Battery Module and Battery Pack Including the Same
A battery module according to an embodiment of the present invention includes: a battery cell laminated body in which a plurality of battery cells each including an electrode assembly are stacked; a U-shaped frame that accommodates the battery cell laminated body and has an opened upper part;
and an upper plate covering the battery cell laminated body on the opened U-shaped frame, wherein the U-shaped frame includes a bottom part and two side parts facing each other, the side part includes a depressed part that is depressed inward toward the battery cell laminated body, and the area of the depressed part is equal to or larger than the area of the electrode assembly.
BATTERY PACK, BATTERY RACK COMPRISING THE SAME AND POWER STORAGE SYSTEM
A battery pack includes at least one cell assembly including a plurality of secondary batteries stacked in a direction, a module housing having an internal space in which the at least one cell assembly is received, and a spacer member interposed between the plurality of secondary batteries, and configured to press the plurality of secondary batteries in two directions to space the plurality of secondary batteries apart when a temperature of at least one of the plurality of secondary batteries is equal to or higher than a predetermined temperature.
Self-balancing floating battery case
A self-balancing floating battery case, comprising an upper casing and a lower casing, wherein the upper casing and the lower casing are connected by threads, a height of the upper casing is bigger than a height of the upper casing. A light opening is provided at an intermediate portion of the upper casing away from a center of the upper casing, a box surrounding the light opening is provided on an inner wall of the upper casing, the box is divided to be a PCB cavity and a battery cavity, a main body of the light opening deviates towards the PCB cavity and a main body of the battery cavity deviate towards the center of the upper casing. In the present invention, existing structures are modified, the battery case has a higher waterline, entrance of water can be prevented; and eccentricity of the center of gravity is corrected by weight.
Self-balancing floating battery case
A self-balancing floating battery case, comprising an upper casing and a lower casing, wherein the upper casing and the lower casing are connected by threads, a height of the upper casing is bigger than a height of the upper casing. A light opening is provided at an intermediate portion of the upper casing away from a center of the upper casing, a box surrounding the light opening is provided on an inner wall of the upper casing, the box is divided to be a PCB cavity and a battery cavity, a main body of the light opening deviates towards the PCB cavity and a main body of the battery cavity deviate towards the center of the upper casing. In the present invention, existing structures are modified, the battery case has a higher waterline, entrance of water can be prevented; and eccentricity of the center of gravity is corrected by weight.