See how a cold storage device pre-stores cooling capacity to eliminate compressor startup gaps
See how a lateral Peltier arrangement overlaps cooling channels to improve battery cooling effi
A Peltier element placed at cooling-duct height improves battery cooling in tight spaces while limiting condensate and added height.
Partially recessed internal beams and heat-insulation glue cut beam-to-plate heat transfer, keeping battery module temperatures more stable.
A rear plenum and bottom air mover cool dense rack enclosures with fewer fan assemblies and effective recirculated airflow.
Partial beam contact and heat insulation glue cut heat loss from the heat exchange plate, keeping battery module temperatures more stable.
Angled busbar terminal tabs redirect coolant into low-flow regions in a battery module, improving cell cooling without adding extra parts.
Integrated electric heating and a smaller fluid sub-loop cut battery cold-start warm-up time and energy use while preserving cooling.
A rear plenum and single bottom air mover cool dense rack enclosures while preventing warm and cool air mixing.
Partial beam contact and insulation glue cut parasitic heat flow, helping the heat exchange plate keep battery modules at stable temperatures.
A studded liquid-cooling plate with an elastic pressure structure absorbs pouch-cell swelling while preserving contact pressure and cooling capacity.
A vented multilayer filter channels combustion gases, blocks shrapnel, and limits cell-to-cell thermal runaway in compact battery packs.
An ionic liquid with flame-retardant and redox species cools and discharges a runaway electrochemical generator without hydrogen explosion risk.
Oblique guide portions direct battery gas to detection sensors while contact portions enhance heat dissipation, resolving assembly complexity.
Inward gas channel entrances reduce pressure losses and improve cooling uniformity across stacked battery cells.