li-mno2 pouch cell
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CP332544 Lithium Pouch Cell
The CP332544 pouch cell battery makes the most efficient use of space achieving 90–95 percent packaging efficiency – the highest among battery packs. Eliminating the metal enclosure reduces weight, but the cell does need support and allowance to expand in the battery compartment. Typically lithium-polymer, pouch cell batteries are used in military and automotive applications and are popular for portable applications requiring high load currents like drones and hobby gadgets.
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CP302775 lithium Pouch battery
1450mAh high energy density: weighing only 10.5g, the capacity is 60% higher than the steel shell battery of the same volume, providing 3 years+ long-term battery life for IoT devices (such as trackers, sensors).
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CP224147 Lithium Pouch Cell
industry-leading thickness (conventional 2.2mm), suitable for millimeter-level space devices such as smart cards and flexible electronic tags.
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CP301330 Lithium Pouch Cell
High discharge rate lithium polymer can be made into a variety of shapes and capacities of shaped batteries. Portable listening device,security,smart security cards,flat-profile wireless asset tracking tags,electronic toll collection systems, postal tracking systems,electronic record tracking systems,wireless tracking of medical records. The pouch cell lithium battery often used in racing motorcycles, drones, RC racing cars, jump starters, and any applications that require magnification , explosive power, and instant powerful output.
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CP262030 Lithium Pouch Cell
High discharge rate lithium polymer can be made into a variety of shapes and capacities of shaped batteries. 1.Flexible design,arbitrary variable shape,with stable current,voltage, and discharge capacity 2.Lighter weight, high volumetric specific energy 3.Wide operating temperature range (-20°C-+60°C) 4.Low self-discharge rate:annually less than 1% in +20°C ambient temperature
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CP114752 Ultra-Thin Li-MnO2 Pouch Battery
The CP114752 lithium manganese pouch cell adopts a laminated electrode design, achieves high space utilization through a multi-electrode stacking process, maintains high energy density under an ultra-thin structure
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