NPPower International

NPPower International

With over a century of collective expertise in battery engineering and three decades of exceptional manufacturing, NPP stands as the foremost global pioneer in battery technology. NPPower specializes in the research and development, manufacturing, and marketing of both traditional and innovative energy products, encompassing valve-regulated lead-acid batteries, lithium batteries, and solar panels.

Batteries Rechargeable (Secondary)

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ImageProduct DetailPriceAvailabilityECAD ModelSeriesBattery Cell SizeVoltage - RatedCapacitySize / DimensionTermination StyleBattery Chemistry
NP12-7
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PCB Symbol, Footprint & 3D Model
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12 V
7Ah
5.94" L x 2.56" W x 3.70" H (151.0mm x 65.0mm x 94.0mm)
Spade, .250" (6.3mm)
Lead Acid (VRLA)
HR1224
High Rate SLA Battery 12V 144W
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Quantity
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PCB Symbol, Footprint & 3D Model
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12 V
6Ah
5.94" L x 2.01" W x 3.90" H (151.0mm x 51.0mm x 99.0mm)
Spade, .250" (6.3mm)
Lead Acid (VRLA)
LITHIUM 12.8V20AH
12.8V 20AH LiFePO4 VRLA Lithium-
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Quantity
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PCB Symbol, Footprint & 3D Model
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12.8 V
20Ah
6.00" L x 2.62" W x 4.02" H (152.5mm x 66.5mm x 102.0mm)
Bolt, M5
Lithium-Ion Phosphate
NP12-2.9
AGM 12V 7AH SLA Battery
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Quantity
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PCB Symbol, Footprint & 3D Model
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12 V
2.9Ah
3.11" L x 2.20" W x 4.09" H (79.0mm x 56.0mm x 104.0mm)
Spade, .187" (4.7mm)
Lead Acid (VRLA)
LITHIUM 12.8V10AH
12.8V 10AH LiFePO4 VRLA Lithium
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Quantity
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PCB Symbol, Footprint & 3D Model
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12.8 V
10Ah
5.94" L x 2.56" W x 3.94" H (151.0mm x 65.0mm x 100.0mm)
Spade, .250" (6.3mm)
Lithium-Ion Phosphate
LITHIUM 12.8V12AH
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PCB Symbol, Footprint & 3D Model
LFP
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12.8 V
12Ah
6.00" L x 2.62" W x 4.02" H (152.5mm x 66.5mm x 102.0mm)
-
Lithium-Ion Phosphate
LITHIUM 12.8V50AH
12.8V 50AH LiFePO4 VRLA Lithium-
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PCB Symbol, Footprint & 3D Model
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12.8 V
50Ah
7.76" L x 6.50" W x 6.69" H (197.1mm x 165.1mm x 169.9mm)
Bolt, M6
Lithium-Ion Phosphate
NPD12-200
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Quantity
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PCB Symbol, Footprint & 3D Model
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12 V
200Ah
20.55" L x 9.37" W x 8.74" H (522.0mm x 238.0mm x 222.0mm)
Bolt, M8
Lead Acid (VRLA)

About  Batteries Rechargeable (Secondary)

Rechargeable batteries, also known as secondary batteries, are a type of electrochemical storage cells that operate based on reversible chemical reactions. Unlike primary batteries, which are single-use and cannot be recharged, rechargeable batteries can be replenished and reused multiple times before needing to be disposed of. Compared to primary batteries, rechargeable batteries typically store less energy in a given space. They may also exhibit higher levels of self-discharge, meaning they gradually lose their charge over time, especially when not in use. This makes them less stable for long-term storage compared to primary batteries. Although rechargeable batteries often have a higher upfront cost compared to primary batteries, their ability to be recharged and reused multiple times makes them a more cost-effective choice for many applications in the long run. By eliminating the need for frequent battery replacements, rechargeable batteries offer both economic and environmental benefits. It is worth noting that while the term "battery" technically refers to an assembly of multiple individual cells, it is commonly used to describe a single cell as well. This is due to the widespread convention of referring to a single rechargeable cell as a "battery." Rechargeable batteries find applications in various devices, such as portable electronics, power tools, electric vehicles, and renewable energy systems. Their ability to be reused numerous times makes them a convenient and sustainable power source for a wide range of everyday and specialized applications.