ZR6DW Series, Battery Packs

Results:
13
Manufacturer
Series
Structure
Number of Cells
Voltage - Rated
Capacity
Termination Style
Battery Chemistry
Battery Cell Size
Size / Dimension
Rechargeability
Results remaining13
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ZR6DW
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ImageProduct DetailPriceAvailabilityECAD ModelSize / DimensionTermination StyleSeriesBattery ChemistryBattery Cell SizeVoltage - RatedCapacityNumber of CellsRechargeabilityStructure
ZR6DW/2SKF2
BATTERY PACK ALKALINE 3V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
3 V
-
2
No
Side to Side, 1 Row x 2 Cells
ZR6DW/2SKF3
BATTERY PACK ALKALINE 4.5V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
4.5 V
-
3
No
Side to Side, 1 Row x 3 Cells
ZR6DW/2SKF4
BATTERY PACK ALKALINE 6V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
6 V
-
4
No
Side to Side, 1 Row x 4 Cells
ZR6DW/2SKF5
BATTERY PACK ALKALINE 7.5V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
7.5 V
-
5
No
Side to Side, 1 Row x 5 Cells
ZR6DW/2SKF6
BATTERY PACK ALKALINE 9V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
9 V
-
6
No
Side to Side, 1 Row x 6 Cells
ZR6DW/2SKF7
BATTERY PACK ALKALINE 10.5V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
10.5 V
-
7
No
Side to Side, 1 Row x 7 Cells
ZR6DW/2SKF8
BATTERY PACK ALKALINE 12V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
12 V
-
8
No
Side to Side, 1 Row x 8 Cells
ZR6DW/2SKF9
BATTERY PACK ALKALINE 13.5V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
13.5 V
-
9
No
Side to Side, 1 Row x 9 Cells
ZR6DW/2SKF10
BATTERY PACK ALKALINE 15V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
15 V
-
10
No
Side to Side, 1 Row x 10 Cells
ZR6DW/2SKF2X2
BATTERY PACK ALKALINE 6V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
6 V
-
4
No
Side to Side, 2 Rows x 2 Cells
ZR6DW/2SKF2X3
BATTERY PACK ALKALINE 9V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
9 V
-
6
No
Side to Side, 3 Rows x 2 Cells
ZR6DW/2SKF2X4
BATTERY PACK ALKALINE 12V AA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
12 V
-
8
No
Side to Side, 4 Rows x 2 Cells
ZR6DW/2SKF2X5
BATTERY PACK ALKALINE 15V AA
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Solder Tab
ZR6DW
Alkaline Manganese Dioxide
AA
15 V
-
10
No
Side to Side, 5 Rows x 2 Cells

About  Battery Packs

A battery pack is an assemblage of one or more individual battery cells that are connected and secured together to form a single unit with a particular shape and dimensions. They can be arranged in a series, parallel, or a combination of both to deliver the desired voltage, capacity, or power density. Battery packs are identified by various characteristics, including cell size, the number of cells, battery structure, chemistry, chargeability, capacity, and voltage rating. These features are critical in determining the overall performance and capabilities of the battery pack. For example, the number of cells in the pack affects its voltage output and capacity, while the chemistry of the cells dictates the pack's discharge rate, cycle life, and safety features. The configuration of the battery pack depends on the specific needs of the application. For instance, series connections increase the voltage of the pack, while parallel connections increase its capacity. A mix of both series and parallel connections may be used to achieve the desired balance between voltage and capacity. The physical dimensions of the battery pack are also important, as they determine whether it is suitable for the intended device and provide constraints on its design. Overall, battery packs offer a convenient and efficient way to power a wide range of devices. By combining multiple battery cells into a single unit, they can provide the necessary voltage, capacity, and power density for a variety of applications, from portable electronics to electric vehicles and renewable energy systems.