Batteries & Charging
Li-ion, LiFePO4, SLA packs, chargers and battery management.
Also searched as: lifepo4lithium batterybmsbattery chargersla battery
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Lead Acid Battery
Battery Chemistry: Lead AcidCapacity: 7AhVoltage: 12V
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Lead Acid UPS VRLA SLA Battery
Battery Technology: VRLACapacity: 100 AhVoltage: 12 V
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Lead Acid VRLA SLA Battery
Battery Technology: VRLACapacity: 9 AhVoltage: 12 V
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Li-ion 18650 BMS 13s 48V 40A
Battery Type: 18650 Li-ionCell Series: 13sCurrent: 40AVoltage: 48V
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Li-ion Battery Charger
Battery Series Compatibility: 7 SeriesBattery Voltage Compatibility: 25.2V, 25.9VCharging Current: 5 AOutput Power: 150-500 WOutput Voltage: 29.4 V
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Li-ion Lithium Battery 18650 Charger PCB BMS
Current: 20ASeries: 3S
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LiFePO4 Battery
Capacity: 360 AhCycles: 10000Voltage: 3.2 V
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LiFePO4 Battery
Capacity: 628 AhEnergy: 32 kWhVoltage: 51.2 V
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LiFePO4 Battery
Cycles: 4000+
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LiFePO4 Battery Smart Charger 12V 24V 36V 48V
Battery Chemistry: LiFePO4, Lead Acid, LithiumOutput Voltage: 12V, 24V, 36V, 48V
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LiFePO4 Car Battery with BMS
Capacity: 70-120 AhVoltage: 12 V
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LiFePO4 Lithium Deep Cycle Battery
Capacity: 200AhChemistry: LiFePO4Voltage: 12V
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LiFePO4 Lithium-Ion Battery
Capacity: 150 AhEnergy: 7 kWhVoltage: 51.2 V
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Lipo Battery 3543116 14.8V 1500mAh 4S1P 60C
Battery Chemistry: LiPoCapacity: 1500 mAhConfiguration: 4S1PDischarge Rate: 60 CVoltage: 14.8 V
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Lithium Battery
Capacity: 200 AhEnergy: 40 kWh
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Lithium Battery Ion
Battery Chemistry: Li-ionCapacity: 15 kWhVoltage: 51.2 V
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Lithium Battery Replacement
Voltage: 46V
from $17.59Zoro $17.59 -
Lithium Ion Battery Lifepo4 480V 100Ah
Battery Chemistry: LiFePO4Capacity: 100 AhEnergy: 96 kWhVoltage: 480 V
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Lithium Iron Phosphate (LFP or LiFePO4) Battery, 12.8 V, 1.5 Ah
Battery Chemistry: LiFePO4Capacity: 1.5 AhOverall Height: 0.75 inVoltage: 12.8 V
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Lithium Iron Phosphate (LFP or LiFePO4) Replacement Battery
Battery Chemistry: LiFePO4
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Lithium Iron Phosphate (LFP or LiFePO4) Replacement Battery
Battery Chemistry: LiFePO4
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Lithium Iron Phosphate (LFP or LiFePO4) Replacement Battery, 6.4 V
Battery Chemistry: LiFePO4Voltage: 6.4 V
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Lithium Phosphate Rechargeable Battery
Capacity: 3.2 AhSize: 26650Voltage: 3.2 V
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Lithium-Ion Battery
Battery Size Compatibility: Streamlight SL-B26Charging Time: 3.50 HoursMaximum Number of Batteries: 2Voltage: 3.7V
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Lithium-Ion PX5 Battery Charger
Charge Time: 3 HoursModel Compatibility: RPB® PX4®
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Lvtong Lead Acid Battery Charger 48V 36V 20A 25A
Battery Chemistry: Lead Acid, LithiumOutput Current: 20A, 25AOutput Voltage: 36V, 48V
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M12™ Li-Ion Red Lithium® Battery
Capacity: 1.5 AhChemistry: Li-IonVoltage: 12V
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M18 Dual Bay Simultaneous Super Charger
Charge Time: 25 minutesVoltage: 18 V
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MKBMS Master BMS Board
Voltage: 30-150V
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Multi-Voltage 6V/8V/12V/14V/16V/24V Adjustable Automatic Battery Charger
Voltage: 6V/8V/12V/14V/16V/24V
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On-board Battery Charger
Amperage: 5AVoltage: 12V
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Polymer Lithium Battery
Capacity: 2200 mAhVoltage: 3.7 V
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Portable Battery Charger 6V 12V
Voltage: 6V 12V
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Pouch Cell Polymer Battery
Voltage: 3.7V
About batteries & charging
The Batteries & Charging category encompasses energy storage and power management solutions for various applications. It primarily includes lithium-ion (Li-ion) and lithium iron phosphate (LiFePO4) battery packs, sealed lead-acid (SLA) batteries, and associated charging and battery management systems (BMS). Li-ion and LiFePO4 packs are characterized by their nominal voltage (e.g., 3.7V per cell for Li-ion, 3.2V per cell for LiFePO4), capacity in Ampere-hours (Ah), and discharge/charge C-rates. SLA batteries are typically rated by voltage (e.g., 6V, 12V) and Ah capacity. BMS units are crucial for lithium chemistries, providing overcharge/discharge protection, cell balancing, and temperature monitoring, often specified by cell count (e.g., 3S, 4S, 16S) and continuous discharge current rating. Chargers are selected based on battery chemistry, nominal voltage, and maximum charge current, with features like constant current/constant voltage (CC/CV) profiles being standard for lithium types. Physical dimensions (length, width, height) and terminal types (e.g., F1, F2 for SLA; various connectors for Li-ion/LiFePO4) are critical for integration. Enclosure ratings (e.g., IP65) may also be relevant for environmental protection.
How to choose
How to Choose Batteries & Charging Components
1. What is the required nominal voltage and capacity (Ah)? This determines the number of cells in series (voltage) and parallel (capacity) for lithium chemistries, or the base voltage and Ah for SLA. Trade-offs include size, weight, and available power. 2. What are the peak and continuous discharge current requirements? This dictates the C-rate of the battery and the current rating of the BMS. Higher currents often mean larger or more robust cells. 3. What battery chemistry is most suitable? Li-ion offers high energy density, LiFePO4 provides longer cycle life and enhanced safety, while SLA is cost-effective for less demanding applications. Each has specific charging requirements. 4. What are the physical space constraints and environmental conditions? This influences battery pack form factor, terminal type, and any necessary IP ratings for the enclosure. Consider operating temperature ranges.