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48 Volt Lifepo4 Battery Charger
We are the professional 48 volt lifepo4 battery charger manufature. We have 8 lines production.
Description
Description
Charging lifepo4 with lead acid charger ,in fact, if the specifications of battery pack / battery are the same (voltage and capacity), lithium iron charger and lead-acid charger can be interchanged.
For example, the common 48v16 series lithium iron phosphate battery pack has a full voltage of 58.4v, while the full voltage of the four lead-acid batteries is 58 to 59V. No matter which battery is full, the green light can be turned. Similarly, the 20 series lithium iron charger can be interchanged with the 60V battery charger.
Specification
Input Specification | Electrical | Tests Environmental |
Voltage: 100-240VAC | Voltage Accuracy: ±3% | Hi-pot Test: 3750VAC, 60S, 5mA max |
Frequency: 50-60Hz | Current Accuracy: ±3% | Lightning surge: up to 1000V (accept 3000V) |
Output Specification | Efficiency:ERP | Leakage Current: 0.25mA max |
Voltage:48V | Securityprotection: SCP,OVP,OCP,OTP | Burn-in Test: rate load, 40±3℃, 4 hours |
Current:2A-8A | Turn On Time:15-30mS | Operating Temperature:0-40℃ |
Power:90W-120W | Burn-In Test:100% Full Load | Storage Humidity 5%-95%RH
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How to use the 48 volt lifepo4 battery charger?What are the different charging methods between lithium iron phosphate battery pack and lead-acid battery?
The lithium iron phosphate battery pack itself has a charging circuit board, and the charger is also equipped with an intelligent charging control circuit. Most of the charging methods are pulse, relatively high-grade, safe and good performance. Lead acid battery is DC charging, which can be divided into fast and slow. The charger is actually a transformer and rectifier, which are not common.
Charging principle of lead-acid battery:
The electrode of acid battery is lead and its oxide, and the electrolyte is sulfuric acid solution. During discharge, the positive electrode is mainly lead antimony calcium alloy fence, containing lead oxide as the active material, the negative active material is lead, and the positive and negative electrodes are lead sulfate during charging. When charging, an external DC power supply shall be connected to restore the natural substances of the positive and negative plates to the original active substances after discharge, and convert the external electric energy into chemical energy for storage.
On the positive plate, under the action of external current, lead sulfate is dissociated into divalent lead ion (Pb + 2) and sulfate anion (SO4-2). Due to the continuous absorption of electrons from the positive electrode by the external power supply, the divalent lead ion (Pb + 2) around the positive plate continuously releases two electrons to supplement, becomes tetravalent lead ion (Pb + 4), and continues to react with water, Lead dioxide is born on the positive plate.
On the negative plate, under the action of external current, lead sulfate is dissociated into divalent lead ion (Pb + 2) and sulfate anion (SO4-2). Since the negative electrode continuously obtains electrons from external power supply, the divalent lead ion (Pb + 2) around the negative plate is neutralized into lead (PB) and attached to the negative plate with velvet lead.
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