charger inverter is connected to an AC power source to continuously charge the attached batteries when AC utility power is available, During a blackout in the utility grid, inverters/chargers automatically switch from utility power to battery backup power.
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If you order this type inverter, please leave me message(about input
voltage, output voltage, output frequency). this is important !
1. Input voltage: DC 12V / 24V / 48V (only one voltage can b
2. Output voltage: AC220V / 230V / 240V (only one volta
ge can be choose),
3. Output frequency: 50Hz or 60Hz (optional)(only one frequency can be choose),
Please leave your clear delivery information, special for phone number and contact name
50HZ±0.5HZ or 60HZ±0.5HZ
Pure Sine Wave
220VAC or 230VAC or 240VAC ±5%
No Load Current Draw
DC Voltage Range
Low Voltage Alarm
Low Voltage Shut Down
Over Voltage Shut Down
Low Voltage Recovery
Over Voltage Recovery
Floating Charge Voltage
Grid Input Draw
220VAC or 230VAC or 240VAC ±10%
Protection: LED Alarm and Automatic Recovery.
Low Voltage/Over Voltage
Intelligent Cooling Fan
1.What's the difference between an inverter and inverter/charger?
An inverter converts DC (battery) power into AC power and then passes
it along to connected equipment. An inverter/charger does the same thing,
except that it is connected to an AC power source to continuously charge
the attached batteries when AC utility power is available. In the case of a
power outage, the inverter will automatically switch to battery power to
provide power to connected equipment.
2. How do I charge the batteries?
Inverter/Chargers must also be connected to AC utility power for their
charging feature to work.
3. How fast will the inverter respond to a power outage?
During a blackout in the utility grid, inverters/chargers automatically switch
from utility power to battery backup power. the inverter will transfer from utility
to battery power in about 9 milliseconds