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| Месяц | Минимальная цена | Макс. стоимость | Цена |
|---|---|---|---|
| Jul-24-2026 | 0.25 руб. | 0.40 руб. | 0 руб. |
| Jun-24-2026 | 0.98 руб. | 0.29 руб. | 0 руб. |
| May-24-2026 | 0.16 руб. | 0.80 руб. | 0 руб. |
| Apr-24-2026 | 0.38 руб. | 0.40 руб. | 0 руб. |
| Mar-24-2026 | 0.21 руб. | 0.99 руб. | 0 руб. |
| Feb-24-2026 | 0.57 руб. | 0.80 руб. | 0 руб. |
| Jan-24-2026 | 0.79 руб. | 0.18 руб. | 0 руб. |
| Dec-24-2025 | 0.14 руб. | 0.98 руб. | 0 руб. |
| Nov-24-2025 | 0.87 руб. | 0.53 руб. | 0 руб. |
Описание товара





High efficiency 5000W 12v 220v Pure Sine Wave Power Inverter with Battery Charger
SUPOWER with charge power inverter, have Switch and battery charger function, with charge inverter connection the grid to backup and charge the battery. Transfer time <9MS. Pure sine wave inverter, with charge inverter current 12V 20A/24V 10A/48V 5A.we support Default Grid priority or inverter priority.
1.The pure sine wave inverter charger support Optional Grid Default Grid priority or inverter priority.
2.The inverter and Grid Transfer time <=9MS
3.12V20A/24V10A/48V5A,CC CV CF Three stages Automatic charge
4.High frequency combinatorial circuit technology
5.Performance related fan control
6.Accurate and stable sine through analogue technique
7.High efficiency <=94%
8.Protection against reverse polarity and short-circuit
9.Auto-restart-function
10.Switch off at too high temperature
11.Deep discharge protection for battery
12.Under and upper voltage control
13.Overload protection

SUPOWER 5000w charge inverter,5000w inverter charger is maximum charger inverter. SUPOWER 5000w charge inverter,5000w inverter charger has a CPU core SPWM pulse width control technology. SUPOWER 5000w charger inverters have high efficiency and high frequency.
Parameter:
| Model | SPP5000-12-1C | SPP5000-24-1C | SPP5000-48-1C | SPP5000-12-2C | SPP5000-24-2C | SPP5000-48-2C |
| Continuous Power | 5000W | |||||
| Surge Power | 10000W | |||||
| Frequency | 50HZ±0.5HZ or 60HZ±0.5HZ | |||||
| Wave Form | Pure Sine Wave | |||||
| AC Regulation | THD<3%( Linear Load) | |||||
| USB Outlet | 5V 500MA | |||||
| Output Efficiency | Highest 94% | |||||
| DC Voltage | DC12V | DC24V | DC48V | DC12V | DC24V | DC48V |
| AC Voltage | 100VAC or 110VAC or 120VAC ±5% | 220VAC or 230VAC or 240VAC ±5% | ||||
| No Load Current Draw | 2.6A | 1.3A | 0.6A | 2.6A | 1.3A | 0.6A |
| DC Voltage Range | 10-15.5V | 20-31V | 40-61V | 10-15.5V | 20-31V | 40-61V |
| Low Voltage Alarm | 10.5±0.5V | 21±0.5V | 42±1V | 10.5±0.5V | 21±0.5V | 42±1V |
| Low Voltage Shut Down | 10±0.5V | 20±0.5V | 40±1V | 10±0.5V | 20±0.5V | 40±1V |
| Over Voltage Shut Down | 15.5±0.5V | 31±0.5V | 61±1V | 15.5±0.5V | 31±0.5V | 61±1V |
| Low Voltage Recovery | 13±0.5V | 24±0.5V | 48±1V | 13±0.5V | 24±0.5V | 48±1V |
| Over Voltage Recovery | 14.8V±0.5V | 29V±0.5V | 59V±1V | 14.8V±0.5V | 29V±0.5V | 59V±1V |
| Charging Voltage | 14.6V±0.2V | 29.2V±0.3V | 58.4V±0.5V | 14.6V±0.2V | 29.2V±0.3V | 58.4V±0.5V |
| Floating Charge Voltage | 13.8V±0.2V | 27.6V±0.3V | 55V±0.5V | 13.8V±0.2V | 27.6V±0.3V | 55V±0.5V |
| Charging Current | ≤15A | ≤8A | ≤5A | ≤15A | ≤8A | ≤5A |
| Transfer Time | ≤9MS | ≤9MS | ≤9MS | ≤9MS | ≤9MS | ≤9MS |
| Grid Input Draw | 100VAC or 110VAC or 120VAC ±10% | 220VAC or 230VAC or 240VAC ±10% | ||||
| Priority | Grid Priority. | |||||
| Protection | Low Voltage/Over Voltage | LED Alarm and Automatic Recovery. | ||||
| Overload | LED Alarm and Automatic Recovery. | |||||
| Over Temperature | LED Alarm and Automatic Recovery. | |||||
| Short Circuit | LED Alarm and Automatic Recovery. | |||||
| Input Oppose | Diode or MOS FET | |||||
| Working Temperature | -10°- +50° | Qty/Carton |
| |||
| Storage Temperature | -30°- +70° | Carton Size |
| |||
| Production Size | 485*200*145(mm) | Carton Weight |
| |||
| Package Size | 640*300*235(mm) | Warranty | 2 Years | |||
| N.W/G.W | 13.6/15(kg) | Configuration | Standard | |||
| Start | Bipolar soft-start | Cooling Way | Intelligent Cooling Fan | |||



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FAQ
How to choose a suitable inverter?
If your load is resistive loads, such as: bulbs, you can choose a modified wave inverter. But if it is inductive loads and capacitive loads, we recommend using pure sine wave inverter. For example: fans, precision instruments, air conditioner, fridge, coffee machine, computer, and so on. Modified wave can be started with some inductive loads, but effect for load using life, because capacitive loads and inductive loads need high quality power.
How do I choose the size of the inverter?
Different types of load demand for power are different. You can view the load power values to determine the size of the inverter.
Notice: resistive load: you can choose the same power as the load.
Capacitive loads: according to the load, you can choose 2-5 times power.
Inductive loads: according to the load, you can choose 4-7 times power.
How connection between batteries and an inverter?
We usually believe that cables connecting battery terminal to inverter shorter is better. If you are just standard cable should be less than 0.5M, but should correspond to the polarity of the batteries and inverter-side outside. If you want to lengthen the distance between battery and inverter, please contact us and we will calculate the recommended cable size and length. Due to long distances using a cable connection, there will be a reduced voltage, which means that the inverter voltage would be far below the battery terminal voltage, this inverter will appear under voltage alarm conditions.
How to calculate the load of working hours requires configuration of the battery size?
We will usually have a formula to calculate, but it is not hundred percent accurate, because there is also the battery's condition, the old batteries have some loss, so this is only a reference value:
Work hours = battery capacity * battery voltage *0.8/load power (H= AH*V*0.8/W)
How to choose a solar controller?
At present, solar controller have MPPT and PWM. According to our actual test data, conversion efficiency of the PWM controller normally less than 70%, MPPT controller conversion efficiency is about 95-97%. MPPT solar controller is expensive than PWN solar controller, but the price of solar module are more expensive. Using MPPT controller, you can reduce the solar module, save the cost of the entire system
How to choose a suitable MPPT solar charge controller?
SUPOWER MPPT solar controller support PV input voltage 18V-150V, DC 12V 24V is automatic identification. You just need according to battery capacity to select different charging current controller.
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