10000W Solar System DC12V to 220V/110V Off-Grid Inverter System 100A Controller 20W-500W Panel Inverter for Home RV Camping CE Certified

Dear Customer,
To enhance your product experience, please carefully verify that the dimensions and specifications of the item meet your requirements before placing your order.

Product Parameters

1.500W Solar Panel
Power Range: 20W - 500W(rate power 20W)
Output: DC 18V + USB 5V
Dimensions: 480*280mm(16.5inx11in)
Weight: 400g

2.SOECOPO Charge Controller
Voltage: Auto 12V Detection
Charging Current: 30A-100A
Display: Real-time Voltage/Current Monitoring
Operating Temp: -35°C to +60°C

3.SOECOPO Inverter
Rate Power: 1100W
Peak Power: 2200W-10000W
Input: DC 12V
Output: AC 220V/110V
Efficiency: >90%
(The inverter power rating shall be based on the rated power.)

Package list
Solar Panel ×1
SOECOPO Charge Controller ×1
1100W Inverter ×1
Accessories:
(1)Controller Alligator Clips ×1
(2)Inverter Alligator Clips ×1
(3)DC Cables (Red/Black) ×2
(4)Carabiners ×2
(5)Suction Cups ×4
(6)Car Inverter Cable ×1
(7)User Manual ×1

Mode 1: Solar Panel → Mobile Device

Features
*Direct charging via USB (5V output), no controller/battery required.
*Plug-and-play for emergency use.
Precautions
*Use the built-in USB port on the solar panel.
*Avoid overcharging under strong sunlight (recommend a phone charge protector).
Scenarios
* Outdoor emergency charging (camping/hiking)
* Phone/tablet power supply in off-grid areas

Mode 2: Solar Panel → Controller → Light Bulb

Features
*Controller stabilizes voltage for bulb protection.
*Supports low-wattage LED bulbs (≤15W).
Precautions
*Connect controller to a Solar Panel first (even for temporary lighting).
*Match bulb power to controller’s discharge current (≤10A).
Scenarios
* Nighttime outdoor lighting (tents/backyards)
* Emergency lighting during power outages

Mode 3: Solar Panel → Controller → Battery

Features
*Efficient energy storage with overcharge/discharge protection.
*Compatible with lead-acid, lithium, and gel batteries.
Precautions
*Connect battery poles correctly to controller terminals (+/-).
*Set battery type on controller after initial connection (e.g., b1/b2/b3 modes).
Scenarios
* Daytime solar storage for nighttime use
* Off-grid battery bank setup

Mode 4: Battery → Inverter → Appliances

Features
*Inverts 12V DC to 220V AC for high-power devices.
*10000W peak power supports motor-driven tools (e.g., drills, refrigerators).
Precautions
*Inverter input voltage must match battery (12V).
*Keep continuous load ≤1100W; peak load ≤30 seconds per use.
Scenarios
*Car appliances (fridges/laptops)
*Emergency home devices (fans/medical equipment)

Connection method

(1) Three step system connection method
Step 1: Connect the solar controller to the battery and have the controller recognize the voltage of the battery.

Step 2: Connect the solar controller to the solar panel to complete the preparation for solar energy collection.

Step 3: Connect the solar inverter to the battery to complete the conversion of electrical energy and prepare for output.

Attention: When connecting, pay attention to the distinction between positive and negative poles.

The solar system kit is compatible with electrical appliances (Used with Corresponding Batteries)

Daily household appliances :
Mobile/tablet charger (5-10W)
Notebook computer(60-120W)
fridge(80-250W)
microwave oven(700-1300W)
Electric fan (floor standing)(40-80W)
Television (55 inches)(50-150W)
Wall mounted air conditioner (1 horsepower)(800W)
Mobile air conditioner (1 horsepower)(900W)
(The above power is a reference value for common equipment, and the actual electrical labeling shall prevail)

Installation and use must read

*Installation guide: Please refer to the manual for detailed connection steps between the solar panel and the controller. Follow the diagram for more secure operation!

*Operating premise: The controller must be connected to a battery in order to function properly. Without this link, it cannot be started.

*Power generation conditions: Solar panels need to be exposed to sunlight and should not be placed behind window sills or glass, as obstruction can significantly reduce power generation efficiency!

*Maintenance precautions: It is forbidden to scratch the surface of the panel with sharp objects. Please take care of it carefully during daily use.

*Charging points: When using, place the solar panel facing upwards and facing direct sunlight to maximize the charging effect.

(If the surface of the received solar panel is scratched, the protective film on the surface can be peeled off)

Choose the right battery

For the inverter, it is particularly important to choose a suitable battery.
If your battery capacity is too small and the output power is insufficient, the maximum output power of the inverter will be affected by the maximum output power of the battery.

Q1: If you already have a battery, how do you know the maximum power output of your battery?
Battery maximum output power = U (battery voltage) * I (battery capacity) * 0.72

Q2: If you don't have a battery, how much battery capacity do you need if you want the inverter to output maximum power?
Battery capacity = Inverter maximum output power / U(Battery voltage) / 0.72
Frequently Asked Questions

Q1: How should I select inverter parameters?

A: You need to know the voltage of your battery, the AC voltage in your country, and the appliances you plan to use. What is their power rating? Confirming this information will help determine if the inverter meets your needs.

Q2: What appliances can the inverter/kit power? (Example: inverter with a rated power of 1000W)

A: "Supports common small appliances, but start-up power must be considered!
Safe to use: Laptops (≤150W), electric fans (≤100W), small electric drills (≤800W)
Never use: Air conditioners/electric kettles/hair dryers (start-up power over 2000W will burn out the inverter!)
Conclusion: If appliance power × 2 < 1000W, it's definitely safe!

Q3: Can I connect the inverter directly to the cigarette lighter socket?

A: The inverter comes with a cigarette lighter adapter and battery clamp cables. The cigarette lighter adapter is only suitable for inverters under 200W. For inverters over 200W, use the battery clamps to avoid blowing fuses due to excessive current.

Q4: How long can the inverter run when powering X appliance?

A: Runtime depends on battery capacity and appliance power consumption, not the inverter itself. Example: 500W appliance with 60Ah battery ≈ 1 hour

Q5: Why did my inverter smoke when I plugged in a kettle (1000W)?

A: Heating appliances like kettles typically draw over twice their rated power (3000W) during startup, far exceeding the inverter's capacity. Please photograph the product label and the burned area; we will analyze the cause.

Q6: Why does the inverter display normally when connected to the battery but alarm and show a red light when an appliance is plugged in?

A: The appliance's power exceeds the inverter's rated capacity, triggering its protection mode and cutting power. If the inverter has two outlets and both are used simultaneously, exceeding the total power limit will also cause a shutdown.

Q7: Why does the inverter show no response after connecting to the battery?

A: Verify that the inverter's input voltage matches the battery voltage and that the inverter switch is turned on. Use a DC12V inverter with a 12V battery.

Q8.Why does the solar panel charge intermittently?

A: Solar panels consist of numerous small photovoltaic cells connected in series and parallel. If the panel is partially shaded during use, it cannot form a complete circuit internally. This impairs the panel's power generation efficiency and may even cause it to cease functioning.
The same principle applies to snow, dirt, dust, or grime—all of which can affect the panel's performance.

Q9.Buyers report insufficient power after testing solar panel parameters with test equipment?

A: The buyer's device plugs directly into the solar panel's USB port. Since the USB port is regulated (typically 5V 2A), the maximum power measured via USB is theoretically only 10W. This testing method is inaccurate. Additionally, solar panel output power is affected by sunlight intensity, angle of incidence, and duration of exposure. Any obstruction on the panel surface will significantly reduce conversion efficiency and output.

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On Apr 9, 2026 at 02:04:26 PDT, seller added the following information:

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