• 1-12kw Pure Sine Wave Output Inverter with Full Automatic

1-12kw Pure Sine Wave Output Inverter with Full Automatic

Brand: Sorotec
Type: on-Line
Nominal Voltage: 220/230/240VAC
Nominal Frequency: 50/60Hz
Voltagerange: 176VAC-280VAC(± 3VAC)
Frequencyrange: 50/60Hz
Customization:
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Basic Info.

Model NO.
IG3115C Series
Wave Form
Modified Sine Wave
Temperature
0oc~40oc
Humidity
5%~95%(< 40o C, No Condensation)
Storage Temperature
-25o C~55o C
Application
Communication
Transport Package
Standard Exported Package
Specification
CE, ISO9001; ISO14000
Trademark
SOROTEC
Origin
China
Production Capacity
6000PCS/Month

Product Description

1-12kw pure sine wave output inverter with full automatic

Key Features:

1. LCD Display

2. Full automatic and silent operation

3. Rack Tower design

4. High Frequency

5. Off mode charging

6. Compact size for convenient use and storage

7. Built-in 8AMP super charger for up to 100Ah battery

8. Small scale and cost effective inverter for home appliances and office equipment

9. Two - steps intelligent charging control to recharging time
Technical Specifications of LCD UPS Inverter IG3110E 500-2000VA
Model IG3110C 500-2000VA
500-12 1000-12 2000-24 1000-24
Capacity 500VA/300W 1000VA/600W 2000VA/1200W 1000VA/600W
Nominal voltage 220/230/240VAC
Nominal frequency 50/60Hz
Input
VoltageRange 176VAC-280VAC(± 3VAC)
FrequencyRange 50/60Hz
Output
Voltage Regulation 220/230/240VAC± 2%
Frequency Regulation 50/60Hz+0.1Hz
Wave Form Modified sine wave
Switch time Standard 2~4ms    Typical 6ms
Current
Charge Current 10A 10A 10A 6A
DC Voltage 12V 12V 24V 24V
Overcharge Protection 15V 15V 30V 30V
Display
LCD AC, battery, fault, etc
Operating Environment
Temperature 0 º C~40º C
Humidity 5%~95%(< 40º C, no condensation)
Storage Temperature
 
-25º C~55º C
Elevation Noise          (within 1 metre) Less than 1500 meter
< 45dB
Physical
Weight(KG) Net weight 2.0 2.5 2.5 2.0
Gross weight 2.2 2.7 2.7 2.2
Dimension: WXDXH mm 224× 225× 80
1-12kw Pure Sine Wave Output Inverter with Full Automatic

Quality contro
1.Incoming Quality Assurance

2.Critical components inspection

3.Process Quality Assurance

4.Raw  material  Verification

5.First Article Inspection

6.Online IQC

7.Product testing

8.ICT testing

9.Product aging

10.Product high temperature aging

11.Final QA 



FAQ:

1.How to choose 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 power 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.
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2.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 power 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.
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3.How connection between batteries and an power 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.
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4.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)
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