1.6KW 3KW 3.6KW 6.2KW 8.2KW 10.2KW Hybrid Solar Inverter MPPT 80A 120A 140A 160A Off-Grid On-Grid 12V 24V 48V 230VAC PV 500Vdc
SPECIFICATIONS
Brand Name: ANERN
Certification: CE
EU LVD Voltage: High voltage: Above 50Vac or 75Vdc
High-concerned chemical: none
Is Smart Device: Yes
Model Number: AN-SCI-ECO/MAX
Origin: Mainland China
Output Current: 100A
Output Frequency: 50HZ/60HZ
Output Power: 500 - 1000W
Output Type: DUAL
Size: 450*350*110mm
Weight: 13kg
is_customized: Yes
10200W:Dual PV Input(Dual MPPT),Dual AC Output(Only 10200W models dual MPPT)
Model |
SCI-Max-10200 |
RATED POWER |
10200W |
Maximum PV Input Power |
10800W |
GRID-TIED OPERATION |
PV INPUT (DC) |
Nominal DC Voltage/Maximum DC Voltage |
360VDC/500VDC |
Start-up Voltage/Initial Feeding Voltage |
90VDC/120VDC |
MPPT DC Voltage Range |
90-450VDC |
|
Number of MPPT Trackers/Maximum
Input Current
|
2/18A
|
GRID OUTPUT (AC) |
Nominal AC Output Voltage |
220/230/240VAC |
AC Output Voltage Range |
195.5-253VAC |
Power Factor |
>0.99 |
Feed-in Grid Frequency Range |
49-51±1Hz / 59-61±1Hz |
|
Nominal Output Current
|
35.6A
|
44.3A
|
EFFICIENCY |
Maximum Conversion Efficiency (Solar to AC) |
98% |
TWO LOADS OUTPUT POWER |
Full Load |
10200W |
Maximum Main Load |
10200W |
Maximum Second Load (battery mode)(Only if the battery voltage is below 44V) |
3400W |
Main Load Cut Off Voltage |
44VDC |
Main Load Return Voltage |
48VDC |
OFF-GRID OPERATION |
|
AC Start-up Voltage/Auto Restart Voltage
|
120-140VAC/180VAC
|
|
Acceptable Input Voltage Range
|
90-280VAC or 170-280VAC
|
|
Maximum AC Input Current
|
50A
|
|
Nominal Operating Frequency
|
50/60Hz
|
|
Surge Power
|
20400W
|
BATTERY MODE OUTPUT (AC) |
Nominal Output Voltage |
220/230/240VAC |
Output Waveform |
Pure sine wave |
Efficiency (DC to AC) |
94% |
BATTERY & CHARGER |
Nominal DC Voltage |
48VDC |
Maximum Charging Current(Solar to AC) |
160A |
Maximum AC Charging Current |
160A |
GENERAL |
Communication interface |
WIFI |
Humidity |
5% to 95% Relative Humidity (Non-condensing) |
Operating Temperature |
–10°C - 50°C |
Storage Temperature |
–15°C - 60°C |
Model |
SCI-ECO-4200 |
SCI-ECO-6200 |
RATED POWER |
4200W |
6200W |
Maximum PV Input Power |
6200W |
6500W |
GRID-TIED OPERATION |
PV INPUT (DC) |
Nominal DC Voltage/Maximum DC Voltage |
360VDC/500VDC |
|
Start-up Voltage/Initial Feeding Voltage |
90VDC/120VDC |
|
Maximum DC Voltage |
60-450VDC |
|
Number of MPPT Trackers/Maximum Input Current |
18A |
22A |
GRID OUTPUT (AC) |
Nominal AC Output Voltage |
220/230/240VAC |
AC Output Voltage Range |
195.5-253VAC |
Nominal Output Current |
18.2A |
27.0A |
Power Factor |
>0.99 |
Feed-in Grid Frequency Range |
49-51±1Hz / 59-61±1Hz |
EFFICIENCY |
Maximum Conversion Efficiency (Solar to AC) |
98% |
TWO LOADS OUTPUT POWER |
Full Load |
4200W |
6200W |
Maximum Main Load |
4200W |
6200W |
Maximum Second Load (battery mode) |
1400W |
2067W |
Main Load Cut Off Voltage |
22VDC |
44VDC |
Main Load Return Voltage |
26VDC |
52VDC |
OFF-GRID OPERATION |
AC Start-up Voltage/Auto Restart Voltage |
120-140VAC/180VAC |
Acceptable AC Input Voltage Range |
90-280VAC or 170-280VAC |
Maximum AC Input Current |
30A |
40A |
Nominal Operating Frequency |
50/60Hz |
Surge Power |
8400W |
12400W |
BATTERY MODE OUTPUT (AC) |
Nominal Output Voltage |
220/230/240VAC |
Output Waveform |
Pure sine wave |
Efficiency (DC to AC) |
94% |
BATTERY & CHARGER |
Nominal DC Voltage |
24VDC |
48VDC |
Maximum Charging Current(Solar to AC) |
120A |
Maximum AC Charging Current |
100A |
GENERAL |
Dimension, D x W x H (mm) |
420*350*110mm |
450*350*110mm |
Communication interface |
WIFI |
Humidity |
5% to 95% Relative Humidity (Non-condensing) |
Operating Temperature |
–10°C - 50°C |
Storage Temperature |
–15°C - 60°C |
Model |
SCI-ECO-3200 |
RATED POWER |
3200VA/3000W |
AC INPUT |
AC Input Voltage |
230VAC |
Selectable Voltage Range |
170-280 VAC (For Personal Computers) |
Selectable Voltage Range |
90-280 VAC (For Home Appliances) |
Frequency Range |
50 Hz/60 Hz (Auto sensing) |
AC OUTPUT |
AC Voltage Regulation (Batt. Mode) |
230VAC ± 5% |
Surge Power |
6400VA |
Efficiency (Peak) PV to Inverter |
98% |
Efficiency (Peak) Battery to Inverter |
94% |
Transfer Time |
10 ms (For Personal Computers); 20 ms (For Home Appliances) |
Waveform |
Pure sine wave |
BATTERY & AC CHARGER |
Battery Voltage |
24VDC |
Floating Charge Voltage |
27VDC |
Overcharge Protection |
33VDC |
Maximum AC Charge Current |
60A |
SOLAR CHARGER |
Maximum PV Array Power |
3000W |
MPPT Range @ Operating Voltage |
30-400VDC |
Maximum PV Array Open Circuit Voltage |
400VDC |
Maximum Charging Current |
80A |
PHYSICAL |
Dimension, D x W x H (mm) |
390*270*100mm |
INTERFACE |
Communication interface |
WIFI |
OPERATING ENVIRONMENT |
Humidity |
5% to 95% Relative Humidity(Non-condensing) |
Operating Temperature |
–10°C - 50°C |
Storage Temperature |
–15°C - 60°C |


FAQ:
Q: Can inverters be connected in series or parallel?
A: NO.
Q: What types of batteries can be used?
A: Lead-acid batteries, gel batteries,Lithium Iron Phosphate(LiFePo4) and lithium batteries can be used. 24V battery for 3.6KW, 48V battery for 6.2KW. The battery cannot be less than 100AH.
Q: Can it be used in air conditioners, water pumps, and wind turbines?
A: It can be used in air conditioners, but not in water pumps and wind turbines.
Q: How to choose the power of the inverter according to the household appliances?
A: If household appliances contain inductive load appliances, such as refrigerators, washing machines, air conditioners, etc., the power of the inverter is at least three times the total power of the inductive load appliances, otherwise the appliances may not be able to start.
Q: Is it possible to use PV, battery, grid supply at the same time?
A: YES. The default PV priority mode, when the PV input is insufficient, the battery and utility will be used.
1. The starting power of inductive load electrical appliances shall be at least three times of the rated power of the electrical appliances. If the starting power exceeds the inverter power, the inverter may be damaged. Please select a suitable model before purchasing.
2. Please connect the circuit correctly according to the instructions, and install switches for each circuit.
3. Starting sequence: first turn on the battery switch, start the inverter, and turn on the PV, mains and load switches.
4. Shutdown sequence: turn off the switches of load, PV and mains, turn off the inverter, and finally turn off the battery.

