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1-10kW Solar Power Inverters with 60A MPPT Solar Charge Controller for Home Use

Minimum Order Quantity : 10PCS Price : Price Negotiable
Packaging Details : Standard Exported Cartons and Pallets for Pure Sine Wave Solar Power Inverter Delivery Time : Within 15-30days after receiving your 30% TT deposit
Payment Terms : L/C, T/T, Western Union Supply Ability : 5000PCS per Month for Pure Sine Wave Solar Power Inverters
Place of Origin: China Brand Name: SOROTEC
Certification: CE,ROHS,RSO9000 Model Number: SSP3115C 1-10kW

Detail Information

Capacity: 1-10kW Norminal Voltage: 120VAC(option) 230VAC
Norminal Input Frequency: 50Hz/ 60Hz (auto Detection) Output Wave Form: Pure Sine Wave
Low Voltage Trip: 90V±4% & 184V/154V±4% Low Voltage Reengage: 100V±4% & 194V/164V±4%
High Light:

solar power inverter for home

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solar energy inverter

Product Description

1-10kW Solar Power Inverter with 60A MPPT Solar Charge Controller for Home Use
 

Low Frequency Pure Sine Wave Solar Inverter with MPPT Solar Charge Controller SSP3115C 1-10kW
Low Frequency Solar Power Inverter,AC/Solar output priority, PF=0.9/1, bypass function with AVR,support generator, LCD display ,remote control with RS232/USB.Widely used to supply the reliable long back up time power for the home appliances and office appliances Solar power systems etc.

 
Key Features:

 

1.Built-in MPPT solar controller
2.Pure sine wave output
3.Low frequency design
4.DIP switch to set AC input voltage range and low battery trip-voltage
5.Output power factor is 0.9-1 and output socket can choose
6.Well accept generator's output and auto generator start terminal
7.Full automatical and silent operation
8.Automatically transfer between battery and line modes
9.Microprocessor control guarantees high reliability
10.Remote control,BTS function(optional)
11.Four-steps intelligent charging control to recharging time
12.Bypass function with AVR function(optional)
13.The charging current is big up to 85 Amp,Can adjust through front panel
14.AC/solar output priority optional
15.Charging mode priorities optional
16.Battery type can choose through front panel


Product Descriptions Of SSP3115C 1-10kW Solar Power Inverter

MODEL SPS3115C 1-10KW
1kW 1.5kW 2kW 3kW 4kW 5kW 6kW 8kW 10kW
Input wave form Sine wave (utility or generator)
Normal voltage 120VAC(option)    230VAC
Low voltage re trip 90V±4% & 184V/154V±4%
Low voltage re engage 100V±4% & 194V/164V±4%
High voltage re trip 140V±4% & 253V±4%
High voltage re engage 135V±4% & 243V±4%
Normal input frequency 50Hz/ 60Hz (auto detection)
Frequency range 47Hz~65Hz
Output Wave form (Bypass mode)same as input
Over-Load Protection Circuit breaker
Short circuit Protection Circuit breaker
Efficiency on line transfer mode undefined95%
Line transfer time 10ms Typical
Bypass without battery connected Yes
Inverter output
Output wave form Pure sine wave
Output continuos power watts 1000 1500 2000 3000 4000 5000 6000 8000 10000
Surge ratings 3000 4500 6000 9000 12000 15000 18000 24000 30000
Power factor 0.9-1.0
Nominal Output Voltage rms 120VAC(option) 230VAC
Output Voltage regulation +/- 10%rms
Output frequency 50Hz ± 0.3Hz or 60Hz ± 0.3Hz
Short circuit protection Yes,fault after 1 secs
Inverter input
Nominal input voltage 24V/48V 48V
Minimum start voltage 20V/40V 40V
Low battery alarm 21V/42V 42V
Low battery trip 20V/40V 40V
High voltage alarm 32V/64V 64V
Charger
Output voltage Dependent on battery type
Charge current 10-85A MAX 70A 85A
Battery initial voltage for start up 0-15.7v for 12v(*2 for 24v;*4 for 48v)
Over charge protection 15.7v for 12v(*2 for 24v;*4 for 48v)
Solar Charger
MPPT Range@Operating Voltage 30-115VDC/60-115VDC
Maximum PV Array Open Circuit Voltage 145VDC
Maximum Charging Current 60A
Maximum Effciency >96%

 

SOROTEC All the Inverter Series :

 

modified sine wave inverter with charge IG3110.jpg IG3112E.jpg Pure sine wave inverter with ISO transformer IG3115C.jpg
Modified Sine Wave Inverter with charge Pure Sine Wave Inverter for Solar System Sine Wave Inverter with ISO transformer
high frequency pure sine wave inverter IG3117C.jpg MPPT solar charge.jpg off grid solar inverter with MPPT controller SSP3117C.jpg
High Frequency Inverter with charger and AC power SCC mppt solar charge controller REVO Series Hybrid solar inverter
 

 

 

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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