High Frequency Off Grid Solar Inverter SX-MPS-HP Series 3.5-5.5KW

  • Pure sine wave output
  • Output power factor 1.0
  • Configurable battery charging current based on applications via LCD setting
  • Programmable supply priority for PV, battery, or Grid
  • User-adjustable charge current and voltage
  • Wide PV input range (120Vdc – 500Vdc), 110A MPPT SCC
  • Working without batteries in sunny day
  • WiFi Monitoring Function (optional)
  • LCD remote control with 5/10/20 meters wire (optional)
  • PV and electricity complementary
  • Use with lithium batteries
  • Parallel operation up to 6 units

What is SX-MPS-HP 3.5-5.5KW inverter?

SX-MPS-H Series is an off-grid solar storage inverter. For example MPS-3500HP inverter is a combination of 24v 3.5kw high-frequency inverter, AC charger and 80a MPPT solar controller with Max 500Vdc 5kWp PV input.
SX-MPS-H Series support 24v or 48v system voltage version, also have 5.5kw inverter output power optional. Support parallel operation up to 6 units to expand power capacity to 21kw or 33kw.

Model And Packing List

Item NO Battery Volt MPPT current Inverter power AC input and Output voltage Max PV voltage Max PV power Packing size (cm) Weight (KGS)
SX-MPS3500HP 24V MPPT,110A 3500W 220/230V 500V 5000W 54.1*39.2*22.7cm 10.5
SX-MPS5500HP 48V MPPT,110A 5500W 220/230V 500V 6000W 54.1*39.2*22.7cm 11.5

Function

This is a multi-function inverter/charger, combining functions of inverter, solar charger and battery charger to offer uninterruptible power support with portable size. Its comprehensive LCD display offers user-configurable and easy-accessible button operation such as battery charging current, AC/solar charger priority, and acceptable input voltage based on different applications.  

There are three working modes:Standby mode/Power saving mode; , Fault mode, Line Mode,

Charging Mode

Standby mode/Power saving mode : 
Standby mode: The inverter is not turned on yet but at this time, the inverter can charge battery without AC output. 
Power saving mode: If enabled, the output of inverter will be off when connected load is pretty low or not detected.
No output is supplied by the unit but it still can charge batteries.
Fault mode: 
Errors are caused by inside circuit error or external reasons such as over temperature, output short circuited and so on.
PV energy and utility can charge batteries. Utility can power loads when the unit starts up without battery.
Line Mode:
The unit will provide output power from the mains. It will also charge the battery at line mode.
Battery Mode: 
The unit will provide output power from battery and PV power.

Output mode

PV priority mode:
When PV energy and battery will supply power to load. When PV energy is invalid , Load will be supply by mains.
In this output mode, Solar energy can be maximally used, battery will also maintain high charging level.
This mode is suitable for areas with stable power grid.
Mains supply priority mode :
Load will by powered by Mains priority . when mains power is invaild ,then the load will be powered by Inverter (Battery)
In this output mode, the system will work as backup UPS.
It suitable for area with unstable power grid.
Inverter priority mode:
Load will be powered by Inverter(Battery), When battery is low ,then load will be supply by mains .
In this output mode, Battery energy will be use maximally.
This mode is suitable for areas with stable power grid.

Operating Mode Built-in Optional Mode
Charging Mode Standby mode/Power saving mode Fault mode Line Mode
Output Mode PV priority mode Mains supply priority mode Inverter(battery)priority mode

Connection and wiring

Markets and Application Scenario

Off grid inverter works in many place, suitable for different utility grid conditions, you can use the inverter in different way.
In urban area, with Stable utility grid power but electrictiy price is high. In this suitation, off grid solar system can help max reduce electritiy bills.
In rural area , with Unstable utility grid power and need backup power supply when power outage. In this suitation, off grid solar system can provide stable power supply.

Typical Scenario First concern Charging Mode setting Output mode setting Method
urban area : Utility grid stable But electricity price is high Reduce electricity bills Solar first Solar first Max use solar energy and battery power
Rural area : Utility grid unstable Provide backup power when power outage Solar first Solar first Always keep battery full and standby
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