Overview Download & Support
On-Grid Inverter

On-Grid Inverter

R3 Note

6kW / 8kW / 10kW / 12kW | Three Phase, 2 MPPTS

RENAC R3 Note Series inverter is one of the best options available in the residential and commercial sectors by its technical strengths, which makes it be one of the most productive inverters in the market. With the high efficiency of 98.5%, enhanced oversizing and overloading capabilities,R3 Note Series represents an outstanding improvement in the inverter industry.

  •  
    16A

    Max. PV

    input current

  •  
    AFCI

    Optional AFCI

    & Smart PID recovery function

  •  
    150%

    150% PV

    input oversizing &

    110% AC overloading

Product Features

  • ExportExport control function integrated
  • 图标-06Wider MPPT voltage range(140 ~ 1000V)
  • 3Type II SPD for both DC and AC
  • 特征图标-3Remote firmware upgrade & setting
note main

Parameter List

Model R3-6K R3-8K R3-10K R3-12K
Max. PV Input Voltage[V] 1100
Max. PV Input Current [A] 16/16
No.of MPPT Trackers/No.of Input Strings per Tracker 2/1
Max. AC Output Apparent Power [VA] 6600 8800 11000 13200
Max.Efficiency 98.4% 98.5% 98.5% 98.5%

Related Products

On-Gird Inverter

On-Gird Inverter

1.6kW / 2.7kW / 3.3kW | Single Phase, 1 MPPT

View More
On-Grid Inverter

On-Grid Inverter

3.68kW / 5kW / 6kW | Single Phase, 2 MPPTs

View More
On-Grid Inverter

On-Grid Inverter

8kW / 10kW | Single Phase, 2 MPPTS

View More
On-Grid Inverter

On-Grid Inverter

15kW / 20kW / 25kW | Three Phase, 2 MPPTs

View More
On-Grid Inverter

On-Grid Inverter

30kW / 50kW | Three Phase, 3/4 MPPTs

View More
On-Grid Inverter

On-Grid Inverter

100kW-125kW | Three Phase, 9 MPPTs

View More
On-Grid Inverter

On-Grid Inverter

6kW / 8kW / 10kW / 12kW | Three Phase, 2 MPPTS

RENAC R3 Note Series inverter is one of the best options available in the residential and commercial sectors by its technical strengths, which makes it be one of the most productive inverters in the market. With the high efficiency of 98.5%, enhanced oversizing and overloading capabilities,R3 Note Series represents an outstanding improvement in the inverter industry.

Download More

Product Video

Product introduction
Product installation

Related FAQs

  • The inverter displays a grid error and shows the fault message as voltage error "Grid Volt Fault" or frequency error "Grid Freq Fault" "Grid Fault"?

    Cause of occurrence: 

    The voltage and frequency of the AC power grid are out of the normal range.

     

    Solution:

    Measure the voltage and frequency of the AC power grid with the relevant gear of the multimeter, if it is really abnormal, wait for the power grid to return to normal. If the grid voltage and frequency are normal, it means that the inverter detection circuit is faulty. When checking, first disconnect the DC input and AC output of the inverter, and let the inverter power off for more than 30min to see if the circuit can recover by itself, if it can recover by itself, you can continue to use it, if it can’t be recovered, you can contact Renac for overhaul or replacement. Other circuits of the inverter, such as the inverter main board circuit, detection circuit, communication circuit, inverter circuit, and other soft faults, can be used to try the above method to see if they can recover by themselves, and then overhaul or replace them if they can not recover by themselves.

  • Excessive output voltage on the AC side, causing the inverter to shut down or derate with protection?

    Cause of occurrence:

    There are many factors affecting the output power of PV power plants, including the amount of solar radiation, the tilt angle of the solar cell module, dust and shadow obstruction, and the temperature characteristics of the module.

    System power is low due to improper system configuration and installation.

     

    Solutions :

    (1) Test whether the power of each PV module is sufficient before installation.

     

    (2) The installation place is not well-ventilated, and the heat of the inverter is not spread out in time, or it is exposed to sunlight directly, which causes the inverter temperature to be too high.

     

    (3) Adjust the installation angle and orientation of the PV module.

     

    (4) Check the module for shadows and dust.

     

    (5) Before installing multiple strings, check the open-circuit voltage of each string with a difference of no more than 5V. If the voltage is found to be incorrect, check the wiring and connectors.

     

    (6) When installing, it can be accessed in batches. When accessing each group, record the power of each group, and the difference in power between strings should not be more than 2%.

     

    (7) The inverter has dual MPPT access, each way input power is only 50% of the total power. In principle, each way should be designed and installed with equal power, if only connected to one-way MPPT terminal, the output power will be halved.

     

    (8) Poor contact of the cable connector, the cable is too long, the wire diameter is too thin, there is voltage loss, and finally cause power loss.

     

    (9) Detect whether the voltage is within the voltage range after the components are connected in series, and the efficiency of the system will be reduced if the voltage is too low.

     

    (10) The capacity of the grid-connected AC switch of the PV power plant is too small to meet the inverter output requirements.

  • DC side input voltage overvoltage alarm, error message "PV Overvoltage" displayed?

    Cause of occurrence:

    Too many modules are connected in series, causing the input voltage on the DC side to exceed the maximum working voltage of the inverter.

     

    Solution:

    According to the temperature characteristics of PV modules, the lower the ambient temperature, the higher the output voltage. It is recommended to configurate the string voltage range according to the inverter datasheet. In this voltage range, the inverter efficiency is higher, and the inverter can still maintain the start-up power generation state when the irradiance is low in the morning and evening, and it will not cause the DC voltage to exceed the upper limit of the inverter voltage, which will lead to the alarm and shutdown.

  • 确认

    Hit enter to search

    %{tishi_zhanwei}%