1. Efficient power
conversion: The cornerstone driving household electricity
The most fundamental and crucial
function of an inverter is to efficiently and stably convert the direct current
generated by solar panels under sunlight or stored in energy storage batteries
into high-quality pure sinusoidal 220V (or regional standards) alternating
current that meets the national power grid standards and is suitable for
household appliances.
2. Intelligent energy
storage management: The core of optimizing energy utilization
Modern household wall inverters
are usually closely integrated with energy storage battery systems and play the
role of the "energy brain" of the home. It can intelligently manage
and schedule the charging and discharging process of energy storage batteries.
Specifically:
Intelligent charging and
discharging strategy: The inverter will automatically optimize the charging and
discharging logic based on the real-time monitored photovoltaic power
generation capacity, the size of the household electricity load, and the preferences
set by the user.
Battery health management and
protection: The inverter is built in or works in coordination with an external
battery management system (BMS) to provide comprehensive protection for energy
storage batteries. This includes preventing abnormal conditions such as
overcharging, over-discharging, over-temperature, overcurrent and short circuit
of the battery, ensuring that the battery operates within a safe working range,
thereby maximizing the battery's service life and guaranteeing system safety.
3. Flexible operation
mode: Ensure friendly interaction between power supply and the power grid
To adapt to different
electricity demands and external power grid conditions, household wall-mounted
inverters usually support multiple operation modes and can achieve intelligent
switching:
Grid-connected operation mode:
In this mode, the electricity generated by the household photovoltaic system is
prioritized for self-use, Excess electricity fed into the power grid is
beneficial.
Off-grid/standby power (UPS)
mode: When the public power grid experiences a failure, power outage or
unstable voltage, the inverter can quickly (usually within milliseconds) switch
to off-grid mode, using the stored electricity in the energy storage battery to
provide uninterrupted power supply for the critical loads in the household,
greatly enhancing the reliability of household electricity usage and emergency
response capabilities.
Multiple strategy modes such as
photovoltaic priority, energy storage priority, and municipal power priority:
Users can set different energy utilization priorities according to their own
needs to maximize energy efficiency.
4. Smart monitoring
and convenient control: The energy manager at your fingertips
To enable users to clearly
understand and conveniently manage their home energy systems, wall-mounted
inverters are usually equipped with advanced human-machine interaction functions:
Real-time data monitoring:
Through the built-in LCD screen of the inverter software or the mobile phone
APP, key information such as photovoltaic power generation capacity,
daily/monthly/annual power generation, household electricity load, energy
balance (SOC) of energy storage batteries, health status (SOH), and current
operating mode can be viewed in real time
Remote control and parameter
setting: Through network connection, users can remotely adjust the parameters
of the inverter, switch operation modes, upgrade firmware, start and stop
control, etc., which greatly enhances the convenience of use and the flexibility
of the system.
Fault Diagnosis and Alarm: The
inverter is equipped with a self-diagnosis function. Once it detects abnormal
system operation or potential faults, it will cut off the power for protection
and promptly send an alarm to the user through APP push or indicator lights,
etc., to notify the user to troubleshoot and repair in time.
5. System Security
and Renewable Energy Optimization
In addition to the
above-mentioned core functions, the inverter is also committed to enhancing the
safety and energy utilization efficiency of the overall system:
Maximum Power Point Tracking
(MPPT) : For photovoltaic systems, the efficient MPPT algorithm built into the
inverter can track the optimal operating voltage and current of the solar
panels in real time, ensuring the best working condition of the solar panels
and maximizing the power generation efficiency.
Comprehensive electrical
protection: Equipped with multiple electrical protection functions, such as
input overvoltage/undervoltage protection, output overload/short circuit
protection, lightning protection, islanding effect protection, etc., to ensure
the safe and stable operation of the inverter and the entire household power
system.
|
Product model |
RP-PW3200 |
RP-PW5500 |
RP-PW8000 |
RP-PW11000 |
||
|
Rated power |
3.2kW |
5.5kW |
8kW |
11kW |
||
|
Standard battery unit voltage |
24VDC |
48VDC |
||||
|
Standard Voltage range |
21-30VDC |
42-60VDC |
||||
|
Rated PV charging voltage |
360VDC |
|||||
|
MPPT tracking range |
120-450V |
|||||
|
MPPTMPPT track number |
1 |
|||||
|
Grid input voltage(phase voltage) |
170~280V(UPS)/120~280V(INV) |
|||||
|
Input frequency |
45~65Hz |
|||||
|
Maximum grid input current |
60A single |
120A single |
||||
|
Maximum PV input current |
100A single |
225A single |
||||
|
Maximum PV input Power |
4kW |
5.5kW |
5.5kW+5.5kW double |
|||
|
Ac access mode |
L+N+PE |
|||||
|
Inverter |
Rated output voltage |
230V+N |
The output electric energy standard is applicable to most countries or regions such as Chinese mainland, Hong-Kong, Macao, North Korea, Australia, South Asia, the Middle East, Europe, Africa, South America, etc., and customers in non-above regions can customize according to the customer's local electric energy standard. |
|||
|
Rated output frequency |
48~52HZ (58~62HZ) |
|||||
|
System efficiency |
86~94% |
|||||
|
AC following |
Rated output voltage |
Follow the grid |
||||
|
Rated output frequency |
Follow the grid |
|||||
|
System efficiency |
99% |
|||||
|
Battery no load loss |
≤1% |
|||||
|
Power grid no load loss |
≤0.5% |
|||||
|
Cooling mode |
Forced air cooling |
|||||
|
Operating environment |
Temperature: -10~40℃ Humidity: 20~95RH% |
|||||
|
Maximum working altitude |
2000m(> 2000m load reduction required) |
|||||
|
Protection |
Battery under (over) voltage protection/overload protection/over temperature protection/short circuit protection |
|||||
|
Class of protection |
IP20 |
|||||
|
Operation mode |
Mains priority/PV priority/battery priority |
|||||
|
Size(mm) |
|
|
||||
|
L420*W290 *H110 |
L460*W304 *H110 |
L520*W450 *H200 |
L560*W450 *H200 |
|||
|
Product model |
RP-PI5500 |
||
|
Rated power |
5.5kW |
||
|
Standard battery unit voltage |
48VDC |
||
|
Standard Voltage range |
42-60VDC |
||
|
Rated PV charging voltage |
360VDC |
||
|
MPPT tracking range |
120-450V |
||
|
MPPTMPPT track number |
1 |
||
|
Grid input voltage(phase voltage) |
170~280V(UPS)/120~280V(INV) |
||
|
Input frequency |
45~65Hz |
||
|
Maximum grid input current |
60A single |
||
|
Maximum PV input current |
100A single |
||
|
Maximum PV input Power |
6kW |
||
|
Ac access mode |
L+N+PE |
||
|
Inverter |
Rated output voltage |
230V+N |
The output electric energy standard is applicable to most countries or regions such as Chinese mainland, Hong-Kong, Macao, North Korea, Australia, South Asia, the Middle East, Europe, Africa, South America, etc., and customers in non-above regions can customize according to the customer's local electric energy standard. |
|
Rated output frequency |
48~52HZ (58~62HZ) |
||
|
System efficiency |
86~90% |
||
|
AC following |
Rated output voltage |
Follow the grid |
|
|
Rated output frequency |
Follow the grid |
||
|
System efficiency |
99% |
||
|
Battery no load loss |
≤1% |
||
|
Power grid no load loss |
≤0.5% |
||
|
Cooling mode |
Forced air cooling |
||
|
Operating environment |
Temperature: -10~40℃ Humidity: 20~95RH% |
||
|
Maximum working altitude |
2000m(> 2000m load reduction required) |
||
|
Protection |
Battery under (over) voltage protection/overload protection/over temperature protection/short circuit protection |
||
|
Class of protection |
IP20 |
||
|
Operation mode |
Mains priority/PV priority/battery priority |
||
|
Size(mm) |
|
||
|
L556*W345*H182 |
|||
