| Battery Sizing Logic | Match Storage Capacity to Backup Duration |
| System Growth Path | Step-Up Residential ESS Configuration |
| Payment Terms | L/C,T/T,Western Union |
| System Upgrade Trigger | Higher Peak Load or Larger Solar Plan |
| Charging Requirement | High-Current 48V-Class Battery System |
| PV Planning Focus | Higher-Capacity Residential Solar Arrays |
| Supply Ability | 5000 Sets per Month |
| Residential Load Segment | Homes with Higher Simultaneous Power Demand |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Backup Use Case | Higher Residential Load Coverage |
| Project Buyer | Residential EPC / Installers / Energy Integrators |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China |
| Model Number | INV-8KW-51.2V-W-2 |
| Certification | MSDS |
| Brand Name | Voltertech |
View Detail Information
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Product Specification
| Battery Sizing Logic | Match Storage Capacity to Backup Duration | System Growth Path | Step-Up Residential ESS Configuration |
| Payment Terms | L/C,T/T,Western Union | System Upgrade Trigger | Higher Peak Load or Larger Solar Plan |
| Charging Requirement | High-Current 48V-Class Battery System | PV Planning Focus | Higher-Capacity Residential Solar Arrays |
| Supply Ability | 5000 Sets per Month | Residential Load Segment | Homes with Higher Simultaneous Power Demand |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Backup Use Case | Higher Residential Load Coverage |
| Project Buyer | Residential EPC / Installers / Energy Integrators | Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China | Model Number | INV-8KW-51.2V-W-2 |
| Certification | MSDS | Brand Name | Voltertech |
| High Light | 8kW Hybrid Solar Inverter ,48V Solar Inverter ,Dual MPPT Residential Inverter | ||
8kW 48V Hybrid Solar Inverter for Home Battery Backup Systems.
Designed for residential solar and battery storage projects with higher power demand, this single-phase hybrid inverter provides 8000W rated AC output, supports up to 13500W of PV input and operates with a nominal 48Vdc battery system.
Compared with a 6kW-class residential inverter, the additional AC output and higher PV input capability can be useful when household peak load or the planned solar array exceeds the requirements of a smaller system.
Moving from a smaller inverter to an 8kW model should normally be based on actual load and solar design rather than simply selecting a higher power rating.
The 8kW inverter can be considered when the expected simultaneous household load is too close to the operating limit of a 6kW system, or when the planned PV array requires more input capacity.
The difference between the two models is not limited to 2kW of additional AC output. The 8kW version also provides a higher PV input limit and higher maximum charging current.
Rated output: 6000W
Maximum PV input: 9000W
Maximum charging current: 135A
Rated output: 8000W
Maximum PV input: 13500W
Maximum charging current: 190A
If a 6kW inverter already covers the expected household load and solar array, increasing inverter size may not be necessary. The 8kW version becomes more relevant when the project requires greater AC output or a larger PV configuration.
The PV section supports up to 13500W of input power. Maximum DC voltage is 520Vdc, start-up voltage is specified at 117Vdc and the MPPT operating range is 50–450Vdc.
Two MPPT trackers are provided. The parameter sheet lists the maximum PV input current arrangement as 18A + 36A.
Two MPPT trackers allow the solar array to be divided into separate tracking inputs instead of requiring the entire PV configuration to operate as one input group.
The actual string arrangement should be calculated from the selected PV module's Voc, Vmp and operating current while remaining within the 50–450Vdc MPPT range and the specified PV input current limits.
Roof orientation, available installation area and the electrical characteristics of the selected modules should therefore be considered during PV system design.
There is no fixed battery capacity that must be used with an 8kW inverter. Inverter power in kW and battery energy capacity in kWh describe different parts of the residential energy storage system.
The inverter uses a nominal 48Vdc battery architecture. Battery capacity should be selected according to required backup duration and household energy use, while battery current capability and BMS communication must also be compatible with the inverter.
These examples describe capacity planning only and do not confirm compatibility with a specific battery model.
The parameter sheet specifies maximum solar charging current, maximum AC charging current and maximum total charging current of 190A for the 8kW model.
This does not mean every 48V or 51.2V battery should be charged at 190A. The connected battery system must be capable of accepting the configured charging current within its own BMS and cell limits.
The supplied technical information includes grid-tied, off-grid and hybrid operating specifications. Battery-mode output is specified as pure sine wave.
This allows the inverter to serve as the power conversion component of a residential solar and battery system, while the exact operating logic depends on the final system settings and electrical installation.
Wi-Fi, RS485, CAN and dry contact interfaces are listed for monitoring, battery communication and system integration. A touchscreen interface is also included in the supplied feature list.
Swipe left or right to view the complete specification table.
| Parameter | Specification |
|---|---|
| Phase | Single Phase Input / Single Phase Output |
| Rated Output Power | 8000W |
| Maximum PV Input Power | 13500W |
| Maximum Charging Power | 8000W |
| Maximum DC Voltage | 520Vdc |
| PV Start-Up Voltage | 117Vdc |
| MPPT Voltage Range | 50–450Vdc |
| MPPT Trackers / Maximum Input Current | 2 / 18A + 36A |
| Nominal AC Output Voltage | 220 / 230 / 240VAC |
| Nominal Output Current | 34.8A |
| Maximum AC Input Current | 50A |
| Nominal Battery Voltage | 48Vdc |
| Maximum Charging Current | 190A |
| Maximum Conversion Efficiency | 97% |
| Communication | RS485 / CAN / Wi-Fi / Dry Contact |
| Protection Rating | IP65 |
| Dimensions | 600 × 483 × 260mm |
| Net Weight | 38kg |
The inverter series supports parallel operation. The supplied specification lists up to six units for single-phase supply and a three-unit configuration for three-phase supply.
Parallel configuration should not be determined from inverter quantity alone. Total load, battery architecture, phase arrangement and the complete electrical design should be checked before installation.
It depends on the home's maximum simultaneous electrical load. The inverter provides 8000W rated AC output, so the expected running loads and starting demand of larger appliances should be calculated before selecting the inverter size.
The 8kW version may be more appropriate when the expected AC load exceeds the comfortable design range of a 6kW system or when the planned PV array requires more than the 6kW model's 9kW maximum PV input.
The supplied technical specification allows up to 13.5kW of PV input. The final PV array must also remain within the 520Vdc maximum DC voltage, 50–450Vdc MPPT range and specified MPPT current limits.
A 12kW PV array is below the specified 13.5kW maximum PV input power. However, panel quantity and string configuration must also be checked for voltage and current compatibility before confirming the design.
Battery capacity should be selected according to the required backup duration and household energy use rather than the inverter's 8kW power rating alone. The battery must also match the inverter's voltage, charging current and communication requirements.
Battery energy capacity can be larger than inverter output power because kWh and kW measure different system characteristics. The exact battery model still needs to be checked for voltage range, allowable current, charging settings and CAN or RS485 communication.
The inverter specification lists a nominal battery voltage of 48Vdc. 51.2V LiFePO4 batteries are commonly used in 48V-class storage systems, but the exact operating voltage, charge parameters and BMS protocol must be confirmed before installation.
No. The 190A figure is the inverter's specified maximum charging current. The actual charging current must remain within the limits of the connected battery system and its BMS.
The supplied technical specification includes off-grid operating parameters and pure sine wave battery-mode output. Actual backup capability depends on the battery system, connected loads and electrical configuration.
Provide the maximum simultaneous household load, solar panel model and quantity, battery brand and model, grid voltage, required backup duration and intended operating mode. These details help check inverter sizing, PV string design and battery compatibility.
Send us your household peak load, planned solar array, battery model and backup requirement. We can help check whether the 8kW inverter is more suitable than a smaller or larger residential configuration.
Check Your 8kW System ConfigurationCompany Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
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