| Solar Array Approach | Dual-MPPT High-Capacity PV Integration |
| Expansion Strategy | Parallel Inverter Architecture |
| Energy Use | Solar Self-Consumption & Backup |
| Supply Ability | 5000 Sets per Month |
| User Interface | Touchscreen & Wi-Fi Monitoring |
| Upgrade Rationale | More Load Headroom Than 10kW Systems |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Battery Strategy | High-Current 48V Storage Integration |
| Residential Power Profile | Higher Simultaneous Household Load Demand |
| Project Buyer | Residential EPC / Installers / ESS Integrators |
| Payment Terms | L/C,T/T,Western Union |
| PV Configuration | Dual-MPPT Multi-String Design |
| Battery Bank Planning | High-Current Low-Voltage Storage Design |
| Future Power Growth | Parallel Expansion Capability |
| Operating Flexibility | Grid-Tied / Off-Grid / Hybrid |
| Backup Scope | Multi-Load Residential Backup Planning |
| Power Application | High-Load Single-Phase Solar Systems |
| System Priority | Greater AC Load Headroom |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Sizing Priority | AC Load Capacity Rather Than Higher PV Ceiling |
| Place of Origin | China |
| Model Number | INV-12KW-51.2V-W-2 |
| Certification | MSDS |
| Brand Name | Voltertech |
View Detail Information
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Product Specification
| Solar Array Approach | Dual-MPPT High-Capacity PV Integration | Expansion Strategy | Parallel Inverter Architecture |
| Energy Use | Solar Self-Consumption & Backup | Supply Ability | 5000 Sets per Month |
| User Interface | Touchscreen & Wi-Fi Monitoring | Upgrade Rationale | More Load Headroom Than 10kW Systems |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Battery Strategy | High-Current 48V Storage Integration |
| Residential Power Profile | Higher Simultaneous Household Load Demand | Project Buyer | Residential EPC / Installers / ESS Integrators |
| Payment Terms | L/C,T/T,Western Union | PV Configuration | Dual-MPPT Multi-String Design |
| Battery Bank Planning | High-Current Low-Voltage Storage Design | Future Power Growth | Parallel Expansion Capability |
| Operating Flexibility | Grid-Tied / Off-Grid / Hybrid | Backup Scope | Multi-Load Residential Backup Planning |
| Power Application | High-Load Single-Phase Solar Systems | System Priority | Greater AC Load Headroom |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam | Sizing Priority | AC Load Capacity Rather Than Higher PV Ceiling |
| Place of Origin | China | Model Number | INV-12KW-51.2V-W-2 |
| Certification | MSDS | Brand Name | Voltertech |
| High Light | 12kW Hybrid Inverter ,48V Solar Inverter ,Dual-MPPT Residential Inverter | ||
12kW 48V Single Phase Hybrid Inverter for Home Battery Backup.
Designed for residential energy storage systems with relatively high simultaneous power demand, this hybrid inverter provides 12000W rated AC output, supports up to 16200W of PV input and operates with a nominal 48Vdc battery architecture.
Its role in a residential ESS is not simply to connect a larger solar array. Compared with the 10kW version in the same series, the 12kW model keeps the same specified 16.2kW maximum PV input while providing additional AC output and higher maximum charging current.
A 12kW inverter may be considered when multiple higher-power household loads are expected to operate at the same time and a smaller inverter would provide insufficient output headroom.
The correct inverter size should therefore be calculated from simultaneous load rather than daily electricity consumption alone.
This is an important distinction when comparing the 10kW and 12kW versions.
Rated output: 10000W
Maximum PV input: 16200W
Maximum charging current: 220A
Rated output: 12000W
Maximum PV input: 16200W
Maximum charging current: 250A
Both models have the same specified maximum PV input of 16.2kW. Moving to the 12kW version therefore mainly provides more AC load capacity and a higher maximum battery charging current.
There is no fixed battery capacity that must be paired with a 12kW inverter. Inverter power and battery energy capacity measure different parts of the residential energy storage system.
The battery should be selected from required backup duration, household energy use and the current capability required by the system.
These capacity examples are for residential ESS planning only. They do not confirm compatibility with any specific battery model.
Battery capacity in kWh alone cannot answer this question.
A 16kWh battery may contain enough stored energy for a particular backup requirement, but the battery system must also be capable of supplying the current required by the inverter and connected loads.
Before confirming the combination, check the battery's allowable continuous charge and discharge current, operating voltage range, BMS limits and communication protocol.
The supplied parameter sheet specifies maximum solar charging current, maximum AC charging current and maximum total charging current of 250A for the 12kW model.
This is the inverter's maximum charging capability. It does not mean every connected battery should be charged at 250A.
Actual charging current must remain within the limits specified for the connected battery system and its BMS.
The photovoltaic section supports up to 16200W of PV input. Maximum DC voltage is specified at 520Vdc, with a 50–450Vdc MPPT operating range.
The inverter uses two MPPT trackers, and the supplied specification lists the maximum input current arrangement as 18A + 36A.
The final PV array should be designed from module Voc, Vmp and operating current as well as total wattage.
A 16kW PV array is below the specified 16.2kW maximum PV input power.
However, total PV wattage alone does not confirm compatibility. The string arrangement must also remain within the 520Vdc maximum DC voltage, 50–450Vdc MPPT range and specified MPPT input current limits.
A 12kW inverter provides higher AC output capability, but backup duration is determined mainly by the connected battery energy and actual household load.
For example, increasing inverter power without increasing battery energy does not automatically provide longer backup time. Likewise, installing a larger battery does not increase the inverter's 12kW rated AC output.
The supplied technical specification includes grid-tied, off-grid and hybrid operating parameters. Battery-mode output is specified as pure sine wave.
RS485, CAN, Wi-Fi and dry contact interfaces are listed for communication and system integration, together with a touchscreen interface.
The final operating mode and wiring arrangement should follow the complete system design and inverter installation documentation.
Swipe left or right to view the complete specification table.
| Parameter | Specification |
|---|---|
| Phase | Single Phase Input / Single Phase Output |
| Rated Output Power | 12000W |
| Maximum PV Input Power | 16200W |
| Maximum Charging Power | 12000W |
| 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 | 52.2A |
| Maximum AC Input Current | 70A |
| Nominal Battery Voltage | 48Vdc |
| Maximum Charging Current | 250A |
| Maximum Conversion Efficiency | 97% |
| Communication | RS485 / CAN / Wi-Fi / Dry Contact |
| Protection Rating | IP65 |
| Net Weight | 45kg |
The inverter series supports up to six units for single-phase parallel operation. The supplied specification also lists a three-unit configuration for three-phase supply.
Parallel operation should be planned according to total power requirement, phase arrangement, battery system capability and the complete electrical installation rather than inverter quantity alone.
It depends on the home's actual simultaneous electrical demand. A household with relatively low peak loads may not require a 12kW inverter, while a higher-demand residential system may benefit from the additional AC output capacity.
According to the supplied specification, both models have a maximum PV input of 16200W. The 12kW model mainly increases rated AC output from 10kW to 12kW and maximum charging current from 220A to 250A.
16kW is below the specified 16.2kW maximum PV input. The solar string voltage and current must also remain within the inverter's DC and MPPT limits before the configuration can be confirmed.
There is no fixed battery capacity required solely because the inverter is rated at 12kW. Battery energy should be selected according to backup duration and consumption, while voltage, current capability and BMS communication must also match the inverter.
It may be possible, but battery capacity alone cannot confirm the combination. The battery must be capable of supplying the required current and must meet the inverter's voltage, charging and communication requirements.
A larger battery bank can provide more stored energy and potentially longer backup duration without increasing the inverter's 12kW rated output. The complete battery configuration still needs to be checked for electrical and communication compatibility.
No. 250A 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.
51.2V LiFePO4 batteries are commonly used in 48V-class energy storage systems. The exact voltage range, allowable current, charging settings and CAN or RS485 communication protocol should still be checked before installation.
That depends on the home's peak electrical demand, the loads included in the backup circuits and the connected battery capacity. The 12kW power rating alone is not sufficient to guarantee whole-home backup for every property.
Provide the maximum simultaneous load, solar panel model and quantity, planned PV string arrangement, battery brand and model, grid voltage and required backup duration. These details help check whether 12kW is the appropriate inverter size and whether the PV and battery configuration is compatible.
Send us your household peak load, planned solar array, battery model and required backup time. We can help check whether the 12kW configuration is suitable or whether another inverter power level better matches the residential energy storage system.
Check Your 12kW Residential ESSCompany Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
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