12kW Split Phase Home Energy Storage System With 30kWh Battery Dual MPPT

Product Summary
12kW Split Phase Home Energy Storage System with 30kWh Battery and Dual MPPT 12kW Residential Energy Storage for Higher Household Demand This residential energy storage system combines a 12kW pure sine wave inverter, 30.72kWh battery reserve, dual MPPT solar charging, generator compatibility and ...
Basic Properties
Place of Origin: China
Brand Name: Voltertech
Certification: MSDS
Model Number: ESS-30KWH-12KW-HY-Q
Trading Properties
Minimum Order Quantity: 2 Units
Price: Negotiable
Payment Terms: L/C,T/T,Western Union
Supply Ability: 5000 Units per Month
Product Description

12kW Split Phase Home Energy Storage System with 30kWh Battery and Dual MPPT

12kW Residential Energy Storage for Higher Household Demand

This residential energy storage system combines a 12kW pure sine wave inverter, 30.72kWh battery reserve, dual MPPT solar charging, generator compatibility and WiFi monitoring in one coordinated power cabinet.

It provides approximately 27.6kWh of usable battery energy at 90% depth of discharge. The larger storage reserve is suitable for homes that need longer operating time for refrigeration, lighting, communication, security, home-office equipment and other selected circuits.

The 12kW split phase output supports projects using 120/240Vac residential electrical service. Compared with the 10kW configuration, this version provides additional output headroom for properties with higher simultaneous household demand.

Designed Around Higher Simultaneous Home Loads

12kW Split Phase Output The higher inverter rating provides more capacity for combining compatible 120V and 240V household circuits within one residential backup plan.
27.6kWh Usable Energy The available battery reserve supports longer operation when backup circuits are prioritized according to household needs.
Dual AC Load Outputs Separate outputs help installers divide essential loads from flexible household circuits and apply a clearer backup priority strategy.
Generator-Compatible Energy Recovery A compatible generator can provide an additional supply or charging source during extended outages and periods of low solar generation.

120/240V Split Phase Circuit Planning

The system is designed for split phase electrical service using L1, L2 and neutral connections. Compatible line-to-neutral loads operate at 120Vac, while suitable line-to-line loads use 240Vac.

A qualified installer should distribute household circuits between L1 and L2 to avoid unnecessary load imbalance. Refrigerators, pumps, air conditioners and other motor-driven equipment must also be checked for startup demand.

  • Prioritize lighting, routers, refrigeration and security equipment.
  • Group computers and communication devices into a home-office circuit.
  • Place optional sockets and entertainment loads on a flexible output.
  • Check the starting current of compressors, pumps and air conditioners.
  • Balance compatible 120V loads between L1 and L2.
Power and Runtime Planning: The 12kW inverter determines the maximum combined continuous output. The 27.6kWh usable battery reserve determines the expected operating duration. These values should be evaluated separately.

Dual MPPT Solar and Generator Recovery

Two MPPT inputs support photovoltaic arrays of up to 6kW per channel. This 6kW + 6kW arrangement gives installers up to 12kW of total solar input for daytime load supply and battery recovery.

The two solar inputs can be useful when photovoltaic modules are divided between separate roof areas. Each string must remain within the specified current, operating-voltage and open-circuit-voltage limits.

During extended outages, a compatible generator may be used as another power source. Generator voltage, frequency, available capacity and charging settings must be confirmed before commissioning.

  • Keep each photovoltaic input within its 22A current limit.
  • Keep solar operating voltage within 90–485Vdc.
  • Keep open-circuit voltage below 500Vdc.
  • Calculate string voltage at the lowest expected site temperature.
  • Confirm generator compatibility before connecting it to the system.
Grid Operation Notice: This system is positioned for residential solar self-consumption, utility charging and backup operation. This page does not claim electricity-selling or grid-export functionality.

Electrical and Installation Specifications

Line-to-Neutral Input Range 85–140Vac ±2%
Frequency and Power Factor 50Hz / 60Hz Auto Detection / PF 1.0
Overload Response 5 Minutes at 105–110%; 10 Seconds at 110–125%; 5 Seconds Above 125%
Battery-Mode Efficiency Greater Than 95%
MPPT Operating Window 90–485Vdc
Maximum PV Open-Circuit Voltage 500Vdc
Charging Current Limits 220A PV / 160A AC / 0–200A Combined
Battery Operating Range 40.0–58.4Vdc
Site and Cabinet Requirements IP21 / -10°C to 50°C / 695 × 298 × 1550mm / 255kg Net

12kW Split Phase Home Energy Storage FAQ

When should a homeowner choose the 12kW version instead of the 10kW version?

The 12kW version is more suitable when the planned simultaneous household load exceeds the practical output range of the 10kW configuration. Final selection should be based on continuous demand and appliance startup power.

How should the two 6kW solar inputs be configured?

Each MPPT can accept up to 6kW and 22A of photovoltaic input. The two strings must independently comply with the 90–485Vdc operating range and 500Vdc open-circuit limit.

Do 120V household loads need to be balanced between L1 and L2?

Yes. Load distribution should be reviewed during installation so that compatible line-to-neutral circuits are reasonably balanced across the split phase output.

Why is the combined charging limit different from the individual PV and AC limits?

The photovoltaic and utility charging circuits have separate maximum ratings, while the combined charging setting limits their total simultaneous contribution. Commissioning settings must remain within the specified combined range.

Can the generator support loads while the battery is charging?

This depends on generator capacity, charging settings, household load demand and the selected operating mode. The generator should be sized for the intended combined requirement.

What site preparation is needed for the cabinet?

The installation location should provide stable floor support for approximately 255kg, dry protected placement, suitable ventilation, cable access and adequate service clearance.

High-Output Residential Storage Project Support

This 12kW split phase home energy storage system is suitable for solar installers, distributors and project developers serving larger residences, remote homes and generator-supported backup projects.

Voltertech provides household load assessment, split phase circuit planning, photovoltaic string review, generator compatibility checks and project quotation support.

Need a 12kW split phase storage plan for a larger home?

Request a High-Output Residential ESS Proposal

Product Details
Highlight:

Split Phase Home Energy Storage System

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12kW Home Energy Storage System

High-Load Home Platform: 12kW Split Phase Output
Usable Nighttime Reserve: 30.72kWh Rated / 27.6kWh Usable
Two-String Solar Recovery: Dual MPPT / 6kW + 6kW
Household Circuit Service: 120/240Vac, L1 + L2 + N
Long-Outage Source Mix: Solar / Battery / Utility / Generator
Priority Load Separation: Dual AC Output
Source Changeover Time: 10ms
Installer Diagnostic Access: LCD / WiFi / RS485 / RS232 / USB / Dry Contact

Customer Service

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