10kW 30kWh Split Phase Residential Energy Storage System For Generator Backup

Product Summary
10kW 30kWh Split Phase Residential Energy Storage System for Generator Backup Split Phase Home Battery for Longer Power Outages This split phase residential energy storage system combines a 10kW pure sine wave inverter, 30.72kWh battery reserve, dual MPPT solar charging, generator support and ...
Basic Properties
Place of Origin: China
Brand Name: Voltertech
Certification: MSDS , UN38.3
Model Number: ESS-30KWH-10KW-HY-Q-2
Trading Properties
Minimum Order Quantity: 2 Units
Price: Negotiable
Payment Terms: L/C,T/T,Western Union
Supply Ability: 5000 Sets per Month
Product Description

10kW 30kWh Split Phase Residential Energy Storage System for Generator Backup

Split Phase Home Battery for Longer Power Outages

This split phase residential energy storage system combines a 10kW pure sine wave inverter, 30.72kWh battery reserve, dual MPPT solar charging, generator support and household energy monitoring in one coordinated platform.

It provides approximately 27.6kWh of usable energy at 90% depth of discharge. The larger energy reserve is intended for homes that need to operate several priority circuits through overnight outages or extended periods of unstable utility supply.

The 120/240Vac split phase configuration supports projects using L1, L2 and neutral wiring. Compatible 120V and 240V household circuits can be planned according to the final load distribution and electrical installation design.

Residential Backup Beyond a Standard Home Battery

Longer Household Energy Reserve The 27.6kWh usable battery capacity provides additional operating time for lighting, refrigeration, communication, security and home-office circuits.
Split Phase Load Compatibility The 120/240Vac architecture allows qualified installers to arrange compatible line-to-neutral and line-to-line residential loads.
Generator-Supported Recovery A compatible generator can provide an additional supply or charging source when solar production and utility availability are both limited.
Separate Priority Load Groups Dual AC outputs help installers organize essential circuits separately from lower-priority household loads.

Planning Household Loads with Dual AC Output

The dual-output structure can be used to create a clearer residential backup strategy. Essential circuits remain the first priority, while flexible loads can be managed according to battery state, available solar generation and the selected operating mode.

Primary Backup Circuits

Lighting, routers, refrigerators, communication devices, security systems and selected home-office equipment can form the primary household load group.

Flexible Residential Loads

Televisions, selected outlets and other nonessential appliances may be assigned to a secondary load group when sufficient inverter power and stored energy are available.

Motor and Compressor Loads

Pumps, air conditioners, refrigerators and other motor-driven equipment require separate startup-power checks. Their combined running and surge demand must remain within the system limits.

Residential Sizing Note: The 10kW inverter determines how much continuous power can be supplied at one time. The 30.72kWh battery determines the available energy reserve and expected operating duration.

Residential Electrical and Installation Data

Line-to-Neutral Input Range 85–140Vac ±2%
Output Frequency 50Hz / 60Hz Auto Detection
Output Power Factor 1.0
Battery-Mode Efficiency Greater Than 95%
Solar Operating Voltage 90–485Vdc
Maximum PV Open-Circuit Voltage 500Vdc
Charging Current Limits 200A PV / 120A AC / 0–220A Combined
Battery Operating Range 40.0–58.4Vdc
Cabinet Installation Data IP21 / 695 × 298 × 1550mm / 255kg Net

Solar and Generator Planning for Residential Projects

The dual MPPT charger supports two solar inputs rated at up to 22A and 5kW each. Separate photovoltaic strings can be planned within the specified operating-voltage and open-circuit-voltage limits.

For long-duration outage planning, the generator should be selected according to its output voltage, frequency, available charging power and ability to support household loads while the battery is recovering.

  • Calculate each solar string voltage at the lowest expected temperature.
  • Keep each photovoltaic input within its 22A and 5kW limit.
  • Keep total string open-circuit voltage below 500Vdc.
  • Confirm generator voltage and frequency before connection.
  • Provide stable floor support for the 255kg cabinet.
  • Install the IP21 enclosure in a dry indoor or protected technical location.
Grid Use Notice: This residential energy storage system supports compatible utility charging and backup operation. This page does not claim electricity-selling or grid-export functionality.

Split Phase Residential Energy Storage FAQ

Can the system supply both 120V and 240V household circuits?

The system uses a 120/240Vac split phase architecture. Final circuit compatibility depends on the L1, L2, neutral and protection arrangement completed by the installer.

How should the dual AC outputs be used in a home?

They can help separate essential backup circuits from flexible loads. The exact output assignment depends on the selected operating mode and household distribution-board design.

Is 30kWh suitable for overnight backup?

The system provides approximately 27.6kWh of usable energy. Overnight suitability depends on the selected circuits, average load power, battery condition and operating settings.

Can a generator recharge the battery during an extended outage?

Generator operation is supported. Its voltage, frequency, charging capacity and wiring must be confirmed before commissioning.

How should the two solar inputs be configured?

Each MPPT input supports up to 22A and 5kW. Both strings must remain within the 90–485Vdc operating range and below the 500Vdc open-circuit-voltage limit.

What installation preparation is required for the cabinet?

The site should provide stable floor support, dry protected placement, suitable ventilation, service clearance and cable access for a cabinet weighing approximately 255kg.

Residential Split Phase Project Support

This 10kW 30kWh split phase residential energy storage system is suitable for solar installers, distributors and project developers serving larger homes, remote residences and generator-supported backup projects.

Voltertech provides household load assessment, split phase circuit review, solar string matching, generator compatibility checks and residential project quotation support.

Planning a split phase home backup system with generator support?

Request a Residential Split Phase Solution

Product Details
Highlight:

Split Phase Residential Energy Storage System

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Generator Residential Energy Storage System

Home Electrical Architecture: 120/240Vac Split Phase
Residential Output Level: 10kW Pure Sine Wave
Overnight Energy Reserve: 30.72kWh Rated / 27.6kWh Usable
Rooftop Solar Allocation: Dual MPPT / 5kW + 5kW
Long-Outage Energy Sources: Solar / Battery / Utility / Generator
Household Load Zoning: Dual AC Output
Backup Source Changeover: 10ms
Homeowner Monitoring Access: LCD / WiFi

Customer Service

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