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Hybrid Inverter Charger
Hybrid Inverter Charger
Hybrid Inverter Charger
Hybrid Inverter Charger
Hybrid Inverter Charger
0102030405

TP 3KW-12KW

Hybrid Inverter Charger

built-in EMS / DC 48V / AC 230V

3K/6K/12K: 230V single phase 50Hz.Built-in EMS.MODBUS/RS485/CAN communication.60A~240A AC charging current.
Grid-battery hybrid power supply.IP54.Max. efficiency: 92%.

A three-phase pure sine wave inverter/charger is an advanced power conversion device that combines the functions of an inverter and a battery charger, tailored specifically for three-phase power systems. It converts DC (Direct Current) power from batteries into AC (Alternating Current) with a pure sine wave output, making it ideal for powering sensitive electrical equipment. Additionally, it can charge batteries by converting incoming AC power from the grid or a generator into DC. Its capability to manage three-phase systems, commonly used in industrial, commercial, and large residential setups, makes it an indispensable component for energy systems that demand high efficiency, reliability, and scalability.


An off-grid inverter is a type of power inverter used in energy systems that operate independently of the main utility grid. It is designed to convert direct current (DC) power, typically generated by renewable energy sources like solar panels or stored in batteries, into alternating current (AC) power for running appliances and equipment. These inverters are critical in areas where grid electricity is unavailable or unreliable.


Key Characteristics of an Off-Grid Inverter:

Independent Operation:

Functions without a connection to the utility grid, making it suitable for remote locations, rural areas, or backup systems.

DC to AC Conversion:

Converts the DC electricity from solar panels or batteries into AC electricity, which is used by most household and industrial appliances.

Battery Integration:

Works alongside batteries to store excess energy and provide power when renewable sources are unavailable (e.g., during the night or cloudy days).

Energy Management:

Many off-grid inverters include intelligent management systems that prioritize renewable energy, manage battery charging and discharging, and regulate power supply to connected loads.

Grid-Forming Capability:

Creates a stable, localized AC grid, ensuring consistent frequency and voltage for appliances, even without utility power.


Three-Phase Power: This inverter provides three-phase AC output, which is ideal for heavy machinery, industrial equipment, and large homes or commercial setups.

Off-Grid Capability: It is designed for use in off-grid systems, meaning it does not rely on the utility grid for power. It operates with energy stored in batteries or directly from renewable energy sources.

Energy Efficiency: Three-phase systems are more energy-efficient than single-phase systems, especially when powering large equipment or high-demand applications.

Battery Integration: These inverters can be integrated with battery banks to store excess energy, ensuring a continuous power supply even when the renewable energy source is not producing (e.g., at night for solar systems).

Scalability: They can handle large loads and be scaled up for larger homes, commercial systems, or industrial applications that require high amounts of power.

Product Features

  • 图标-20497
    THD<3% under standard load
  • 215-05951
    Multiple protection for safer use
  • 图标-14w0z
    Switch time <8 m
    (to off grid mode)

  • 图标-15npj
    Generator automatic start/stop function

Application

TP应用图-01

Off-Grid System

Designed for areas without grid access or the grid is unstable, this system provides reliable power through energy storage and smart controls. It stores excess energy when available and switches to off-grid mode during outages, ensuring key devices stay operational. Ideal for remote locations or high-reliability power needs.

TP应用图-07

Hybrid On/Off-Grid System

This system combines on-grid and off-grid modes for flexible energy management. In on-grid mode, it prioritizes solar power to reduce grid dependence and cut costs. During outages, it automatically switches to off-grid mode, using stored energy to ensure continuous power and energy selfsufficiency, especially in extreme conditions.

  • Technical Parameter

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    TP Series Hybrid Inverter Charger
    Model 3048E 6048E 12048E
    Parameter Configuration
    Inverter Mode Battery Rated Voltage 48V
    Battery Voltage Range 40-58V
    Rated Output Power 3000W 6000W 12000W
    Inverter Mode Efficiency 92%(Peak)
    Rated Output Voltage 230Vac
    Rated Output Frequency 50/60Hz
    Overload Capacity (110%<load<125%) ±10%: Protection in 15 minutes;
    (125%<load<150%) ±10%: Post-60s protection;
    ( load>150%) ±10%: Post-20s protection.
    Mains Mode Charging Voltage Range 52-59Vdc
    Max. Charging Current 60A 120A 240A
    Utility Input Voltage 230Vac
    Input Voltage Range 80/90-140Vac, 140/184-254Vac
    AC Rated Frequency 50/60Hz
    Frequency Range 47-55, 57-65/40-70Hz
    System Parameter
    System Parameter Cooling Method Forced air cooling
    Noise Level ≤75dB
    Temperature Range -20℃~ 40℃
    Protection Level IP54
    Humidity Range 0-95%(Non-condensing)
    Dimensions(W*D*H) 440*195*570(mm) /
    Other
    Other Max. Efficiency 92%
    Wiring Method Single phase
    Isolation Type Built-in transformer isolation
    Protection Functions AC Over/Under Voltage, Over-Temperature, Frequency Anomaly, Over-Current, Fan Fault, Battery Over/Under Voltage, Battery Over-Temperature
    Display LCD+APP
    Communication Interface RS485(MPPT), CAN(BAT)
    Communication Settings Adjustable parameters can be configured via the LCD screen,
    PC-based software, or mobile APP
    Hybrid Power Supply In utility mode, the battery can supply 95% of the load’s energy demand

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