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40 kVA Solar Hybrid PCU for high-capacity commercial and industrial power applications.
Uses 240 VDC battery architecture with MPPT solar charging.
Supports up to 166 A solar input per channel for substantial solar integration.
Grid/DG compatibility supports up to 2× inverter capacity.
High overload capability and built-in isolation support reliable load operation.
Multiple operating modes enable optimized use of Solar, Battery, Grid and DG.
Designed to maximize renewable-energy utilization while improving power availability and energy savings.

30 kVA Solar Hybrid PCU built for larger commercial and industrial energy requirements.
Uses 240 VDC battery architecture with high-capacity MPPT solar conversion.
Supports up to 125 A solar input per channel.
Provides Grid/DG compatibility, synchronization and intelligent source management.
Pure sine-wave output and continuous-duty operation support demanding applications.
Configurable for Hybrid, Grid Export, Standalone and Batteryless operation.
Remote monitoring & control* enables operators to track and manage critical parameters remotely.

25 kVA Solar Hybrid PCU designed for dependable power and renewable-energy integration.
240 VDC battery system with MPPT-based solar charging.
Supports up to 104 A solar input per channel.
Pure sine-wave output with ±2% voltage regulation for stable load supply.
Intelligent Hybrid, Export, Standalone and Batteryless configurations provide application flexibility.
Built-in protections include overload, short circuit, battery and solar-side protection.
A strong fit for commercial/industrial sites requiring higher power availability with solar savings.

20 kVA Solar Hybrid PCU** engineered for higher commercial and industrial load requirements.
Uses 240 VDC battery architecture with high-capacity MPPT solar charging.
Supports up to 83 A solar input per channel and MPPT loading up to 120%.
Grid/DG compatibility supports up to 2× inverter capacity.
Multiple operating modes provide flexibility for backup, solar utilization and grid export.
125% overload for 60 seconds and 150% for 5 seconds supports demanding loads.
Ideal where power availability and reduction in grid consumption are key priorities.

Engineered for green energy integration, converting low-voltage 120VDC fuel cell inputs into ultra-stable 3-phase AC power. High-frequency IGBT switching topology provides precise DC-AC conversion and rapid transient response across varying hydrogen fuel loads. Built-in heavy-duty galvanic isolation transformer ensures complete electrical decoupling to shield critical loads from grid anomalies and ground loops. Advanced digital DSP control maintains pure sine wave output with low THD (< 3%) to safeguard sensitive automation, lab equipment, and PLCs. Optimized thermal management and high energy efficiency reduce operational losses and lower long-term total cost of ownership (TCO). Compact, ruggedized industrial enclosure engineered specifically for continuous 24/7 duty cycles in challenging C&I environments. Fully compatible with existing hybrid microgrid architectures, energy storage systems (BESS), and distributed hydrogen power setups.

Description

Transitioning to hydrogen or advanced fuel cell infrastructure requires power conversion hardware engineered specifically for low-voltage, high-current DC sources. The EnerTech 10kVA 120VDC 3-Phase Fuel Cell Inverter delivers clean, stable, and galvanically isolated three-phase AC power directly from fuel cell stacks, making it an essential bridge between next-generation green generation and critical industrial loads.

Core Specifications at a Glance

Rated Capacity: 10 kVA / 8 kW to 10 kW (depending on system power factor)

Nominal DC Input: 120V DC (wide-input window tailored for variable fuel cell discharge profiles)

AC Output: 415V AC, 3-Phase, 4-Wire (50 Hz / 60 Hz configurable)

Topology: High-frequency PWM switching with robust DSP-controlled IGBT inverter bridge

Galvanic Isolation: Built-in heavy-duty isolation transformer for common-mode noise suppression and equipment safety

Cooling & Enclosure: Forced-air cooling; industrial-grade IP20/IP21 indoor cabinet (customizable for rugged environments)

Monitoring & Comms: RS485 / Modbus-RTU, dry contacts, and optional Ethernet/SNMP for SCADA and remote telemetry