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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.