Product Overview
The Deye 16kW Hybrid Inverter is a powerful and versatile inverter designed for both residential and light commercial solar energy systems. With a high capacity of 16kW, it maximizes solar energy self-consumption, reducing grid reliance and offering seamless energy management for both on-grid and off-grid applications. Its robust transformer isolation design and support for up to 10 units in parallel make it a reliable choice for users seeking an efficient, scalable solution.
Key Features
- Unbalanced Output for Each Phase: Supports up to 50% rated power per phase for flexible power distribution.
- Retrofit Compatible: Easily integrates with existing solar systems through AC-coupling, ideal for upgrading existing setups.
- Multiple Parallel Capabilities: Supports 10 inverters in parallel for both on-grid and off-grid operation, allowing scalability for larger energy needs.
- High Battery Compatibility: Supports multiple battery types with a charging/discharging current of up to 240A, providing versatile storage options.
- Generator Integration: Compatible with diesel generators, allowing energy storage from alternative power sources.
- Low Voltage & Safe Design: 48V low-voltage battery support and transformer isolation design provide safety and reliability.
- Time-Based Charging & Discharging: Allows up to 6 customizable time periods for battery management, optimizing energy use throughout the day.
Why Choose the Deye 16kW Hybrid Inverter?
This inverter is ideal for maximizing solar energy usage in both home and business settings. Its flexible power distribution, high compatibility with battery storage, and easy retrofit capability make it a robust choice for enhancing solar efficiency and energy independence.
Specifications
- Maximum Output per Phase: 50% rated power
- Parallel Connection: Up to 10 inverters for on-grid and off-grid systems
- Battery Voltage: 48V
- Charging/Discharging Current: 240A
- Energy Source Support: Compatible with diesel generators
- Customization: 6 time-based battery charging/discharging periods
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