The Deye SUN-25K-SG01HP3-EU-AM2 is a cutting-edge multifunctional inverter that combines solar power conversion, battery charging, and grid integration capabilities. This robust device is designed to provide efficient and reliable power management for both residential and commercial applications, offering a seamless blend of renewable energy utilization and grid support.
Key features of the Deye SUN-25K-SG01HP3-EU-AM2 include:
- High power output with a rated AC output of 25,000W and a maximum apparent power of 27,500VA
- Impressive 97.6% maximum efficiency and 97.0% Euro efficiency for optimal energy conversion
- Dual MPPT trackers with a wide voltage range of 150-850V for flexible solar array configurations
- Compatible with lithium-ion batteries, supporting a voltage range of 160-700V
- Advanced grid support features, complying with numerous international standards
- Comprehensive protection mechanisms, including surge protection (Type II AC, Type I DC)
- IP65 ingress protection for outdoor installation and operation in harsh environments
- Wide operating temperature range from -40°C to +60°C, ensuring year-round performance
- Multiple communication interfaces (RS485/RS232/CAN) and optional monitoring modes (GPRS/WIFI/Bluetooth/4G/LAN)
- Compact dimensions (408x638x237mm) and lightweight design (30.5kg) for easy installation
- Natural cooling system for quiet operation (≤55dB noise level)
- User-friendly LCD display with intuitive button controls for easy system management
- Uninterruptible power support functionality for critical loads
- Generous 5-year warranty, extendable to 10 years for added peace of mind
The Deye SUN-25K-SG01HP3-EU-AM2 stands out as a versatile and high-performance inverter solution for those seeking to maximize their solar energy utilization while ensuring grid stability and backup power capabilities. Its advanced features, robust protection mechanisms, and compliance with international standards make it an excellent choice for both residential and commercial solar installations looking to achieve optimal energy independence and efficiency.