DYNESS HV Tower SET complete (incl. BDU)
DYNESS HV Tower SET complete (incl. BDU)
324 in stock
- 100% certified
- Ready for Installation
- Fast delivery within NL & BE
Couldn't load pickup availability
The Dyness Tower T7 is a powerful, modular home battery with a minimum capacity of 7.1 kWh , designed for both residential and commercial use. This battery is ideal for storing solar energy, optimizing energy consumption, and providing backup power during power outages.
Can be expanded in parallel with 12 towers, totaling 255.72 kWh
Key Specifications
Capacity : 7.1 kWh (can be expanded in parallel)
Battery technology : Lithium iron phosphate (LiFePO₄)
Nominal voltage : 192 V
Maximum charging/discharging power : 4.26 kW
Charge/discharge temperature : 0 to 50 °C / -10 to 50 °C
Protection degree : IP54 (protection against dust and water)
Lifespan : More than 6000 charging cycles
Dimensions : 700 × 504 × 380 mm
Weight : 105 kg
Communication protocols : CAN, RS485, RS232
Warranty : 10 years
Modular and stackable design : The Tower T7 can be expanded to a maximum capacity of 21.31 kWh by connecting multiple units, providing flexibility and scalability. It can be expanded in parallel with 12 towers (255.72 kWh).
High Efficiency : With a 95% depth of discharge (DoD) and 95% efficiency, the T7 provides an excellent energy storage solution.
Safety and Certification : The battery complies with international standards such as IEC 62619, UL 1973 and CE, and is certified for use in different regions.
Compatibility : The T7 is compatible with various inverters, including the Kostal Plenticore Plus G2 & G3 series. (See compatibility list in the appendices.)
Smart Monitoring : Thanks to WiFi connectivity, users can remotely monitor battery status and perform firmware updates via a mobile app or web browser.
Solar energy systems : Storage of excess solar energy for later use, maximizing self-consumption.
Backup power supply : Provides reliable power during power outages, essential for homes and businesses.
Smart energy management : Optimizes energy consumption by avoiding peaks and using stored energy during off-peak hours.
