Specification
Product Name | 100-150kW Hybrid Solar System | ||
Model | SP-100KW-HY | SP-120KW-HY | SP-150KW-HY |
Solar Panel | 620W x 162pcs | 620W x 194pcs | 620W x 242pcs |
Battery Capacity | Lithium 200KWh | Lithium 240KWh | Lithium 300KWh |
Rated AC Input | 100kW | 120kW | 150kW |
Daily Electricity Generation | 400-550kWh | 480-660kWh | 600-825kWh |
Output Voltage | Three Phase / Split Phase | ||
Protective Devices | Optional | ||
Cales & Connectors | Optional | ||
Installation Instructions. | Supportable | ||
Mounting System | Customized for Roof or Ground Optional |
Diagram

Installation

How to choose a suitable inverter?
When selecting a solar energy storage inverter, first clarify the application scenario and backup power configuration (such as whether it is grid-connected and whether there is a generator); then combine the load characteristics to make a judgment, not only matching the load rated power but also considering instantaneous power fluctuations, and ultimately accurately adapting it to the specific project needs.
What is the payback period for a solar energy storage system?
The payback period is typically 3-5 years, depending on regional solar irradiance, electricity pricing policies, system efficiency, and initial investment size. Regions with high solar irradiance and wide electricity price differentials may experience a shorter payback period.
Are energy storage batteries safe?
Energy storage batteries are safe when designed and used properly, and existing risks can be mitigated through multiple measures.
Key safety measures include: 1. Batteries are constructed of high-temperature-resistant, leak-proof materials and equipped with overcharge and over-discharge protection; 2. The system is equipped with temperature/voltage monitoring and fire extinguishing devices to prevent thermal runaway; 3. Fire-resistant spacing and explosion-proof ventilation are designed during installation; 4. Regular daily inspections and maintenance are conducted to identify and troubleshoot faults.