
| Model Number | M8500T-48PL | M11000T-48PL |
| Place of Origin | China | China |
| Mounting Method | Wall Bracket | Wall Bracket |
| Nominal Battery Voltage (V) | 48VDC | 48VDC |
| Parallel Capacity· | YES, 6units | YES, 6units |
| Lithium Battery activation | YES( By PV or Utility) | YES( By PV or Utility) |
| Nominal Voltage | 230VAC | 230VAC |
| Frequency | 50/60Hz | 50/60Hz |
| Waveform | Pure Sine wave | Pure Sine wave |
| Solar Charger Type | MPPT | MPPT |
| Communication Interface | RS232+RS485+Dry-contact | RS232+RS485+Dry-contact |
| PV Array MPPT Voltage Range | 60VDC~500VDC | 60VDC~500VDC |
| Surge Power | 17000VA | 22000VA |
| Size | 540*415*122mm | 540*415*122mm |
| Weight | 14.5kg | 15.5kg |
| Operating Temperature Range | (-10'℃ to 50℃) | (-10'℃ to 50℃) |


M Series Inverters Powering 12 Nations Across Four Continents
As the global demand for sustainable and reliable energy intensifies, the deployment of advanced solar technology has become a cornerstone of national infrastructure development. The M Series 8.5–11kW solar inverter, with its robust parallel capability, dual AC output, and battery-flexible operation, is now at the heart of transformative projects across Asia, South America, the Middle East, and Africa. Engineered for durability and high performance, these inverters are empowering communities, enhancing grid stability, and driving economic growth under the most challenging environmental conditions.
1. Philippines – Coastal Resilience & Off-Grid Electrification
Purpose: To provide stable power for remote island communities and tourism resorts vulnerable to typhoons and grid failures.
Effect: 24/7 renewable power, reduced diesel dependency, and enhanced disaster resilience.
Scale: 150 units (approx. 1.3 MW), deployed across the Visayas region.
Location: Small islands and coastal resorts.
Expert Insight: The inverter’s detachable dust cover and corrosion-resistant design are critical for salt-air environments. Its ability to work without a battery ensures basic power availability even if battery systems are damaged during storms. Parallel configuration allows for scalable microgrids.
2. Indonesia – Industrial & Agricultural Hybrid Power
Purpose: To stabilize energy supply for palm oil processing plants and rural telecommunication towers.
Effect: Lower operational costs, reduced carbon footprint, and reliable power for processing and communication.
Scale: 80 units (approx. 880 kW) for industrial plants; numerous smaller setups for telecom.
Location: Sumatra and Kalimantan.
Expert Insight: High humidity and sporadic grid voltage are key challenges. The inverter’s pure sine wave output and wide input voltage range protect sensitive machinery. The RS485 communication enables seamless integration with existing LFP battery banks for optimal hybrid operation.
3. Bangladesh – Urban Rooftop and Commercial Backup
Purpose: To alleviate severe grid load-shedding in urban centers and provide backup for SMEs and hospitals.
Effect: Uninterrupted power for critical operations, reduced generator use, and lower electricity bills.
Scale: Widespread installation of ~500 units (over 4 MW cumulative) in Dhaka and Chittagong.
Location: Rooftops of commercial buildings, hospitals, and textile workshops.
Expert Insight: In dense urban areas, space is limited. The inverter’s high power density (up to 11kW) and parallel capability (up to 6 units) allow for significant power generation in confined spaces. The multiple output priority modes (SUB, SBU) are ideal for managing grid, solar, and battery usage efficiently.