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48V 6.2kW Hybrid Solar Inverter Single Phase Pure Sine Wave Off Grid Solar Inverter MPPT with LiFePO4 Battery Support

Product Details

Place of Origin: China

Brand Name: 1stess

Certification: CE, IEC

Model Number: M (PV60-500VDC) 6200-48PL

Document: M6200-48L.pdf

Payment & Shipping Terms

Minimum Order Quantity: 1 piece

Price: To be negotiated

Packaging Details: carton box

Delivery Time: 30 days

Payment Terms: L/C,T/T

Supply Ability: 2000 pieces per month

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Specifications
Highlight:

48V hybrid solar inverter with LiFePO4 support

,

6.2kW off grid solar inverter MPPT

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single phase pure sine wave inverter

Charging Mode:
MPPT
Operating Temperature:
-10°C To 55°C
Inverter Type:
Off Grid Inverter
Frequency:
50Hz/60Hz
Nominal Output Voltage:
230VAC
Communication Interface:
RS232+RS485
Acceptable Input Voltage Range:
170-280VAC(For Personal Computer);90-280vac(For Home Appliances)
Size:
450*300*130mm
Waveform:
Pure Sine Wave
Output Current:
120A
Weight:
9.6kg
Charging Mode:
MPPT
Operating Temperature:
-10°C To 55°C
Inverter Type:
Off Grid Inverter
Frequency:
50Hz/60Hz
Nominal Output Voltage:
230VAC
Communication Interface:
RS232+RS485
Acceptable Input Voltage Range:
170-280VAC(For Personal Computer);90-280vac(For Home Appliances)
Size:
450*300*130mm
Waveform:
Pure Sine Wave
Output Current:
120A
Weight:
9.6kg
Description
48V 6.2kW Hybrid Solar Inverter Single Phase Pure Sine Wave Off Grid Solar Inverter MPPT with LiFePO4 Battery Support
48V 6.2kW Hybrid Solar Inverter Single Phase Pure Sine Wave Off Grid Solar Inverter MPPT with LiFePO4 Battery Support
Product Features
  • Compatible with LiFePO4 battery systems
  • Parallel operation capability for up to 12 units in single or three-phase configurations
  • Direct plug WiFi dongle support for remote monitoring
  • Pure sine wave output for clean power delivery
  • Power factor of 1.0 for maximum efficiency
  • Maximum PV input of 500VDC
  • Built-in MPPT with 120A charge current
  • Capable of operating without battery backup
  • Detachable dust cover for harsh environment protection
  • Optional WiFi remote monitoring capabilities
  • Multiple output priority modes: UTL, SOL, SBU, SUB
  • EQ function to optimize battery performance and extend lifecycle
Technical Specifications
Model M6200-48PL
Capacity 6.2KVA/6.2KW
Parallel Capability Yes, 12 Units
Nominal Voltage 230VAC
Waveform Pure Sine Wave
Battery Voltage 48VDC
Solar Charger Type MPPT
Max. PV Array Power 6500W
Max. Solar Charge Current 120A
Communication Interface RS232/RS485
Product Images
M6200-48L Hybrid Inverter Transforms Energy Access Across Four Continents
Revolutionizing Energy Independence with Advanced Off-Grid Solutions

Global Release - The M6200-48L Hybrid Inverter from the M Series is setting a new standard for reliable, scalable, and intelligent off-grid and hybrid power systems worldwide. Designed to thrive in diverse and demanding environments, its robust feature set—including 6.2KW capacity, 12-unit parallel capability, a powerful 120A MPPT, lithium battery compatibility, and generator support—makes it the ideal cornerstone for sustainable energy projects. From remote villages to industrial sites, this inverter is delivering unwavering power, reducing costs, and empowering communities.

Global Implementation Case Studies
Asia: Engineering Resilience for Growing Economies
India (Rajasthan) - Agricultural Solar Pumping
  • Purpose: To provide reliable, daytime irrigation power for a cooperative farm, overcoming grid unreliability and high diesel costs
  • Effect: Ensured continuous water supply, increased crop yield by 30%, and eliminated diesel fuel expenses
  • Installation: 8 units (49.6KW total), installed on a dedicated solar canopy near the well fields
  • Advice: The high 500VDC PV input and 120A charge current maximize energy harvest during peak sun. The detachable dust cover is crucial for the sandy, arid environment. Use in "Solar First" (SOL) priority mode
Philippines (Palawan Island) - Island Community Microgrid
  • Purpose: To establish a primary power source for a remote fishing village lacking grid infrastructure
  • Effect: Provided 24/7 electricity for homes, a school, and an ice-making facility, boosting local economy and quality of life
  • Installation: 4 units in parallel (24.8KW), central installation with distributed battery banks
  • Advice: The "No Battery Mode" allows critical loads to run directly from PV/utility when batteries are full or under maintenance. High humidity resistance is key. Parallel capability allows for easy future community expansion
Vietnam (Central Highlands) - Coffee Processing Plant
  • Purpose: To stabilize power for drying and processing machinery, mitigating losses from frequent grid fluctuations
  • Effect: Uninterrupted operation during harvest season, improved product quality, and reduced spoilage
  • Installation: 6 units (37.2KW), integrated with existing grid and a large rooftop PV array
  • Advice: The ultra-fast 10ms transfer time protects sensitive control electronics. SUB (Solar/Utility/Battery) output priority ensures solar is used first, then grid, maximizing savings
Indonesia (East Nusa Tenggara) - Telecommunication Tower
  • Purpose: To ensure 99.9% uptime for a remote telecom repeater station, replacing failing lead-acid systems
  • Effect: Drastically reduced diesel generator runtime, lowered maintenance costs, and ensured continuous network coverage
  • Installation: 2 units (12.4KW) with LiFePO4 batteries, housed in a secure outdoor cabinet
  • Advice: Built-in RS485 for seamless lithium battery communication (BMS) optimizes lifecycle. Wide AC input range (90-280VAC) handles poor-quality generator power gracefully
Mongolia (Gobi Region) - Desert Research Station
  • Purpose: To provide autonomous power for a scientific outpost studying climate change, far from any utility lines
  • Effect: Enabled year-round operation of sensitive monitoring equipment and living quarters in extreme conditions
  • Installation: 3 units (18.6KW) combined with wind turbines (via AC input), installed in a temperature-controlled shelter
  • Advice: The extended operating temperature range (-10°C to 50°C) is vital. The EQ function helps maintain battery health in cold climates, extending system lifespan
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