TITAN Microinverter 2250W-3000W
For more demanding environments, TSUN TITAN Microinverter supports up to six high power panels at once, with the maximum output power up to 3000W. The inverter is mounted directly near the solar module in the shade and is only responsible for the connected modules. This microinverter is therefore perfect for small systems and module areas with partial shading.
MP3000-Microinverter
Highlights
  • Individual optimization, separate
    dedicated MPPT for each panel
  • Unqiue topology design,
    Peak efficiency up to 97.1%
  • Guaranteed quality with standard
    12 years warranty
  • Plug and Play installation,
    Easy to install
  • Casting design and glue filling technology,
    Better thermal disspation
Product Introduction

Have a look at the latest video of  TITAN Microinverter:

               

          Maximum Peak Output to 3000W

   

          Up to 6 High Power Solar Panels 

   

          18.5A Maximum Input Current 

   

          Compatible with 182/210 Solar Module 

   

          Efficiency Up to 97.1% 

   

          IP67 Waterproof Design 

   

          Built-in Wi-Fi or 4G 

   

          Module-level Real-time Monitoring

     

    

Technical Data

   

TSOL-MP2250 TSOL-MP3000 TSOL-MS3000
Recommended Module Power [W] 300-700+ 300-700+ 300-600+
MPPT Voltage Range [V] 18-60 18-60 18-60
Max. Input Voltage [V] 60 60 60
Max. Input Current [A] 18.5 18.5 15
Max. Input Short-circuit Current[A] 20 20 20
Nominal Continous Output Power [W] 2250 3000 3000
Dimensions [WxHxD mm] 353 * 294 * 60
Weight [kg] 6.4 7.2

6.8

       

   

Features and Benefits

    

High Efficiency
High Safety
High Usability
High Reliability

   

Higher output power, up to 3000W

  
Higher input DC current, up to 
18.5A, compatible with 182/210 
solar module

   
Individual power conversion, up to 
6 MPPTs, fit for complicated roof 
installation

   
Unique topology design, Max. 
efficiency up to 97.2%

    
Low DC input voltage, no risk for 
DC Arc
   
Comply with the requirements of
rapid shutdown

   

Plug & Play design, fast installation
and wiring
   
Intergated with TSUN independent
developed communication module,
no extra monitor device needed
   
"One-button" networking
configuration with multiple micro
inverters at the same time, unique
monitoring solution for
microinverter

    

IP67 design, high level of
dustproof and waterproof,
suitable for outdoor
   
Unique radiating fin design, good
heat dissipation, longer life time
   
Standard 12 years warranty
including the communication
module

   

     

Diagram
    
microinverter-Diagram microinverters-Diagram

   

    

FAQ

   

Q: How does the TITAN Microinverter 2250W-3000W cope with different lighting environments in actual use?

   

    A: The TITAN microinverter is equipped with industry-leading multi-point tracking MPPT technology, which can accurately capture and adjust the power output of each solar panel, especially in low light or partial shadows in the morning and evening, and still maintain high efficiency. This means that the system can continue to provide stable power output and maximize energy collection in changeable weather and complex installation conditions.

   
Q: How does the TITAN Microinverter 2250W-3000W perform in high-power applications?

   

    A: For high-power components, the TITAN microinverter has excellent power handling capabilities and supports up to 3000W output per solar panel. Its built-in intelligent power management system can balance the input power and ensure no performance loss at high power output through efficient energy conversion. In addition, the inverter's power electronics design optimizes heat dissipation management to avoid overheating and performance degradation caused by high-power operation.

   
Q: How does TITAN Microinverter 2250W-3000W ensure long-term reliable operation?

   

    A: TITAN microinverter uses industrial-grade components and strict quality control to ensure its reliability in long-term operation. The inverter has a multi-level protection mechanism, including overvoltage, overcurrent, overtemperature protection, and an active cooling system, which can cope with continuous high-load operation in extreme environments. In addition, its internal circuit design has been optimized to reduce power loss, extend the service life of the equipment, and reduce maintenance frequency and cost.

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