Jinko 475W Tiger Neo N-Type (JKM475N-60HL4-V)
The Jinko Tiger Neo N-type 60HL4-(V) 475W is the latest in premium panels, offering excellent next-gen features and technology, including:
- N-Type technology allows for greater efficiency, lower degradation, and longer lasting panels
- SMBB Technology : Better light trapping and current collection to improve module power output and reliability.
- 22.01% Module Efficiency – Extra wattage in a compact form with dimensions 1903×1134×30mm (74.92×44.65×1.18 inch)
- 0.29% Temperature Co-efficient – Improved performance in higher temperatures
- PID Resistance : Excellent Anti-PID performance guarantee via optimized mass-production process and materials control
- Hot 2.0 Technology : The N-type module with Hot 2.0 technology has better reliability and lower LID/LETID.
- Enhanced Mechanical Load : Certified to withstand: wind load (2400 Pascal) and snow load (5400 Pascal).
- Low Degradation, with an annual degradation rate of only 0.4% over 30 years after the first year
- Durability Against Extreme Environmental Conditions : High salt mist and ammonia resistance
Original: $106.84
-65%$106.84
$37.39
Description
The Jinko Tiger Neo N-type 60HL4-(V) 475W is the latest in premium panels, offering excellent next-gen features and technology, including:
- N-Type technology allows for greater efficiency, lower degradation, and longer lasting panels
- SMBB Technology : Better light trapping and current collection to improve module power output and reliability.
- 22.01% Module Efficiency – Extra wattage in a compact form with dimensions 1903×1134×30mm (74.92×44.65×1.18 inch)
- 0.29% Temperature Co-efficient – Improved performance in higher temperatures
- PID Resistance : Excellent Anti-PID performance guarantee via optimized mass-production process and materials control
- Hot 2.0 Technology : The N-type module with Hot 2.0 technology has better reliability and lower LID/LETID.
- Enhanced Mechanical Load : Certified to withstand: wind load (2400 Pascal) and snow load (5400 Pascal).
- Low Degradation, with an annual degradation rate of only 0.4% over 30 years after the first year
- Durability Against Extreme Environmental Conditions : High salt mist and ammonia resistance








