UTL 100W / 12V TOPCon Solar Panel | 30 Cells

Experience next-generation efficiency with the UTL TOPCon 100W Solar Panel. Engineered with advanced TOPCon-16BB cell technology, this panel is designed to provide superior power output and long-term reliability for your 12V solar systems.

Key Features & Construction

Built to withstand harsh environments while maintaining peak performance, the UTL 100W panel features premium materials:

Technical Specifications

Parameter Details
Nominal Power (Pm) 100W $\pm$ 2%
Module Efficiency 17.12%
Open Circuit Voltage (Voc) 19.60V
Short Circuit Current (Isc) 6.79A
Voltage at Max Power (Vmp) 15.68V
Current at Max Power (Imp) 6.38A
Maximum System Voltage 600V
Solar Cells per Module 30 Units

Physical Dimensions

  •  Dimensions (L x W x T): $1134 \times 515 \times 35$ mm
  •  Weight: Approx. 7.20 KG
  •  Mounting Hole Pitch (X): 1092 mm
  •  Mounting Hole Pitch (Y): 257 mm

Reliable Long-Term Warranty

Invest with confidence knowing your energy production is protected for decades:
  • First Year: Power degradation limited to 1%.
  • Years 2 to 27: Ultra-low degradation rate of only 0.4% per year, ensuring your panel remains productive for the long haul.

Temperature Coefficients

Designed to perform even in high-heat conditions:
  • Power: -0.47% / °C
  • Voltage: -0.35% / °C
  • Current: 0.10% / °C
  • NOCT: $47 \pm 2$ °C
Advanced 16 busbar solar panel design improving current flow and delivering higher power output

Popular Products

FAQs

1. Can I use this 100W TOPCon panel with a standard PWM controller?
While a PWM controller will work, it is not recommended for TOPCon modules. To capture the full efficiency of the 16BB (busbar) technology, an MPPT (Maximum Power Point Tracking) charge controller is ideal. An MPPT controller can convert the extra voltage into charging current, increasing your energy yield by up to 20-30% compared to PWM.
Mixing different cell technologies (like TOPCon and Poly) in the same string is generally discouraged. Because TOPCon panels have different voltage ($\text{Vmp}$) and current ($\text{Imp}$) characteristics, wiring them together can cause the stronger panel to be “bottlenecked” by the weaker one. If you must mix them, ensure they are on separate charge controllers.
The 16BB design reduces the distance electricity has to travel across the cell surface. This lowers internal resistance and reduces the risk of micro-cracks affecting performance. If one small area of the cell is shaded or damaged, the other 15 busbars provide alternative paths for the current to flow, ensuring more stable power output.
Shopping Cart
Scroll to Top