Middle of its segment, short guarantee
The Panasonic HIT® module series, encompassing models from N325 to N340, redefines efficiency standards through the use of advanced heterojunction technology (HJT). The unique design, combining monocrystalline silicon wafers with ultra-thin amorphous layers, allows for the effective minimization of energy losses at cell boundaries. This solution directly translates into an exceptionally low temperature coefficient, ensuring that the panels maintain high efficiency even on hot summer days when traditional silicon modules lose power drastically. These models stand out with their compact format while maintaining high power density, which is crucial for homeowners with limited roof space. The integrated water drainage system in the frame corners prevents the accumulation of dirt and deposits, guaranteeing maximum energy yields throughout the year, even at a low tilt angle. By choosing the HIT® series, investors receive a product of legendary reliability that almost completely eliminates the problem of light-induced degradation (LID). This is an ideal solution for those seeking reliability and the highest aesthetics, offering a significantly higher yield per square meter than standard competing products. These panels are an optimal choice for demanding prosumer installations where the priority is the highest quality of workmanship and long-term profitability of investment in renewable energy sources.
Ranking
Signals from the data
Residential and hot-climate.
Owners who want a long output guarantee, roofs where every square metre has to count and tight roof space.
Bottom 19% of the HJT 235-435 W segment, against a median of 30 yrs.
Bottom 22% of the HJT 235-435 W segment, against a median of 209.3.
Bottom 23% of the HJT 235-435 W segment, against a median of 20.90%.
The power temperature coefficient of -0.258%/°C (N340 variant) is among the lowest in the market versus typical -0.35% to -0.40%/°C for PERC modules. This translates into real higher energy yield on hot summer days once module temperature exceeds 25°C.
Efficiency up to 20.4% exceeds direct peers at the same 340 Wp maximum power class: Bruk-Bet NIVO EXTREME (20.32%), Resun RS6K-M (20.15%), and MWG Mono (20.12%).
The heterojunction design, combining mono-crystalline wafers with ultra-thin amorphous silicon layers, limits cell-boundary losses and light-induced degradation (LID), delivering a more stable yield in the early years of operation.
The frame design prevents water and debris buildup in the corners, reducing soiling and maintaining high output even at low tilt angles.
Panasonic (Japan, founded 1918) was long regarded as a quality leader in the HJT module segment, which translated into a low failure rate for the HIT® series in residential PV installations.
Panasonic exited in-house PV module manufacturing in March 2022, replacing the HIT® line with EverVolt panels made by third-party OEMs. This means limited spare-part availability and more difficult warranty service for existing installations.
The 325-340 Wp power range is significantly below current market standards (400-600+ Wp), requiring more modules, mounting structure, and cabling for the same system power, increasing BoS costs.
Current N-type (e.g., TOPCon) leaders already offer 30-year product and power warranties guaranteeing over 87.4% output at end of term, while the HIT® series remains at the 25/25-year standard set back in 2016.
- Efficiency of 20.0% is 0.6pp below the HJT 0-400W median (20.6%)
- Power density of 200.1 W/m² is 6.3 W/m² below HJT 0-400W median (206.4 W/m²) - needs more roof space
- At -0.26%/°C, hot weather performance is typical for HJT 0-400W panels
- 19.0 kg weight - 2.5 kg lighter than HJT 0-400W median (21.5 kg), reducing installation effort
- In the top 87% for efficiency among all HJT panels
Specifications
Simulations
Degradation from this panel's own datasheet figures. No inverter, soiling or shading losses.
Found 8 panels of the same or similar size to this one, within ±10 mm. See them here Found 8 panels of the same or similar size to this one, within ±25 mm. See them here Found 8 panels of the same or similar size to this one, within ±50 mm. See them here Found 430 panels of the same or similar size to this one, within ±100 mm. See them here