Middle of its segment, heavy for its output
This Longi Solar Hi-MO X10 Scientist LR8-66HVD 640-665M series is designed for investors seeking maximum energy production from limited roof space and reliable performance in real-world conditions. The application of N-TaiRay cells and HPBC 2.0 architecture enables better light utilization and minimizes typical losses associated with conventional modules featuring visible front grids. The result is not only high efficiency but also more predictable energy generation under variable sunlight conditions.
A practical advantage of this series is A+ Anti-Shading - a solution that supports energy gains when the module is partially shaded by a chimney, tree, or structural elements. Furthermore, the construction is engineered for safety by reducing the risk of hotspots and offering lower susceptibility to micro-cracks.
This is an excellent choice for modern residential installations and premium projects where yield, aesthetics (lack of visible front gridlines), and durability are prioritized over the compromises typical of less expensive solutions.
Ranking
Price offers
| Shop | Country | Price | Per kWp | Stock | Offer updated | Link to shop |
|---|---|---|---|---|---|---|
| eshop.helion.cz | Czechia | 2 941 Kč net | 4 524.62 Kč/kWp | Not stated | 9h ago | Visit shop |
Signals from the data
Residential, commercial, utility-scale, shaded-installations and hot-climate.
Weight-limited structures, tight roof space and roofs where every square metre has to count.
Bottom 9% of the Back Contact 650-700 W segment, against a median of 49.7. Ranked 4,914th in the whole database.
Bottom 9% of the Back Contact 650-700 W segment, against a median of 24.40%. Ranked 268th in the whole database.
Bottom 14% of the Back Contact 650-700 W segment, against a median of 244.3.
Maximum module efficiency of 24.62% matches Sunpro Power SPDG-BC132R12 (24.62%) and Talesun CIPRO-TM9C72M (24.6%), and clearly outperforms Waaree ARKA (21.29%). This is enabled by N-TaiRay cell technology and HPBC 2.0 architecture.
The back-contact architecture eliminates visible front-side gridlines, reducing busbar shading losses and improving module aesthetics - a key advantage for premium projects where visual appearance matters.
This coefficient is roughly 0.03 pp better than typical TOPCon modules, translating into smaller power losses at high panel temperatures and higher real-world summer yield.
A bifaciality factor of around 75% is a notable achievement, since back-contact modules traditionally struggle with efficient rear-side generation - the series won the pv magazine Award 2025 for bifacial back-contact innovation.
The N-TaiRay wafer offers a 16% higher fracture resistance and fewer impurities, which combined with the A+ Anti-Shading feature reduces the risk of microcracks and local hotspots under partial shading.
The product warranty is 15 years, below the 25-year standard now offered by many tier-1 manufacturers for premium n-type modules. The 30-year linear power warranty remains competitive with peers.
The Hi-MO X10 series with HPBC 2.0 architecture launched in 2024, so it lacks the long-term field track record that mature TOPCon and PERC technologies have accumulated over more than a decade.
- At 24.1% efficiency, this panel is on par with typical Back Contact 650-700W modules
- At 240.6 W/m², this panel generates 3.7 W/m² less per unit area than Back Contact 650-700W median (244.3 W/m²)
- Temperature coefficient of -0.26%/°C matches the Back Contact 650-700W median
- Weight of 33.5 kg is typical for Back Contact 650-700W panels
- Bifacial design (75% factor) captures reflected light - adds 4-11% yield on ground-mount or white roof
Specifications
Datasheet charts
Measured curves published by Longi Solar in this model's datasheet. A chart carrying a wattage was measured on that variant alone - only the ones that describe 650 Wp appear here. The rest cover the whole series.
Simulations
Degradation from this panel's own datasheet figures. No inverter, soiling or shading losses.
Model: bifaciality × albedo × 0.6 view factor. A first-order estimate, not a yield simulation.
Found 1119 panels of the same or similar size to this one, within ±10 mm. See them here Found 1125 panels of the same or similar size to this one, within ±25 mm. See them here Found 1236 panels of the same or similar size to this one, within ±50 mm. See them here Found 1917 panels of the same or similar size to this one, within ±100 mm. See them here