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Runergy 585W 144 Half-Cell Mono Tier 1 Bifacial Solar Panel

Runergy 585W 144 Half-Cell Mono Tier 1 Bifacial Solar Panel

SKU:HY-DH144N8-585

LOADING DOCK OR FORKLIFT REQUIRED FOR RECEIVING

Regular price $197.73 USD
Regular price Sale price $197.73 USD
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Minimum Quantity: 31 modules

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The Runergy HY-DH144N8 Plus Series 570–595W module is a high-efficiency, N-Type bifacial dual-glass solar panel engineered for maximum energy yield, long-term reliability, and superior degradation performance. Designed for commercial, industrial, utility, carport, agricultural, and high-output residential applications, this 144 half-cell module delivers up to 22.6% module efficiency while operating on 1500V DC systems for reduced BOS costs and optimized string design flexibility.

Built with advanced 182mm N-Type mono cells and a bifacial glass-glass architecture, the Runergy 585W panel is ideal for installers seeking higher kWh production per square foot and improved long-term system economics.

LOADING DOCK OR FORKLIFT REQUIRED FOR RECEIVING

High-Efficiency N-Type Cell Technology

Unlike traditional P-Type modules, N-Type technology provides:

  • Immunity to Light Induced Degradation (LID)
  • Resistance to LeTID (Light & Elevated Temperature Induced Degradation)
  • Lower annual degradation rates
  • Improved weak-light performance
  • Superior temperature behavior
  • Higher long-term energy retention

With module efficiencies reaching 22.6%, this panel maximizes DC output while maintaining stable performance across varying irradiance and temperature conditions.

Temperature coefficients:

  • Pmax: -0.29%/°C
  • Voc: -0.25%/°C
  • Isc: 0.045%/°C

This makes the module particularly well suited for hot climates and large-scale rooftop deployments.

Bifacial Dual-Glass Construction

The Runergy 585W module utilizes a dual-glass design featuring:

  • 2.0mm AR-coated heat-strengthened front glass
  • 2.0mm heat-strengthened rear glass
  • 80% ±5% bifaciality

This allows the module to capture reflected irradiance from the rear side, increasing total energy yield in:

  • White TPO or reflective commercial rooftops
  • Ground-mount systems with high albedo
  • Solar carports and canopy structures
  • Agricultural and elevated installations

Bifacial gains of 5–25% can significantly improve system performance and lower LCOE depending on site conditions.

Electrical Specifications (585W Model – STC)

  • Maximum Power (Pmax): 585W
  • Module Efficiency: 22.6%
  • Vmp: ~44.22V
  • Imp: ~13.23A
  • Voc: ~52.16V
  • Isc: ~13.85A
  • Power Tolerance: 0 ~ +5W

Operating parameters:

  • Max System Voltage: 1500V DC (IEC/UL)
  • Max Fuse Rating: 30A
  • Operating Temperature: -40°F to +185°F
  • Front Load: 5400Pa (112 lb/ft²)
  • Rear Load: 2400Pa (50 lb/ft²)
  • Fire Rating: IEC Class A / UL Type 29

These ratings make the module suitable for high snow-load regions and demanding environmental conditions.

Mechanical Specifications

  • Cell Format: 144 Half-Cell (6 × 24)
  • Cell Type: Mono N-Type 182mm
  • Dimensions: 89.69 × 44.65 × 1.38 in
  • Weight: 72.09 lbs
  • Frame: Silver anodized aluminum
  • Junction Box: IP68 rated, 3 bypass diodes
  • Connector: RY01 or compatible
  • Cable: 12 AWG (UL), 4mm² (IEC)

Container loading:

  • 31 modules per pallet
  • 558 modules per 40' HQ container (US)

Degradation & Warranty Performance

  • <1% first-year degradation
  • <0.4% annual degradation thereafter
  • 12-year product warranty
  • 30-year linear power warranty
  • 87.4% power output at Year 30

This performance profile provides strong bankability and predictable long-term energy modeling for commercial and utility investors.

Ideal Applications

The Runergy 585W bifacial solar panel is optimized for:

  • Commercial and industrial rooftops
  • Utility-scale ground mounts
  • Solar carports and canopy structures
  • Agricultural solar
  • High-efficiency residential systems

Its combination of N-Type technology, bifacial gain, low degradation, and 1500V system compatibility makes it a strong choice for installers focused on maximizing energy density and long-term system performance.