HomeProductsSolar PanelsHJT Solar panels485W Solar Panel HJT Bifacial Double-Glass 24.00% Efficiency for Home

485W Solar Panel HJT Bifacial Double-Glass 24.00% Efficiency for Home

  •  - The UE485H-48HBD is a next-gen HJT bifacial solar panel with up to 485W output and record-high 24.00% efficiency, engineered for ultra-reliable energy yield and aesthetics. Featuring a rectangle cell design, dual-glass architecture, and up to 90% bifaciality, this module is a top-tier choice for residential rooftops and premium C&I systems.

  • ⚡ 485W Output & 24% Efficiency: Deliver maximum energy with ultra-high conversion rates - 
  • 🔄 Up to 90% Bifaciality: Enhanced rear-side energy capture for higher total output - 
  • 🛡️ Durable Dual-Glass Build: Withstands 5400Pa snow & 2400Pa wind - 
  • 🖤 Black-Frame Elegance: Sleek all-black module ideal for modern residential rooftops - 
  • 📦 Lightweight & Compact: At just 21.6kg, easy to transport and install - 
  • ⏳ 30-Year Power Warranty: Reliable long-term value with minimal performance loss - 
485 watt solar panel
High-efficiency 485W HJT bifacial solar panel with dual-glass design and 24.00% module efficiency. Bifacial up to 90%, IP68 protection, rectangle-cell structure.
The size of 485 watt solar panel is 3011341762
UE is packing the components for export and loading them into containers
UE's solar panel production plant
UE's solar panels are installed in the United States, Belgium, Germany, Australia and other countries
485 watt solar panel
High-efficiency 485W HJT bifacial solar panel with dual-glass design and 24.00% module efficiency. Bifacial up to 90%, IP68 protection, rectangle-cell structure.
The size of 485 watt solar panel is 3011341762
UE is packing the components for export and loading them into containers
UE's solar panel production plant
UE's solar panels are installed in the United States, Belgium, Germany, Australia and other countries

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Product Description

The United Energy UE485H-48HBD is a premium rectangle-cell HJT bifacial solar panel, offering cutting-edge performance, durability, and beauty. Featuring 96 HJT mono half-cells, this panel combines thin-film and crystalline silicon for superior energy generation—even in low-light or high-temperature conditions.

With up to 90% bifaciality, the panel harvests rear-side sunlight for a significant power boost. Its dual-glass structure and IP68-rated junction box provide industrial-grade protection against moisture, heat, and mechanical loads, making it ideal for rooftops, carports, and ground-mount installations.

Perfect for high-end solar applications where performance and appearance both matter, the UE485H-48HBD is backed by 30 years of linear power warranty and is certified under global safety and quality standards.

Technical Specifications

SpecificationUE485H-48HBD
Power Output (Pmax)465W ~ 485W
Max Efficiency24.00%
Cell TechnologyHJT Mono, Rectangle Half-Cell
Number of Cells96 (6×16)
Dimensions (mm)1762 × 1134 × 30
Weight21.6 kg
BifacialityUp to 90%
Front / Rear Load5400Pa / 2400Pa
GlassDouble Glass (2.0mm / 1.6mm)
FrameBlack Anodized Aluminum
Junction BoxIP68, 3 Bypass Diodes
ConnectorMC4 Original / Compatible
Cable4mm², 300mm (customizable)
Max System Voltage1500V DC
Power Tolerance0 ~ +5W
Operating Temp. Range-40°C ~ +85°C
Temp. Coeff (Pmax)Approx. -0.26%/°C
CertificationsIEC61215 / IEC61730 / UL61730 / ISO9001 / ISO14001 / ISO45001 / IEC62941
Warranty15-Year Workmanship / 30-Year Linear Power Warranty

FAQS

Q :

What makes rectangle HJT modules more efficient?

A :

Rectangle cells provide better space utilization and current collection, especially in combination with HJT technology, resulting in higher power density and lower internal resistance.

Q :

Can I use this module for residential rooftops?

A :

Yes! Its compact size, low weight, and black-frame design make it ideal for high-end residential installations that demand both looks and performance.

Q :

What’s the difference between this and traditional PERC modules?

A :

Compared to PERC, HJT panels offer lower degradation, better low-light response, less power loss at high temps, and greater lifetime energy yield.