Skip to product information
1 of 2

HJT Hyper-ion

HJT Hyper-ion RSM132-8-675-700BHDG Bifacial Heterojunction Module 675-700W

HJT Hyper-ion RSM132-8-675-700BHDG Bifacial Heterojunction Module 675-700W

Regular price $685.00 USD
Regular price Sale price $685.00 USD
Sale Sold out
Quantity

HJT Hyper-ion RSM132-8-675-700BHDG Bifacial Heterojunction Module

Power Output: 675-700W | 210 Cells | HJT Bifacial | 1500VDC | 22.5% Higher Efficiency

Ultra-High Power Generation & Ultra-Low Carbon Emission:

  • 22.5% Higher Efficiency - Industry-leading efficiency with advanced Heterojunction (HJT) technology for maximum energy conversion
  • 675-700Wp Power Output Range - Ultra-high power generation for maximum energy production per panel
  • 132 Cells HJT Bifacial Module - Advanced bifacial design captures light from both front and rear sides for additional energy yield
  • 1500VDC Maximum System Voltage - High voltage capability supports larger solar arrays and longer string configurations

Key Salient Features:

  • Global, Tier 1 Bankable Brand - With independently certified state-of-the-art automated manufacturing for superior quality and reliability
  • N-type Solar Cell Without LID Caused by B-O - N-type heterojunction cells eliminate Light Induced Degradation caused by Boron-Oxygen for superior long-term performance
  • PID Resistance - Excellent Potential Induced Degradation resistance ensures long-term performance stability
  • Better Temperature Coefficient - Superior performance in high-temperature conditions compared to conventional modules
  • Bifacial Technology Enables Additional Energy Harvesting from Rear Side - Captures reflected and diffused light from the ground and surroundings for up to 30% additional energy yield
  • Higher Power Generation - Advanced HJT technology delivers superior energy output compared to conventional PERC modules
  • Module Imp Binning Radically Reduces String Mismatch Losses - Advanced current matching minimizes system losses for maximum efficiency
  • Excellent Wind Load 2400Pa & Snow Load 5400Pa Under Certain Installation Method - Superior mechanical resistance for extreme weather conditions

Comprehensive Product and Management System Certification:

  • IEC61215:2016, IEC61730-1/-2:2016
  • ISO 9001:2015 - Quality Management System
  • ISO 14001:2015 - Environmental Management System
  • ISO 45001:2018 - Occupational Health and Safety Management System

Technical Specifications:

  • Power Range: 675W - 700W
  • Maximum Efficiency: 22.5%
  • Cell Type: 132 Cell HJT (Heterojunction) Bifacial Module
  • Cell Technology: N-type without LID
  • Maximum System Voltage: 1500VDC
  • Module Dimensions: 2384×1303×35mm
  • Wind Load: 2400Pa
  • Snow Load: 5400Pa
  • Bifacial gain: Up to 30%
  • PID resistant
  • Better temperature coefficient

HJT Technology Advantages:

  • N-type cells eliminate B-O induced LID
  • Higher efficiency (22.5%)
  • Better temperature coefficient
  • Bifacial energy harvesting
  • Superior low-light performance
  • Lower degradation rate
  • Longer lifespan
  • Ultra-low carbon emission

Ideal Applications:

  • Utility-scale solar farms
  • Large commercial & industrial installations
  • Ground-mounted bifacial systems
  • High-efficiency solar projects
  • Extreme weather locations
  • Projects requiring maximum power density

Benefits:

  • Ultra-high power output (675-700W)
  • 22.5% higher efficiency with HJT technology
  • Bifacial design for up to 30% additional energy
  • N-type cells without LID
  • Better temperature coefficient
  • PID resistance
  • Reduced string mismatch losses
  • 2400Pa wind / 5400Pa snow load
  • Ultra-low carbon emission
  • Comprehensive ISO certifications
  • Global Tier 1 bankable brand

The HJT Hyper-ion RSM132-8-675-700BHDG Bifacial Heterojunction Module delivers cutting-edge ultra-high power performance with 22.5% efficiency, advanced N-type HJT bifacial technology, 1500VDC system voltage, and comprehensive certifications, perfect for utility-scale and large commercial solar installations seeking maximum energy yield and ultra-low carbon footprint.

View full details