• Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
  • Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
Cadmium telluride photovoltaic glass
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Cadmium telluride photovoltaic glass

Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.
Product Details

Product Description

Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the building's aesthetics. It can be customized for use in building curtain walls, windows, roofs, and other areas, perfectly integrating with the architecture.

 

 

 

Higher safety performance

Low current and high voltage, more stable performance

 

Stronger architectural integration

Customizable appearance to meet different architectural pattern needs

 

Better light transmittance performance

Uses microscopic etching for uniform light transmission

 

Stronger high-temperature resistance

Temperature coefficient of -0.29%/℃, resulting in higher power generation in summer

 

Stronger resistance to shading

Limited power impact from small-area shading

 

Stronger weak-light power generation

Wide spectral response range, longer power generation time

 

Stronger anti-degradation capability

Only 12% degradation over 27 years

 

Better convenience

Frameless double-glass structure with self-cleaning effect

 

 

High safety

  • Strength greater than stone; tempered glass strength meets building requirements
  • Lifespan exceeds building lifecycle under normal use conditions
  • Can withstand various harsh environmental tests
  • Unaffected by hot spot effects, reducing fire risk, safe and reliable

More aesthetically pleasing

  • Designed entirely according to building material requirements, made specifically for architecture
  • Achieves adjustable light transmittance with customizable colors, patterns, and shapes
  • Can be perfectly matched with glass, stone, and aluminum panels

High power generation

  • High conversion efficiency, good weak-light performance, low temperature coefficient, low degradation rate, minimal shading loss, low tilt angle dependence
  • Compared to traditional solar products, higher power output, better returns, and simpler maintenance

More economical

  • Pollution-free throughout the entire production cycle
  • Significantly reduced energy consumption compared to traditional crystalline silicon
  • Lowest carbon emissions among similar products

 

 

Our advantages

 

  • Heat insulation in summer, thermal retention in winter

Built-in shading reduces indoor temperature by 5℃-10℃ compared to ordinary sunrooms in summer.

  • Varied colors, beautiful and fashionable

Customizable colored PVB solutions with multiple color options.

  • Uniform light transmission, wide field of view

Chip light transmittance selectable from 10%-50%, uniform light without mottled shadows.

  • Continuous power generation, long-term benefits

Power generation for self-use and surplus electricity fed into the grid, providing long-term stable returns.

  • Extended after-sales service for peace of mind

Power-generating glass can be used for 25 years, ensuring customer confidence.

 

 

Product Parameters

Electrical parameters
Model JN-B5 JN-B6 JN-B8

Nominal power

Pmpp/W 110 110 110
Power tolerance /

±5%

±5%

±5%

Short circuit current Isc/A 1.19 1.19 1.15
Open circuit voltage Voc/V 122.8 122.8 122.8
Current at max power Impp/A 1.10

1.10

1.07
Voltage at max power Vmpp/V 101.0 101.0 100.7

STC: 1000W/m², AM2.5, 25℃

 

Mechanical Specification
Model JN-B5 JN-B6 JN-B8
Size 1200×600×16.2mm 1200×600×18.2mm 1200×600×22.2mm
Weight 29Kg

33Kg

40Kg

Area

0.72m2 0.72m2 0.72m2
Structure 5mm+3.2mm+5mm 6mm+3.2mm+6mm 8mm+3.2mm+8mm
Junction Box Side, cable 2.5mm²,650±10mm

Connectors

MC4

 

Operation Conditions
Maximum system voltage DC1000V(IEC) Protection Level IP67
Maximum reverse current 6A Burning class A2
Snow load

6000Pa(IEC)

Temperature Coefficient (Pmpp) -0.29%/℃
Wind load 6000Pa(IEC) Temperature Coefficient (Voc) -0.28%/℃
Temperature Range -40℃~85℃ Temperature Coefficient (Isc) +0.04%/℃  
NMOT 42±2℃   Anti-hail rating      IV
A safety factor of 1.5 has been considered during the test

 

Keywords:

Cadmium telluride photovoltaic glass

Crystalline Silicon Power Generation Glass

Best-selling Products

Cadmium telluride photovoltaic glass

Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.

Crystalline Silicon Power Generation Glass

(GB55015) Photovoltaic modules should last more than 25 years. The glass of double-glass modules has high wear resistance, and the insulation of the glass is superior to that of backsheet modules, which can fully meet higher electrical system voltages. The performance is 21% higher than ordinary modules, superior to photovoltaic power station materials. Warranty period: Complies with building codes and photovoltaic power station requirements. Mechanical safety performance: Shot and ball drop tests comply with GB15763.3-2009 "Safety Laminated Glass for Buildings". Physical performance: Wind resistance, bending resistance, and simulated rain tests comply with GB/T36584-2018 "Test Methods for Roof Tiles".

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