HJT cells

HJT cells

Specifications

≥26%

Eff:

120μm ± 15μm

Thickness:

210×105mm

Dimension:

Highlights

Adopting step-by-step printing technology, which greatly improves the front-side efficiency and main grid tensile force of the battery.

Adopting step-by-step printing technology, which greatly improves the front-side efficiency and main grid tensile force of the battery.

The unique double-sided light-receiving structure and half-piece design effectively increase the power generation of the module.

The unique double-sided light-receiving structure and half-piece design effectively increase the power generation of the module.

The unique front and back electrode pattern design improves the mechanical load of the module and reduces the fragmentation rate in the module production.

The unique front and back electrode pattern design improves the mechanical load of the module and reduces the fragmentation rate in the module production.

Excellent anti-PID performance ensures the stability of the module power generation.

Excellent anti-PID performance ensures the stability of the module power generation.

Low encapsulation loss: more suitable for high-efficiency modules.

Low encapsulation loss: more suitable for high-efficiency modules.

Strong weak light response: the relative conversion efficiency is ≥97% at 200 W/㎡.

Strong weak light response: the relative conversion efficiency is ≥97% at 200 W/㎡.

Parameters

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