Jinko Solar-Anti‑Dust Module

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Jinko Solar

Anti‑Dust Module

01.Dust Accumulation Pain Point – Power Generation Loss

How does dust directly affect power generation?

Reduced Light Transmittance – Incident Light Blocked

Dust covers the module glass surface and directly blocks sunlight; effective irradiance drops, and module output power decreases continuously with dust accumulation.

Temperature Rise & Hot Spots – Power Generation Turned into Loss

Local overheating or hot spots reduce overall efficiency and accelerate module performance degradation.

Surface Degradation – Amplified Optical Loss

Increased diffuse reflection prevents some light from entering cells effectively, causing extra optical loss.

02.Dust Accumulation Pain Point – Safety Risks

Hot spots are a critical defect in PV modules;
they cause sharp local temperature rise, material damage, and fire risks.

Cells in hot‑spot areas stop generating power and act as a “load”,
consuming electricity from other cells and reducing total output by 10%–30%.

VS
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03.Dust Accumulation Pain Point – High O&M Cost

Disadvantages of Current Cleaning Methods

High cost, poor cleaning effect, frequent cleaning, easy to have glass scratching, etc.

There is an urgent need for a solution that reduces cleaning frequency, keeps surfaces clean,
improves long‑term power output, and delivers low cost & high return.

Mechanical Cleaning

Manual Cleaning

Robotic Vehicle Cleaning

Anti‑Dust Self‑Cleaning Modules

Development Platform

Tiger Neo 3.0 / Flying Tiger 3

Model

66QL6-BDV-L(Anti‑Dust Self‑Cleaning)

Power Range

650-670 W

Electrical Specifications

Dimensions:
2382*1134*30 mm
Weight:
32.5kg

Bifacial Rate:
85±5%
Temperature Coefficient:
-0.26%

Warranty

30‑year power warranty;12‑year product warranty
Integrated Solution 1 – Dust‑Resistant Frame (2% Gain)

Dust‑Resistant Frame

  • Special frame design: short side parallel to glass surface,
  • less dust buildup, easier cleaning & maintenance.

Conventional Frame

  • Long &Short sides both have A-surface design,Obstructs the sliding of dust and snow,
  • leading to dust accumulation in the long term
Integrated Solution 2 – Self‑Cleaning Glass (4% Gain)
Super Hydrophilic + Anti‑Static + Photocatalytic + Nano‑Coating Technology
Micro‑Nano Structure

Principle: Nano‑scale rough structure reduces contact area between dust and glass, weakening molecular adhesion.

Effect: Reduces physical dust adhesion

Anti‑Static

Principle: Standard glass builds static electricity and attracts charged dust; conductive additives discharge static instantly.

Effect: Suppresses static; charged dust does not adhere easily.

Super Hydrophilic

Principle: Super hydrophilic coating spreads water into a uniform film instead of droplets.

Effect: A small amount of rain or dew are enough to create a cleaning water film.

Photocatalytic

Principle: Special coating activates photocatalytic reaction under sunlight.

Effect: Decomposes organic contaminants in dust.

Performance Advantages vs. Traditional Coatings
Multi‑dimensional comparison shows clear advantages of self‑cleaning coatings.
Traditional AR Coating Self‑Cleaning Coating
Self‑Cleaning Function Not Available Available
Anti‑Static Ability Not Available Available
Durability Average hardness, wear resistance, and durability Excellent hardness, wear resistance, and durability
Maintenance Cost Requires frequent cleaning No frequent cleaning needed
Environmental Adaptability More vulnerable to environmental factors Adapts to various environments; resists sandstorms
Light Transmittance Transmittance >94% Transmittance >94% (slightly lower than traditional coating)
Field Test Case
At JinkoSolar’s Haining Yuanhua test site,
anti-dust modules achieved 2.4% higher
average power output and up to 5% peak gain vs. standard modules.
Test Item Standard Test Conditions Internal Test Results
Self‑Cleaning Test – Glass Monitor attenuation rate before & after test
Self‑Cleaning Test – Module Monitor module attenuation before & after test
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