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Vacuum Evaporation Equipment

Classification:

This equipment is ideal for electrode evaporation in laboratory settings, sample preparation for scanning electron microscopy, as well as research in OLED and solar cells.


Details Introduction


This PD-400 vacuum evaporation equipment is ideal for electrode evaporation in laboratory settings, sample preparation for scanning electron microscopy, as well as research in OLED and solar cells.

1.Excellent thickness uniformity (±3%~±5%) and repeatability (±3%~±5%)

2.Specialized vacuum evaporation power supply with constant current output, featuring one-touch automatic start/stop control.

3.Dedicated stainless steel vacuum chamber with molecular pump + rotary vane pump system.

Parameter


Chamber Dimensions(304 stainless steel)

50x350x450mm(L x W x Hmm)
Ultimate Vacuum ≤5.0×10⁻⁵ Pa
Pumping Speed From atmosphere to 8×10⁻⁴ Pa≤30 min
Substrate Holder 120mm × 120mm
Evaporation Sources  Standard configuration supports 4-6 evaporation sources

Description

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Production Strength

300MW Automatic Solar Panel Production Line from India Factory
Groundbreaking Ceremony for the 200MW Solar Panel Production Line
Case Sharing: Switzerland CTM-15BC String Welding Machine
100MW Solar Module Production Line Project in Dongguan
6PPM Lithium Battery Pack Production Line
Huichuang Technology Production Line Project

Can This Laminator Adapt to Your Existing Production Line and Different PV Module Types?

The solar panel laminator offers strong compatibility – it handles conventional, glass‑glass, flexible, high‑efficiency, and shingled modules. We provide multiple configurations (single/double‑layer, dual/triple‑chamber) and flexible platen sizes to match your space and capacity. Its automated material handling seamlessly integrates with upstream/downstream equipment, supporting continuous high‑throughput production with ≥99% uptime to meet your output goals.

How Does the Solar Panel Laminator Ensure Module Quality and Prevent Bubbles or Cell Breakage?

The solar panel laminator uses a triple‑chamber design (preheating + lamination + curing) with independent temperature and pressure control for each stage, precisely matching the EVA cross‑linking process. Combined with a high‑accuracy vacuum system, this effectively eliminates bubbles. The fully automated infeed/outfeed reduces manual handling errors, significantly lowering breakage rates and ensuring high yield and long‑term module reliability.

What Defects Are Common In Perovskite Module Manufacturing?

Common defects include pinholes, uneven crystallization, interlayer delamination, and edge sealing leakage. These issues are mainly caused by process instability and environmental exposure, and are reduced through controlled coating systems, vacuum environments, and precise edge sealing processes.

What Are The Main Challenges In Perovskite Module Production Lines?

Key challenges include film uniformity control, moisture sensitivity, and large-area coating consistency. Small process variations can affect crystallization quality and module efficiency, making precise process control and environmental stability essential for mass production.

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