PRODUCT

NI PELLET

High purity nickel pellets designed for vacuum evaporation deposition processes. Nickel evaporation materials provide controlled vaporization and stable thin film formation in vacuum coating systems.

PRODUCT OVERVIEW

Nickel pellets are commonly used as evaporation materials in vacuum deposition equipment where durable metal films are required. When heated in evaporation systems, nickel pellets vaporize and condense onto substrate surfaces, forming uniform metallic coatings.

Nickel thin films are often used in electronic components, protective coatings and functional thin film technologies. High purity nickel material supports stable evaporation behavior and consistent coating performance during deposition.

SPECIFICATIONS

Purity: 3N5


Form: Pellet


Dimensions: รธ3ร—3 mm, รธ6ร—6 mm


Composition: Nickel (Ni)


Application: Deposition material used in evaporation equipment

APPLICATIONS

Nickel pellets are used in vacuum evaporation systems for depositing metal thin films onto substrates. These coatings are commonly applied in electronic devices, magnetic materials and various thin film technologies.

Nickel evaporation materials support controlled film growth and reliable deposition behavior in research laboratories, pilot coating systems and industrial thin film production environments.

CUSTOMIZATION OPTIONS

Nickel pellets can be supplied in different pellet sizes depending on the evaporation system and deposition requirements. Pellet dimensions and material specifications may be adapted to match specific vacuum deposition equipment.

Customization options may include variations in pellet geometry or purity level to optimize evaporation efficiency and coating performance.

TECHNICAL FEATURES

Nickel pellets provide stable evaporation behavior and predictable vaporization during vacuum deposition processes. High purity nickel supports consistent thin film formation and helps reduce contamination during coating operations.

The pellet geometry allows controlled evaporation rates and efficient material utilization, contributing to uniform metal coatings across substrate surfaces.

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