Products / Aluminum Nitride Ceramics / Femtosecond laser processing of micropores in aluminum nitride ceramics

Femtosecond laser processing of micropores in aluminum nitride ceramics

Aliases:Femtosecond Laser Processing of Micropores in Aluminum Nitride Ceramics: Technology and Applications
Introduction
Explore femtosecond laser processing of micropores in aluminum nitride ceramics. Learn how ultra-fast laser technology enables high-precision microstructures for semiconductor, electronic packaging, and advanced ceramic applications.
Contact Us
Live
Commission
Processing by sample | Processing by drawing | Quote within 3 hours | Samples in 3-10 days
Product Details
Factory Strength
Performance VS
Commission
Femtosecond laser processing of micropores in aluminum nitride ceramics
*Some content and parameters are for reference only. Our company can adjust ceramic performance and customize processing according to customer needs.
Design Features

High-Precision Microhole Machining Capability
Utilizing femtosecond laser ultrashort pulse machining technology, it can achieve micron-level precision hole machining, suitable for microhole structures of 0.15mm and above, meeting the requirements of high-precision functional designs.

Excellent Hole Shape Quality and Roundness
The extremely small heat diffusion range during laser machining effectively reduces problems such as hole wall roughness and hole diameter deviation, achieving excellent hole roundness and consistency.

Low Heat-Affected Zone Machining
Femtosecond laser is a "cold working" technology, which can reduce thermal cracking, edge chipping, and material property changes during aluminum nitride ceramic machining, improving part reliability.

Suitable for High-Performance Ceramic Materials
Traditional machining methods are difficult due to the high hardness and brittleness of aluminum nitride ceramics, while femtosecond lasers can achieve complex microstructure machining.

High Dimensional Precision Control
High machining accuracy can meet the stringent dimensional requirements of precision electronic components, microfluidic structures, and functional ceramic parts.

 

Processing capacity
Processing materials Aluminum nitride ceramics, silicon nitride ceramics, alumina ceramics, etc.
Processing method Femtosecond laser micro-hole processing
Micropore size ≥0.15mm
Machining accuracy ±0.01mm
Hole quality High roundness, low burr
Processing characteristics Non-contact processing, low heat-affected zone
Applicable Products Ceramic substrates, ceramic sheets, precision ceramic parts
Application Areas

Semiconductor manufacturing equipment

Precision ceramic positioning components
Vacuum equipment microporous components
Semiconductor process structural components

Electronic Packaging and Power Devices

Aluminum Nitride Heat Dissipation Substrates
High-Power Module Ceramic Components
Microporous Insulating Structures

Microfluidics and Precision Jetting Systems

Micro-orifice Nozzles
Precision Fluid Control Panels
Microchannel Structures

Optoelectronic and laser equipment

Precision positioning ceramic components
Optical equipment support assemblies
High-stability insulating components

Haikun · Production · Dongguan,China
Haikun · Production · Dongguan,China

Dongguan Haikun New Material Co., Ltd.

A global advanced precision ceramics (special ceramics) manufacturer, focusing on the development, design, production and sales of advanced precision ceramic products, covering zirconium oxide, aluminum oxide, silicon nitride and other materials, which are widely used in aviation, aerospace, military industry, medical and other fields

0+yr
Industry Experience
0+
Technical Team
0+
Clients
0
Manufacturing Bases
Precision Ceramic Production Strength CertificatePrecision Ceramics processing factory workshop displayPrecision Ceramics workshop display at three major processing factories

Comparison of ceramic material properties

Not sure which ceramic material is right for your application?
Use our interactive ceramic material comparison chart to compare ceramic materials across different material properties.


Click the Property Button above to view the corresponding property comparison of precision ceramic materials
*The values ​​in the table are typical material properties

Precision ceramic product customization process

 

Step 1
Contact us

Step 2
Technology Assessment

Step 3
Confirm the quotation

Step 4
Signing the contract

Step 5
Inspection and delivery

Step 6
Confirm Receipt