Be practical and pursue excellence

Backed by a professional laboratory and a team led by PhD experts, we focus on breakthroughs in ceramic-metal bonding technology with R&D investment exceeding 50%.

Advanced Ceramic Materials R&D

High R&D investment in advanced ceramic materials like alumina, aluminum nitride, and silicon nitride to deliver high thermal conductivity, electrical insulation, and mechanical strength for power electronics substrates.

Al₂O₃ (alumina)

Thermal conductivity
20-30 W/m·K
Key Features
  • • High insulation
  • • High mechanical strength
  • • Cost-effective
Typical Applications
  • • Power Module
  • • LED heat dissipation
  • • Power Supply Board

AlN (aluminum nitride)

Thermal conductivity
170-230 W/m·K
Key Features
  • • Ultra-high thermal conductivity
  • • low coefficient of thermal expansion
  • • Excellent high-frequency performance
Typical Applications
  • • High-power devices
  • • RF module
  • • Laser Devices

Si₃N₄ (Silicon Nitride)

Thermal conductivity
80-90 W/m·K
Key Features
  • • High-strength, high-toughness
  • • Thermal shock resistance
  • • Excellent reliability
Typical Applications
  • • New Energy Vehicle
  • • Rail Transit
  • • High-Power IGBT

Bonding Process Technology

AMB (Active Metal Brazing) and DBC (Direct Bonded Copper) technologies enable high-strength, high-reliability bonding between ceramics and copper.

AMB (Active Metal Brazing)

Achieve atomic-level bonding between ceramics and copper via reactive metal elements

Process Flow
Ceramic → Metallization → Brazing → Etching → Inspection
Technical Advantages
  • Bond strength > 45 MPa
  • 3x improvement in thermal cycling life
  • For SiC/GaN High-Temperature Applications

DBC (Direct Bonded Copper)

Form a eutectic bonding layer between copper and ceramic at high temperatures.

Process Flow
Ceramic Cleaning → Copper Foil Lamination → High-Temperature Sintering → Pattern Etching
Technical Advantages
  • Proven and stable craftsmanship
  • Excellent electrical conductivity
  • Suitable for large-scale production

Professional Laboratory and R&D Team

R&D investment exceeds 50%, supported by state-of-the-art lab equipment and a senior expert team led by PhDs.

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Professional Laboratory

Equipped with advanced material analysis, performance testing, and reliability verification equipment to provide robust hardware support for R&D.

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Team led by a PhD

Led by senior experts in materials science and process engineering, we build a pragmatic, high-performance R&D team.

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Core Patents

Held multiple core invention patents and continue to drive innovation in ceramic-metal bonding with a pragmatic approach.

Need technical consultation?

Our technical expert team will provide you with professional material selection, process solutions, and reliability assessments.

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