Beryllium Oxide Ceramic Rings
Beryllium Oxide Ceramic Rings
Beryllium Oxide Ceramic Rings
Beryllium Oxide Ceramic Rings

Beryllium Oxide Ceramic Rings

  • element:Beryllium (Be)
  • purity:High purity
  • shape:Ring
  • specification:Customized based on customer requirements
  • packaging:Vacuum packaging, cartons, wooden boxes

Beryllium oxide ceramic rings offer exceptional thermal conductivity, optimized electrical insulation, and superior mechanical strength. Designed for high-temperature applications, they ensure reliable performance, extended durability, and precision engineering adaptability.

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Product Overview

Beryllium Oxide Ceramic Rings are high-performance ceramic materials known for their excellent thermal conductivity and electrical insulation properties. With a thermal conductivity of up to 325 W/(m·K), these rings are ideal for applications requiring efficient heat dissipation. Beryllium oxide ceramic rings are widely used in high-power semiconductor devices, heat exchangers, and electronic equipment, where they help dissipate localized heat, ensuring the long-term stability of the devices.

Features

  • Excellent Thermal Conductivity: Beryllium oxide ceramic rings feature a very high thermal conductivity, allowing for effective heat dissipation and maintaining the thermal stability of the equipment.
  • Good Thermal Stability: Beryllium oxide materials exhibit outstanding thermal stability, making them suitable for extreme operating conditions.
  • Electrical Insulation: Despite their excellent thermal conductivity, beryllium oxide ceramic rings retain good electrical insulation properties, making them ideal for applications requiring electrical isolation.
  • Corrosion Resistance: Beryllium oxide ceramic rings maintain high stability and durability in corrosive environments, suitable for use in harsh conditions.

Applications

  • High-Power Semiconductor Devices: Beryllium oxide ceramic rings are widely used in high-power semiconductor devices such as transistors and power amplifiers, where they aid in heat dissipation and enhance thermal stability.
  • Radio Frequency Devices: Used in high-performance radio frequency devices, they improve the heat dissipation efficiency and overall performance of the equipment.
  • Heat Exchangers: As fillers and interface materials in heat exchangers, beryllium oxide ceramic rings effectively improve heat transfer efficiency.
  • Microwave Devices and Lasers: In high-performance microwave devices, vacuum tubes, magnetrons, and gas lasers, beryllium oxide ceramic rings provide excellent thermal management capabilities.
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