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Home > products > Ceramic Material > 3.2g/Cm3 Ceramic Material High Thermal Conductivity Silicon Nitride Ceramics Substrate Imported Substitute

3.2g/Cm3 Ceramic Material High Thermal Conductivity Silicon Nitride Ceramics Substrate Imported Substitute

Product Details

Place of Origin: China

Brand Name: SALMUT

Payment & Shipping Terms

Minimum Order Quantity: 25mts

Price: negotiable

Packaging Details: Wooden box packaging.

Delivery Time: 20 working days

Payment Terms: L/C, D/P, T/T

Supply Ability: Annual production of over 15 million pieces

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Highlight:

3.2g/cm3 Ceramic Material

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Silicon Nitride Ceramic Material

Size:
140mm * 190mm * 0.32mm.Other Sizes Can Be Customized
Appearance:
Yellow GraySubstrate (imported Substitute)
Thermal Conductivity (25 ℃):
≥ 80W/m K
Name:
High Thermal Conductivity Silicon Nitride Ceramics
Volume Density:
3.2g/cm3
Volume Resistivity:
≥ 1014 Ω. Cm
Size:
140mm * 190mm * 0.32mm.Other Sizes Can Be Customized
Appearance:
Yellow GraySubstrate (imported Substitute)
Thermal Conductivity (25 ℃):
≥ 80W/m K
Name:
High Thermal Conductivity Silicon Nitride Ceramics
Volume Density:
3.2g/cm3
Volume Resistivity:
≥ 1014 Ω. Cm
3.2g/Cm3 Ceramic Material High Thermal Conductivity Silicon Nitride Ceramics Substrate Imported Substitute

High thermal conductivity silicon nitride ceramics 

Basic Chemicals High Thermal Conductivity Silicon Nitride Ceramics Substrate (Imported Substitute)

Silicon nitride ceramic is an inorganic material ceramic that does not shrink during sintering. Silicon nitride has high strength, especially hot pressed silicon nitride, which is one of the hardest substances in the world. It has properties such as high strength, low density, and high temperature resistance.

Characteristic

Tangent value of dielectric loss angle: ≤ 4 × 10-4

Breakdown strength: ≥ 15 kV/mm

Bending strength: ≥ 650 MPa

Usage

Power semiconductor packaging (communication, electronics, aviation).

3.2g/Cm3 Ceramic Material High Thermal Conductivity Silicon Nitride Ceramics Substrate Imported Substitute 0