• Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
  • Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
  • Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
  • Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
  • Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
  • Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module

Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module

Application: Aerospace, Electronics, Medical, Refractory, Industrial Ceramic
Material Composition: Alumina, Al2O3
Speciality: High Insulation
Type: Ceramic Plates
Dielectric Loss: 0.0003
Shape: Plate
Manufacturer/Factory & Trading Company

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Fujian, China
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Basic Info.

Model NO.
AA DBC Ceramic Substrate
Max Use Temperature
300°c
Thermal Conductivity
170
Processing Service
Moulding, Active Metal Bonding
Density
3.3-3.7
Transport Package
Carton Packing
Specification
Customized
Trademark
INNOVACERA
Origin
Fujian, China

Product Description

Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
 
DBC ceramic substrate/for electronic heating devices/Innovacera
 
1. DBC ceramic substrate:
Direct bonded copper (DBC) substrates are commonly used in power modules, because of their very good thermal conductivity. They are composed of a ceramic tile (commonly alumina) with a sheet of copper bonded to one or both sides by a high-temperature oxidation process (the copper and substrate are heated to a carefully controlled temperature in an atmosphere of nitrogen containing about 30 ppm of oxygen; under these conditions, a copper-oxygen eutectic forms which bonds successfully both to copper and the oxides used as substrates). The top copper layer can be preformed prior to firing or chemically etched using printed circuit board technology to form an electrical circuit, while the bottom copper layer is usually kept plain. The substrate is attached to a heat spreader by soldering the bottom copper layer to it.
 
1. Thickness of substrate can be thin: 0.25mm,0.28mm,0.45mm,0.5mm,0.635mm,1.0mm,1.5mm, 1.8mm,2.0mm
2. Coating by Cu ,Mo/Mn,Ag, Plate with copper
3. Excellent thermal conductivity
4. High electrical insulation

Advantages of DBC ceramic substrate:
>high mechanical strength
>fine thermal conducticity
>excellent electrical isolation
>good adhesion
>corrosion resistant
>high reliability
>environmentally clean

Applications of DBC ceramic substrate:
1.power semiconductor modules
2.semiconductor refrig-erators
3.power control circuits
4.high frequency switch mode power suppliers
5.solid-state relays
6.Solar-panel arrays
7.telecommunications private branch exchange and receiving system industrial electronics
 
 
 
 
 
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
 
VR
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
Electrical Alumina / Beo / Al2O3 / Aluminum Nitride / Aln Dpc Dbc Amb Ceramic Substrates for High Power Module
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