Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses

Product Details
Application: Aerospace, Electronics, Medical
Material Composition: Alumina, Al2O3
Speciality: High Insulation, High Strength
Manufacturer/Factory & Trading Company

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  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
  • Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
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Basic Info.

Compressive Strength
2300MPa
Chemical Resistance
Excellent
Mechanical Strength
Excellent
Color
Metal+White
Thermal Conductivity
25W/(M.K)
Processing Service
Bending, Welding, Cutting, Punching, Decoiling
Max. Use Temperature
1600ºC
Density
3.7g/cm3
Transport Package
Carton Packing
Specification
Customized
Trademark
INNOVACERA
Origin
Fujian, China

Product Description


Glass to Metal Seal Terminal Plate where glass is heated to a molten state and then wetted to the metal, creating a tight bond while carefully controlling the thermal expansion of both materials to prevent breakage.
 
* Glass is heated to a molten state then wetted to the metal, forming a tight bond.
* The thermal expansion of the glass and the metal are carefully measured and controlled to prevent breakage.
INNOVACERA offers not only electrical feedthroughs, the most common type we make, but also RF and microwave feedthroughs.

Materials:
* Body materials: Cold rolled steels, Stainless steel, Inconel, etc.
* Glass Materials: Soda lime, Lead silicate, etc.
* Electrodes Material: Alloy 52, Copper Cored 52 Alloy, Alloy 42, etc.
Typically Compression Seals withstand temperatures ranging from -250°C to 400°C. Allowable operating temperatures would be from -60°C to 200°C under thermal cycling and shock.

Plating

* Gold Plating
* Silver Plating
* Electrolytic and Electroless Ni Plating
* Tin Plating
 
 
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses

 
Combining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/LensesCombining Metal and Glass to Create Vacuum-Tight Electrical Connectors, Packages, Feedthroughs or Optical Windows/Lenses

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