Electro Optical Components, Inc. High Efficiency Nanostructure IR Sources

Description
These infrared radiation sources are pulsable thermal emitters with a near black-body emittance. They offer: Patented nanotechnology achieves higher efficiency. Patented emitter set-up made of a high-melting metal, the free-standing monolithic radiating element and the nanostructured emitter surface. Lower element temperature of 600°C increases lifetime. The emitters are: More stable Less or no drift A lot more power A lot less noise (very important) All windows are hermetically sealed (Sapphire, CaF2 and BaF2 windows)
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Description
These infrared radiation sources are pulsable thermal emitters with a near black-body emittance. They offer: Patented nanotechnology achieves higher efficiency. Patented emitter set-up made of a high-melting metal, the free-standing monolithic radiating element and the nanostructured emitter surface. Lower element temperature of 600°C increases lifetime. The emitters are: More stable Less or no drift A lot more power A lot less noise (very important) All windows are hermetically sealed (Sapphire, CaF2 and BaF2 windows)
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Suppliers

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High Efficiency Nanostructure IR Sources -  - Electro Optical Components, Inc.
Santa Rosa, CA, USA
High Efficiency Nanostructure IR Sources
High Efficiency Nanostructure IR Sources
These infrared radiation sources are pulsable thermal emitters with a near black-body emittance. They offer: Patented nanotechnology achieves higher efficiency. Patented emitter set-up made of a high-melting metal, the free-standing monolithic radiating element and the nanostructured emitter surface. Lower element temperature of 600°C increases lifetime. The emitters are: More stable Less or no drift A lot more power A lot less noise (very important) All windows are hermetically sealed (Sapphire, CaF2 and BaF2 windows)

These infrared radiation sources are pulsable thermal emitters with a near black-body emittance. They offer:

  • Patented nanotechnology achieves higher efficiency.
  • Patented emitter set-up made of a high-melting metal, the free-standing monolithic radiating element and the nanostructured emitter surface.
  • Lower element temperature of 600°C increases lifetime.

The emitters are:

  • More stable
  • Less or no drift
  • A lot more power
  • A lot less noise (very important)
  • All windows are hermetically sealed (Sapphire, CaF2 and BaF2 windows)
Supplier's Site

Technical Specifications

  Electro Optical Components, Inc.
Product Category Blackbody Sources
Product Name High Efficiency Nanostructure IR Sources
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