Kimball Lanthanum Hexaboride Cathodes for Electron Microscopes 電子顯微鏡用六硼化鑭陰極

Kimball Lanthanum Hexaboride Cathodes for Electron Microscopes 電子顯微鏡用六硼化鑭陰極

 

Description

The Kimball Physics ES-423E (Extended Life) Lanthanum Hexaboride (LaB6) Cathode is a high performance, resistively heated, thermionic electron source. It is currently employed in many brightness-limited electron optical systems:? SEM’s, TEM’s, probes, electron lithography systems, and more. With brightness at least an order of magnitude greater than tungsten, LaB6?provides superior resolution in a wide range of acceleration voltages to enable clear imaging of the finest details in electron microscopy applications.

Kimball Physics ES-423E(長壽命)六硼化鑭(LaB6)陰極是一種高性能、電阻加熱的熱離子電子源。目前,它被用于許多亮度受限的電子光學系統(tǒng):SEM、TEM、探針、電子光刻系統(tǒng)等。LaB6的亮度至少比鎢大一個數(shù)量級,在寬范圍的加速電壓下提供了卓越的分辨率,從而能夠在電子顯微鏡應(yīng)用中對最精細的細節(jié)進行清晰的成像。

FOR USE IN:

  • Scanning Electron Microscopes
  • Transmission Electron Microscopes
  • Electron Lithography Systems
  • Electron Probe Microanalysis
  • X-ray Micro-Analysis
  • Surface Analysis
  • Custom Applications

應(yīng)用:

掃描電子顯微鏡

透射電子顯微鏡

電子光刻系統(tǒng)

電子探針微量分析

X射線顯微分析

曲面分析

自定義應(yīng)用程序

 

FEATURES / OPTIONS:

  • Extended Lifetime
    • Thousands of functional hours in clean vacuum
  • Exceptional Stability
    • Precision machined carbon mounting
    • High over-temperature tolerance
  • High Brightness / Low Energy Spread
    • <100> Oriented Single Crystal
    • Best Quality / High Purity Material
    • Current densities up to 30 A/cm2
    • Operating pressure < 10-7?torr
  • Accurate Microflats
    • Superior Optics
    • Controlled Source Size
    • Standard Diameters Available
  • Bases Available for Most Systems
    • Ceramic AEI base or various microscope bases
    • Emission surfaces sized? for microscope use

延長使用壽命

在干凈的真空中工作數(shù)千小時

卓越的穩(wěn)定性

精密加工碳支座

高溫耐受性

高亮度/低能量擴散

<100>定向單晶

最佳質(zhì)量/高純度材料

電流密度高達30 A/cm2

工作壓力<10-7托

精確的微平臺

卓越的光學性能

受控源大小

提供標準直徑

適用于大多數(shù)系統(tǒng)的底座

陶瓷AEI底座或各種顯微鏡底座

發(fā)射表面尺寸適合顯微鏡使用

 

 


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