Microelectrodes

Microelectrodes
Key features
  • Quartz glass insulated platinum/tungsten fiber electrode (manufactured by Thomas Recording)
  • Fibre diameter app. 80µm
  • Iridium-Oxide tip coating offers large charge transfer with small electrode tips
  • Low electrode/tissue impedance
  • Small electrode tip size
  • Low cost, high precision
  • Reusable over month
  • For recording and stimulation
Buy this product directly in our Shop: Electrodes

Stimulation electrodes

 

Monopolar:

-           Impedance:  < 100kOhm

-           Customized connection; please specify with order (e.g.: connector for Synchroslice preamplifier,…)

-           Customized electrode length; please specify with order L1 ( shaft length) and L2 (tip length);

-           Electrode fibre strenthened with stainless steel canula

-           Outer diameter canula:     254µm

Bipolar:

-           Impedance:  < 100kOhm

-           Customized connection; please specify with order (e.g.: connector for Synchroslice preamplifier,…)

-           Customized electrode length; please specify with order L1 ( shaft length) and L2 (tip length);

-           Electrode fibre strenthened with stainless steel canula

-           Outer diameter canula:     254µm

-           tip distance:          254µm (others on request)


Recording electrodes

 

  
 Product Features:

-           Very good signal to noise (S/N-) ratio

-           Impedance: appr. 0,5 MΩ

-           Customized connection; please specify with order (e.g.: connector for Synchroslice preamplifier,…)

-           Customized electrode length; please specify with order L1 ( shaft length) and L2 (tip length);

-           Smooth passage between core conductor and insulator minimizes tissue damage

-           High recording bandwidth (field potential and spike recordings)

-           Microgrooves in the metal cause a large effective metal surface area, no platinization required

-           High biocompatibility

-           Well suited for Microstimulation and Lesioning 

 
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Current date 12/17/2017