Fischer Technology, Inc. Probes for Tactile Gauges Probes for Tactile Gauges

Description
In order to achieve the most accurate result possible, a measurement probe must possess certain special properties for each application. Choosing the right probe makes all the difference to the quality of the measurement results, as it transmits the actual measurement signal. Based on decades of experience in many sectors, Fischer offers a wide-ranging portfolio of high quality probes for tactile measurement technology, for both coating thickness measurement and material testing. With Fischer probes you can, for example, determine changes such as heat damage or material fatigue by means of conductivity measurement, or ascertain the ferrite content of steel quickly and non-destructively. Should you not find the right probe in our product portfolio, simply get in touch. We are always happy to develop a customized solution for you. Features Wear-resistant probe tip ensures long service life Spring-loaded system ensures virtually constant contact pressure, even during manual measurement Individual factory calibration runs through each probe – ultimate precision, guaranteed A wide choice of high quality measurement probes with different properties and geometries Tailor-made probes developed to customer requirements Applications: Measurement range from a few nanometers to several millimeters Non-magnetic coatings on magnetic substrates Non-magnetic and non-conductive coatings on electrically conductive, non-magnetic substrates Electrically conductive coatings on any kind of substrate Magnetizable coatings on non-magnetizable, conductive substrates Conductivity measurement of non-ferrite materials, analysis of material properties such as micro-structure and detection of material alterations such as heat damage or fatigue Testing of ferrite and martensite content on austenitic steels and duplex steels
Datasheet
Description
In order to achieve the most accurate result possible, a measurement probe must possess certain special properties for each application. Choosing the right probe makes all the difference to the quality of the measurement results, as it transmits the actual measurement signal. Based on decades of experience in many sectors, Fischer offers a wide-ranging portfolio of high quality probes for tactile measurement technology, for both coating thickness measurement and material testing. With Fischer probes you can, for example, determine changes such as heat damage or material fatigue by means of conductivity measurement, or ascertain the ferrite content of steel quickly and non-destructively. Should you not find the right probe in our product portfolio, simply get in touch. We are always happy to develop a customized solution for you. Features Wear-resistant probe tip ensures long service life Spring-loaded system ensures virtually constant contact pressure, even during manual measurement Individual factory calibration runs through each probe – ultimate precision, guaranteed A wide choice of high quality measurement probes with different properties and geometries Tailor-made probes developed to customer requirements Applications: Measurement range from a few nanometers to several millimeters Non-magnetic coatings on magnetic substrates Non-magnetic and non-conductive coatings on electrically conductive, non-magnetic substrates Electrically conductive coatings on any kind of substrate Magnetizable coatings on non-magnetizable, conductive substrates Conductivity measurement of non-ferrite materials, analysis of material properties such as micro-structure and detection of material alterations such as heat damage or fatigue Testing of ferrite and martensite content on austenitic steels and duplex steels
Datasheet

Suppliers

Company
Product
Description
Supplier Links
Probes for Tactile Gauges - Probes for Tactile Gauges - Fischer Technology, Inc.
Windsor, CT, USA
Probes for Tactile Gauges
Probes for Tactile Gauges
Probes for Tactile Gauges Probes for Tactile Gauges
In order to achieve the most accurate result possible, a measurement probe must possess certain special properties for each application. Choosing the right probe makes all the difference to the quality of the measurement results, as it transmits the actual measurement signal. Based on decades of experience in many sectors, Fischer offers a wide-ranging portfolio of high quality probes for tactile measurement technology, for both coating thickness measurement and material testing. With Fischer probes you can, for example, determine changes such as heat damage or material fatigue by means of conductivity measurement, or ascertain the ferrite content of steel quickly and non-destructively. Should you not find the right probe in our product portfolio, simply get in touch. We are always happy to develop a customized solution for you. Features Wear-resistant probe tip ensures long service life Spring-loaded system ensures virtually constant contact pressure, even during manual measurement Individual factory calibration runs through each probe – ultimate precision, guaranteed A wide choice of high quality measurement probes with different properties and geometries Tailor-made probes developed to customer requirements Applications: Measurement range from a few nanometers to several millimeters Non-magnetic coatings on magnetic substrates Non-magnetic and non-conductive coatings on electrically conductive, non-magnetic substrates Electrically conductive coatings on any kind of substrate Magnetizable coatings on non-magnetizable, conductive substrates Conductivity measurement of non-ferrite materials, analysis of material properties such as micro-structure and detection of material alterations such as heat damage or fatigue Testing of ferrite and martensite content on austenitic steels and duplex steels

In order to achieve the most accurate result possible, a measurement probe must possess certain special properties for each application. Choosing the right probe makes all the difference to the quality of the measurement results, as it transmits the actual measurement signal. Based on decades of experience in many sectors, Fischer offers a wide-ranging portfolio of high quality probes for tactile measurement technology, for both coating thickness measurement and material testing.

With Fischer probes you can, for example, determine changes such as heat damage or material fatigue by means of conductivity measurement, or ascertain the ferrite content of steel quickly and non-destructively. Should you not find the right probe in our product portfolio, simply get in touch. We are always happy to develop a customized solution for you.

Features

  • Wear-resistant probe tip ensures long service life
  • Spring-loaded system ensures virtually constant contact pressure, even during manual measurement
  • Individual factory calibration runs through each probe – ultimate precision, guaranteed
  • A wide choice of high quality measurement probes with different properties and geometries
  • Tailor-made probes developed to customer requirements

Applications:

  • Measurement range from a few nanometers to several millimeters
  • Non-magnetic coatings on magnetic substrates
  • Non-magnetic and non-conductive coatings on electrically conductive, non-magnetic substrates
  • Electrically conductive coatings on any kind of substrate
  • Magnetizable coatings on non-magnetizable, conductive substrates
  • Conductivity measurement of non-ferrite materials, analysis of material properties such as micro-structure and detection of material alterations such as heat damage or fatigue
  • Testing of ferrite and martensite content on austenitic steels and duplex steels
Supplier's Site Datasheet

Technical Specifications

  Fischer Technology, Inc.
Product Category Nondestructive Testing (NDT) Probes
Product Number Probes for Tactile Gauges
Product Name Probes for Tactile Gauges
NDT Probe Technology Eddy Current; Inductive; Magnetic / Hall Effect
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