TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES
TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES

TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES

TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES Specification

  • Type
  • Two Probe Resistivity Measurement Apparatus
  • Material
  • MS powder coated body, Brass/SS electrode probes, Glass or ceramic sample holder
  • Size
  • Standard laboratory size
  • Input Voltage
  • 230 V AC, 50 Hz
  • Color
  • Grey/Blue
  • Dimension (L*W*H)
  • Approx. 30 cm x 20 cm x 15 cm
  • Capacity
  • Suitable for samples up to 2 inch diameter
  • Noise Level
  • Low, electronic noise minimized
  • Sample Holder
  • Removable, thermally controlled mount
  • Operating Environment
  • 10C 40C, 80% RH
  • Power Source
  • AC mains-powered
  • Usage
  • Resistivity measurement of thin and bulk insulator samples at different temperatures
  • Display
  • Digital microammeter and voltmeter
  • Probes
  • Two-point rigid configuration, spring loaded contacts
  • Measurement Range
  • Up to 200 Mcm (resistivity), specific for insulator samples
  • Compliance
  • Meets standard laboratory safety protocols
  • Temperature Controller
  • Digital, range from room temperature up to 200 C
  • Accessories Included
  • Test leads, sample holder, fuse, instruction manual
  • Protection
  • Built-in overload and short-circuit protection
 
 

TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES About



The peerless Two Probe Method for Resistivity Measurement of Insulators at Different Temperatures is a best-seller, offering soaring accuracy and reliability. Suitable for both thin and bulk samples, this classic apparatus features a digital temperature controller (room temp to 200C), two-point rigid spring probes, and a removable, thermally controlled sample holder. Reduced electronic noise ensures stable, precise readings up to 200 Mcm. With a microammeter, voltmeter, and built-in overload protection, it's ideal to buy online for laboratories across India. The robust MS powder-coated body and brass/SS probes ensure durability, while comprehensive accessories and adherence to safety protocols set it apart.

Outstanding Features & Applications

This instrument is engineered for precise resistivity measurements of insulator samples at varying temperatures, with a user-friendly digital controller and spring-loaded probe design. Used as a primary tool in research and academic laboratories, it excels in quality assurance for the electrical and electronics industries. Commercially, it helps ensure high-quality insulator manufacturing and advanced material studies, providing indispensable data for product development and testing protocols.


Sample Availability & Packaging Process

Our sample policy ensures a hassle-free experience: evaluation samples can be handed over upon request, subject to availability. Each unit is securely packaged and dispatched using robust materials to avoid in-transit damage. Freight and shipping details are communicated to buyers for complete transparency. Samples and full orders are typically dispatched within stipulated timelines, guaranteeing prompt delivery and peace of mind for our valued clients.


FAQ's of TWO PROBE METHOD FOR RESISTIVITY MEASUREMENT OF INSULATORS AT DIFFERENT TEMPERATURES:


Q: How does the two probe method accurately measure the resistivity of insulators?

A: The two probe method employs spring-loaded, rigid probes that press against the sample, measuring current and voltage with high precision. The apparatus calculates resistivity by analyzing the relationship between voltage and current across the sample, while maintaining controlled temperature conditions for reproducibility.

Q: What types of insulator samples can be tested with this apparatus?

A: This instrument is designed for both thin film and bulk insulator samples up to 2 inches in diameter. It accommodates a range of solid insulators, making it highly versatile for research and industry applications.

Q: When should I use the temperature control feature during testing?

A: The digital temperature controller should be used when evaluating how resistivity varies with temperature. It enables measurements from room temperature up to 200C, which is essential for characterizing materials used in temperature-sensitive electronic components.

Q: Where can this apparatus be utilized effectively?

A: It is ideal for use in research laboratories, educational institutions, quality assurance departments, and material testing centers involved in electrical and conductivity analysis of insulators.

Q: What are the primary benefits of using this two probe resistivity measurement apparatus?

A: Key benefits include precise resistivity measurements at different temperatures, minimized electronic noise, digital data display, robust safety protections, and a durable build-ensuring reliability for repeated laboratory use.

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