Cole-Parmer High Temperature Conductivity Cell K=1.0 100 Ohm Pt RTD ATC With 316 Stainless Steel Body_1121109
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Cole-Parmer High Temperature Conductivity Cell K=1.0 100 Ohm Pt RTD ATC With 316 Stainless Steel Body

$2,061.96

The price is inclusive of GST

The Cole-Parmer High Temperature Conductivity Cell K=1.0 100 Ohm Pt RTD ATC is designed for rugged, high-pressure, and high-temperature applications. Suitable for in-line or submersion conductivity measurements, this sensor withstands pressures up to 250 psi and temperatures up to 392°F (200°C). Made from 316 stainless steel, it offers excellent chemical resistance and durability. The threaded ¾” NPT electrode body allows easy mounting and is ideal for boiler or ultrapure water systems.

Product Features

  • Rugged sensors withstand high pressure and temperature
  • Designed for in-line or submersion conductivity measurements in processes that generate up to 250 psi and 392°F (200°C)
  • 316 stainless steel construction provides excellent chemical compatibility
  • Available with automatic temperature compensation (ATC) for compatibility with most conductivity controllers
  • Cole-Parmer industrial conductivity cells are designed for high performance in harsh measurement conditions
  • Stainless steel construction resists aggressive chemicals, high pressures, and high temperatures
  • Threaded ¾” NPT electrode bodies allow for in-line or submersion mounting
  • Cells are well-suited for boiler or ultrapure water applications

Benefits

  • Reliable performance in harsh chemical and thermal environments
  • Long-lasting durability with corrosion-resistant stainless steel
  • Accurate conductivity readings with temperature compensation
  • Flexible mounting options for easy installation and maintenance

Why Choose This Cole-Parmer High Temperature Conductivity Cell K=1.0 100 Ohm Pt RTD ATC?

The Cole-Parmer High Temperature Conductivity Cell K=1.0 100 Ohm Pt RTD ATC offers durability and precision for demanding industrial applications. Its robust stainless steel design and high-temperature resistance make it ideal for precise conductivity measurement in extreme conditions.

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