OMEGA Engineering, Inc. Datasheets for Resistive Temperature Devices (RTD) Elements

Resistive temperature device (RTD) elements are wire windings or other thin-film serpentines that exhibit changes in resistance with changes in temperature. They are usually made of metallic elements or alloys such as copper, nickel, or nickel-iron.
Resistive Temperature Devices (RTD) Elements: Learn more

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Product Name Notes
FR series elements are designed for applications where high vibration resistance as well as high temperature stability is vital. Typical industrial applications include analytical equipment, chemical plants and mechanical equipment.
Glass wire wound platinum RTD elements are made by winding a platinum wire onto a glass core and then fusing the exterior with glass. They are suitable for low or...
Mineral insulated metal sheathed RTD Cable , RTD MIC, has a stainless steel or Inconel outer metal sheath with copper or Nickel signal wire conductors. The conductor lead wires are...
Model F2020 thin film RTD element is a 2.0mm x 2.0mm size and packaged 100 pieces per low cost OEM RTD pack. OMEGAFILM platinum thin film RTD elements are manufactured...
OMEGA introduces the OMEGAFILM platinum RTD element an element achieved by employing construction techniques similar to those used to manufacture miniature electronic integrated circuits. The result: a precision element available...
OMEGA RTD elements can be used for a variety of temperature applications. Models are available for temperature ranges as broad as -200 to 850°C. Dual element RTDs are also available...
OMEGA thin film DIN Class "B" RTD elements have a resistance tolerance of 100.00 0.12, 500.00 0.60, or 1000.00 1.20 at 0C, and they meet the requirements of IEC751. They...
The HSRTD Series Flexible RTD Temperature Sensor Probes are hermetically sealed at the sensor tip to provide continuous protection at the temperature measurement junction. The flexible sensor probe PFA cable...
The KN series RTD's are suitable for applications requiring extremely high temperature stability and high temperature shock resistance. Deviation from the IEC751 characteristic curve is minimal over the entire temperature...

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