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BARE-SH-DH-OV-ELEMENTS

Ceramic Beaded Thermocouple Elements

Models In Stock
  • Available in Type J, K, T and E Thermocoupes
  • High Temperature Ceramic Insulators to Withstand Temperatures over 2000 Degrees F
  • Standard 12" Length with Other Lengths Available
BARE-SH-DH-OV-ELEMENTS
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Models In Stock
Ceramic Beaded Thermocouple Elements BARE-SH-DH-OV-ELEMENTS BARE-SH-DH-OV-ELEMENTS
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Product Overview
  • Series ID BARE-SH-DH-OV-ELEMENTS

Supported Applications

The Omega Ceramic Beaded Thermocouple Elements series provides precise temperature measuring elements assembled from high-grade materials. These sensors are designed for applications requiring thermocouples checked against standard temperature-millivolt curves to assure calibration accuracy.

Operating Conditions & Performance

Omega's ceramic beaded thermocouple elements meet or exceed ANSI Special Limits of Error and EN 60584-2: Tolerance Class 1. The series supports multiple insulation types with distinct temperature ratings:

  • X C Insulation: Rated to 1200°C (2200°F)
  • S H, D H, and O V Insulators: Rated to 1600°C (2900°F)
  • F S Insulators: Rated to 1200°C (2200°F)

Note: These ratings apply to the insulation only; users must check operating limits of the wire. The standard overall length for listed configurations is 300 mm (12").

Configuration Options

The series offers a broad configuration envelope across thermocouple types, wire sizes, and insulator geometries.

Sensor Types & Wire Sizes

  • Type J: Iron-Constantan
  • Type K: CHROMEGA®-ALOMEGA®
  • Type T: Copper-Constantan
  • Type E: CHROMEGA®-Constantan
  • American Wire Gauge (AWG): 8, 14, 20, and 24 AWG options are available.

Insulator Configurations

The series supports the following insulator styles to accommodate specific well or tube IDs:
  • Bare Wires (No Insulators): Available for 8, 14, 20, and 24 AWG.
  • Single Hole Round (SH) Insulators: Provided with specific ODs and Well IDs per wire size.
  • Double Hole Round (DH) Insulators: Available for dual-wire configurations across all listed AWG sizes.
  • Fish Spine (FS) Insulators: Single hole options available in FS-260, FS-200, and FS-110 profiles depending on wire size.
  • Double Hole Oval (OV) Insulators: Available for 8, 14, and 20 AWG configurations.

Ordering & Customization

Optional lengths are available. When ordering, the last digits of the part number indicate length in inches or fractions; users may change these to show actual desired length. For orders over 5', consult Sales Department for pricing.

Key Product Differences

Variants within this series differ primarily by insulator geometry, wire gauge, and thermocouple type combination. The "To Order" table defines specific model numbers such as Bare-8-J-12 (8 AWG Type J with no insulators) or DH-1-14-K-12 (14 AWG Type K with double hole ceramic bead insulators). For R, S, and B thermocouples using RAT, SAT, BAT series elements, users are directed to visit the manufacturer online. Detailed dimensional data for specific bead sizes is available via the Insulator Dimensional Chart in the source documentation.

Rated 3 out of 5 by from Ceramic beaded wire TC Some beads are discolored, wires are correct lengths
Date published: 2025-06-10
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Are these thermocouples made of operation at high temp and high vacuum simultaneously? I operate an accelerator beam line and we are having issues with sublimation of thermocouple wires in high vacuum. 

Asked by: Cecchini
Hi Cecchini, Thank you for the inquiry. Type K has limited use in vacuum/reducing environments. Type N will give better performance. Best regards OMEGA
Answered by: NorwalkAE_RS
Date published: 2023-08-13

Using the 4003 temperature controller manual explain steps taken to configure it for type k thermocouple

Asked by: Mo bae
Thank you for your inquiry. Yes it does include the programming information.
Answered by: Application Engineer JB
Date published: 2020-02-12

Hello, I would like to measure the cooling rate of a casting (the thermocouple will be in contact with the molten material and will be keep it there during the solidification process). Could you recommend a thermocouple to perform this task?

Asked by: Luis10
You may be able to use a sheathed Thermocouple rated in temperature above the melting point of your casting material. Ideally using non-contact IR sensors would be the best approach Omega would suggest. Send an email to temp@dwyeromega.com to have questions answered regarding your application.
Answered by: ApplicationEngineerANB
Date published: 2024-09-23
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