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44000-THERMIS-ELEMENTS

Epoxy Coated Thermistor Elements

Models In Stock
    • Epoxy Encapsulated                        
                                                       
    • Available with 0.1°C and 0.2°C Interchangeability                        
    •                                                  
    •  High Stability                        
    •                                                  
44000-THERMIS-ELEMENTS
From C$ 40.83
Models In Stock
Epoxy Coated Thermistor Elements 44000-THERMIS-ELEMENTS 44000-THERMIS-ELEMENTS
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Product Overview
  • Bead Width 2.4 mm
  • Lead Material Silver Plated Copper
  • Process Temperature, Min 0 °C
  • Series ID 44000-THERMIS-ELEMENTS
  • Storage Temperature, Min -80 °C
  • Temperature Sensor Type Thermistor
  • Wire Length 76.2 mm

Supported Applications

The Omega 44000 Series consists of epoxy-coated thermistor elements designed for temperature measurement. These precision-matched sensors feature resistance curves defined by the Steinhart-Hart equation, with constants provided in Table 1 of the series documentation.

Operating Conditions & Performance

The series supports two maximum working temperatures: 75°C (165°F) and 150°C (300°F). Corresponding operating temperature ranges are documented as -80 to 75°C (-110 to 165°F) for the lower-temperature models and -80 to 150°C (-110 to 300°F) for high-temperature variants. Interchangeability tolerances at 0 to 70°C are available in ±0.1°C or ±0.2°C.

Response time performance is specified as a 63% response of 1 second for bare elements in stirred oil bath, and up to 2.5 seconds maximum when PFA encased in air. For best stability, the recommended storage temperature range is -80 to 120°C (-110 to 250°F) for ±0.2°C models and -80 to 75°C (-110 to 165°F) for ±0.1°C models.

Typical Thermometric Drift

The series documentation provides typical drift values over time intervals of 10 months and 100 months:

  • At 0°C: <0.01°C (both intervals)
  • At 25°C: <0.01°C at 10 months, 0.02°C at 100 months
  • At 100°C: 0.20°C at 10 months, 0.32°C at 100 months
  • At 150°C: 1.5°C at 10 months; operation is not recommended for the 100-month interval.

Configuration Options

The series offers ten distinct model configurations based on resistance at 25°C, interchangeability tolerance, and maximum working temperature. Resistance values at 25°C include 2252 Ω, 3000 Ω, 5000 Ω, 10,000 Ω, and 30,000 Ω.

Physical Construction & Materials

  • Bead Dimensions: 2.4 mm (0.095 in) diameter with an overall length of 76.2 mm (3 in).
  • Wetted Materials: Epoxy coating on the bead; electrical connections use 32 AWG silver-plated copper or alloy 180 (copper/nickel) wire.

PFA Sleeving Options

An optional PFA sleeving configuration is available over one lead wire and as an overall jacket. To order this option, the middle digit of the model number changes to '1' (e.g., 44004 becomes 44104). This modification incurs additional cost.

Key Product Differences

The series distinguishes models by interchangeability tolerance and maximum working temperature:

  • ±0.2°C Interchangeability (Models 44004, 44005, 44007, 44006, 44008): Maximum working temperature of 150°C (300°F).
  • ±0.1°C Interchangeability (Models 44033, 44030, 44034, 44031, 44032): Maximum working temperature of 75°C (165°F).

Note that resistance tolerances vary based on the specific resistance at 25°C for each model. The series is RoHS compliant.

Rated 5 out of 5 by from Great Great performace and packaging. Impression at first look.
Date published: 2015-11-25
Rated 5 out of 5 by from C6 Z06 I used the 44005 thermister as a fast acting temperature sensor to measure Air Intake Temperature accurately when the methanol injection system turns on.
Date published: 2017-01-04
Rated 5 out of 5 by from Excellent reaction times I bought this about a month ago and it worked flawlessly. I utilized it as a temp sensor on my car and the accuracy and reaction time of the temperature change was better than advertised.
Date published: 2016-12-11
Rated 4 out of 5 by from No issues so far haven't gotten a chance to use yet but was shipped quickly and no noticeable defects
Date published: 2023-03-27
Rated 5 out of 5 by from Great Product We use this to replace the original thermal in a motor.
Date published: 2019-03-25
Rated 5 out of 5 by from Works great as an air speed sensor Running this in a self heating mode to measure low velocity air speed. The TRM-164116-6 ceramic tube is a good match to hold the element in the airflow.
Date published: 2018-06-19
Rated 5 out of 5 by from Precision and functionality of design New installation meeting my design and specification.
Date published: 2018-01-31
Rated 5 out of 5 by from Works perfectly! Highly-sensitive to temperature change. I used it to replace my car's ambient temperature sensor. As soon as I start pulling out of my garage, the temperature reading started to change. It was definitely a lot hotter in the garage and the gradual drop in temperature reading once outside validates the accurate function of the thermistor. I'm happy with the purchase and the product.
Date published: 2017-08-11
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I need a thermister that has higher resistance at lower temps, and less - zero resistance at higher temps. It's for a low fuel sender on motorcycle. So if thermister is in fuel, high resistance not in fuel no resistance. Between 40&deg;F-70&deg;F fuel temp

Asked by: Chosen2Dv8
Thank you for your inquiry. Our 44000 Series Thermistor are NTC Thermistors. High Resistance at Low Temperature; Low Resistance at Higher Temperatures.
Answered by: CB Engineer
Date published: 2020-08-25

We are using your 44006 thermistors in our test setup. Can you provide thermistor coefficient ka, kb, and kc?

Asked by: Fengguo
They give the coefficient in this document here: https://users.obs.carnegiescience.edu/crane/pfs/man/Electronics/Omega-44000-thermistors.pdf Which should be ka:1.032-E03 kb:2.387-E04 kc:1.580-E07 I had myself trouble finding these coefficient.
Answered by: Desj
Date published: 2021-06-04

Where can I find the temp vs, resistance tables for these thermistors? The data sheet says they can be found on pages Z-236 and Z-237, but there are no such pages in the data sheet.

Asked by: Chance
The Thermistor tables for Resistance vs. Temperature can be found at this link https://www.omega.com/en-us/technical-reference
Answered by: ApplicationEngineerANB
Date published: 2024-04-16

Is the product 44006 ROHS 3 compliant?

Asked by: Gopalkpandya
Thank you for your inquiry Gopalkpandya. The 44006 is not RoHS 3 compliant. Our products are only compliant up to RoHS 2. If you have any other questions, please do not hesitate to contact us directly at 1-800-622-2378, ask for Temperature Engineering or temp@omega.com.
Answered by: Application Engineer MC
Date published: 2024-10-05
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