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NTCLE213E3104FXB0 - Vishay

Description: NTC Thermistors 100Kohms 1% Beta val 4190K 1.5%

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NTCLE213E3104FXB0 - Vishay PCB footprint - Other - Other - NTCLE213E3104FXB0-4
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NTCLE213E3104FXB0 - Vishay  - 3D model - Other - NTCLE213E3104FXB0-4
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NTCLE213E3104FXB0 Details

  • Manufacturer Part Number:

    NTCLE213E3104FXB0

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Package Description:

    RADIAL LEADED

  • Reach Compliance Code:

    Compliant

  • ECCN Code:

    EAR99

  • HTS Code:

    8533.40.80.70

  • Factory Lead Time:

    12 Weeks

  • Manufacturer:

    Vishay Intertechnologies

  • YTEOL:

    7

  • Mounting Feature:

    THROUGH HOLE MOUNT

  • Number of Terminals:

    2

  • Operating Temperature-Max:

    150 °C

  • Operating Temperature-Min:

    -55 °C

  • Package Height:

    5.5 mm

  • Package Length:

    2.5 mm

  • Package Shape:

    RECTANGULAR PACKAGE

  • Package Style:

    Radial

  • Package Width:

    2.5 mm

  • Packing Method:

    BULK

  • Rated Power Dissipation (P):

    0.1 W

  • Rated Temperature:

    55 °C

  • Reference Standard:

    AEC-Q200

  • Resistance:

    100000 Ω

  • Resistor Type:

    NTC THERMISTOR

  • Surface Mount:

    NO

  • Terminal Placement:

    RADIAL

  • Terminal Shape:

    WIRE

  • Thermal Sensitivity Index:

    4190 K

  • Thermistor Application:

    TEMPERATURE COMPENSATION

  • Tolerance:

    1%

NTCLE213E3104FXB0 Frequently Asked Questions (FAQs)

  • The recommended soldering temperature is 260°C (500°F) for 10 seconds, with a peak temperature of 240°C (464°F) for 5 seconds.
  • Handle the thermistor by the body, avoiding touching the leads or glass portion. Store them in a dry, cool place, away from direct sunlight and moisture.
  • The maximum power rating is 50 mW, with a maximum current of 10 mA.
  • While the thermistor is designed to operate in a wide range of temperatures, high humidity may affect its accuracy and reliability. It's recommended to use a conformal coating or encapsulation to protect the device in humid environments.
  • Calibration involves comparing the thermistor's output to a known temperature reference. Use a calibrated thermometer and a data acquisition system to measure the thermistor's resistance at multiple temperatures, then create a calibration curve or use a look-up table to convert resistance to temperature.

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