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39LB-1PB-103 - Bourns

Description: Potentiometers PANEL CONTROL-1/2" 13MM 1T ROUND CP

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PCB Footprints
39LB-1PB-103 - Bourns PCB footprint - Other - Other - 39LB-1PB-103-3
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3D Models
39LB-1PB-103 - Bourns  - 3D model - Other - 39LB-1PB-103-3
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39LB-1PB-103 Details

  • Manufacturer Part Number:

    39LB-1PB-103

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Reach Compliance Code:

    Not Compliant

  • ECCN Code:

    EAR99

  • HTS Code:

    8533.40.80.70

  • Factory Lead Time:

    15 Weeks

  • Manufacturer:

    Bourns Inc

  • YTEOL:

    7

  • Construction:

    Round

  • Lead Length:

    6.35 mm

  • Operating Temperature-Max:

    85 °C

  • Operating Temperature-Min:

    -40 °C

  • Package Length:

    7.01 mm

  • Package Shape:

    CYLINDRICAL PACKAGE

  • Package Style:

    PCB Mount

  • Packing Method:

    Tray

  • Rated Power Dissipation (P):

    0.25 W

  • Resistance:

    10000 Ω

  • Resistor Type:

    POTENTIOMETER

  • Rotational Angle:

    201 deg

  • Technology:

    CONDUCTIVE PLASTIC

  • Tolerance:

    20%

39LB-1PB-103 Frequently Asked Questions (FAQs)

  • Bourns provides a recommended PCB layout and land pattern in their application notes. It's essential to follow these guidelines to ensure proper thermal management, minimize parasitic inductance, and optimize performance.
  • To avoid damage, follow the recommended soldering profile, and ensure the inductor is properly aligned with the PCB pads. Use a soldering iron with a temperature-controlled tip, and avoid applying excessive force or pressure during the soldering process.
  • While the datasheet specifies a maximum rated voltage, it's essential to consider the voltage stress during transient events, such as inrush currents or voltage spikes. As a general rule, it's recommended to derate the voltage by 10-20% to ensure reliable operation.
  • The 39LB-1PB-103 uses a ferrite core, which is suitable for high-frequency applications. However, it's essential to consider the core material's saturation point, permeability, and core losses when designing high-frequency circuits.
  • Proper thermal management is crucial in high-current applications. Ensure good airflow, use thermal interface materials, and consider heat sinks or thermal pads to dissipate heat generated by the inductor. Monitor the inductor's temperature rise and adjust the design accordingly.

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