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DR127-680-R - COILTRONICS

Description: POWER INDUCTOR ±20% 68µH 2.44A

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PCB Footprints
DR127-680-R - COILTRONICS PCB footprint - Other - Other - INDM125125X800N
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3D Models
DR127-680-R - COILTRONICS  - 3D model - Other - INDM125125X800N
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DR127-680-R Details

  • Manufacturer Part Number:

    DR127-680-R

  • Part Life Cycle Code:

    Transferred

  • Package Description:

    CHIP

  • ECCN Code:

    EAR99

  • HTS Code:

    8504.50.80.00

  • Manufacturer:

    Coiltronics

  • Case/Size Code:

    4949

  • Construction:

    Rectangular

  • Core Material:

    FERRITE

  • DC Resistance:

    0.105 Ω

  • Inductance-Nom (L):

    68 µH

  • Inductor Application:

    POWER INDUCTOR

  • Inductor Type:

    GENERAL PURPOSE INDUCTOR

  • Number of Functions:

    1

  • Number of Terminals:

    2

  • Operating Temperature-Max:

    125 °C

  • Operating Temperature-Min:

    -40 °C

  • Package Height:

    8 mm

  • Package Length:

    12.5 mm

  • Package Style:

    SMT

  • Package Width:

    12.5 mm

  • Packing Method:

    TR, 13 Inch

  • Rated Current-Max:

    2.44 A

  • Shape/Size Description:

    RECTANGULAR PACKAGE

  • Shielded:

    YES

  • Surface Mount:

    YES

  • Terminal Placement:

    DUAL ENDED

  • Terminal Shape:

    WRAPAROUND

  • Test Frequency:

    0.1 MHz

  • Tolerance:

    20%

DR127-680-R Frequently Asked Questions (FAQs)

  • The recommended PCB land pattern for the DR127-680-R is a rectangular pad with a minimum size of 3.5mm x 2.5mm, with a non-solder mask defined (NSMD) pad shape to ensure proper soldering and thermal relief.
  • To handle thermal considerations, ensure a minimum of 1mm clearance around the inductor, avoid placing heat-sensitive components nearby, and consider using a thermal pad or heat sink if operating in high-temperature environments.
  • The maximum allowed voltage for the DR127-680-R is 100V, but it's recommended to operate within the specified voltage rating of 50V to ensure optimal performance and reliability.
  • While the DR127-680-R is suitable for high-frequency applications, its performance may degrade above 1MHz. For frequencies above 1MHz, consider using a more specialized inductor designed for high-frequency applications.
  • To minimize magnetic field interference, orient the inductor's axis perpendicular to nearby components, use shielding if necessary, and maintain a minimum distance of 5mm between the inductor and sensitive components.

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