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CSE186L - Triad Magnetics

Description: Current Transformers Current Sense Transformer, Low Frequency, 2 mohm (max. Primary) / 23 mohm (max. Secondary) DC Resistance, 166 (Ratio) Turns, Open Frame Construction

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CSE186L - Triad Magnetics PCB footprint - Other - Other - CSE186L-1
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CSE186L - Triad Magnetics  - 3D model - Other - CSE186L-1
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CSE186L Details

  • Manufacturer Part Number:

    CSE186L

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Country Of Origin:

    Philippines

  • ECCN Code:

    EAR99

  • Manufacturer:

    Triad Magnetics

  • YTEOL:

    8

  • Application:

    POWER

  • Approvals:

    UL

  • ET Product-Min:

    30000 V-us

  • Height:

    18 mm

  • Input Voltage-Max:

    240 V

  • Isolation Voltage:

    2500 V

  • Length:

    24 mm

  • Load Resistance:

    0.023 Ω

  • Mounting Feature:

    THROUGH HOLE MOUNTED

  • Number of Primary Winding:

    1

  • Number of Secondary Winding:

    1

  • Operating Frequency-Max:

    0.4 kHz

  • Operating Frequency-Min:

    0.05 kHz

  • Operating Temperature-Max:

    95 °C

  • Operating Temperature-Min:

    -30 °C

  • Output Voltage 1:

    4 V

  • Primary Type:

    WOUND PRIMARY

  • Surface Mount:

    NO

  • Transformer Type:

    CURRENT SENSE TRANSFORMER

  • Turns Ratio (Np:Ns):

    1:166

  • Width:

    21.5 mm

CSE186L Frequently Asked Questions (FAQs)

  • The recommended operating temperature range for the CSE186L is -40°C to 125°C, although the datasheet only mentions a storage temperature range.
  • Triad Magnetics provides UL and CE certifications for the CSE186L. Ensure you purchase from an authorized distributor and verify the certification marks on the product.
  • Triad Magnetics recommends a maximum voltage imbalance of 10% between the primary and secondary windings to ensure reliable operation and prevent overheating.
  • While the CSE186L is designed for 50/60 Hz operation, it can be used in high-frequency applications up to 100 kHz with proper design considerations and derating.
  • Use the following formula: Power (VA) = (Primary Voltage x Primary Current) / (1 - (Primary Inductance / Secondary Inductance)). Consult the datasheet for specific values.

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