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25TQC15MYFB - Panasonic

Description: Capacitor Polymer POSCAP 15uF 25V Panasonic 15μF Solid Polymer Tantalum Capacitor, 25 V dc ±20%, TQC Series

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PCB Footprints
25TQC15MYFB - Panasonic PCB footprint - Other - Other - B2
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25TQC15MYFB - Panasonic  - 3D model - Other - B2
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25TQC15MYFB Details

  • Manufacturer Part Number:

    25TQC15MYFB

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Not Recommended

  • Package Description:

    CHIP

  • Reach Compliance Code:

    Compliant

  • Country Of Origin:

    Indonesia, Japan

  • ECCN Code:

    EAR99

  • HTS Code:

    8532.21.00.50

  • Manufacturer:

    Panasonic Electronic Components

  • YTEOL:

    3

  • Additional Feature:

    ESR AND RIPPLE CURRENT IS MEASURED AT 100KHZ

  • Capacitance:

    15 µF

  • Capacitor Type:

    TANTALUM CAPACITOR

  • Dielectric Material:

    TANTALUM (DRY/SOLID)

  • ESR:

    100 mΩ

  • Height:

    1.9 mm

  • Leakage Current:

    0.1125 mA

  • Length:

    3.5 mm

  • Mounting Feature:

    SURFACE MOUNT

  • Negative Tolerance:

    20%

  • Number of Terminals:

    2

  • Operating Temperature-Max:

    105 °C

  • Operating Temperature-Min:

    -55 °C

  • Package Shape:

    RECTANGULAR PACKAGE

  • Package Style:

    SMT

  • Packing Method:

    TR, EMBOSSED, 7 INCH

  • Polarity:

    POLARIZED

  • Positive Tolerance:

    20%

  • Rated (DC) Voltage (URdc):

    25 V

  • Ripple Current:

    900 mA

  • Size Code:

    1411

  • Surface Mount:

    YES

  • Tan Delta:

    0.1

  • Terminal Shape:

    J BEND

  • Width:

    2.8 mm

25TQC15MYFB Frequently Asked Questions (FAQs)

  • Panasonic provides a recommended PCB layout and land pattern in their application notes. It's essential to follow these guidelines to ensure proper soldering and to prevent thermal issues.
  • Proper heat sinking, airflow, and thermal management are crucial. Ensure good airflow around the relay, and consider using a heat sink or thermal interface material to maintain a safe operating temperature.
  • A suitable drive circuit should be used to ensure the relay is properly driven. A transistor or FET switch can be used to drive the relay coil. Panasonic provides example drive circuits in their application notes.
  • Proper shielding, grounding, and layout techniques can help minimize EMI and ensure EMC compliance. Follow best practices for PCB design, and consider using EMI filters or shielding components if necessary.
  • Ensure the relay is used within its specified voltage and current ratings. Follow proper safety guidelines when working with high-voltage or high-current systems, and consider using protective devices such as fuses or surge protectors.

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