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DMA202010R - Panasonic

Description: DMA202010R, Dual Digital Transistor, PNP -100 mA -50 V, Common Base, 5-Pin Mini5 G3 B

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PCB Footprints
DMA202010R - Panasonic PCB footprint - SOT23 (5-Pin) - SOT23 (5-Pin) - Mini5-G3-B
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3D Models
DMA202010R - Panasonic  - 3D model - SOT23 (5-Pin) - Mini5-G3-B
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DMA202010R Details

  • Manufacturer Part Number:

    DMA202010R

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Transferred

  • Package Description:

    HALOGEN FREE AND ROHS COMPLIANT, MINI5-G3-B, MO-178, SC-74A, 5 PIN

  • ECCN Code:

    EAR99

  • Manufacturer:

    Panasonic Electronic Components

  • Collector Current-Max (IC):

    0.1 A

  • Collector-Emitter Voltage-Max:

    50 V

  • Configuration:

    COMMON BASE, 2 ELEMENTS

  • DC Current Gain-Min (hFE):

    210

  • JEDEC-95 Code:

    MO-178AA

  • JESD-30 Code:

    R-PDSO-G5

  • Number of Elements:

    2

  • Number of Terminals:

    5

  • Package Body Material:

    PLASTIC/EPOXY

  • Package Shape:

    RECTANGULAR

  • Package Style:

    SMALL OUTLINE

  • Peak Reflow Temperature (Cel):

    NOT SPECIFIED

  • Polarity/Channel Type:

    PNP

  • Surface Mount:

    YES

  • Terminal Form:

    GULL WING

  • Terminal Position:

    DUAL

  • Time@Peak Reflow Temperature-Max (s):

    NOT SPECIFIED

  • Transistor Application:

    AMPLIFIER

  • Transistor Element Material:

    SILICON

  • Transition Frequency-Nom (fT):

    150 MHz

DMA202010R Frequently Asked Questions (FAQs)

  • A 4-layer PCB with a solid ground plane and a separate power plane is recommended. Keep the signal traces short and away from noise sources. Use a 50-ohm impedance-controlled trace for the clock signal.
  • Use a heat sink with a thermal resistance of 10°C/W or less. Ensure good airflow around the device. Consider using a thermal interface material with a thermal conductivity of 1 W/m-K or higher.
  • The maximum allowable voltage on the VCC pin is 3.6V. Exceeding this voltage may cause permanent damage to the device.
  • Yes, the DMA202010R is suitable for battery-powered devices due to its low power consumption (typically 10mA at 3.3V). However, consider using a low-dropout regulator to minimize power consumption.
  • Use an oscilloscope to verify the clock signal and data transmission. Check the power supply voltage and decoupling capacitors. Consult the datasheet and application notes for troubleshooting guidelines.

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