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NCV51511PDR2G - onsemi

Description: Integrated Bootstrap Diode for High Side Gate Drive; Bootstrap Supply Voltage Range up to 100V; 3 A Source, 6 A Sink Output Current Capability; Drives 1nF Load with Typical Rise/Fall Times of 6 ns/4 ns; 2 ns Delay Matching (Typical); AEC Qual up to 150°C Tj; HS robustness against negative transients

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PCB Footprints
NCV51511PDR2G - onsemi PCB footprint - Small Outline Packages - Small Outline Packages - SOIC−8 EP CASE 751AC ISSUE D_2021
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3D Models
NCV51511PDR2G - onsemi  - 3D model - Small Outline Packages - SOIC−8 EP CASE 751AC ISSUE D_2021
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NCV51511PDR2G Details

  • Manufacturer Part Number:

    NCV51511PDR2G

  • Brand Name:

    onsemi

  • Pbfree Code:

    Yes

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Part Package Code:

    SOIC-8 EP

  • Package Description:

    HSOP, SOP8,.25

  • Manufacturer Package Code:

    751AC

  • Reach Compliance Code:

    Compliant

  • Country Of Origin:

    Thailand

  • ECCN Code:

    EAR99

  • HTS Code:

    8542.39.00.60

  • Manufacturer:

    onsemi

  • YTEOL:

    7.75

  • Built-in Protections:

    UNDER VOLTAGE; TRANSIENT

  • High Side Driver:

    YES

  • Input Characteristics:

    GATED SCHMITT TRIGGER

  • Interface IC Type:

    HALF BRIDGE BASED MOSFET DRIVER

  • JESD-30 Code:

    R-PDSO-G8

  • Length:

    4.9 mm

  • Moisture Sensitivity Level:

    2

  • Number of Functions:

    1

  • Number of Terminals:

    8

  • Operating Temperature-Max:

    150 °C

  • Operating Temperature-Min:

    -40 °C

  • Output Characteristics:

    STANDARD

  • Output Current Flow Direction:

    SOURCE AND SINK

  • Output Peak Current Limit-Nom:

    6 A

  • Output Polarity:

    TRUE

  • Package Body Material:

    PLASTIC/EPOXY

  • Package Code:

    HSOP

  • Package Equivalence Code:

    SOP8,.25

  • Package Shape:

    RECTANGULAR

  • Package Style:

    SMALL OUTLINE, HEAT SINK/SLUG

  • Peak Reflow Temperature (Cel):

    260

  • Screening Level:

    AEC-Q100

  • Seated Height-Max:

    1.75 mm

  • Supply Current-Max:

    0.3 mA

  • Supply Voltage-Max:

    16 V

  • Supply Voltage-Min:

    8 V

  • Supply Voltage-Nom:

    12 V

  • Supply Voltage1-Max:

    96 V

  • Supply Voltage1-Min:

    7 V

  • Supply Voltage1-Nom:

    12 V

  • Surface Mount:

    YES

  • Temperature Grade:

    AUTOMOTIVE

  • Terminal Finish:

    NICKEL GOLD PALLADIUM

  • Terminal Form:

    GULL WING

  • Terminal Pitch:

    1.27 mm

  • Terminal Position:

    DUAL

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

    30

  • Turn-off Time:

    0.045 µs

  • Turn-on Time:

    0.047 µs

  • Width:

    3.9 mm

NCV51511PDR2G Frequently Asked Questions (FAQs)

  • A good PCB layout for the NCV51511PDR2G involves keeping the input and output capacitors close to the device, using a solid ground plane, and minimizing the length of the input and output traces. Additionally, it's recommended to use a shielded inductor and to keep the device away from high-frequency components.
  • To ensure the NCV51511PDR2G operates within its SOA, monitor the device's junction temperature, input voltage, and output current. Make sure the device is not exposed to excessive temperatures, and the input voltage and output current are within the recommended operating ranges.
  • A low-ESR ceramic capacitor with a value of 10uF to 22uF is recommended for the input capacitor. The capacitor should be placed as close to the device as possible to minimize noise and ensure stable operation.
  • To troubleshoot issues with the NCV51511PDR2G, start by checking the input voltage, output voltage, and output current. Verify that the device is properly soldered and that the PCB layout is correct. Check for signs of overheating, such as excessive temperature or burning smells. Use an oscilloscope to check for noise or oscillations on the output voltage.
  • Yes, the NCV51511PDR2G is suitable for high-reliability applications. It is manufactured using a robust process and is designed to meet the requirements of the automotive and aerospace industries. However, it's essential to follow the recommended operating conditions and to perform thorough testing and validation to ensure the device meets the specific requirements of the application.

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