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XLH536020.000000I - Renesas Electronics

Description: Standard Clock Oscillators 20.0MHz 3.3Volt 25ppm -40C +85C

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PCB Footprints
XLH536020.000000I - Renesas Electronics PCB footprint - Other - Other - 5.0 × 3.2 × 1.2 mm
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3D Models
XLH536020.000000I - Renesas Electronics  - 3D model - Other - 5.0 × 3.2 × 1.2 mm
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XLH536020.000000I Details

  • Manufacturer Part Number:

    XLH536020.000000I

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Package Description:

    CLCC, 6 PIN

  • ECCN Code:

    EAR99

  • HTS Code:

    8542.39.00.01

  • Factory Lead Time:

    12 Weeks

  • Manufacturer:

    Renesas Electronics Corporation

  • YTEOL:

    6.38

  • Additional Feature:

    ENABLE/DISABLE FUNCTION; ALSO COMPATIBLE WITH LVCMOS OUTPUT

  • Fall Time-Max:

    3 ns

  • Frequency Adjustment-Mechanical:

    NO

  • Frequency Stability:

    25%

  • Mounting Feature:

    SURFACE MOUNT

  • Number of Terminals:

    6

  • Operating Frequency-Nom:

    20 MHz

  • Operating Temperature-Max:

    85 °C

  • Operating Temperature-Min:

    -40 °C

  • Oscillator Type:

    HCMOS

  • Output Load:

    15 pF

  • Physical Dimension:

    5.0mm x 3.2mm x 1.1mm

  • Rise Time-Max:

    3 ns

  • Supply Voltage-Max:

    3.465 V

  • Supply Voltage-Min:

    3.135 V

  • Supply Voltage-Nom:

    3.3 V

  • Surface Mount:

    YES

  • Symmetry-Max:

    55/45 %

XLH536020.000000I Frequently Asked Questions (FAQs)

  • A 4-layer PCB with a solid ground plane and thermal vias is recommended. Ensure a minimum of 1 oz copper thickness and a thermal relief pattern under the IC.
  • Implement a robust power-on reset circuit, ensure a stable clock signal, and use a reliable voltage regulator. Also, consider using a thermistor or thermocouple to monitor temperature.
  • Use a shielded enclosure, ensure proper grounding, and add EMI filters to the power supply and I/O lines. Also, consider using a common-mode choke and ferrite beads.
  • Use a low-dropout linear regulator or a high-efficiency switching regulator. Ensure a stable input voltage, and add decoupling capacitors close to the IC.
  • Use a logic analyzer or oscilloscope to monitor signals. Ensure proper probe placement and use a high-impedance probe to avoid signal loading.

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