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AX-16.000MAGV-T - TXC CORPORATION

Description: TXC - AX-16.000MAGV-T - CRYSTAL, 16MHZ, 8PF, 8 X 4.5MM

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PCB Footprints
AX-16.000MAGV-T - TXC CORPORATION PCB footprint - Other - Other - AX-16.000MAGV-T-1
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3D Models
AX-16.000MAGV-T - TXC CORPORATION  - 3D model - Other - AX-16.000MAGV-T-1
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AX-16.000MAGV-T Details

  • Manufacturer Part Number:

    AX-16.000MAGV-T

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Package Description:

    SMD, 2 PIN

  • Country Of Origin:

    Taiwan

  • HTS Code:

    8541.60.00.80

  • Manufacturer:

    TXC Corporation

  • YTEOL:

    6.8

  • Additional Feature:

    AEC-Q200

  • Crystal/Resonator Type:

    PARALLEL - FUNDAMENTAL

  • Drive Level:

    10 µW

  • Frequency Stability:

    0.005%

  • Frequency Tolerance:

    30 ppm

  • Load Capacitance:

    8 pF

  • Mounting Feature:

    SURFACE MOUNT

  • Operating Frequency-Nom:

    16 MHz

  • Operating Temperature-Max:

    85 °C

  • Operating Temperature-Min:

    -40 °C

  • Physical Dimension:

    8mm x 4.5mm x 1.6mm

  • Series Resistance:

    80 Ω

  • Surface Mount:

    YES

AX-16.000MAGV-T Frequently Asked Questions (FAQs)

  • TXC recommends a symmetrical PCB layout with a ground plane underneath the oscillator to minimize noise and electromagnetic interference. A 4-layer PCB with a dedicated power plane and a separate ground plane is also recommended.
  • The start-up time of the AX-16.000MAGV-T can be influenced by the power supply voltage, temperature, and load capacitance. Ensure a stable power supply, operate within the recommended temperature range, and optimize the load capacitance to minimize start-up time.
  • The maximum allowable frequency deviation for the AX-16.000MAGV-T is ±50 ppm over the entire operating temperature range. However, this value can be affected by factors such as voltage, temperature, and aging.
  • Yes, the AX-16.000MAGV-T is designed to operate in high-vibration environments. However, it's essential to ensure the oscillator is properly mounted and secured to the PCB to prevent mechanical stress and damage.
  • To minimize the impact of noise on the oscillator's output signal, use a low-pass filter or a buffer amplifier to condition the signal. Additionally, ensure proper PCB layout and grounding practices to reduce electromagnetic interference.

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