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  • Crystals(41)
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    P219660XFAC20XX

    19.6608 MHz Plastic SMD

    wi2wi/Precision Devices

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    HA50750X3SASECX

    50.75 MHz H.C. 49/U thru hole

    wi2wi/Precision Devices

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    C716800XFSM20XX

    16.800MHz Crystal

    wi2wi/Precision Devices

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    U111975XFAS27XX

    11.975 MHz 27 pF

    wi2wi/Precision Devices

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    P214318XFCS20XX

    14.318180 MHz Plastic SMD Xtal

    wi2wi/Precision Devices

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    C718432XFCB18XX

    18.432MHz Ceramic 5x7 18pf

    wi2wi/Precision Devices

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    C718432XFSB18XX

    18.432MHz Fnd Ceramic Crystal

    wi2wi/Precision Devices

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    C719500XFAS10RX

    19.500Mhz Ceramic

    wi2wi/Precision Devices

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    P210000XFCB20XX

    10.000 MHz Plastic Xtal Assem

    wi2wi/Precision Devices

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    HA26690X3BSSECX

    26.69 MHz

    wi2wi/Precision Devices

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    U184000X5SDSEXX

    84 MHz

    wi2wi/Precision Devices

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    L328000XFAA18BX

    28.00Mhz Lp-9000 w/Spacer

    wi2wi/Precision Devices

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    U108000XFCCSEXX

    8 MHz

    wi2wi/Precision Devices

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    L414660XFBS17HX

    14.66 MHz LP40 thru hole 4.0

    wi2wi/Precision Devices

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    L616000XFCS22XX

    16.00Mhz Lp-9000 w/Spacer 22pf

    wi2wi/Precision Devices

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    L614745XFCD20XX

    14.745600 MHz Fund.

    wi2wi/Precision Devices

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    L413248XFSA20BX

    13.248 MHz LP SMD 20pf

    wi2wi/Precision Devices

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    PS3306 - 25.000000

    3.2 x 2.5 x 0.6

    wi2wi/Precision Devices

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    C537500XFSA12RX

    37.500000 MHz Fund.

    wi2wi/Precision Devices

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    L422118XFCB18BA

    22.1184MHz LP Crystal

    wi2wi/Precision Devices

  • Total 41
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    What Are Crystal In Electronics?

    Crystal products are passive components primarily utilized as time or frequency references in electronic systems. They consist of a piezoelectric crystal that vibrates mechanically at a specific frequency. To function properly, they need an external oscillator circuit with carefully calibrated capacitance, drive voltage, and series resistance to produce a signal at the crystal's indicated frequency. This setup must operate effectively across the specified temperature range without harming the crystal element. Active devices that incorporate this essential circuitry are classified as oscillators and listed separately.


    Crystal


    How Does a Crystal Work in Electronics?

    A crystal operates in electronics by utilizing its unique physical properties to produce a stable and accurate frequency. The key to its functionality lies in its ability to vibrate at a specific frequency.

    When an electrical voltage is applied, the crystal experiences the piezoelectric effect, which causes it to deform or vibrate at its natural or resonant frequency. This resonant frequency is influenced by the crystal's physical characteristics, including its shape, size, and lattice structure.

    The vibrating crystal generates electrical signals at a precise frequency, which are used to regulate timing in electronic circuits. These signals serve as clock signals in digital circuits, ensuring synchronized operations and accurate timing intervals.

    The inherent stability of the crystal's frequency is essential for reliable performance. It maintains its resonant frequency with minimal variation, even under changing environmental conditions like temperature and pressure. This stability is crucial for accurate timekeeping and synchronization in electronic devices.

    Incorporating a crystal into electronic circuits provides a reference point for generating stable and predictable frequencies. The oscillation frequency is determined by the crystal's physical attributes, such as its thickness and cut, and can be adjusted with external components to meet specific device requirements.

    Overall, the precise vibrations of a crystal enable it to act as a dependable frequency-determining element in electronic circuits. Its ability to maintain stable frequencies makes it an essential component for various applications that depend on accurate timing and synchronization.

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