Allicdata Part #: | 017301-ND |
Manufacturer Part#: |
017301 |
Price: | $ 0.43 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Crystek Corporation |
Short Description: | CRYSTAL 17.64317MHZ SMD |
More Detail: | CRYSTAL 17.64317MHZ SMD |
DataSheet: | 017301 Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 0.39690 |
Series: | -- |
Packaging: | -- |
Part Status: | Active |
Type: | MHz Crystal |
Frequency Stability: | -- |
Frequency Tolerance: | -- |
Load Capacitance: | -- |
Operating Mode: | Fundamental |
Operating Temperature: | -- |
Ratings: | -- |
Mounting Type: | Surface Mount |
Package / Case: | -- |
Size / Dimension: | -- |
Height - Seated (Max): | -- |
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Crystals
Crystals are substances that are made up of atoms that are arranged in a three-dimensional repeating pattern. They are an integral part of the modern world and are used in a variety of applications. One very important application is 017301, which is used in electronic and computer engineering. This article will introduce the application field and working principle of 017301.
The Application Field of 017301
017301 is a type of crystal oscillator, which is a device that produces an oscillating signal at a certain frequency. It is used in a variety of electronic and computer engineering applications to provide timing signals or to regulate the frequency of electronic circuits. The frequency of the signal can be set accurately by adjusting the crystal frequency and voltage. The signal output can also be modified by changing the capacitors and resistors in the circuit.
The most common application of 017301 is in the area of frequency control, where it is used to regulate the frequency of a signal within a certain range. It is also used in communication systems and radio frequency circuits, where it helps to maintain a stable frequency. In embedded systems, 017301 is used to provide timing signals that control the operation of the device. Finally, it is also used in digital signal processing applications, where it helps to maintain a stable and accurate clock signal.
The Working Principle of 017301
The main function of the 017301 crystal oscillator is to produce a periodic signal at a fixed frequency. The core of the device is a piezoelectric crystal, which is a material that generates an electrical signal in response to an applied mechanical stress. The crystal has a natural resonance frequency, which is determined by the crystal’s shape and size. To produce a signal at a uniform frequency, the crystal oscillator circuit is designed to apply a constant electric field to the crystal. As the electric field oscillates back and forth, the crystal absorbs and releases mechanical energy in response to the field, which causes it to vibrate at its natural frequency.
The frequency of the signal produced by the oscillator circuit is determined by the crystal’s resonance frequency and by the frequency of the applied electric field. The overtone model is typically used to calculate the resonance frequency of the crystal. The parameters that are used to calculate the resonance frequency include the crystal’s size, shape and material. The frequency of the applied field can be adjusted by changing the capacitors and resistors in the circuit.
In addition to producing a periodic signal, the 017301 crystal oscillator is also used as an amplifier. This is because it exhibits a frequency-dependent impedance that can be used to amplify an incoming signal. The gain of the amplifier is determined by the frequency of the crystal and by the frequency of the applied electric field. The amplifier can be tuned to amplify signals within a certain frequency range.
Conclusion
017301 is a type of crystal oscillator that is used in a variety of applications, such as frequency control, communication systems, radio frequency circuits, digital signal processing, and embedded systems. Its working principle is based on the properties of a piezoelectric crystal, which produces a periodic signal in response to an applied mechanical stress. The frequency of the signal is determined by the crystal’s resonance frequency and by the frequency of the applied electric field. The amplifier gain of the oscillator can also be adjusted by changing the capacitors and resistors in the circuit.
The specific data is subject to PDF, and the above content is for reference
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