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3.579545 MHz 2 Pin Oscillator Crystal
- Crystal Case Type : Metal Can
- Crystal Mounting Type : Through Hole
- Frequency : 3.579545MHZ
- Frequency Stability : ± 20ppm
- Frequency Tolerance : ± 20ppm
- Load Capacitance : 20 pF
- No. of Pins : 2
- Operating Temperature Max : 70 °C
- Operating Temperature Min : -10 °C
- Operating Temperature Range : -10°C to +70°C
- Effective Series Resistance : 30 ohm
A crystal oscillator designed as an electronic oscillator circuit that uses the mechanical resonance of a vibrating crystal of piezoelectric material. This material used to create an electrical signal with a constant frequency. This frequency often used to keep track of time, as in quartz wristwatches. As a result, digital integrated circuits will have a consistent clock signal, and radio transmitters and receivers will have stable frequencies. Meanwhile, these oscillators may be used in a variety of ways. Computers, instruments, digital systems, phase-locked loop systems, modems, maritime, telecommunications, sensors, and disc drives are just a few examples.
In most cases, the inverse piezoelectric effect is used in the crystal oscillator circuit. As a result, the applied electric field causes some materials to deform mechanically. As a result, it makes use of the mechanical resonance of a vibrating crystal constructed of a piezoelectric material to generate an electrical signal of a certain frequency. In general, we know that crystal oscillators are utilized in the design of microprocessors and microcontrollers to provide clock signals. Furthermore, this crystal oscillator has a 455 KHz cycle rate, which is employed to create clock pulses for the synchronisation of all internal processes.
APPLICATIONS
- Computers
- Small UMPC
- Digital television
- Electronic boards, etc

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