Oscillators
DSC1001DC1-004.0960T application field and working principle
Oscillators are an integral component of electronic systems. They generate an output signal that has a constant frequency. The DSC1001DC1-004.0960T is a crystal oscillator, also known as crystal clock oscillator. It is commonly used for high stability and accuracy.
Application Field
The DSC1001DC1-004.0960T is suitable for a wide range of applications where the oscillator’s frequency stability and accuracy are of paramount importance. It is commonly used in communication circuits, especially radio circuits, base station timing modules, global positioning systems (GPS), satellite navigation systems, digital television systems, and other precision electronic instrumentation and radio-frequency (RF) communication systems.
Working Principle
The DSC1001DC1-004.0960T works by using quartz crystal plate as the resonator. When a voltage is applied to the quartz, it vibrates at a frequency determined by the plate’s measurement and construction. The vibrating quartz is then connected to an amplifier circuit and the output is a signal with a constant frequency.
The output frequency of the DSC1001DC1-004.0960T is determined by two components, the quartz crystal plate and the amplifier circuit. The quartz crystal has a natural resonance which is determined by the size and shape of the plate. Once the frequency of the quartz plate is known the amplifier circuit is adjusted to match it and the output signal is generated.
The combination of quartz crystal plate and amplifier allows the DSC1001DC1-004.0960T to be extremely accurate and stable. The frequency stability of the DSC1001DC1-004.0960T is usually better than 0.2ppm, which makes it suitable for use in precision instruments and frequency sensitive systems.
The DSC1001DC1-004.0960T is a highly versatile crystal oscillator that is suitable for many types of applications, including those requiring stability and accuracy over long periods of time. It is a reliable choice for systems requiring an oscillator with consistent performance.