XLH536028.636360X application field and working principle
XLH536028.636360X are oscillators which utilizes the integrated pulse and pulse-width modulation technology to generate high precision sine wave with extreme accuracy and stability. Designed for radio communication, Sonar, Radar and Data transmission, these oscillators provide an ideal solution for military and aerospace applications due to their high temperature, shock resistance and reliability.
Application Fields of XLH536028.636360X
XLH536028.636360X can be used in a number of applications depending on the required frequency, amplitude and stability. Some of the common applications of this oscillator include radio communication, sonar, radar, and data transmission. The oscillator’s superior temperature stability ensures extreme accuracy and precision over a wide range of operating conditions.
It is also suitable for use in high temperature and shock resistant military and aerospace environments. Its design makes it suitable for applications such as communication transponders which require extremely accurate frequency regulation. In addition, it is also widely used in controlling the flow of data in radar systems.
Working Principle of XLH536028.636360X Oscillators
XLH536028.636360X work based on an integrated Pulse and Pulse-Width Modulation technology. A precisely designed oscillator core is used to generate a sine wave. The core is then connected to a high precision frequency controlled resistor and a PLL unit. Precisely calibrated logic control circuits are employed to maintain the frequency and amplitude of the sine wave.
A feedback loop using a digital servo loop is employed to control the amplitude and/or phase of the generated sine wave. This ensures that the generated sine wave remains within a pre-defined range. The oscillator also supports a wide variety of output modes depending on the application requirements.
XLH536028.636360X are designed to provide high stability and extreme accuracy in extremely challenging environment. Its superior temperature stability ensures that it maintains a very low frequency error count over the entire operating range. The oscillator is also shock and vibration proof which ensures its high reliability in harsh environments.
Conclusion
XLH536028.636360X are oscillators which are designed for extremely high stability and accuracy. Owing to its sophisticated design and integrated Pulse and Pulse-Width Modulation technology, they provide an ideal solution for military and aerospace applications. The oscillator is also suitable for a number of application fields such as radio communication, sonar, radar and data transmission. It also supports a wide variety of output modes, making it a versatile solution for a variety of applications.