Description: The oscillator output of the XR-567 can be amplified using the output amplifier and high-current logic output available at pin 8. In this manner, the circuit can switch 100-mA load currents without sacrificing oscillator stability. The oscillator frequency can be modulated over ±6% in frequency by applying a control voltage to pin 2.
The XR-567 is a versatile integrated circuit designed for use in oscillator applications. Its output amplifier, connected to pin 8, allows for the amplification of the oscillator output, facilitating the control of larger load currents. This capability is particularly beneficial in applications requiring the switching of loads up to 100 mA, ensuring that the integrity of the oscillator signal is maintained even under significant load conditions.
The modulation of the oscillator frequency is achieved through the application of a control voltage to pin 2. This feature allows for fine-tuning of the oscillator's operation, enabling frequency adjustments within a range of ±6%. Such modulation can be critical in applications where precise frequency control is necessary, such as in phase-locked loops (PLLs) or frequency synthesizers.
The XR-567's design incorporates feedback mechanisms to maintain stability during load switching, which is essential for ensuring that the oscillator's performance remains consistent. The high-current logic output not only enhances the circuit's capability to drive larger loads but also minimizes the risk of signal degradation that could arise from excessive loading.
Overall, the XR-567's combination of an output amplifier, high-current capability, and frequency modulation makes it a valuable component in a variety of electronic applications, particularly in situations where both stability and flexibility in frequency control are required.The oscillator output of the XR-567 can be amplified using the output amplifier and high-current logic output available at pin 8. In this manner, the circuit can switch 100-mA load currents without sacrificing oscillator stability.
The oscillator frequency can be modulated over ±6% in frequency by applying a control voltage of pin 2.
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