The ST413HC 96.0000MHZ is a crystal oscillator. These oscillators use the piezoelectric effect of a quartz crystal to create a very stable and accurate frequency signal. They are fundamental in applications needing precise timing.
Applications
- Networking Equipment: Used as a clock source for routers, switches, and other networking devices, ensuring accurate data transmission.
- Communication Systems: Provides a stable carrier frequency for radio transmitters and receivers.
- High-Speed Data Acquisition: Used in data acquisition systems to synchronize sampling rates and ensure accurate data capture.
- Instrumentation and Measurement: Used in frequency counters, signal generators, and other instruments for precise frequency generation and measurement.
- Microprocessors and Microcontrollers: Serves as the primary clock source for microprocessors and microcontrollers.
Features
- High Frequency: Operates at a frequency of 96.0000 MHz.
- Excellent Frequency Stability: Provides a stable frequency output over a wide range of operating conditions.
- Low Jitter: Minimizes timing variations in the output signal, ensuring reliable performance.
- Compact Size: The small form factor allows for easy integration into space-constrained designs.
- Low Power Consumption: Consumes minimal power, making it suitable for battery-powered and energy-efficient applications.
Benefits
- Precise Timing: Provides accurate timing signals for a wide range of electronic applications.
- Stable Operation: Ensures stable operation even under varying environmental conditions.
- Improved System Performance: Contributes to improved overall system performance and reliability.
- Easy to Integrate: Can be easily integrated into existing and new designs.
- Long-Term Reliability: Offers long-term stability and reliable operation.
Additional Details
The ST413HC series is likely a surface mount crystal oscillator. The 96.0000MHz denotes the operating frequency. Critical specifications to consult on the datasheet would be the frequency tolerance (in ppm), the frequency stability over temperature, the operating voltage, the load capacitance, and the operating temperature range.