The CX2520SB24576H0KESA2 is a crystal resonator manufactured by Kyocera Kinseki Corpotation. It's a surface-mount device (SMD) designed to provide a precise and stable frequency reference for various electronic circuits. Crystal resonators are widely used in microcontrollers, communication devices, and other applications requiring accurate timing.
Applications
- Microcontrollers
- Real-Time Clocks (RTC)
- Communication Devices (e.g., Bluetooth, Wi-Fi)
- Wireless Transceivers
- Consumer Electronics
- Industrial Automation
Features
- 24.576 MHz Frequency: Provides a specific and stable frequency reference.
- SMD Package: Enables automated assembly and compact PCB design.
- High Frequency Stability: Ensures consistent frequency output over temperature variations.
- Low Aging: Minimizes frequency drift over time, ensuring long-term accuracy.
- Wide Operating Temperature Range: Suitable for various environmental conditions.
- RoHS Compliant: Complies with environmental regulations, ensuring eco-friendly operation.
Benefits
- Precise Timing: Provides an accurate and stable frequency reference for critical timing functions.
- Improved System Performance: Ensures reliable operation of microcontrollers and other timing-sensitive circuits.
- Simplified Assembly: SMD package allows for automated assembly, reducing manufacturing costs.
- Compact Design: Small package size enables high-density PCB layouts.
- Long-Term Stability: Low aging ensures consistent performance over an extended period.
- Reliable Operation: Wide operating temperature range ensures reliable operation in diverse environments.
Additional Details
The CX2520SB24576H0KESA2 is housed in a ceramic package. The tolerance is often specified in parts per million (ppm) and influences the precision of the generated frequency. The load capacitance, specified in the datasheet, is an important parameter for matching the crystal to the circuit. It's critical to consult the manufacturer's datasheet for precise operating parameters, load capacitance requirements, and other relevant specifications.