GC2500137
Diodes Incorporated
Product details
The GC2500137 from Diodes Incorporated represents cutting-edge Crystals technology, engineered to deliver exceptional timing solutions for mission-critical applications. This precision component combines advanced frequency control with robust construction, making it ideal for demanding environments where signal integrity and clock synchronization are paramount.Designed as a MHz Crystal, this crystal oscillator provides superior waveform purity compared to conventional solutions, ensuring reliable performance in RF and digital systems.Operating at 25.000625 MHz, the device maintains exceptional jitter characteristics, crucial for high-speed data transmission and precision instrumentation applications.With ±20ppm stability, this component outperforms industry standards, particularly in temperature-sensitive environments like automotive and industrial control systems.The tight ±20ppm tolerance enables precise clock generation, reducing phase noise in sensitive communication equipment and test measurement devices.Featuring 10pF load capacitance, the oscillator demonstrates excellent impedance matching characteristics, minimizing reflections in high-frequency PCB layouts.The low 20 Ohms ESR value enhances energy efficiency while maintaining signal clarity, particularly beneficial for battery-powered IoT devices.Utilizing Fundamental operation, this solution achieves optimal harmonic suppression, critical for EMI-sensitive medical imaging equipment.Rated for -40°C ~ 85°C, the component maintains consistent performance across extreme conditions, from outdoor 5G base stations to aerospace applications.
Product Attributes
- Product Status: Active
- Type: MHz Crystal
- Frequency: 25.000625 MHz
- Frequency Stability: ±20ppm
- Frequency Tolerance: ±20ppm
- Load Capacitance: 10pF
- ESR (Equivalent Series Resistance): 20 Ohms
- Operating Mode: Fundamental
- Operating Temperature: -40°C ~ 85°C
- Ratings: -
- Mounting Type: -
- Package / Case: -
- Size / Dimension: -
- Height - Seated (Max): -