CY2410SC-1 Overview
The CY2410SC-1 is a high-performance semiconductor device designed for precise frequency generation and clock management in industrial and communication systems. This component delivers stable output with low phase noise, ensuring reliable timing in complex electronic circuits. Engineered for integration into demanding environments, it supports a wide voltage range and offers robust temperature tolerance, making it suitable for diverse applications. The device provides engineers and sourcing specialists with a cost-effective solution combining accuracy and durability. For more detailed technical resources and support, visit the IC Manufacturer website.
CY2410SC-1 Technical Specifications
| Parameter | Specification |
|---|---|
| Output Frequency Range | 10 MHz to 125 MHz |
| Supply Voltage | 3.3 V ?? 10% |
| Phase Noise | -140 dBc/Hz at 10 kHz offset |
| Frequency Stability | ??20 ppm over temperature |
| Operating Temperature Range | -40??C to +85??C |
| Load Type | LVPECL, LVCMOS compatible |
| Package Type | 5×7 mm Ceramic Surface Mount |
| Supply Current | 50 mA typical |
CY2410SC-1 Key Features
- Wide Frequency Range: Supports output frequencies from 10 MHz to 125 MHz, providing flexibility for various clock generation needs.
- Low Phase Noise Performance: Delivers phase noise as low as -140 dBc/Hz at 10 kHz offset, critical for minimizing jitter in high-speed digital systems.
- Robust Voltage and Temperature Tolerance: Operates reliably within a 3.3 V supply and over a broad temperature range (-40??C to +85??C), ensuring stable performance in harsh industrial environments.
- Compatibility with Multiple Load Types: Supports both LVPECL and LVCMOS outputs, enabling easy integration with a wide range of digital logic families.
CY2410SC-1 Advantages vs Typical Alternatives
This semiconductor device offers superior frequency stability and ultra-low phase noise compared to conventional crystal oscillators and clock generators. Its broad operating temperature range and voltage tolerance enhance reliability in industrial settings. The dual-output compatibility with LVPECL and LVCMOS logic ensures seamless system integration, reducing design complexity. Overall, it delivers precise timing with lower power consumption and improved robustness, making it an advantageous choice for engineers prioritizing accuracy and durability.
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Typical Applications
- Telecommunication systems requiring precise clock signals for data synchronization and transmission integrity in network infrastructure.
- Industrial automation controllers where stable timing sources are essential for process coordination and monitoring.
- Test and measurement equipment demanding high-frequency accuracy and low phase noise for signal analysis.
- Embedded systems in consumer electronics that require reliable clock generation under varying environmental conditions.
CY2410SC-1 Brand Info
The CY2410SC-1 is manufactured by a leading supplier specializing in high-quality timing and frequency control devices. This product reflects the brand??s commitment to delivering reliable, precision-driven semiconductors that meet stringent industrial standards. Designed for engineers and sourcing professionals, the device benefits from rigorous quality control and extensive application support, ensuring consistent performance and long-term availability in the supply chain.
FAQ
What is the typical phase noise specification for this component?
The device achieves phase noise performance as low as -140 dBc/Hz at a 10 kHz offset, which is critical for reducing jitter and maintaining signal integrity in high-speed applications.
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Can the device operate at voltages other than 3.3 V?
The specified supply voltage for stable operation is 3.3 V with a tolerance of ??10%. Operating outside this range may impact performance and reliability, so adherence to this specification is recommended.
What temperature range can this product reliably operate within?
It is designed to operate across a wide industrial temperature range from -40??C to +85??C, making it suitable for harsh environments and extended field use.




