CY2411SC-1 Overview
The CY2411SC-1 is a high-performance semiconductor device designed for precision timing and clock generation applications. It offers robust signal integrity with low phase jitter and excellent frequency stability, making it ideal for demanding industrial and communication systems. The device supports multiple frequency outputs and features flexible configuration options to meet diverse design requirements. Engineered for reliability and integration ease, this component enhances system performance while reducing design complexity. For detailed specifications and purchasing information, visit IC Manufacturer.
CY2411SC-1 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.3 V ?? 10% |
| Frequency Output Range | 10 MHz to 200 MHz |
| Phase Jitter (RMS) | ?? 0.5 ps (12 kHz ?C 20 MHz) |
| Output Type | CMOS |
| Package Type | 8-pin SOIC |
| Supply Current | 25 mA typical |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Frequency Stability | ??50 ppm max |
| Load Capability | 15 pF |
CY2411SC-1 Key Features
- Low Phase Jitter Performance: Ensures minimal timing noise, critical for high-speed digital communication and precise clock distribution.
- Wide Frequency Output Range: Supports multiple frequency settings from 10 MHz to 200 MHz, offering flexibility for various system designs.
- CMOS Output Driver: Provides strong signal drive capability while maintaining low power consumption for efficient operation.
- Compact SOIC Package: Facilitates easy PCB integration in space-constrained industrial or communication equipment.
CY2411SC-1 Advantages vs Typical Alternatives
This device stands out with its superior phase jitter control and broad frequency range compared to typical timing ICs. Its low power consumption combined with a compact SOIC footprint makes it more reliable and easier to integrate into complex systems. The precise frequency stability and CMOS output provide enhanced signal integrity, ensuring better system performance in industrial and communication applications.
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Typical Applications
- Clock generation and distribution in telecommunications equipment, where low jitter and frequency flexibility improve data integrity and synchronization across networks.
- Industrial automation systems requiring stable and precise timing references for motor control and process synchronization.
- Embedded systems that demand compact, low-power clock sources for microprocessor and FPGA timing.
- Test and measurement instruments that rely on accurate and stable frequency outputs for calibration and signal analysis.
CY2411SC-1 Brand Info
The CY2411SC-1 is a precision timing IC offered by a leading semiconductor manufacturer known for delivering high-quality clock and timing solutions. This product reflects the brand??s commitment to innovation, reliability, and performance in industrial and communication electronics. Engineered to meet stringent industry standards, the device supports diverse applications requiring exact frequency control and low noise operation.
FAQ
What is the typical power consumption of this timing IC?
The device typically consumes about 25 mA at a 3.3 V supply voltage, balancing power efficiency with robust output drive capability. This moderate current draw makes it suitable for systems where power budget is a consideration but high signal integrity is required.
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Can the output frequency be programmed or configured?
The output frequency is selectable within a range of 10 MHz to 200 MHz. This flexibility allows designers to choose or configure the frequency best suited for their application??s timing requirements, enhancing system adaptability.
What package options are available for this device?
The CY2411SC-1 comes in an 8-pin SOIC package, which is widely used in industrial and communication electronics for its balance of compact size and ease of assembly on standard printed circuit boards.
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How does the device ensure low phase jitter performance?
Low phase jitter is achieved through internal design optimizations and quality semiconductor processes. This reduces timing noise, which is essential for applications requiring accurate clock signals and minimal signal degradation.
Is the device suitable for operation in harsh industrial environments?
Yes, it operates reliably across an industrial temperature range from -40 ??C



