CY2292SC-864 Overview
The CY2292SC-864 is a high-performance clock generator IC designed for industrial and communication systems requiring precise frequency synthesis. Operating at a fixed output frequency of 864 MHz, this device offers low phase noise and excellent frequency stability, making it ideal for timing-sensitive applications. It features an integrated phase-locked loop (PLL) and crystal oscillator input, ensuring reliable signal generation with minimal jitter. With a compact package and low power consumption, this clock generator supports efficient system integration. For more product details and sourcing options, visit IC Manufacturer.
CY2292SC-864 Technical Specifications
| Parameter | Specification |
|---|---|
| Output Frequency | 864 MHz |
| Phase Noise @ 1 kHz Offset | -90 dBc/Hz (typical) |
| Supply Voltage | 3.3 V ??5% |
| Power Consumption | 120 mW (typical) |
| Output Type | CMOS |
| Input Reference | 10 MHz Crystal Oscillator |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Package | 8-pin SOIC |
| Frequency Stability | ??20 ppm |
CY2292SC-864 Key Features
- High-frequency output at 864 MHz: Enables precise timing and synchronization for RF and communication systems, improving overall signal integrity.
- Low phase noise performance: Minimizes signal jitter, critical for high-speed data transmission and sensitive measurement equipment.
- Integrated PLL and crystal oscillator input: Simplifies clock generation design by requiring minimal external components and reducing board space.
- Wide operating temperature range: Ensures reliable functionality in harsh industrial environments from -40 ??C to +85 ??C.
CY2292SC-864 Advantages vs Typical Alternatives
This clock generator offers superior phase noise and frequency stability compared to typical alternatives, delivering enhanced signal accuracy and reduced timing errors. Its low power consumption and integrated PLL reduce system complexity and improve energy efficiency. The device??s robust operating temperature range and compact form factor make it a reliable choice for industrial and telecommunications applications demanding consistent performance under varying environmental conditions.
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Typical Applications
- Telecommunication base stations requiring stable clock signals for frequency synthesis and timing synchronization, critical for network reliability and quality.
- High-speed data converters where low phase noise clocks reduce jitter and improve signal-to-noise ratios in analog-to-digital conversion processes.
- Industrial control systems that benefit from precise timing to coordinate multiple processes and ensure accurate operation under varying temperatures.
- Test and measurement equipment needing consistent and accurate clock sources for repeatable and precise measurements.
CY2292SC-864 Brand Info
The CY2292SC-864 is part of a specialized product line from a leading semiconductor manufacturer known for delivering reliable clock generation solutions tailored to the needs of industrial and communication markets. This product embodies the brand??s commitment to precision engineering, quality manufacturing, and extensive application support, ensuring customers receive a high-quality timing component optimized for demanding operational environments.
FAQ
What input reference frequency does the clock generator require?
The device requires a 10 MHz crystal oscillator as its input reference frequency. This standard frequency supports the internal PLL to generate the precise 864 MHz output with excellent stability and low phase noise.
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What package type is the CY2292SC-864 available in?
This clock generator is provided in an 8-pin SOIC package, which is a compact form factor suitable for space-constrained industrial and communication system designs.
How does the operating temperature range influence device reliability?
The wide operating temperature range of -40 ??C to +85 ??C allows the device to maintain stable performance in harsh industrial environments, ensuring consistent timing and frequency generation despite temperature fluctuations.
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Can this clock generator be used in battery-powered applications?
Yes, with a typical power consumption of 120 mW at 3.3 V supply, it is suitable for applications where power efficiency is important, although final suitability depends on the overall system power budget.
What advantages does the integrated PLL provide?
The integrated phase-locked




