CDLL7052 Overview
The CDLL7052 is a high-performance clock generator IC designed for precision timing applications within industrial and communication systems. It integrates multiple programmable frequency outputs with low jitter and phase noise, ensuring accurate clock signals for complex digital circuits. This device supports flexible frequency synthesis, enabling seamless adaptation to various interface standards. With robust electrical characteristics and a compact footprint, it simplifies system design and enhances reliability. Engineers and sourcing specialists will find this solution ideal for applications requiring stable, low-noise clock sources to optimize performance. For detailed product information and purchasing options, visit IC Manufacturer.
CDLL7052 Technical Specifications
| Parameter | Specification |
|---|---|
| Input Frequency Range | 10 MHz to 50 MHz |
| Output Frequency Range | 10 MHz to 1.2 GHz |
| Number of Outputs | 4 programmable outputs |
| Phase Noise | -125 dBc/Hz at 10 kHz offset |
| Jitter (RMS) | Less than 1 ps |
| Power Supply Voltage | 3.3 V ?? 5% |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | 32-pin LQFP |
CDLL7052 Key Features
- Programmable Multi-Output Frequency Generation: Allows flexible clock configurations to support multiple system components, reducing the need for additional timing ICs.
- Low Phase Noise and Jitter: Ensures signal integrity, which is critical for high-speed data communication and sensitive measurement applications.
- Wide Frequency Range: Supports broad frequency synthesis from 10 MHz up to 1.2 GHz, catering to various digital and RF timing requirements.
- Robust Operating Temperature Range: Designed to maintain stable performance under industrial temperature conditions, enhancing system reliability.
CDLL7052 Advantages vs Typical Alternatives
This clock generator provides superior low jitter and phase noise performance compared to standard devices, ensuring enhanced signal accuracy and timing stability. Its programmable multi-output capability reduces system complexity and BOM cost. Additionally, the wide frequency range and industrial-grade temperature tolerance make it more versatile and reliable for demanding applications than typical fixed-frequency or less robust alternatives.
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Typical Applications
- High-speed communication equipment requiring multiple synchronized clock outputs to maintain data integrity and system timing.
- Industrial automation systems where precise timing and signal stability are critical for control and monitoring functions.
- Test and measurement instruments demanding low phase noise clock sources for accurate signal analysis.
- Networking devices that utilize programmable clocks for flexible protocol support and enhanced performance.
CDLL7052 Brand Info
The CDLL7052 is part of a product line developed to address the precise timing needs of modern industrial and communication electronics. Manufactured by a leading semiconductor industry player, it reflects a commitment to quality, innovation, and reliability. This device exemplifies the brand’s focus on delivering advanced clock generation solutions that enable engineers to optimize system performance with minimal design complexity.
FAQ
What is the maximum output frequency supported by this clock generator?
The device supports output frequencies up to 1.2 GHz, allowing it to cater to a wide range of high-speed timing applications including RF and digital systems.
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How many output signals can be generated simultaneously?
It features four programmable output channels, enabling multiple clock domains or subsystems to be driven from a single IC, simplifying board design.
What temperature range can the device reliably operate within?
The operating temperature range is from -40??C to +85??C, making it suitable for industrial and harsh environment applications where temperature stability is essential.
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Does the device require an external reference clock?
Yes, it accepts an input clock frequency typically between 10 MHz and 50 MHz, which it uses as a reference to generate the desired output frequencies.
How does the device improve system performance compared to standard clock generators?
By providing low phase noise and jitter characteristics, along with multiple programmable outputs, it ensures precise timing signals that reduce errors and improve overall system reliability and efficiency.






