CDLL5299/TR Overview
The CDLL5299/TR is a high-performance integrated circuit designed for precision timing and clock generation in complex electronic systems. Featuring a low-jitter phase-locked loop (PLL) and flexible output configuration, this device ensures stable and accurate clock signals essential for high-speed data processing and communication applications. Its wide operating voltage range and robust temperature tolerance make it ideal for industrial environments. The compact packaging and low power consumption enhance system integration and efficiency. For more detailed product information, visit Fabricant de circuits intégrés.
CDLL5299/TR Technical Specifications
Paramètres | Spécifications | Unité |
---|---|---|
Plage de tension de fonctionnement | 2.7 to 3.6 | V |
Gamme de fréquences de sortie | 8 to 200 | MHz |
Bruit de phase | -140 | dBc/Hz @ 1 kHz offset |
Type de sortie | LVPECL, LVDS, CML | – |
Jitter (RMS) | 0.4 | ps |
Plage de température de fonctionnement | De -40 à +85 | ??C |
Type d'emballage | 16-pin TSSOP | – |
Consommation électrique | 120 | mW (typical) |
CDLL5299/TR Key Features
- Low-jitter PLL architecture: Ensures exceptionally stable clock output, minimizing timing errors and improving system reliability.
- Multiple output formats: Supports LVPECL, LVDS, and CML standards, enabling seamless integration with diverse digital interfaces.
- Wide operating voltage and temperature ranges: Allows deployment in harsh industrial conditions without compromising performance.
- Compact 16-pin TSSOP package: Facilitates space-efficient designs and simplifies PCB layout in dense electronic systems.
CDLL5299/TR Advantages vs Typical Alternatives
This device stands out through its exceptionally low jitter and versatile output compatibility, offering engineers enhanced signal integrity and easier integration across various system architectures. Its broad operating voltage and temperature range improve reliability compared to typical clock generators, while the compact package reduces board space. Together, these factors deliver a more robust and flexible solution than many standard timing ICs.
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Applications typiques
- High-speed communication systems requiring precise timing references for data synchronization and error reduction in network infrastructure.
- Industrial automation equipment where stable clock sources ensure accurate control and monitoring functions.
- Test and measurement devices demanding low phase noise clocks to maintain signal fidelity and measurement accuracy.
- Consumer electronics that benefit from low power and compact clock generation modules for efficient system design.
CDLL5299/TR Brand Info
The CDLL5299/TR is part of a specialized product line designed to meet the rigorous demands of advanced electronic systems. Developed by a leading semiconductor manufacturer, this device reflects a commitment to quality, precision, and innovation in clock generation technology. It is engineered to support the evolving needs of industrial, communication, and consumer applications, ensuring dependable performance and ease of integration in diverse environments.
FAQ
What output signal types does this device support?
The device supports multiple output types including LVPECL, LVDS, and CML, providing flexible interfacing options to match the requirements of various digital communication and processing systems.
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What is the typical jitter performance of this clock generator?
The device features a low RMS jitter of approximately 0.4 picoseconds, ensuring high signal integrity and precise timing crucial for high-speed data applications.
Can this IC operate in industrial temperature ranges?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable for demanding industrial environments and temperature-sensitive applications.
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What packaging options are available for this timing IC?
This model comes in a compact 16-pin TSSOP package, which is favorable for space-constrained PCB layouts and helps streamline system design.
How does the power consumption compare to similar devices?
With a typical power consumption of 120 mW, it offers energy-efficient operation that helps reduce overall system power demands without sacrificing performance.