The CDCF2510PW G4 is a high-performance, precision clock buffer from Texas Instruments designed to deliver exceptional clock distribution for a wide range of applications. This device is part of TI's extensive clock and timing solutions, offering both low-jitter and high-fanout capabilities to meet the stringent requirements of complex digital systems.
Key Features
- Low Skew: The CDCF2510PW G4 provides extremely low output-to-output skew, ensuring that clock signals are distributed with minimal timing discrepancies between different parts of a system.
- Multiple Outputs: It features ten low-skew, high-drive outputs that can drive up to 50Ω loads, making it suitable for distributing high-speed signals across multiple destinations without signal integrity loss.
- Wide Operating Range: This device operates over a wide voltage range, accommodating various system requirements and ensuring compatibility with a range of digital logic levels.
- Flexible Input Frequency: The CDCF2510PW G4 supports a broad range of input frequencies, providing versatility for different clocking needs and simplifying system design.
- Industrial Temperature Range: It is designed to operate reliably within an industrial temperature range, making it suitable for use in environments subjected to extreme conditions.
Applications
The CDCF2510PW G4 is ideal for multiple applications that require precise and reliable clock distribution, including:
- Networking equipment such as routers and switches
- Telecommunications infrastructure
- Data centers and servers
- Test and measurement systems
- High-performance computing and storage platforms
Product Specifications
| Parameter |
Value |
| Package Type |
TSSOP |
| Number of Outputs |
10 |
| Supply Voltage |
3.3V ±0.3V |
| Operating Temperature Range |
-40°C to +85°C |
| Input Frequency Range |
Varies with configuration |
With its robust design and high-quality performance, the CDCF2510PW G4 from Texas Instruments represents a reliable solution for system designers looking to optimize clock distribution in their digital systems.