The PI49FCT3807AHE from Diodes Incorporated is a high-performance clock buffer designed to address the needs for distributing a single clock input to multiple destinations. Crafted with precision and reliability in mind, this device is part of the PI49FCT series, which is renowned for its low-skew, low-propagation delay, and high noise immunity characteristics.
Key Features
- Low Skew: Ensures minimal timing difference between output signals, which is critical for maintaining data integrity in synchronous systems.
- High-Speed Operation: Capable of handling clock frequencies up to 100MHz, making it suitable for high-performance computing and telecommunications applications.
- Low Propagation Delay: Guarantees swift signal transmission from the input to the output, which is essential for maintaining system timing accuracy.
- Multiple Outputs: Equipped with 10 outputs to distribute the clock signal to various components without the need for additional buffering.
- Advanced CMOS Technology: Utilizes cutting-edge CMOS technology to deliver energy-efficient performance, reducing overall power consumption.
- Wide Operating Voltage Range: Supports a range of 4.5V to 5.5V, offering flexibility in different power environments.
Applications
The PI49FCT3807AHE is ideal for a variety of applications where reliable clock distribution is critical. These include:
- Synchronous DRAM (SDRAM)
- Personal Computers
- Networking Equipment
- Workstations and Servers
- Telecommunication Systems
Quality and Reliability
Diodes Incorporated is committed to delivering products that meet the highest standards of quality and reliability. The PI49FCT3807AHE has undergone rigorous testing and validation to ensure it performs under a wide range of conditions. Its robust design is suited for both commercial and industrial temperature ranges, ensuring consistent performance across different environments.
Easy Integration
With its industry-standard packaging and pinout configuration, the PI49FCT3807AHE can be easily integrated into existing designs, facilitating a seamless upgrade path for systems requiring enhanced clock distribution capabilities.