Product Overview: PI49FCT3805DSE by Diodes Incorporated
The PI49FCT3805DSE is a high-performance clock buffer from Diodes Incorporated, designed to address the needs of modern electronic systems requiring reliable clock distribution. This device is part of the PI49FCT series, known for its low skew, high-speed operation, and the ability to drive multiple loads with precision and stability.
Key Features
- Low Skew: The PI49FCT3805DSE offers very low output-to-output skew, which is crucial for maintaining the integrity of clock signals in timing-sensitive applications.
- High-Speed Operation: With its ability to operate at high frequencies, this clock buffer is suitable for systems that require fast and accurate timing signals.
- Drive Capability: It has the ability to drive up to 10 Low Power Schottky (LPS) loads, ensuring compatibility with a wide range of digital circuits.
- Power Supply: This device operates on a 5V ±10% power supply, making it versatile for use in various logic environments.
- Temperature Range: The PI49FCT3805DSE is designed to function over an extended industrial temperature range, making it reliable for use in harsh conditions.
Applications
The PI49FCT3805DSE is ideal for multiple applications where precise clock distribution is essential. It is commonly used in:
- Workstations and servers
- Telecommunication systems
- Networking equipment
- Embedded systems
- Test and measurement equipment
Quality and Reliability
Diodes Incorporated is committed to providing high-quality products. The PI49FCT3805DSE is no exception and is manufactured with rigorous standards to ensure performance and reliability. It is available in a space-saving QSOP package, which is beneficial for designs where board space is at a premium.
Environmental Compliance
The PI49FCT3805DSE is compliant with RoHS standards, ensuring that it meets global environmental regulations and is free from hazardous substances.
With its combination of features, the PI49FCT3805DSE from Diodes Incorporated stands out as a robust solution for clock distribution challenges in a wide array of electronic systems.