Manufacturer Part Number
SI53321-B-GM
Manufacturer
Skyworks Solutions
Introduction
The SI53321-B-GM is a high-performance, low-jitter fanout buffer and multiplexer designed for clock distribution applications. It features a single CML, HCSL, LVCMOS, LVDS, or LVPECL input and ten LVPECL outputs, providing a flexible and efficient solution for distributing high-frequency clocks in a wide range of applications.
Product Features and Performance
Supports input frequencies up to 1.25 GHz
Differential input and output
Low additive jitter of 0.7 ps rms (typical)
Configurable output enabling and disabling
Low power consumption
Product Advantages
Enables efficient clock distribution in high-speed digital systems
Flexible input and output compatibility
Excellent signal integrity with low jitter
Space-saving 32-VFQFN package
Key Reasons to Choose This Product
High-performance clock distribution for demanding applications
Reliable operation over the extended temperature range of -40°C to 85°C
Optimized for power efficiency and design flexibility
Backed by Skyworks' reputation for quality and innovation
Quality and Safety Features
Compliant with relevant industry standards
Manufactured in ISO-certified facilities
Rigorous testing and quality control measures
Compatibility
The SI53321-B-GM is designed to be compatible with a wide range of digital systems and clock distribution architectures, including those utilizing CML, HCSL, LVCMOS, LVDS, or LVPECL signaling.
Application Areas
High-speed digital systems
Networking and telecommunications equipment
Data centers and server infrastructure
Industrial automation and control systems
Medical diagnostic equipment
Aerospace and defense electronics
Product Lifecycle
The SI53321-B-GM is an active product in our website's sales team's product lineup. There are currently no plans for discontinuation, and the company continues to support this model. Customers are advised to check with our website's sales team for information on any potential equivalent or alternative models that may be available.