Manufacturer Part Number
SI5330M-B00233-GMR
Manufacturer
Skyworks Solutions
Introduction
The SI5330M-B00233-GMR is a high-performance, programmable fanout buffer and translator device that offers a 1:4 CMOS, HSTL, LVTTL, or SSTL input to HCSL output conversion. This device is designed to provide clock distribution and translation capabilities for a wide range of applications, including servers, storage, networking, and telecommunications equipment.
Product Features and Performance
Supports input frequencies up to 250 MHz
Wide supply voltage range of 1.71V to 3.63V
Differential HCSL output
Low jitter and skew performance
Configurable output enable/disable and polarity
Programmable output drive strength
Product Advantages
Versatile input/output support for seamless integration
Low power consumption for energy-efficient operation
Excellent signal integrity and timing characteristics
Flexible configuration options to meet diverse system requirements
Key Reasons to Choose this Product
High-performance clock distribution and translation
Robust and reliable operation across a wide range of applications
Compact and space-efficient surface-mount package
Backed by Skyworks' reputation for quality and innovation
Quality and Safety Features
Rigorous testing and quality control measures
Compliance with industry safety and environmental standards
Compatibility
The SI5330M-B00233-GMR is compatible with a variety of digital logic families, including CMOS, HSTL, LVTTL, and SSTL, making it a versatile solution for various system architectures.
Application Areas
Server and storage systems
Networking equipment
Telecommunications infrastructure
Industrial automation and control systems
Product Lifecycle
The SI5330M-B00233-GMR is an active product, and our website's sales team continues to offer this model as part of their clock buffer and translator portfolio. While there may be equivalent or alternative models available, it is recommended to contact our website's sales team for the most up-to-date information on product availability and potential replacements.