Manufacturer Part Number
PI6C48545LEX
Manufacturer
diodes
Introduction
The PI6C48545LEX is a high-performance fanout buffer and multiplexer device that can be used in a variety of clock distribution and timing applications. It features a 2-to-4 fanout ratio, supporting differential LVDS input and output signals at frequencies up to 650 MHz. The device operates from a 3.3V power supply and can function in a wide temperature range of -40°C to 85°C.
Product Features and Performance
Fanout buffer and multiplexer with 2-to-4 ratio
Supports differential LVDS input and output signals
Maximum operating frequency of 650 MHz
Wide operating voltage range of 3.135V to 3.465V
Wide operating temperature range of -40°C to 85°C
Surface mount package (20-TSSOP)
Product Advantages
Enables efficient clock distribution and timing in high-speed applications
Provides reliable and stable signal transmission with differential LVDS technology
Flexibility in power supply and temperature range allows for versatile system integration
Key Reasons to Choose This Product
High-performance clock distribution and timing solution
Supports high-speed LVDS signaling for enhanced signal integrity
Robust design with wide operating voltage and temperature ranges
Compact surface mount package for space-constrained applications
Quality and Safety Features
Rigorously tested for reliability and performance
Complies with industry safety and environmental standards
Compatibility
Compatible with LVCMOS and LVTTL input signals
LVDS output signals can be interfaced with a wide range of LVDS-compatible devices
Application Areas
Telecommunications equipment
Networking and data communication systems
Industrial automation and control systems
Medical imaging and diagnostic equipment
Product Lifecycle
The PI6C48545LEX is an obsolete product, meaning it is no longer in active production. However, there may be equivalent or alternative models available from diodes. Customers are advised to contact our website's sales team for more information on current product offerings that could serve as replacements.