Manufacturer Part Number
MC100ELT28DTR2
Manufacturer
onsemi
Introduction
The MC100ELT28DTR2 is a high-performance translator that supports bidirectional translation between Positive Emitter-Coupled Logic (PECL) and Transistor-Transistor Logic (TTL) signaling standards. This device is designed to provide reliable and efficient level shifting between these two widely used logic families, enabling seamless integration in a variety of electronic systems and applications.
Product Features and Performance
Supports unidirectional translation between PECL and TTL logic levels
Operates at a wide temperature range of -40°C to 85°C
Provides a single channel with two circuits for conversion
Offers differential and single-ended output options
Delivers high-speed data transfer with an unspecified maximum data rate
Product Advantages
Enables seamless integration between PECL and TTL logic devices
Maintains signal integrity and reliability during level translation
Compact surface mount package for efficient board layout
Wide operating temperature range for versatile deployment
Key Reasons to Choose This Product
Facilitates efficient and reliable translation between PECL and TTL logic
Supports a variety of electronic systems and applications
Compact and space-saving design for optimized board utilization
Proven performance and quality from the onsemi brand
Quality and Safety Features
Designed and manufactured to onsemi's high-quality standards
Undergoes rigorous testing and quality control processes
Compatibility
The MC100ELT28DTR2 is compatible with PECL and TTL logic devices, allowing for seamless integration in a wide range of electronic systems.
Application Areas
Computer and networking equipment
Industrial automation and control systems
Telecommunications infrastructure
Test and measurement equipment
Medical and healthcare electronics
Product Lifecycle
The MC100ELT28DTR2 is currently in the Obsolete product status. Customers are advised to contact our website's sales team for information on available alternative or equivalent models.