Manufacturer Part Number
MC10EP57DTR2G
Manufacturer
onsemi
Introduction
The MC10EP57DTR2G is a high-speed differential 4:1 digital multiplexer designed for signal routing in communication and data systems.
Product Features and Performance
High-speed differential 4:1 multiplexer
Low noise, minimal signal skew
Broad voltage supply range: ±3V ~ 5.5V
Supports mixed-mode signal operation
Differential design reduces crosstalk
ECL compatible inputs and outputs
Enhanced signal integrity at high frequencies
Product Advantages
Superior performance for high-speed applications
Optimized for low power consumption
Dual supply voltage offers design flexibility
Space-saving 20-TSSOP package
Industrial temperature range support
RoHS compliant for environmental considerations
Key Technical Parameters
Series: 10EP
Type: Differential Digital Multiplexer
Circuit: 1 x 4:1
Independent Circuits: 1
Voltage Supply Source: Dual Supply
Voltage Supply Range: ±3V ~ 5.5V
Operating Temperature Range: -40°C ~ 85°C
Quality and Safety Features
Manufactured to high-quality standards with rigorous testing
Built-in electrostatic discharge protection
Industry certifications for quality and safety
Compatibility
Compatible with ECL logic systems
Interoperable with other standard logic families using appropriate level shifting
Application Areas
High-speed data transmission systems
Telecommunications
Data acquisition systems
Network switches and routers
Signal processing equipment
Product Lifecycle
Status: Active
Not indicated as nearing discontinuation
Replacement and upgrade options may be available through onsemi
Several Key Reasons to Choose This Product
High-speed switching capabilities for critical applications
Robust performance over a wide operating temperature range
Diverse voltage supply options cater to different system requirements
Designed for minimal signal degradation in complex circuits
The product is actively supported and sourced, providing long-term application viability
Offered by onsemi, a reputable manufacturer in semiconductor innovation