Manufacturer Part Number
MCP2518FDT-E/SL
Manufacturer
Microchip Technology
Introduction
The MCP2518FDT-E/SL is a highly integrated CAN (Controller Area Network) interface controller that enables communication in automotive and industrial applications with minimal complexity and high reliability.
Product Features and Performance
Implements CAN protocol for efficient communication
SPI Interface for high-speed data transfer
Functional Safety (FuSa) Series for reliability in critical systems
Supports CAN 2.0 standards for broad application compatibility
Operates across a supply voltage range of 2.7V to 5.5V for flexible power options
Low current supply requirement of 20mA for energy-efficient operation
Wide operating temperature range from -40°C to 125°C, suitable for harsh environments
Product Advantages
Enhanced data communication reliability in automotive and industrial applications
Simplifies system design with integrated CAN functionality
Enables the development of safety-critical applications with FuSa certification
High compatibility with existing systems through adherence to CAN 2.0
Low power consumption enhances system energy efficiency
Key Technical Parameters
Protocol: CAN
Interface: SPI
Voltage Supply: 2.7V to 5.5V
Current Supply: 20mA
Operating Temperature: -40°C to 125°C
Package: 14-SOIC
Quality and Safety Features
Designed to meet stringent Functional Safety requirements
Reliable operation in extreme temperatures
Robust communication capabilities with error-detection mechanisms
Compatibility
Broadly compatible with various microcontrollers through SPI
Meets CAN 2.0 protocol specifications for wide industry application
Application Areas
Automotive systems (e.g., powertrain, body control modules)
Industrial automation and control
Safety-critical systems requiring Functional Safety compliance
Product Lifecycle
Currently in active production with no announced discontinuation
Microchip Technology supports its products with documentation and design resources
Several Key Reasons to Choose This Product
High integration reduces system complexity and development time
Functional Safety certification enables use in critical applications
Versatile power and temperature operation ranges accommodate diverse environments
Low power consumption for energy-efficient designs
Broad compatibility and standards adherence simplify integration efforts