Manufacturer Part Number
MCP2200T-I/SSVAO
Manufacturer
microchip-technology
Introduction
The MCP2200T-I/SSVAO is a versatile USB-to-UART bridge controller that enables seamless communication between USB-enabled devices and UART-based systems. With its robust features and extensive compatibility, this product simplifies the integration of USB connectivity into a wide range of applications.
Product Features and Performance
USB 2.0 full-speed interface
Supports UART communication with programmable baud rates up to 1Mbps
Integrated 3.3V regulator for power supply
Automatic USB bus power detection and management
Configurable GPIO pins for additional control and signaling
Supports USB suspend and resume functionality
Robust ESD protection for reliable operation
Product Advantages
Simplified USB integration for UART-based systems
Reduced design complexity and development time
Versatile configuration options for adaptability
Low power consumption for energy-efficient operation
Automotive-grade quality and reliability
Key Reasons to Choose This Product
Seamless connectivity between USB and UART devices
Optimized for a wide range of applications
Reliable performance and automotive-grade quality
Easy integration and configuration for faster time-to-market
Cost-effective solution for USB connectivity needs
Quality and Safety Features
Automotive-qualified to AEC-Q100 standard
Comprehensive ESD protection for enhanced reliability
Rigorous testing and quality control processes
Compatibility
Supports USB 2.0 full-speed protocol
Compatible with a wide range of UART-based systems
Application Areas
Industrial automation and control systems
Automotive electronics and diagnostics
Medical devices and equipment
Consumer electronics and IoT applications
Product Lifecycle
The MCP2200T-I/SSVAO is an active product, and there are no immediate plans for discontinuation. However, as technology evolves, customers are advised to regularly check with the manufacturer or our website's sales team for updates on product availability and potential alternative models.