Manufacturer Part Number
DSPIC33EP64MC202-E/SP
Manufacturer
microchip-technology
Introduction
The DSPIC33EP64MC202-E/SP is a powerful and versatile 16-bit digital signal controller (dsPIC) from Microchip Technology. This device is designed for a wide range of embedded applications, offering advanced peripheral set and high-performance digital signal processing capabilities.
Product Features and Performance
60 MIPS core performance
64KB of program memory
4KB of RAM
6-channel 10-bit/12-bit ADC
Extensive peripheral set including I2C, SPI, UART, LIN, IrDA, and QEI
Powerful motor control PWM module
Brown-out detection and power-on reset
Product Advantages
High-performance 16-bit digital signal processing
Extensive peripheral integration for diverse applications
Automotive-qualified for harsh environments
Low-power operation
Easy-to-use development tools and ecosystem
Key Reasons to Choose This Product
Exceptional performance and peripheral integration for demanding embedded applications
Automotive-grade quality and reliability
Seamless integration with Microchip's broad portfolio of microcontrollers and development tools
Cost-effective solution for high-volume production
Quality and Safety Features
AEC-Q100 qualification for automotive applications
Brown-out detection and power-on reset for reliable operation
Wide operating temperature range of -40°C to 125°C
Compatibility
The DSPIC33EP64MC202-E/SP is compatible with other dsPIC33E family members, allowing for easy migration and scalability across different application requirements.
Application Areas
Motor control and power conversion
Industrial automation and control
Automotive electronics
Robotics and mechatronics
Medical devices
Home appliances
Product Lifecycle
The DSPIC33EP64MC202-E/SP is an active product, and Microchip continues to support this device. There are equivalent and alternative models available within the dsPIC33E family, which offer similar features and capabilities. Customers are advised to contact our website's sales team for the latest product information and availability.