MCP2517FD External CAN FD Controller

Microchip presents an external flexible data rate (FD) series of CAN controllers

Image of Microchip's MCP2517FD External CAN FD Controller Microchip Technology's MCP2517FD is a cost-effective and small-footprint external CAN FD controller that can be easily added to a microcontroller with an available serial peripheral interface (SPI). Therefore, a CAN FD channel can be easily added to a microcontroller that is either lacking a CAN FD peripheral or that does not have enough CAN FD channels. The MCP2517FD supports both CAN frames in the classical format (CAN 2.0B) and CAN flexible data rate (CAN FD) format as specified in ISO11898-1:2015. The MCP2517FD controller is ideal for any embedded IoT application.

Features
  • Conforms to ISO11898-1:2015
  • Supports both CAN 2.0B and CAN FD
  • Arbitration bit rate up to 1 Mbps
  • Data bit rate up to 8 Mbps
  • Up to 20 MHz SPI clock speed
  • 31 FIFOs configurable as transmit or receive
  • 32 flexible filter and mask objects
  • One transmit queue
  • 32-bit time stamp
  • Bus health diagnostics and error counters
  • VDD: 2.7 V to 5.5 V
  • Active current max: 12 mA @ 5.5 V, 40 MHz CAN clock
  • Sleep current: 10 µA, typical
  • Temperature range: -40°C to +150°C
  • Packages: VDFN14 (wettable flanks), SOIC14

ICs

ImageManufacturer Part NumberDescriptionAvailable QuantityPriceView Details
IC CANBUS CONTROLLER SPI 14VDFNMCP2517FD-H/JHAIC CANBUS CONTROLLER SPI 14VDFN3185 - Immediate$2.54View Details
IC CANBUS CONTROLLER SPI 14SOICMCP2517FD-H/SLIC CANBUS CONTROLLER SPI 14SOIC652 - Immediate$2.45View Details
IC CANBUS CONTROLLER SPI 14VDFNMCP2517FDT-H/JHAIC CANBUS CONTROLLER SPI 14VDFN59509 - Immediate$2.54View Details
IC CANBUS CONTROLLER SPI 14SOICMCP2517FDT-H/SLIC CANBUS CONTROLLER SPI 14SOIC27468 - Immediate$2.45View Details

Dev Board

ImageManufacturer Part NumberDescriptionEmbeddedPrimary AttributesNoteAvailable QuantityPriceView Details
EVAL BOARD FOR MCP2517ADM00576EVAL BOARD FOR MCP2517---0 - ImmediateSee Page for PricingView Details
Published: 2018-01-26