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LORDWORLD

LORDWORLD RP2350-CAN Development Board XL2515 150MHz

SKU CH-QBP6-113C9

Pico-compatible dual-core RP2350A board with built-in XL2515 CAN bus controller, 26 GPIOs, 12 PIO channels and USB 1.1 at 150 MHz

  • Dual-core RP2350A at 150 MHz for real-time embedded tasks
  • Built-in XL2515 CAN controller with SIT65HVD230 transceiver up to 1 Mbps
  • Pico-compatible form factor with 26 multi-function GPIOs and castellated edges
  • C/C++ and MicroPython support with comprehensive SDKs and tutorials
  • USB 1.1 host/device, 2×SPI, 2×I2C, 2×UART, 4×ADC, PWM, timer, temperature sensor, 12 PIO

Dual-core RP2350A board for CAN development

This development board combines a Raspberry Pi RP2350A dual-core microcontroller with an integrated XL2515 CAN controller and SIT65HVD230 transceiver. It targets engineers building automotive, industrial or IoT edge prototypes that require CAN V2.0B communication up to 1 Mbps. The Pico-compatible form factor provides 26 multi-function GPIOs and castellated edges for direct soldering onto custom carrier boards.

Passive thermals with USB 1.1 power draw

The board operates without active cooling, drawing power through its USB 1.1 host/device port during normal development cycles. Silent operation is inherent to the passive design, making it suitable for bench testing and embedded deployment where acoustic noise must be absent. Power consumption scales with the workload on the dual-core ARM Cortex-M33 and RISC-V processors running at 150 MHz.

Upgrades bare RP2350 boards lacking CAN hardware

Developers moving from a standard RP2350 or Pico board that requires an external CAN transceiver gain a single-board solution with the XL2515 controller already populated. The jump is worth it when a project demands native CAN V2.0B support alongside 12 PIO channels, 4 ADC inputs, 2×SPI, 2×I2C and 2×UART without additional wiring or shield boards. Teams staying with pure GPIO or I2C sensor work do not need the integrated CAN hardware.

Besonderheiten

  • Dual-core RP2350A at 150 MHz for real-time embedded tasks
  • Built-in XL2515 CAN controller with SIT65HVD230 transceiver up to 1 Mbps
  • Pico-compatible form factor with 26 multi-function GPIOs and castellated edges
  • C/C++ and MicroPython support with comprehensive SDKs and tutorials
  • USB 1.1 host/device, 2×SPI, 2×I2C, 2×UART, 4×ADC, PWM, timer, temperature sensor, 12 PIO

Technische Daten

BrandLORDWORLD

Fragen zu diesem Artikel

How do I mount the board on a custom carrier using the castellated edges?

Solder the castellated edges directly to matching pads on your carrier board, aligning the 26 GPIO pins and power rails; the Pico-compatible pinout keeps spacing standard.

Does the XL2515 CAN transceiver need periodic firmware updates or component replacement?

The SIT65HVD230 transceiver is a hardware IC with no firmware; it requires no scheduled replacement unless physical damage or electrical overstress occurs.

At what sustained CAN bus load does the USB 1.1 interface become the bottleneck?

USB 1.1 full-speed caps at 12 Mbps, so continuous CAN traffic at 1 Mbps with SDK overhead will saturate the USB link before the XL2515 reaches its limit.

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