LORDWORLD
LORDWORLD Raspberry Pi Pico RP2040 Development Board Pre-soldered Header
Microcontroller board with RP2040 dual-core Arm Cortex M0+ at 133 MHz, 264 KB SRAM, 2 MB Flash and 26 GPIO pins, header pre-soldered
- Dual-core Arm Cortex M0+ processor reaches 133 MHz
- 264 KB SRAM and 2 MB Flash store code and data
- 26 multi-function GPIO pins connect sensors and actuators
- Pre-soldered header allows immediate breadboard use
- C/C++ SDK and MicroPython support simplify development
Ready-to-use RP2040 microcontroller board
The LORDWORLD board brings the Raspberry Pi RP2040 dual-core Arm Cortex M0+ processor to a development board with headers already soldered in place. It targets makers, students and engineers who want to start writing C, C++ or MicroPython code immediately without a soldering iron. The 26 multi-function GPIO pins are accessible straight from the box.
264 KB SRAM and 2 MB Flash define the working
The 264 KB of embedded SRAM and 2 MB of on-board Flash memory handle typical sensor-logging, motor-control and small protocol-bridging tasks comfortably. Projects that require large frame buffers, heavy RTOS footprints or extensive local data logging will exceed the available memory and need external storage or a larger controller.
Pre-soldered header is the deciding convenience
The board ships with the 26-pin header factory-fitted, removing the only assembly step between unboxing and first upload. Buyers who need a headerless footprint for ultra-thin enclosures or who prefer custom pin arrangements cannot modify this unit without desoldering.
أبرز المميزات
- Dual-core Arm Cortex M0+ processor reaches 133 MHz
- 264 KB SRAM and 2 MB Flash store code and data
- 26 multi-function GPIO pins connect sensors and actuators
- Pre-soldered header allows immediate breadboard use
- C/C++ SDK and MicroPython support simplify development
المواصفات
| Brand | LORDWORLD |
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أسئلة حول هذا المنتج
Can the 26 GPIO pins on this RP2040 board connect directly to my older 5 V components?
The board exposes 26 multi-function GPIO pins from the RP2040; check each peripheral's voltage requirements and add level shifting where needed.
How can I verify the dual-core Arm Cortex M0+ is running at up to 133 MHz after I flash code?
Toggle a GPIO pin in a tight loop and measure the frequency with an oscilloscope or logic analyser; the observed rate will reflect the 133 MHz clock.
Does the pre-soldered header mean I need to buy any connectors or cables separately to start prototyping?
The header pins are already soldered, so you can plug jumper wires or a breadboard straight away; only a USB cable for power and programming is required.
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