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Waveshare Luckfox Pico Mini A RV1103 Linux Micro Development Board, Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP Processors — image 1
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Waveshare Luckfox Pico Mini A RV1103 Linux Micro Development Board, Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP Processors

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RISC-V Core Development Boards for everyday users

The Waveshare Luckfox Pico Mini A RV1103 Linux Micro Development Board, Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP Processors by WAVESHARE is a mid-range risc-v core development boards designed for everyday users. It features Item Type: Development Board and Processor: ARM CORTEX 1.2 GHZ.

compact and portable
₹1,999
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Total: ₹1,999
Buying tip: A well-rounded choice at a fair price. Recommended for most buyers.
Estimated delivery: 16 Aug30 Aug
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Quick Specs

Item Type: Development Board
Processor: ARM CORTEX 1.2 GHZ
Memory Capacity: 64MB DDR2
Camera Details: MIPI CSI 2-lane64MB DDR2
Storage Capacity: Mini A: TF card (Not included)
USB: 2

Ideal For

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SKU: robu-1809204Category: RISC-V Core Development Boards

About This Product

The Waveshare Luckfox Pico Mini A RV1103 Linux Micro Development Board, Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP Processors by WAVESHARE is a mid-range risc-v core development boards designed for everyday users. It delivers reliable performance at an accessible price.

Key Specifications

  • Item Type: Development Board
  • Processor: ARM CORTEX 1.2 GHZ — smooth, lag-free performance
  • Memory Capacity: 64MB DDR2 — effortless multitasking
  • Camera Details: MIPI CSI 2-lane64MB DDR2 — captures sharp, detailed images
  • Storage Capacity: Mini A: TF card (Not included) — plenty of room for files, apps, and media
  • USB: 2
  • Shipping Weight: 0.015 kg
  • Shipping Dimensions: 11 × 7 × 2 cm

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The Waveshare Luckfox Pico Mini A RV1103 is a compact micro development board designed for various embedded applications, leveraging a combination of processors and specialized units.
  1. Single-core ARM Cortex-A7 32-bit core with integrated NEON and FPU
  2. Built-in Rockchip self-developed 4th generation NPU, features high computing precision and supports int4, int8, and int16 hybrid quantization. The computing power of int8 is 0.5 TOPS, and up to 1.0 TOPS with int4
  3. Built-in self-developed third-generation ISP3.2, supports 4-Megapixel, with multiple image enhancement and correction algorithms such as HDR, WDR, multi-level noise reduction, etc.
  4. Features powerful encoding performance, supports intelligent encoding mode and adaptive stream saving according to the scene, saves more than 50% bit rate of the conventional CBR mode so that the images from camera are high-definition with smaller size, double the storage space
  5. Built-in RISC-V MCU supports low power consumption and fast start-up, supports 250ms fast picture capture and loading AI model library at the same time to realize face recognition "in one second"
  6. Built-in 16-bit DRAM DDR2, which is capable of sustaining demanding memory bandwidths
  7. Integrated with built-in POR, audio codec and MAC PHY
The integration of diverse processors, including the ARM Cortex-A7, RISC-V MCU, NPU, and ISP, makes this board versatile for a range of applications requiring varied computational capabilities. Developers can leverage these components to build solutions that involve machine learning, image processing, IoT, and other embedded applications.

Features:

  1. ARM Cortex-A7 Processor: This board integrates an ARM Cortex-A7 core, offering processing capabilities for general-purpose computing tasks. The Cortex-A7 is known for its balance between performance and power efficiency.
  2. RISC-V MCU: Complementing the ARM Cortex-A7, it incorporates a RISC-V microcontroller unit (MCU), providing flexibility and programmability for specialized tasks.
  3. NPU (Neural Processing Unit): Includes a Neural Processing Unit, a specialized unit designed for accelerating machine learning algorithms and AI-related computations.
  4. ISP (Image Signal Processor): Incorporates an Image Signal Processor for handling image data and processing tasks, typically used in applications requiring image or video processing capabilities.
  5. Linux OS Support: Supports the Linux operating system, allowing developers to leverage the flexibility and robustness of Linux for developing applications on the board.
  6. Embedded Development: Suitable for embedded system development, IoT (Internet of Things) projects, AI-related tasks, image processing, and various applications that require a compact yet capable development board.
  7. Compact Form Factor: Designed as a mini-sized board, offering a compact footprint for ease of integration into smaller devices or projects

Package Includes:

1 x Waveshare Luckfox Pico Mini A RV1103 Linux Micro Development Board, Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP Processors

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.