EC Buying Luckfox Pico Plus Board Micro Linux AI Development Board RV1103 Integrates ARM Cortex-A7/RISC-V MCU/NPU/ISP with Ethernet Port Supports int4 int8 int16 NPU 64MB DDR2 0.5TOPS
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0.20 kg
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Amazon
USA
- Single core ARM Cortex-A7 32-bit core, integrated with NEON and FPU It has powerful encoding performance, supports intelligent encoding, adapts to save bit rates according to the scene, and saves more than 50% of the bit rate compared to conventional CBR mode, making the captured images high-definition, smaller in size, and doubling the storage space The design with built-in RISC-V MCU supports low-power fast startup, 250ms fast capture, and simultaneous loading of AI model library, enabling facial recognition to be completed within 1 second Built in 16 bit DRAM DR2, capable of maintaining demanding memory bandwidth requirements Integrated with built-in POR, audio codec, and MAC PHY Robots and drones Intelligent transportation equipment Smart home devices Industrial automation equipment Intelligent monitoring equipment New Retail
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LuckFox Pico is a mini Linux development board based on the RV1103 chip, designed to provide developers with a simple and efficient development platform; Supports multiple interfaces, including MIPI CSI, GPIO, UART, SPI, I2C, USB, etc., for quick development and debugging Processor: Cortex [email protected] + RISC-V; Neural Network Processor (NPU): 0.5 TOPS, supports int4, int8, int16; Image Processor (ISP): Input 4M @ 30fps (Max) Memory: 64MB DDR2; USB: USB 2.0 Host/Device; Camera interface: MIPI CSI 2-lane; GPIO: 25 GPIO pins; Network port: 10/100M Ethernet controller and embedded PHY; Default storage medium: SPI NAND FL ASH (128MB) Built in Micro's self-developed 4th generation NPU, with high computational accuracy and support for mixed quantization of int4, in8, and int16. Among them, int8 has a computing power of 0.5 TOPS and int4 has a computing power of up to 1.0 TOPS Built in self-developed 3rd generation ISP3.2, supports 4 million pixels, and supports various image enhancement and correction algorithms such as HDR, WDR, and multi-level denoising