Wiznet makers

UCC

User Created Content

PipeInspect drives a dual-steer pipe inspection robot over W5500 Ethernet on ESP32-C3, keeping commands wired while SJ4000 video streams over Wi-Fi

PipeInspect: Wired Ethernet Control & Wi-Fi Video Streaming

irina
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Microchip’s MCP Server shows how semiconductor product discovery is shifting from search-driven to AI-driven workflows.

How Is Microchip Using MCP Servers to Build an AI-Native Semiconductor Developer Experience?

sophia
  • 87

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ESP32 dual-W5500 transparent Ethernet bridge

ESP32 dual-W5500 transparent Ethernet bridge

gunn
  • 259

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caravan

caravan

Aimee0
  • 69

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NOBD keeps your inputs honest and your intent intact. Execution is back. No more fighting a broken pipeline between your hands and the game.

GP2040-CE NOBD

Sunny_
  • 88

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Code Modern. Code Legacy. Code Firmware. - open-source AI-native IDE with agentic coding, Power Mode, legacy modernization, and firmware development

Neural Inverse

Sunny_
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This guide shows how to build and test a light-controlled LED system using Blockless and the W5100S-EVB-Pico.

Quick Start with Blockless to Realize Hardware Creations

ruilixin6
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A small companion service for connecting retro machines (real DOS PCs, Windows 9x) to networks and the internet over a plain serial cable. It is a single self-c

Heddle

Sunny_
  • 88

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This project introduces a highly reliable, open-source Art-Net ESP32 LED controller designed to drive up to 16 universes of addressable LEDs at over 40 frames

Open-Source Pixel Artnet Node now supports WLED!

gunn
  • 117

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Signal Elektronik’s Geiger-Müller counter and datalogger uses the WIZnet W55RP20-EVB-PICO as the processing and wired-networking platform for a radiation-monito

How to Build an Industrial Geiger-Müller Datalogger with W55RP20-EVB-PICO?

viktor
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Huawei EMMA dials out over TLS as the TCP client, so a normal Modbus server cannot answer it. A W5500 gives that reverse link its own isolated LAN.

Huawei-Modbus-TLS-Server

irina
  • 139

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Two approaches to drive WS2812 on Pico: built‑in NeoPixel library and hardware‑timing PIO implementation for GRB‑encoded color‑chasing light effects.

RP2040 PIO Driving WS2812 LED Strip: From Principles to MicroPython Implementation

ruilixin6
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This demo applies `StateMachine.exec()` to run single‑shot PIO instructions to toggle LED without modifying stored PIO program.

Dynamic Execution Instructions: Unlocking More Flexible Usage of RP2040 PIO

ruilixin6
  • 124

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This demo uses PIO `irq()` instruction to trigger interrupts and print IRQ flags on RP2040 with MicroPython.

Pico PIO Interrupt Development: Principles, Timing & Practical Implementation

ruilixin6
  • 144

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This example uses RP2040‑PIO in MicroPython to blink Pico’s onboard LED via state‑machine without CPU‑loop blocking.

PIO Quick Start: On‑Board LED Blink — Principles & Code Walkthrough

ruilixin6
  • 121

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MicroPython uses rp2 module to configure and run RP2040 PIO state‑machines.

MicroPython PIO API Deep‑Dive: StateMachine & PIO Class Methods

ruilixin6
  • 145

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Key RP2040 PIO registers cover control, FIFO status, EXECCTRL, SHIFTCTRL and PINCTRL for state‑machine configuration.

In-depth Analysis of 88 PIO: How Control Registers Govern the Operation of the finite-state machine

ruilixin6
  • 123

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RP2040 PIO includes side‑set, wrap, FIFO join, auto‑push/pull, fractional divider and flexible GPIO mapping.

PIO Underlying Principles Deep‑Dive: Side‑Set to Instruction Execution

ruilixin6
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RP2040 PIO‑instructions are 16‑bit wide, split into 3 fields: 3‑bit opcode, 5‑bit side‑set/delay, and 8‑bit parameter.

RP2040 PIO Instruction Set Deep‑Dive: Starting from the Datasheet

ruilixin6
  • 157

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pioasm syntax covers identifiers, data types, expressions, labels, instructions with side‑set/delay, and the nop pseudo‑instruction for RP2040 PIO assembly.

Pico PIO Assembly Syntax Deep‑Dive: Identifiers, Instructions & Pseudo‑Instructions

ruilixin6
  • 152

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RP2040 PIO state‑machines use pioasm instructions, shift registers and side‑set, with GPIO mapping and IRQ flags for multi‑state‑machine synchronization.

RP2040 PIO Programming Model & FSM Principles: Hardware to Working Logic

ruilixin6
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RP2040 PIO is a programmable‑IO peripheral with two blocks and eight state‑machines, implementing diverse serial/parallel protocols with minimal CPU overhead.

RP2040 PIO: Hardware Architecture & Working Principles Quick Overview

ruilixin6
  • 157

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MicroPython PWM‑driven passive‑buzzer class, playing "Twinkle Twinkle Little Star" via mapped note‑frequency melody data.

Buzzer Guide: Active vs Passive, PWM Drive & Pico MicroPython Practice

ruilixin6
  • 129

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MicroPython PWM‑based RGB‑LED driver class, supporting RGB‑value mapping and named‑color switching for multi‑color lighting effects.

Basics: RGB LED Hardware Principles and Raspberry Pi Pico PWM Control Practice

ruilixin6
  • 122

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