• DeskNeuron Macro Pad V0.1

    DeskNeuron Macro Pad V0.1

    DeskNeuron V0.1 — USB-C ESP32-S3 6-key macro pad with dual EC11 encoders and SPI TFT header.

    ahmedabusalih

    2 months ago

    0 Uses

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  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    2 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    2 months ago

    0 Uses

    0 Comments

    0 Stars


  • VS1063 TAS 2x35W Audio Player

    VS1063 TAS 2x35W Audio Player

    Player audio stereo VS1063 cu amplificator TAS DSP 2×35 W / 8 Ω, SD card, 3 encodere și alimentare auto 12–24 V protejată

    2 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • Round Console X

    Round Console X

    Round Console X hardware control surface for the user’s self-developed Round Light Engine color grading software, based on Raspberry Pi Pico, OLED feedback, six encoders, three SPI optical trackball headers, MCP23017 expansion, and a one-sided PCB layout target.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • RP2040 Macropad

    RP2040 Macropad

    Compact 4×4 ortholinear custom macropad with RP2040-Zero, 14 MX hot-swap positions, 2 EC11 encoders, 4 layer LEDs, USB protection, and JLCPCB-compatible 2-layer PCB layout for a 3D-printed enclosure.

    +

    U

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example] cCFG

    ESP32 Robot Controller | AI Design Review Tutorial [Example] cCFG

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    3 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • Pico Macro Keyboard AI Placement [Example] jLYs

    Pico Macro Keyboard AI Placement [Example] jLYs

    The Pico Macro Keyboard is a compact and powerful macro pad built using the latest Raspberry Pi Pico 2. Inspired by the Figma Creator Micro, this keyboard is designed for customizable control and enhanced productivity. It features mechanical switches with per-key RGB lighting, along with two rotary encoders for added functionality. With a modular 4-layer PCB and fully customizable keymaps, it seamlessly integrates with any software, making it perfect for designers, gamers, and power users alike.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • Rugged Outdoor Field Display Unit 567e

    Rugged Outdoor Field Display Unit 567e

    Compact rugged handheld outdoor field-data display/logger with ESP32-C3 WiFi/BLE, transparent PMOLED, BMP280, dual encoders, and protected 2S LiPo power.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • Pico Macro Keyboard AI Placement [Example] 8LvR

    Pico Macro Keyboard AI Placement [Example] 8LvR

    The Pico Macro Keyboard is a compact and powerful macro pad built using the latest Raspberry Pi Pico 2. Inspired by the Figma Creator Micro, this keyboard is designed for customizable control and enhanced productivity. It features mechanical switches with per-key RGB lighting, along with two rotary encoders for added functionality. With a modular 4-layer PCB and fully customizable keymaps, it seamlessly integrates with any software, making it perfect for designers, gamers, and power users alike.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • Pico Macro Keyboard AI Placement [Example]

    Pico Macro Keyboard AI Placement [Example]

    The Pico Macro Keyboard is a compact and powerful macro pad built using the latest Raspberry Pi Pico 2. Inspired by the Figma Creator Micro, this keyboard is designed for customizable control and enhanced productivity. It features mechanical switches with per-key RGB lighting, along with two rotary encoders for added functionality. With a modular 4-layer PCB and fully customizable keymaps, it seamlessly integrates with any software, making it perfect for designers, gamers, and power users alike.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


  • Pico Macro Keyboard AI Placement [Example]

    Pico Macro Keyboard AI Placement [Example]

    The Pico Macro Keyboard is a compact and powerful macro pad built using the latest Raspberry Pi Pico 2. Inspired by the Figma Creator Micro, this keyboard is designed for customizable control and enhanced productivity. It features mechanical switches with per-key RGB lighting, along with two rotary encoders for added functionality. With a modular 4-layer PCB and fully customizable keymaps, it seamlessly integrates with any software, making it perfect for designers, gamers, and power users alike.

    4 months ago

    0 Uses

    0 Comments

    0 Stars


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