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googlecreativelab/anypixelArchived

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6,440 estrellas·511 forks·JavaScript·Apache-2.0·2 vistas

Anypixel

Anypixel is a web-to-hardware display framework and toolkit for building large-scale physical interactive screens and button walls. It provides a system for mapping HTML canvas graphics to physical LED arrays, combining a networked pixel controller with a management tool that translates web application data into electronic signals for microcontroller-driven display boards.

The project features a browser-based hardware simulation environment that allows for testing interactive display logic, button events, and network communication without requiring physical components. This emulator enables the verification of visual experiences and hardware responses through a virtual representation of the installation.

The toolkit covers the end-to-end process of interactive installation design, including electrical schematics, PCB layouts, and mechanical CAD files for custom LED hardware. It includes a communication bridge for data packet distribution, coordinate-based input routing for hardware buttons, and diagnostic tools for debugging input events via on-screen overlays.

Features

  • Interactive Installation Frameworks - Provides a comprehensive framework for building audiovisual interactive installations that respond to physical sensors and user input.
  • Physical Hardware Control - Provides a comprehensive framework for integrating schematics, firmware, and software into a physical interactive installation.
  • Hardware Simulation - Includes a browser extension that emulates hardware responses to test interactive displays without physical devices.
  • Pixel-Level Display Coordination - Coordinates multiple physical components to function as a single large-scale interactive pixel display.
  • Interactive Visual Rendering - Provides a rendering engine for displaying visual elements on large screens that respond immediately to user touch or interaction.
  • Hardware-Driven Visuals - Implements a system for rendering canvas graphics that respond to physical hardware events in real time.
  • Hardware Communication - Ships a communication layer that bridges high-level web applications with physical display hardware.
  • Coordinate-Based Input Mappings - Implements an event listener that maps hardware button signals to specific XY coordinates to trigger software actions.
  • Web-to-Hardware Signal Translation - Translates web-based application data into electronic signals suitable for microcontroller-driven hardware.
  • LED Matrix Controllers - Manages physical LED arrays by translating web application data into electronic signals via a communication bridge.
  • Canvas-to-Hardware Mappings - Maps HTML canvas graphics to physical LED arrays to enable real-time visual output on hardware.
  • Web-to-Hardware Frameworks - Provides a system for mapping HTML canvas graphics to physical LED arrays and interactive installations.
  • Hardware Command Routing - Provides a routing mechanism to send control messages from a web controller to specific network addresses for LED hardware.
  • Networked Pixel Control - Implements a networked pixel controller to route visual data packets from a server to hardware addresses.
  • Browser-Based Hardware Emulation - Includes a browser-based hardware emulation system to simulate physical component behavior and network traffic.
  • Hardware Communication Bridges - Provides a communication bridge that serializes web application data into network packets for transmission to physical hardware controllers.
  • Hardware Packet Distribution - Implements a routing system to distribute network data from a central bridge to individual hardware components.
  • Interactive Animation Systems - Provides a system for rendering responsive visual simulations that react immediately to physical user touch events.
  • Hardware Signal Mapping - Translates 2D HTML canvas pixel data into coordinate-based signals for physical LED arrays and microcontroller firmware.
  • Installation Management Tools - Ships a management tool that translates web application data into electronic signals for display boards.
  • Installation Visual Simulators - Provides a virtual representation of a physical installation rendered in a browser to verify application behavior.
  • Hardware Emulators - Provides a browser-based hardware simulation environment to test display logic and button events without physical components.
  • Hardware Interaction Toolkits - Offers a complete set of schematics, firmware, and software tools for building interactive physical installations.
  • LED Hardware Design Files - Supplies the necessary electrical schematics, PCB layouts, and CAD files for constructing custom LED hardware.
  • PCB Design Assets - Provides electrical schematics, PCB layouts, and mechanical CAD files for constructing custom LED hardware.
  • Hardware Communication Simulation - Provides an emulation system for network traffic between software and hardware to debug installations without physical components.
  • Hardware Control Packet Distribution - Routes control packets from a central software bridge to multiple individual hardware components across a network.
  • Hardware Component Synchronization - Implements an orchestration layer that synchronizes visual output between a central controller and individual display boards.
  • Pre-Deployment Hardware Simulation - Enables testing of interactive display behavior and network communication in a browser before deploying to physical hardware.
  • Experience Design Environments - Ships a browser-based design environment for building and previewing visual experiences for large-scale screens.
  • Physical Input Emulation - Includes a simulation tool that emulates physical button events using mouse and touch inputs within a web browser.
  • Hardware-Targeted Previews - Provides a testing environment for verifying visuals and interactions in a browser before deploying code to physical hardware.
  • Physical Input Routing - Maps physical button press events to specific XY coordinates to trigger interactions within the software layer.

Historial de estrellas

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Preguntas frecuentes

¿Qué hace googlecreativelab/anypixel?

Anypixel is a web-to-hardware display framework and toolkit for building large-scale physical interactive screens and button walls. It provides a system for mapping HTML canvas graphics to physical LED arrays, combining a networked pixel controller with a management tool that translates web application data into electronic signals for microcontroller-driven display boards.

¿Cuáles son las características principales de googlecreativelab/anypixel?

Las características principales de googlecreativelab/anypixel son: Interactive Installation Frameworks, Physical Hardware Control, Hardware Simulation, Pixel-Level Display Coordination, Interactive Visual Rendering, Hardware-Driven Visuals, Hardware Communication, Coordinate-Based Input Mappings.

¿Qué alternativas de código abierto existen para googlecreativelab/anypixel?

Las alternativas de código abierto para googlecreativelab/anypixel incluyen: knownsec/aipyapp — This project is an application framework and execution environment that integrates large language models with local… ghdl/ghdl — GHDL is a compiler and simulator for VHDL hardware descriptions. It functions as a multi-pass analysis elaborator that… hybridgroup/cylon — Cylon is a JavaScript robotics framework and hardware abstraction layer designed for controlling robots, drones, and… hzeller/rpi-rgb-led-matrix — This project is a C++ library and hardware driver designed to control Hub75 RGB LED panels using the GPIO pins of a… cinder/cinder — Cinder is a C++ creative coding library and native graphics toolkit designed for developing professional interactive… nannou-org/nannou — Nannou is a creative coding framework for Rust designed for building interactive visual and audio sketches. It…

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