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A home automation system typically connects controlled devices to a central smart home hub (sometimes called a "gateway"). The user interface for control of the system uses either wall-mounted terminals, tablet or desktop computers, a mobile phone application, or a Web interface that may also be accessible off-site through the Internet.
This is a list of open-source hardware projects, including computer systems and components, cameras, radio, telephony, science education, machines and tools, robotics, renewable energy, home automation, medical and biotech, automotive, prototyping, test equipment, and musical instruments.
The control panel for a building that has elements of automation The T-Com-Haus in Berlin, Germany was designed to demonstrate state-of-the-art home automation. A display at Computex 2008 showing a home automation system and embedded boards. This is a list of home automation topics on Wikipedia.
Optional CIC61508 safety monitor. Arduino IDE supported via add-in, plus Eclipse-based tools with multicore debugger. MBZ Pro WiFi Atmega328P-PU MaxBlitz: MBZ Pro Mega is an Arduino compatible stand-alone board with a prototyping area and built-in Wi-Fi. Featuring a compact design, it helps to shrink Arduino projects and make it permanent.
Smart thermostats also record internal/external temperatures, the time the HVAC system has been running and can notify the user if the system's air filter needs to be replaced. This information is typically displayed later on an internet-connected device such as a smartphone.
The user interface of home automation software is often based on a client-server model, such as a web UI or a smartphone app, or some combination thereof. More advanced applications will allow users to write scripts in a programming language to handle more complex tasks.
HomeOS was the working title of a home automation operating system being developed at Microsoft Research in the early 2010s. [1] [2] Microsoft Research announced the project in 2010 and abandoned it in 2012. [3] HomeOS communicated with Lab of Things, a cloud-based Internet of Things infrastructure also developed by Microsoft. [4] [5] [6]
The firmware is based on the eLua project, and built on the Espressif Non-OS SDK for ESP8266. It uses many open source projects, such as lua-cjson [9] and SPIFFS, a flash file system for embedded controllers. [10] Due to resource constraints, users need to select the modules relevant for their project and build a firmware tailored to their needs.