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This is particularly true for those sensors and devices that involve bidirectional data communication with a computer system. Almost all digital sensors that interface with a controller/embedded computer as a peer device use the UART. It just depends if the device is meant to be a peer device or a slave to a computer system.ĭigital sensors are no different. Alternatively, they may be using I2C for the same purpose. Most of the embedded devices use the UART for exchanging console data. The universal asynchronous receiver/transmitter (UART) protocol is the most common data communication protocol that’s available on nearly all embedded devices. Most digital sensors use standard data communication protocols, such as UART, SPI, or I2C to communicate data with a controller/computer. However, this is not the typical way digital sensors output data. In the last tutorial, we read the data packet by polling one of Arduino’s digital I/O pins and detected data bits by measuring the pulse width of the digital signal. This integrated microcontroller outputs humidity and temperature values in the form of a 40-bit digital data packet. DHT-11 is a digital sensor that comes integrated with an 8-bit microcontroller.
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In the previous tutorial, we learned how to interface a DHT-11 sensor with Arduino.