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Unlocking the Secrets of Temperature Data Transmission with CAN Bus Techniques | CAN Bus Protocol 

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We have designed a project based on CAN Bus Protocol.
Monitoring of various parameter like Temperature, Humidity, Carbon Emission etc. are very crucial now a days in industries. Automobiles sector generally used CAN protocol for the sensor data transmission and collection to take necessary action whenever required. CAN provides multiple transducer interfacing on a single bus, this makes it more popular for industrial uses. Transmission speed and distance plays a vital role in any information broadcasting, and CAN is capable of doing it. Number of sensors are deployed in the industries to run it efficiently without an interrupt. Environmental parameters monitoring also a part of it. CAN provides the flexibility to make number of addresses on a single bus, so that it will be easy for anyone to monitor the records on a single platform and take necessary action.
In our proposed project we are going to interface Temperature and Gas sensor and the measured parameter get broadcasted through a CAN bus. Here we will use 29-bit Extended Frame ID which is advanced version of CAN protocol. These sensors are directly interfaced with internal ADC of Microcontroller. Local display unit also available to check the measured data. Aim is to make cost effective solution for industries with advanced technology.
This project consists of Temperature. The output of sensors is connected to the internal ADC of ATTINY1624. ATTINY1624 is new series of microcontroller with RISC Architecture and 12-bit internal ADC along with USART Port and SPI communication. CAN Module based on Microchip connected to the microcontroller through a SPI protocol (SS, MISO, MOSI, CLK) lines. One Graphical LCD also interfaced with it. Microcontroller continuously measures the sensor output and display it on LCD. At every 1 second it transfers the recorded data to CAN bus through a CAN module. AT Receiver end one more CAN converter is available, which receives the data and display it on computer. One can transmit data at 1Mbps rate, but we will use standard 250kbps baud rate for data exchange. In future we can add more sensor on it, need to only change the CAN ID which is of 29-Bit.
Hardware Interfaces
ATTINY 1624 with 12 bit internal ADC along with CAN Transmitter Module.
Software Interfaces
ATMEL Studio for code compilation, Remote Terminal Unit.
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21 сен 2024

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Комментарии : 8   
@ratnagh
@ratnagh Год назад
good information for beginners.
@TheTiaraTechShow
@TheTiaraTechShow Год назад
thanks.
@virubalatechnical
@virubalatechnical Год назад
automatic circuit draw dekhkar maja aa gya. aap video banane me bahut mehnat karte ho.🤗
@TheTiaraTechShow
@TheTiaraTechShow Год назад
Oh that's nice. ha 5--6 min ki video ready karne ke liye 7-8 hours lag jate hai.
@ElectronicsEngineerindia
@ElectronicsEngineerindia Год назад
You have solved my big problem. Thanks for this video 😊
@TheTiaraTechShow
@TheTiaraTechShow Год назад
My pleasure.
@shubhamjha1009
@shubhamjha1009 Год назад
battery monitoring ke case me phle do byte temp show kregi ya phir uske apne parameter
@TheTiaraTechShow
@TheTiaraTechShow Год назад
frame structure me konse byte me kya show karna hai ye aap decide kar sakte hai, generally pahle 2 bytes me parameter show karte hai uske bad alarm threshold values and last bytes me CRC.
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