LCD INTERFACE TO 8051 CONTROLLER
This project is designed, for a LCD interfacing to micro-controller, using an 8051 family based micro-controller, for all the data and instruction on display .
This project is designed, for a LCD interfacing to micro-controller, using an 8051 family based micro-controller, for all the data and instruction on display .
LIGHT INTENSITY DEPENDENT AC LOAD CONTROL
The aim of this project is to develop light intensity depend ac load control replaces system to include dimming feature. LDR according to achieve desired operation.
The aim of this project is to develop light intensity depend ac load control replaces system to include dimming feature. LDR according to achieve desired operation.
LINE FOLLOWING ROBOT USING ARDUINO
The project is designed to develop a robotic vehicle that follows a specific path. This project uses an Arduino development Board. A pair of photo sensors comprising IR transmitter and photo diode is interfaced to the Arduino to detect a specified path for its movement.
The project is designed to develop a robotic vehicle that follows a specific path. This project uses an Arduino development Board. A pair of photo sensors comprising IR transmitter and photo diode is interfaced to the Arduino to detect a specified path for its movement.
LINE FOLLOWING ROBOTIC VEHICLE
The project is designed to develop a robotic vehicle that follows a specific path. This project doesn’t require a microcontroller for its operation. A pair of photo sensors comprising IR transmitter and photo diode is used to detect the specified path for its movement.
The project is designed to develop a robotic vehicle that follows a specific path. This project doesn’t require a microcontroller for its operation. A pair of photo sensors comprising IR transmitter and photo diode is used to detect the specified path for its movement.
LINE TO GROUND AND LINE TO LINE FAULT DETECTION OVER IOT
The objective of this project is to determine the distance of line to ground and line to line fault from base station in kilometers using an Arduino board over IOT. This system is a common practice followed in many urban areas. While a fault occurs for some reason, at that time the repairing process related to that particular cable is difficult due to not knowing the exact location of the cable fault. The proposed system is to find the exact location of the fault.
The objective of this project is to determine the distance of line to ground and line to line fault from base station in kilometers using an Arduino board over IOT. This system is a common practice followed in many urban areas. While a fault occurs for some reason, at that time the repairing process related to that particular cable is difficult due to not knowing the exact location of the cable fault. The proposed system is to find the exact location of the fault.
LINE TO LINE AND LINE TO GROUND FAULT DETECTION
The objective of this project is to determine the distance of line to ground and line to line fault from base station in kilometers using an Arduino board. This system is a common practice followed in many urban areas. While a fault occurs for some reason, at that time the repairing process related to that particular cable is difficult due to not knowing the exact location of the cable fault. The proposed system is to find the exact location of the fault
The objective of this project is to determine the distance of line to ground and line to line fault from base station in kilometers using an Arduino board. This system is a common practice followed in many urban areas. While a fault occurs for some reason, at that time the repairing process related to that particular cable is difficult due to not knowing the exact location of the cable fault. The proposed system is to find the exact location of the fault
LINE TO LINE LINE TO GROUND CABLE FAULT DETECTION OVER GSM.
LOAD OR ENERGY MONITORING SYSTEM OVER IOT
With the prevalence of In-ternet of Things (IoT), smart meters have become one of the main components of smart city strategies. Smart energy meters generate large amounts of fine-grained data that is used to provide useful information to consumers and utility companies for decision-making. Now-a-days, smart energy meter analytics systems consist of analytical algorithms that process massive amounts of data.
With the prevalence of In-ternet of Things (IoT), smart meters have become one of the main components of smart city strategies. Smart energy meters generate large amounts of fine-grained data that is used to provide useful information to consumers and utility companies for decision-making. Now-a-days, smart energy meter analytics systems consist of analytical algorithms that process massive amounts of data.
LPG GAS LEAKAGE ALERT SYSTEM
Home fires have been taking place frequently and the threat to human lives and properties is growing in recent years. Liquid petroleum gas (LPG) is highly inflammable and can burn even at some distance from the source of leakage. Most fire accidents are caused because of a poor-quality rubber tube or the regulator is not turned off when not in use
Home fires have been taking place frequently and the threat to human lives and properties is growing in recent years. Liquid petroleum gas (LPG) is highly inflammable and can burn even at some distance from the source of leakage. Most fire accidents are caused because of a poor-quality rubber tube or the regulator is not turned off when not in use


















