UNDERGROUND CABLE FAULT DETECTION PIC CONTROLLER USING GSM
The objective of this project is to determine the distance of underground cable fault from base station in kilometers USING a PIC microcontroller. The underground cable 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 underground cable fault from base station in kilometers USING a PIC microcontroller. The underground cable 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.
UNDERGROUND CABLE FAULT DETECTION USING GSM
The objective of this project is to determine the distance of underground cable fault from base station in kilometers USING an Arduino. The underground cable 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 underground cable fault from base station in kilometers USING an Arduino. The underground cable 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.
UNDERGROUND CABLE FAULT DETECTOR
The objective of this project is to determine the distance of underground cable fault from base station in kilometers USING a PIC microcontroller . The underground cable 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 underground cable fault from base station in kilometers USING a PIC microcontroller . The underground cable 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.
UNDERGROUND CABLE FAULT DETECTOR OVER IOT
The objective of this project is to determine the distance of underground cable fault from base station in kilometers USING an Arduino. The underground cable 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 underground cable fault from base station in kilometers USING an Arduino. The underground cable 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.
UNDERGROUND LINE TO GROUND AND OPEN CABLE FAULT DETECTION
To determine the LINE TO GROUND AND OPEN LINE FAULT DISTANCE LOCATOR IN UNDERGROUND OR OVERLINE CABLE FAULT from base station in kilometers USING AN Arduino board. The underground cable 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.
To determine the LINE TO GROUND AND OPEN LINE FAULT DISTANCE LOCATOR IN UNDERGROUND OR OVERLINE CABLE FAULT from base station in kilometers USING AN Arduino board. The underground cable 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.
UNDERGROUND LINE TO GROUND AND OPEN CABLE FAULT DETECTOR OVER GSM
VEHICLE IGNITION LOCK SYSTEM WITH DRIVING LICENCE AND ALCOHOL SENSOR
VEHICLE SECURITY WITH GPS, GSM & FINGERPRINT SENSOR
Vehicle security is an important issue these days due to the rising number of vehicle thefts. Here we propose a solution to this problem by using VEHICLE ANTI-THEFT SECURITY SYSTEM USING BIOMETRICS. The system provides a secure and hassle free way to start vehicle engine. In the 21st century, the uses of biometric based systems have seen an exponential growth. Biometrics is becoming a new state of the art method for security systems.
Vehicle security is an important issue these days due to the rising number of vehicle thefts. Here we propose a solution to this problem by using VEHICLE ANTI-THEFT SECURITY SYSTEM USING BIOMETRICS. The system provides a secure and hassle free way to start vehicle engine. In the 21st century, the uses of biometric based systems have seen an exponential growth. Biometrics is becoming a new state of the art method for security systems.
VIP Street Light And Controlling Monitoring Over IOT
This project involves the design and construction of street light control and monitoring system using Internet of Things (IoT). This includes the use of a PIC Microcontroller 16F77A, ESP 32 Wi-Fi module, Light Dependent Resistor (LDR) Infrared sensors, .cloud platform and a mobile application.
This project involves the design and construction of street light control and monitoring system using Internet of Things (IoT). This includes the use of a PIC Microcontroller 16F77A, ESP 32 Wi-Fi module, Light Dependent Resistor (LDR) Infrared sensors, .cloud platform and a mobile application.
VOICE CONTROLLED ROBOT
The main objective of the project is to control the robotic vehicle in a desired position, through user voice commands by attaching a speech-recognition module as Bluetooth to the microcontroller for communication.
The main objective of the project is to control the robotic vehicle in a desired position, through user voice commands by attaching a speech-recognition module as Bluetooth to the microcontroller for communication.
Voice Controlled robot car using Arduino
The main objective of the project is to control the robotic vehicle in a desired position, through user voice commands by attaching a speech-recognition module as Bluetooth to the Arduino for communication.
The main objective of the project is to control the robotic vehicle in a desired position, through user voice commands by attaching a speech-recognition module as Bluetooth to the Arduino for communication.
Water Flow Measurement System using Arduino
The project is designed to develop an automatic water flow measurement system that displays flow rate. use of proper method of measurement is important. The advantage of using this method is to reduce human intervention.
The project is designed to develop an automatic water flow measurement system that displays flow rate. use of proper method of measurement is important. The advantage of using this method is to reduce human intervention.

















