For more Details about project call: 9028786784
This project aims to implement the total automation of public garden using 8051 Microcontroller. The project will help to avoid the misuse of electricity and water in the public garden. Sometimes due to carelessness of the authorities and the workers lights were left on which results in wastage of electricity. Water wastage is another problem which needs to be dealt with. HUMIDITY sensor is used to measure the humidity and it will give the voltage outputs which will be applied to signal conditioning circuit and then applied to the Microcontroller.We are using humidity sensor which will measure the water content in the soil and water supply time will be adjusted accordingly water content in the soil. This will avoid unnecessary water supply during the rainy season.
This project aims to implement the total automation of public garden using 8051 Microcontroller. The project will help to avoid the misuse of electricity and water in the public garden. Sometimes due to carelessness of the authorities and the workers lights were left on which results in wastage of electricity. Water wastage is another problem which needs to be dealt with. HUMIDITY sensor is used to measure the humidity and it will give the voltage outputs which will be applied to signal conditioning circuit and then applied to the Microcontroller.We are using humidity sensor which will measure the water content in the soil and water supply time will be adjusted accordingly water content in the soil. This will avoid unnecessary water supply during the rainy season.
The gates of the garden are also opened and closed according to predefined timings. The gate will be opened by motor which is controlled by the Microcontroller. Lights will be switched on/off depending upon the intensity of natural light and the lights remain functional till the garden remains open.
The Garden will be closed at around 9.00 p.m. At around 8.50 pm a buzzer will indicate closure of the garden and alert the visitors. The gate will be then closed at 9.00pm and lamps will be switched off except one or two. Microcontroller is used to control entire functionality.
Call 9028786784 for more details.
Block Diagram and Description:
Description:
1) HUMIDITY SENSOR: This sensor is used to measure the humidity and it will give the voltage outputs which will be applied to signal conditioning circuit and then applied to the microcontroller.
2) LIGHT SENSOR: This is second sensor which is used to sense light. This can be LDR. Output of sensor given to signal conditioning circuit which will raise signal to required level of microcontroller
2) LIGHT SENSOR: This is second sensor which is used to sense light. This can be LDR. Output of sensor given to signal conditioning circuit which will raise signal to required level of microcontroller
3) MOTOR DRIVER: We need to drive the DC Motors. For this purpose we need to provide 12 volt supply to motor. Motor driver is also used for this purpose.
4) RELAY: We need to control the values of temperature. For this purpose we need to drive a fan and heater. We are going to use Relay for this purpose
5) MICRO-CONTROLLER (8051): This is the most important segment of the project. The controller is responsible for detection and polling of the peripherals status. It is responsible for making. It is responsible for prioritizing all the devices attached to it.
WE have used the P89V51RD2 microcontroller. The P89V51RD2 is a low-power, high-performance CMOS 4-bit microcontroller with 64K bytes of in-system programmable Flash memory. It has got 32 I/O lines two data pointers, two 16-bit timer/counters, six-vector two-level interrupt architecture, a full duplex serial port, on-chip oscillator, and a clock circuitry.
5) MICRO-CONTROLLER (8051): This is the most important segment of the project. The controller is responsible for detection and polling of the peripherals status. It is responsible for making. It is responsible for prioritizing all the devices attached to it.
WE have used the P89V51RD2 microcontroller. The P89V51RD2 is a low-power, high-performance CMOS 4-bit microcontroller with 64K bytes of in-system programmable Flash memory. It has got 32 I/O lines two data pointers, two 16-bit timer/counters, six-vector two-level interrupt architecture, a full duplex serial port, on-chip oscillator, and a clock circuitry.
6) RTC: The serial real-time clock (RTC) is a low-power, full binary-coded decimal (BCD) clock/calendar plus 56 bytes of NV SRAM. Address and data are transferred serially through an I²C, bidirectional bus. The clock/calendar provides seconds, minutes, hours, day, date, month, and year information. The end of the month date is automatically adjusted for months with fewer than 31 days, including corrections for leap year. The clock operates in either the 24-hour or 12-hour format with AM/PM indicator. RTC has a built-in power-sense circuit that detects power failures and automatically switches to the backup supply. Timekeeping operation continues while the part operates from the backup supply.
For more details and circuit diagram Click Here or Call: 9028786784
For more details and circuit diagram Click Here or Call: 9028786784

