Mini Project 1
Automatic Water Level control System
Abstract
Water-level controllers are common
nowadays. The one described here is built around timer NE555 and inverter
buffer CMOS IC CD4049. It uses readily-available, low-cost components, and is easy
to build and install on the over-head tank (OHT) to prevent wastage of water. The
circuit works off a 12V battery or 230V AC mains using a 12V adaptor. The three
sensors built from non-corrosive metal are fitted to the OHT as shown in Fig. 2
and connected to the circuit (Fig. 1) at appropriate terminals. Power supply
terminal Vcc is at the bottom of the tank, sensor terminal L is just above the bottom
of the tank and sensor terminal H is at the top of the tank. After you have
properly installed the sensors in the OHT and
connected the power supply, the circuit is
ready to use. Since Vcc terminal is at the bottom of the tank, when the water
level falls below sensor L, timer IC2 is triggered at
pin 2 via inverters N1 and N2 and its output
goes high. As a result, the output of timer IC2 goes high. Relay RL1 energies
and the motor starts filling water in the tank. The motor remains ‘on’ even
when the water level crosses sensor L. As water in the tank rises to touch
sensor H, timer IC2 is retriggered at pin 6 via inverters N3 and N4 and as a
result, its output goes low. The relay de-energizes and the motor stops filling
water in the tank. The motor remains ‘off’ even when the water level falls
below sensor H. As water is consumed and its level falls below sensor L, the
motor restarts. Thereafter, the cycle repeats. You can also manually start and stop
the motor using switch S1.
Circuit Diagram
Practically Working Tested Kit
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Mini Project 2
Mini Project 2
Automatic Street Light Control
Abstract
This project aims at
designing and executing the advanced development in embedded systems for energy
saving of street lights with light depending resistor. Nowadays, human has
become too busy and he is unable to find time even to switch the lights
wherever not necessary. This can be seen more effectively in the case of street
lights. The present system is like, the street lights will be switched on in
the evening before the sun sets and they are switched off the next day morning
after there is sufficient light on the roads. But the actual timings for these
street lights to be switched on are when there is absolute darkness. With this,
the power will be wasted up to some extent. This project gives the best solution
for electrical power wastage. Also the manual operation of the lighting system
is completely eliminated. In our project we are using LDR, which varies
according to the amount of light falling on its surface, this give an indication
for us whether it is a day/night time. For this light detector sensor circuit we need
a 12V Regulated DC power supply, which is included in this PCB.
Circuit Diagram
Instead
LED use 5v Relay to control the Light . Needs no manual operation for switching
ON and OFF. When there is need of light it automatically switches ON. When
darkness rises to a certain value then sensor circuit gets activated and
switches ON and when there is other source of light i.e. day time, the street
light gets OFF. The sensitiveness of the street light can also be adjusted. In
our project we have used four L.E.D for indication of bulb but for high power
switching one can connect Relay (electromagnetic switch) at the output of pin 3
of I.C 555. Then it will be possible to turn ON/OFF any electrical appliances
connected all the way through relay.
Practically Working Tested Kit
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