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Showing posts with label CIRCUITS DESIGNS. Show all posts
Showing posts with label CIRCUITS DESIGNS. Show all posts
Thursday, January 19, 2012
timed burgler alarm
8:54:00 PM
world of Explore new
This is a simple but effective alarm circuit which can reset its self after
a time that you select. it has normally open and normally closed triggers which
make this circuit very practical. This alarm has normally open and normally closed triggers. It's on a 555
timer so the alarm will reset it's self after a certain amount of time. The time
is adjustable with the variable resistor in the circuit. The alarm has a reset
switch which you can replace with a key switch to make it more secure, and you
can change the triggers to other types of door or window switched too. The
alarm uses a relay which is connected to a siren but you can replace the siren
with whatever you want. The circuit is running off 9VOLTS but can range from 4V - 16V.

DayLight Alarm
8:52:00 PM
world of Explore new
The circuit presented here wakes you
up with a loud alarm at the break of the daylight. Once
again the 555 timer is used here. It is working as an
astable multivibrator at a frequency of about 1kHz.
The circuit's operation can be explained as follows:
When no light falls on the LDR, the transistor is pulled high by the variable resistor. Hence the transistor is OFF and the reset pin of the 555 is pulled low. Due the this the 555 is reset.
When light falls on the LDR, its resistance decreases and pulls the base of the transistor low hence turning it ON. This pulls the reset pin 4 of the 555 high and hence enables the 555 oscillator and a sound is produced by the speaker.
The variable 100K resistor has to be adjusted to set the light intensity that triggers the alarm.
The circuit's operation can be explained as follows:
When no light falls on the LDR, the transistor is pulled high by the variable resistor. Hence the transistor is OFF and the reset pin of the 555 is pulled low. Due the this the 555 is reset.
When light falls on the LDR, its resistance decreases and pulls the base of the transistor low hence turning it ON. This pulls the reset pin 4 of the 555 high and hence enables the 555 oscillator and a sound is produced by the speaker.
The variable 100K resistor has to be adjusted to set the light intensity that triggers the alarm.
Fire Alarm
8:51:00 PM
world of Explore new
.
This circuit warns the user against fire accidents.
It relies on the smoke that is produced in the event
of a fire. When this smoke passes between a bulb and
an LDR, the amount of light falling on the LDR decreases.
This causes the resistance of LDR to increase and the
voltage at the base of the transistor is pulled high
due to which the supply to the COB (chip-on-board) is
completed. Different COBs are available in the market
to generate different sounds.
The choice of the COB depends on the user. The signal generated by COB is amplified by an audio amplifier. In this circuit, the audio power amplifier is wired around IC TDA 2002. The sensitivity of the circuit depends on the distance between bulb and LDR as well as setting of preset VR1. Thus by placing the bulb and the LDR at appropriate distances, one may vary preset VR1 to get optimum sensitivity.
An ON/OFF switch is suggested to turn the circuit on and off as desirable.

The choice of the COB depends on the user. The signal generated by COB is amplified by an audio amplifier. In this circuit, the audio power amplifier is wired around IC TDA 2002. The sensitivity of the circuit depends on the distance between bulb and LDR as well as setting of preset VR1. Thus by placing the bulb and the LDR at appropriate distances, one may vary preset VR1 to get optimum sensitivity.
An ON/OFF switch is suggested to turn the circuit on and off as desirable.
Water Level Indicator with alarm
8:50:00 PM
world of Explore new
This circuit
not only indicates the amount of water present in the
overhead tank but also gives an alarm when the tank
is full.
The circuit uses the widely available CD4066, bilateral switch CMOS IC to indicate the water level through LEDs.
When the water is empty the wires in the tank are open circuited and the 180K resistors pulls the switch low hence opening the switch and LEDs are OFF. As the water starts filling up, first the wire in the tank connected to S1 and the + supply are shorted by water. This closes the switch S1 and turns the LED1 ON. As the water continues to fill the tank, the LEDs2 , 3 and 4 light up gradually.
The no. of levels of indication can be increased to 8 if 2 CD4066 ICs are used in a similar fashion.
The circuit uses the widely available CD4066, bilateral switch CMOS IC to indicate the water level through LEDs.
When the water is empty the wires in the tank are open circuited and the 180K resistors pulls the switch low hence opening the switch and LEDs are OFF. As the water starts filling up, first the wire in the tank connected to S1 and the + supply are shorted by water. This closes the switch S1 and turns the LED1 ON. As the water continues to fill the tank, the LEDs2 , 3 and 4 light up gradually.
The no. of levels of indication can be increased to 8 if 2 CD4066 ICs are used in a similar fashion.
When the
water is full, the base of the transistor BC148 is pulled
high by the water and this saturates the transistor,
turning the buzzer ON. The SPST switch has to be opened
to turn the buzzer OFF.
Remember to turn the switch ON while pumping water otherwise the buzzer will not sound!
Remember to turn the switch ON while pumping water otherwise the buzzer will not sound!
4 in 1 Burglar Alarm
8:48:00 PM
world of Explore new
I n this
circuit, the alarm will be switched on under the following
four different conditions: 1. When light falls on LDR1
(at the entry to the premises). 2. When light falling
on LDR2 is obstructed. 3. When door switches are opened
or a wire is broken. 4. When a handle is touched. The
light dependent resistor LDR1 should be placed in darkness
near the door lock or handle etc. If an intruder flashes
his torch, its light will fall on LDR1, reducing the
voltage drop across it and so also the voltage applied
to trigger 1 (pin 6) of IC1. Thus transistor T2 will
get forward biased and relay RL1 energise and operate
the alarm. Sensitivity of LDR1 can be adjusted by varying
preset VR1. LDR2 may be placed on one side of a corridor
such that the beam of light from a light source always
falls on it. When an intruder passes through the corridor,
his shadow falls on LDR2. As a result voltage drop across
LDR2 increases and pin 8 of IC1 goes low while output
pin 9 of IC1 goes high. Transistor T2 gets switched
on and the relay operates to set the alarm. The sensitivity
of LDR2 can be adjusted by varying potentiometer VR2.
A long but very thin wire may be connected between the
points A and B or C and D across a window or a door.
This long wire may even be used to lock or tie something.
If anyone cuts or breaks this wire, the alarm will be
switched on as pin 8 or 6 will go low. In place of the
wire between points A and B or C and D door switches
can be connected. These switches should be fixed on
the door in such a way that when the door is closed
the switch gets closed and when the door is open the
switch remains open. If the switches or wire, are not
used between these points, the points should be shorted.
With the help of a wire, connect the touch point (P)
with the handle of a door or some other suitable object
made of conducting material. When one touches this handle
or the other connected object, pin 6 of IC1 goes ‘low’.
So the alarm and the relay gets switched on. Remember
that the object connected to this touch point should
be well insulated from ground. For good touch action,
potentiometer VR3 should be properly adjusted. If potentiometer
VR3 tapping is held more towards ground, the alarm will
get switched on even without touching. In such a situation,
the tapping should be raised. But the tapping point
should not be raised too much as the touch action would
then vanish. When you vary potentiometer VR1, re-adjust
the sensitivity of the touch point with the help of
potentiometer VR3 properly. If the alarm has a voltage
rating of other than 6V (more than 6V), or if it draws
a high current (more than 150 mA), connect it through
the relay points as shown by the dotted lines. As a
burglar alarm, battery backup is necessary for this
circuit. Note: Electric sparking in the vicinity of
this circuit may cause false triggering of the circuit.
To avoid this adjust potentiometer VR3 properly.
Theft prevent alarm burglar alarm
8:45:00 PM
world of Explore new
This
circuit utilising a 555 timer IC can be used as an alarm system
to prevent the theft of your luggage, burglars breaking into your
house etc. The alarms goes ON when a thin wire, usually as thin
as a hair is broken.
The circuit is straightforward. It uses a 555 IC wired as an astable multivibrator to produce a tone of frequency of about 1kHz which gives out a shrill noise to scare away the burglar.
The wire used to set off the alarm can be made of a thin copper wire like SWG 36 or higher.
You can even use single strands of copper form a power cable.
The circuit operates on a wide range
of voltages from 5V to 15V.The circuit is straightforward. It uses a 555 IC wired as an astable multivibrator to produce a tone of frequency of about 1kHz which gives out a shrill noise to scare away the burglar.
The wire used to set off the alarm can be made of a thin copper wire like SWG 36 or higher.
You can even use single strands of copper form a power cable.
The speaker and the circuit could be housed inside a tin can with holes drilled on the speaker side for the sound to come out.
Power supply failure alarm
8:41:00 PM
world of Explore new
Most of the power supply failure indicator
circuits need a separate power supply for themselves. But the alarm
circuit presented here needs no additional supply source. It employs
an electrolytic capacitor to store adequate charge, to feed power
to the alarm circuit which sounds an alarm for a reasonable duration
when the supply fails.
This circuit can be used as an alarm for power supplies in the range of 5V to 15V.
To calibrate the circuit, first connect the power supply (5 to 15V) then vary the potentiometer VR1 until the buzzer goes from on to off.
Whenever the supply fails, resistor R2 pulls the base of transistor low and saturates it, turning the buzzer ON
This circuit can be used as an alarm for power supplies in the range of 5V to 15V.
To calibrate the circuit, first connect the power supply (5 to 15V) then vary the potentiometer VR1 until the buzzer goes from on to off.
Whenever the supply fails, resistor R2 pulls the base of transistor low and saturates it, turning the buzzer ON
Friday, January 6, 2012
Mobile incoming call indicator
9:07:00 PM
world of Explore new
Mobile incoming call indicator
Circuit diagram with Parts list.Description.
This circuit can be used to escape from the nuisance of mobile phone rings when you are at home. This circuit will give a visual indication if placed near a mobile phone even if the ringer is deactivated.
When a call is coming to the mobile phone, the
transmitter inside it becomes activated. The frequency of the
transmitter is around 900MHz.The coil L1 picks up these oscillations by
induction and feds it to the base of Q1. This makes the transistor Q1
activated.Since the Collector of Q1 is connected to the pin 2 of IC1
(NE555) , the IC1 is triggered to make the LED connected at its output
pin (pin 3) to blink. The blinking of the LED is the indication of
incoming call.
Notes.
- The coil L1 can be made by making 150 turns of 36 SWG enameled copper wire on a 5mm dia plastic former.Or you can purchase a 10 uH coil from shop if available.
- The circuit can be powered from a 6V battery.
- Assemble the circuit on a good quality PCB.
- C1 & C3 are to be polyester capacitors.
- The electrolytic capacitor C2 must be rated 10V.

