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Science Exhibition
Model
With Youtube Tutorial
Top 10
Top 10
Top 10
For Class/Grade 8
CONTACT US : +91 7276757409 www.smartxprokits.in
Advantages
All Connections are already done.
No Soldering Needed.
No Programming Needed.
All kit 100% Tested.
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SCIENCE EXHIBITION MODEL
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CONTACT US : www.smartxprokits.in
+91 7276757409
SR. NO. PROJECT NAME
1 Automatic Car Breaking System
2 Laser Security Alarm System For Bank
3 Temperature Control Alarm Sensor Kit
4 Smoke Detection Alarm Kit For Car
5 Vibration Detection Module For Industrial Machine
6 Automatic Water Dispenser Using IR Pair
7 Transformer Overheat Detection System
8 Automatic Irrigation System For Farmer
9 Water Level Indicator
10 LED Lighting in Aquarium Using LDR Sensor
Science Exhibition Model
Top 10
Top 10
Top 10
For Class/Grade 8
The aim of the project is to plan and improve a control system based an electronically controlled
automatic break by using IR Sensor. Due to the failure of brake the effectiveness of the brake
system reduces resulting in accidents, when effective brake system which increase the stability of
the vehicle. An efficient brake system is to bring the vehicle to rest within a reasonable distance. It is
also desirable that the rate of retardation should be related to the pedal effort. A Automatic break
indicator is consists of IR sensor, relay, rectifier buzzer and integrated circuit. The sensor is fixed car
. The sensors sense the obstacle failure from distance and gives signal to the relay unit, which
generate indication alarm. In case of failure due at that time of control unit sense the situation and
gives the indication alarm.
Automatic Car Breaking
System
Abstract
Buy Online “Automatic Car Breaking System” Ready Kit, 100% Tested from below and get
fastest delivery in India
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Car safety is the escaping of accidents in automobiles or to the minimization of harmful effects of
accidents, in particular as pertaining to natural life and healthiness. Special safety features which
has been built into the cars for years, some for the safety of car’s occupants only, and some for the
safety of others, which is fully equipped by sensors circuit. It is a fully equipped and designed
respectively for automobile vehicles and this forms an integral part of best quality of the vehicles.
This product underwent strenuous test in our automobile vehicles and it is good. Man has been
needed and used energy at an increasing rate for its sustenance and a few million years ago when
he came on earth. Primitive man required energy primarily in the method of food. He derived food by
eating plants or may be sometimes animals which he hunted and eat in the little mean time.
Subsequently he discovered fire and his energy needs increased as he started his way to make use
of wood and other bio mass products to supply the dynamism needs for cooking as well as
agriculture. He added a new dimension to the use of energy by domesticating and training animals
to work for him. With further depletion for energy in this world, man began to use the wind for sailing
ships and for driving windmills, and the force of failing water to turn the water wheels. Up to this time
it would not be wrong to say that the sun was supplying all the energy that needs of man either
directly proportional or indirectly proportional that man was using only renewable sources of energy
in this planet.
Introduction
The aim is to the proposed design and develops and improves the control system based on
intelligent breaking system of a normal conventional electronically controlled automotive braking
system. Based on this concept model, strategies such as an ‘antilock braking system’ (ABS) and
stability controlled system has been improved manoeuvrability via individual wheel braking which
was actuated and developed in the later years.
They have been considerable advances in modern vehicle braking systems in recent years. For an
instance, electronically actuated ABS for emergency braking system electronically hydraulic
actuated individual system as brake-by-wire (BBW) concepts for saloon cars and other electronically
controlled pneumatic actuated systems for heavy goods vehicles.
AT BREAKING CONDITION:
The IR transmitter sensor transmits the infrared rays with the help of a Lm393. The IR receiver
sensor receives the IR rays from the receiver. The transistor such as T1 are used as an amplifier
section. At normal condition Transistor T5 is in OFF condition. At that time relay is OFF, the alarm is
also switched OFF.
Working
Circuit Diagram of IR sensor
Components Used
IR Sensor
https://smartxprokits.in/ir-proximity-sensor/
Buzzer
https://smartxprokits.in/electromagnetic-buzzer-5v-pcb-mount/
Relay 5V
https://smartxprokits.in/ir-proximity-sensor/
USB Cable
https://smartxprokits.in/product/micro-usb-cable/
Buy Now
https://www.youtube.com/watch?
v=axn3yJAIvTEv=Dls35NnPdzw
https://smartxprokits.in/smoke-detection-alarm-kit-assembled-
100-tested/?
srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a
2tpOz72vYg8x5Eq
A laser-based security system is a type of security alarm that uses a light sensor and laser light. In this tutorial,
we are going to demonstrate a circuit of a laser security alarm system that will detect any irregular activity and
will produce sound using a buzzer. One of the main components of this circuit is LDR. It will detect dark and
light laser beams and will change its resistance to send a signal to the buzzer.
Laser based Security System is a type of security and alarm system that uses laser light and a light sensor. A
security system protects our homes, offices, banks, lockers etc. from intrusion and unauthorised access. There
are different types of security systems available and laser based security system is an important and efficient
type.
A Laser security system can acts as a standalone system, which makes some sound or noise when it detects
any irregular activity, or can be part of a much bigger security and home automation system, which can send
messages, call the owner etc.
In this project, we have designed a simple DIY lased based security system, which acts as a tripwire like
security system and triggers an alarm when the laser in interrupted.
WARNING: We have used a laser pointer in this project. Direct exposure of laser light on eyes can be very
dangerous. Even though it is a low power laser, avoid direct eye exposure of laser.
Laser Security Alarm System
For Bank
Abstract
Buy Online “Laser Security Alarm System For Bank” Ready Kit, 100% Tested from below and get
fastest delivery in India
https://smartxprokits.in/laser-alarm-circuit-ldr-based-security-system-assembled-100-tested/
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Complete working video can be seen from
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The design of the laser security system circuit is very simple. We will see the design of the circuit in this
section and in the working explanation we will see the working of the individual component.
Coming to the design of the circuit, first, the LDR and a 10 K Ω resistor are connected in a voltage divider
fashion and its output (common point) is connected to the pin 3 (non – inverting) of the Op- Amp IC LM358.
For the inverting terminal (pin 2), connect the wiper of a 10 KΩ potentiometer (other two terminal of the POT
are connected to VCC and GND).
The output of the Op – Amp (Pin 1) is connected to the base of the transistor (BC547) through a resistor.
The trigger pin of 555 (Pin 2) is pulled high using a 10 KΩ resistor.
The reset pin (pin 4) of the 555 is connected to VCC through a 10 KΩ resistor and a push button is connected
between Pin 4 of 555 and GND. A bypass capacitor of 100 nF is connected between pins 5 and GND. A
buzzer is connected to pin 3 of 555 IC.
Rest of the connection are shown in the circuit diagram.
Circuit Design
A simple, cheap and effective laser based security system is developed in this project. Let us see the working
of this project.
First, the Op – Amp circuit acts as a comparator i.e. it compares the voltages at the inverting and non –
inverting terminals and produces an output accordingly.
The LDR – 10 KΩ resistor Voltage divider is connected to the non – inverting terminal of Op –Amp and a POT
is connected to the inverting terminal.
Working of the Project
Assume, the laser pointer is placed directly in line of sight to the LDR and the light from the laser is
continuously being incident on LDR.
In this situation, the resistance of LDR falls down to few Ohms (or tens of Ohms) and as a result, the voltage at
the non – inverting terminal will be less than that at the inverting voltage. The output of the Op –Amp is low and
the transistor is OFF.
If the laser light is blocked by an intruder from falling on the LDR (even for a small duration), the resistance of
the LDR goes to few hundreds of Ohms and as a result, the output of the Op –Amp will be HIGH. This will turn
on the Transistor.
As the output of the transistor is connected to the Trigger Pin (Pin 2) of the 555 Timer IC, if the transistor is
ON, the trigger pin gets a short low pulse and as a result, the output of the 555 becomes HIGH. This will
activate the alarm by turning ON the buzzer.
Since, the 555 Timer IC is configured as a Bi – Stable Multivibrator, a small active low trigger pulse at the
trigger pin will set its output to HIGH and in order to reset it we need to push the reset button.
LM358 (Op – Amp IC)
NE555 (Timer IC)
LDR
3 x 10 KΩ Resistors (1/4 Watt)
220 Ω Resistors (1/4 Watt)
10 KΩ Potentiometer
BC547 (NPN Transistor)
Small Buzzer
100 nF Capacitor (Ceramic Disc Type Capacitor – Code 104)
Push Button
Laser Pointer
9V Battery
Connecting Wires
Breadboard (Prototyping board)
Components is Used
The circuit, construction and setup for the Laser Security System is very simple.
If used with a battery, the laser security system can work even when there is a power outage.
Advantages
The laser security system works only if the laser is obstructed. If the intruder passes without obstructing
the laser, it is considered as a failure.
In order to secure a larger area, we need more lasers and corresponding sensors.
Disadvantages
Laser Security System can be used in safety lockers in our homes, where even if the locker’s code is
hacked, it acts as an additional layer of security.
Apart from security systems, this laser based setup can also be used to check if pets or babies crossed a
certain boundary.
Applications
Buy Now
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system-assembled-100-tested/
Automatic Over Temperature Detection and Alert circuit is presented here is based on the readily
available NTC, comparator IC LM393 and relay. The NTC is used as the temperature detector while
IC LM393 used as comparator. In the absence of heat, no rise in temperature of the temperature
sensor. As a result temperature sensor stop conducting and LED stays off. However, when
temperature rises of the temperature sensor NTC starts conducting and LED glows and buzzer
turns ON.
Temperature Control Alarm
Sensor Kit
Abstract
Buy Online “Temperature Control Alarm Sensor Kit ” Ready Kit, 100% Tested from below and
get fastest delivery in India
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Complete working video can be seen from
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Most of the NTC based circuits available in market use one or another kind of NTC which increases the cost
and also require complicated circuitry around it. But this NTC based circuit uses readily available NTC as light
detector. The functioning of this Automatic Over Temperature Detection and Alert circuit is to detect
temperature and automatically activate the LED and buzzer with increase in temperature. LED glows and
buzzer sound continuously indicating the increase in temperature of NTC.
Application of the Circuit
NTC used here as a temperature detector. The variation in temperature wanted can be easily done placing
solder gun near to NTC. The circuit operates normally over a DC voltage of 5V which can be obtained by DC
supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON LED and buzzer when there is temperature rise. The
NTC is needed for this purpose. NTC is thermistor. It is heat sensitive resistor element of which resistor value
rapidly decreases with increase in temperature. Here, Automatic Over Temperature Detection and Alert circuit
works as temperature detector while NTC working as temperature sensor that glows LED and turn ON the
buzzer. IC LM393 is used as comparator. NTC output is connected as input to comparator. Pin no. 4 of LM393
is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes
open and normally open contact becomes closed. In normal condition, NTC temperature is low and LED and
buzzer stays off. Now consider second scenario when temperature rises, the LED glows and buzzer turns ON.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB
and components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
How to Build
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually hold solder gun close to NTC. LED glows and buzzer sound in this case.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit at ceiling of room.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
https://www.youtube.com/watch?v=07QBYB69fVU https://smartxprokits.in/automatic-over-temp-
detection-and-alert-ready-kit-assembled-100-
tested/
Capacitor C1 – 1uF
Miscellaneous
D4: – NTC
https://smartxprokits.in/product/843/
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
Buzzer
https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/
Buy Now
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
In this project, we have designed Smoke Level Detector using MQ-135 Sensor for measuring the
level of smoke in the environment. Simply we have interfaced MQ-135 Gas Sensor module with
Relay and Buzzer. The Smoke sensor we used is the MQ-135 sensor. Smoke Detectors are very
useful in detecting smoke or fire in buildings, and so are the important safety parameters.
Smoke Detector Circuit which not only senses the smoke in the air but also reads and displays the
level of Smoke in the Air. This circuit triggers the Buzzer when Smoke level becomes higher than
the desirable limit, this threshold value can be changed in the Circuit according to the requirement.
Smoke Detection Alarm kit
Abstract
Buy Online “Smoke Detection Alarm Kit” Ready Kit, 100% Tested from below and get fastest
delivery in India
https://smartxprokits.in/smoke-detection-alarm-kit-assembled-100-tested/?
srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a2tpOz72vYg8x5Eq
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MQ-135 Module sensor has lower conductivity in clean air. When the target combustible gas exists,
the sensor’s conductivity is higher along with the gas concentration rising. Convert change of
conductivity to correspond output signal of gas concentration. MQ135 gas sensor has high
sensitivity to Ammonia, Sulphide and Benzene steam, also sensitive to smoke and other harmful
gases. It is with low cost and suitable for different applications such as harmful gases/smoke
detection.
Introduction
MQ135 Smoke Sensor
Relay Module 5V
https://smartxprokits.in/product/mq135-gas-sensor-module/
USB Cable
https://smartxprokits.in/product/micro-usb-cable/
Buzzer 5V
https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/
Buy Now
Working
The MQ-135 smoke sensor consists of a tin dioxide (SnO2), a perspective layer inside aluminum oxide
microtubes (measuring electrodes) and a heating element inside a tubular casing. The end face of the sensor
is enclosed by a stainless steel net and the backside holds the connection terminals. Smoke is emitted from
the source by burning anything. With the smoke cascade on the tin dioxide sensing layer, the resistance
decreases. By using the external load resistance the resistance variation is converted into a suitable voltage
variation.
Circuit Diagram
Component Used
https://www.youtube.com/watch?
v=Dls35NnPdzw
https://smartxprokits.in/smoke-detection-alarm-kit-assembled-
100-tested/?
srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a
2tpOz72vYg8x5Eq
Industrial Machine Vibration Detection circuit is presented here is based on the readily available
vibration sensor also called piezoelectric sensor and comparator IC LM393. The Vibration sensor is
used as the vibration detector while IC LM393 used as comparator. In the absence of vibration, no
vibrations detect on the piezoelectric sensor. As a result piezoelectric sensor stop conducting and
LED stays off. However, when vibrations detect on the piezoelectric sensor, piezoelectric sensor
starts conducting and LED glows.
Vibration Detection Module
For Industrial Machine
Abstract
Buy Online “Industrial Machine Vibration Detection” Ready Kit, 100% Tested from below and
get fastest delivery in India
https://smartxprokits.in/induction-motor-vibration-detection-kit-assembled-100-tested/
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Complete working video can be seen from
https://www.youtube.com/watch?v=hPgNWCX23Sg
Most of the vibration sensor based circuits available in market use one or another kind of piezoelectric sensor
which increases the cost and also require complicated circuitry around it. But this piezoelectric sensor based
circuit uses readily available piezoelectric crystal as vibration detector. The functioning of this Industrial
Machine Vibration Detection circuit is to detect vibration and automatically activate the LED in presence of
vibration. LED glows continuously indicating the presence of vibration till vibration stops.
Application of the Circuit
Piezoelectric sensor used here as a vibration detector. The circuit operates normally over a DC voltage of 5V
which can be obtained by DC supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON LED in presence of vibration. The piezoelectric sensor
is needed for this purpose. Vibration sensor is piezoelectric device as it converts vibrations to electric energy.
Here, Industrial Machine Vibration Detection circuit works as vibration detector while piezoelectric sensor
working as vibration sensor that glows LED. IC LM393 is used as comparator. Vibration sensor output is
connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. In normal condition, no
vibration detected and LED stays off. Now consider second scenario when vibration detects, the LED glows in
the presence of vibration.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB
and components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
How to Build
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose vibration applied to vibration sensor. LED glows in this case.
Now set the desired intensity at which you want detection of vibration. This can be done by changing the
resistive value of R2 variable resistor.
Install the unit at ceiling of room.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
Capacitor C1 – 1uF
Miscellaneous
D4: – Vibration Sensor
D1: – Red LED
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D2: – Green LED
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5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
https://www.youtube.com/watch?
v=hPgNWCX23Sg
https://smartxprokits.in/induction-motor-
vibration-detection-kit-assembled-100-tested/
Buy Now
Automatic Water dispenser using IR Pair circuit is presented here is based on the readily available
IR sensor, comparator IC LM393 and relay. The photo diode is used as the light intensity detector
while IC LM393 used as comparator. IR beam is continuously falling on photodiode. On interruption
the movement is detected. Hence, no IR beam falls on the photo diode. As a result photo diode stop
conducting and water pump starts. However, when IR beam falls on the photo diode, photo diode
starts conducting and water pump stays off.
Automatic Water Dispenser
Using IR Pair
Abstract
Buy Online “Automatic Water dispenser using IR Pair” Ready Kit, 100% Tested from below
and get fastest delivery in India
https://smartxprokits.in/product/automatic-water-dispenser-using-ir-pair-kit-assembled-100-tested/
Complete working video can be seen from
https://youtu.be/6v3oMG6lpY0
Follow Us on Instagram
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Most of the IR based circuits available in market use one or another kind of IR sensor which increases the cost
and also require complicated circuitry around it. But this IR based circuit uses readily available IR sensor as IR
beam detector. The functioning of this Automatic Water dispenser using IR Pair is to detect interruption in IR
beam falling on photo diode and automatically activate the pump in absence of beam. Water pump
continuously indicating the absence of beam till beam falls on the photo diode.
Application of the Circuit
IR sensor used here as a beam detector. The variation in beam wanted can be easily done by interrupting IR
beam using hand palm. The circuit operates normally over a DC voltage of 5V which can be obtained by DC
supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON pump in absence of IR beam. The photo diode is
needed for this purpose. Photo diode is photoelectric device as it converts light energy to electric energy. Here,
Automatic Water dispenser using IR Pair works as IR beam detector while photo diode working as light sensor
that pumps water. IC LM393 is used as comparator. Photo diode output is connected as input to comparator.
Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally
closed contact becomes open and normally open contact becomes closed. In normal condition, IR beam falls on
photo diode and water pump stays off. Now consider second scenario when IR beam is irrupted, the water
pumps in the absence of light.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and
components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
How to Build
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually hold hand palm over IR sensor. Water pumps in this case.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit in room.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
Capacitor C1 – 1uF
Miscellaneous
D4: – IR Sensor
https://smartxprokits.in/product/5mm-ir-led-infrared-led/
D3: – Photo diode
https://smartxprokits.in/product/photodiode/
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
Pump
https://smartxprokits.in/product/5v-dc-mini-submersible-water-pump/
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
https://youtu.be/6v3oMG6lpY0 https://smartxprokits.in/automatic-water-
dispenser-using-ir-pair-kit-assembled-100-
tested/
Buy Now
Transformer Overheat Detection System circuit is presented here is based on the readily available
NTC, comparator IC LM393 and relay. The NTC is used as the temperature detector while IC
LM393 used as comparator. In the absence of heat, no rise in temperature of the temperature
sensor. As a result temperature sensor stop conducting and LED stays off. However, when
temperature rises of the temperature sensor NTC starts conducting and LED glows and buzzer
turns ON.
Transformer Overheat
Detection System
Abstract
Buy Online “Transformer Overheat detection” Ready Kit, 100% Tested from below and get
fastest delivery in India
https://smartxprokits.in/transformer-overheat-detection-ready-kit-assembled-100-tested/
Follow Us on Instagram
https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D
Complete working video can be seen from
https://youtu.be/pz2Lnq9nBis?si=9g4_5FW7nJ-Boz4N
Most of the NTC based circuits available in market use one or another kind of NTC which increases the cost
and also require complicated circuitry around it. But this NTC based circuit uses readily available NTC as light
detector. The functioning of this Transformer Overheat Detection System circuit is to detect temperature and
automatically activate the LED and buzzer with increase in temperature. LED glows and buzzer sound
continuously indicating the increase in temperature of NTC.
Application of the Circuit
NTC used here as a temperature detector. The variation in temperature wanted can be easily done placing
solder gun near to NTC. The circuit operates normally over a DC voltage of 5V which can be obtained by DC
supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON LED and buzzer when there is temperature rise. The
NTC is needed for this purpose. NTC is thermistor. It is heat sensitive resistor element of which resistor value
rapidly decreases with increase in temperature. Here, Transformer Overheat Detection System circuit works as
temperature detector while NTC working as temperature sensor that glows LED and turn ON the buzzer. IC
LM393 is used as comparator. NTC output is connected as input to comparator. Pin no. 4 of LM393 is pulled
towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and
normally open contact becomes closed. In normal condition, NTC temperature is low and LED and buzzer stays
off. Now consider second scenario when temperature rises, the LED glows and buzzer turns ON.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and
components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
How to Build
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually hold solder gun close to NTC. LED glows and buzzer sound in this case.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit at ceiling of room.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used Here
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
Capacitor C1 – 1uF
Miscellaneous
D4: – NTC
https://smartxprokits.in/product/843/
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
Buzzer
https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
https://youtu.be/pz2Lnq9nBis?
si=gGClC1cizSKJIi8G
https://smartxprokits.in/transformer-overheat-
detection-ready-kit-assembled-100-tested/
Buy Now
Automatic Irrigation System circuit is presented here is based on the readily available moisture
sensor, comparator IC LM393 and relay. The moisture sensor is used as soil moisture detector
while IC LM393 used as comparator. In the absence of water, no moisture sense in the soil. As a
result moisture sensor start conducting and turn ON the water pump. However, when there is a
moisture present in the soil the moisture sensor detect moisture and water pump stays off.
Automatic Irrigation System
for Farmer
Abstract
Buy Online “Automatic Irrigation System for Farmer” Ready Kit, 100% Tested from below and
get fastest delivery in India
https://smartxprokits.in/automatic-irrigation-system-kit-assembled-100-tested/
Follow Us on Instagram
https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D
Complete working video can be seen from
https://www.youtube.com/watch?v=FTUc5eaMeLs
Most of the moisture sensor based circuits available in market use one or another kind of soil moisture
detector probe which increases the cost and also require complicated circuitry around it. But this moisture
sensor based circuit uses readily available soil moisture detector probe as moisture detector. The functioning
of this Automatic Irrigation System circuit is to detect moisture in soil and automatically activate the water
pump in absence of moisture. Water pump is ON continuously indicating the absence of moisture till it detects
moisture on moisture sensor.
Application of the Circuit
Soil moisture detector probe used here as a moisture detector. The variation in moisture wanted can be easily
done by introducing water. The circuit operates normally over a DC voltage of 5V which can be obtained by
DC supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON water pump in absence of moisture. The soil moisture
detector probe is needed for this purpose. Soil moisture detector probe is a device that converts soil moisture to
electric energy. Here, Automatic Irrigation System circuit works as moisture detector while soil moisture detector
probe working as moisture sensor that turns ON water pump. IC LM393 is used as comparator. Soil moisture
detector probe output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay
is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact
becomes closed. In normal condition, there is moisture in the soil and water pump stays off. Now consider
second scenario when there is no moisture in the soil, the water pump turns ON.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and
components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
How to Build
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually induce water in the soil. Pump turns on in absence of water.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit in soil.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used Here
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
Capacitor C1 – 1uF
Miscellaneous
D4: – Moisture Sensor
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
Pump
https://smartxprokits.in/product/5v-dc-mini-submersible-water-pump/
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
Buy Now
https://www.youtube.com/watch?v=FTUc5eaMeLs https://smartxprokits.in/automatic-irrigation-
system-kit-assembled-100-tested/
Water Level Indicator circuit is presented here is based on the readily available moisture sensor,
comparator IC LM393 and relay. The moisture sensor is used as moisture detector while IC LM393
used as comparator. In the absence of water, no moisture is sensed. As a result moisture sensor
start conducting and turn ON the LED. However, when there is a moisture present the moisture
sensor detect moisture and LED stays off.
Water Level Indicator
Abstract
Buy Online “Water level indicator” Ready Kit, 100% Tested from below and get fastest
delivery in India
https://smartxprokits.in/water-level-indicator-kit-assembled-100-tested/
Follow Us on Instagram
https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D
Complete working video can be seen from
https://youtu.be/AZ47vPnpZg8
Most of the moisture sensor based circuits available in market use one or another kind of moisture detector
probe which increases the cost and also require complicated circuitry around it. But this moisture sensor based
circuit uses readily available moisture detector probe as moisture detector. The functioning of this Water Level
Indicator circuit is to detect the moisture and automatically activate the LED in absence of moisture. Water
pump is ON continuously indicating the absence of moisture till it detects moisture on moisture sensor.
Application of the Circuit
Moisture detector probe used here as a moisture detector. The variation in moisture wanted can be easily
done by introducing water. The circuit operates normally over a DC voltage of 5V which can be obtained by
DC supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON LED in absence of moisture. The moisture detector
probe is needed for this purpose. Moisture detector probe is a device that converts moisture to electric energy.
Here, Water Level Indicator circuit works as moisture detector while moisture detector probe working as
moisture sensor that turns ON LED. IC LM393 is used as comparator. Moisture detector probe output is
connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch.
When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In
normal condition, there is moisture and LED stays off. Now consider second scenario when there is no moisture,
the LED turns ON.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and
components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
How to Build
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually water is induced. LED turns on in absence of water.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit in tank.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used Here
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
LED
https://smartxprokits.in/product/5mm-white-led/
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
Capacitor C1 – 1uF
Miscellaneous
D4: – Moisture Sensor
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/
Buy Now
https://youtu.be/AZ47vPnpZg8 https://smartxprokits.in/water-level-indicator-kit-
assembled-100-tested/
LED Lighting in
Aquarium Using LDR
Sensor
LED Lighting in Aquarium using LDR Sensor circuit is presented here is based on the readily
available LDR, comparator IC LM393 and relay. The LDR is used as the light intensity detector while
IC LM393 used as comparator. In the absence of light, no light falls on the photo sensor. As a result
photo sensor stop conducting and LED emergency light glows. However, when light falls on the
photo sensor photo sensor starts conducting and LED emergency light stays off.
LED Lighting in Aquarium
Using LDR Sensor
Abstract
Buy Online “LED Lighting in Aquarium using LDR Sensor” Ready Kit, 100% Tested from
below and get fastest delivery in India
https://smartxprokits.in/product/led-lighting-in-aquarium-using-ldr-sensor-ready-kit-assembled-100-
tested/
Follow Us on Instagram
https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D
Complete working video can be seen from
https://youtu.be/cAoZ8gnSqEw
Most of the LDR based circuits available in market use one or another kind of LDR which increases the cost
and also require complicated circuitry around it. But this LDR based circuit uses readily available LDR as light
detector. The functioning of this LED Lighting in Aquarium using LDR Sensor circuit is to detect interruption in
light and automatically activate the LED emergency light in absence of light. LED emergency light glows
continuously indicating the absence of light till light falls on the LDR.
Application of the Circuit
LDR used here as a light detector. The variation in intensity of light wanted can be easily done by interrupting
light using hand palm. The circuit operates normally over a DC voltage of 5V which can be obtained by DC
supply cable.
Why this Particular Circuit
The basic idea behind the circuit operation is to turn ON LED emergency light in absence of light. The LDR is
needed for this purpose. LDR is photoelectric device as it converts light energy to electric energy. Here, LED
Lighting in Aquarium using LDR Sensor circuit works as light detector while LDR working as light sensor that
glows LED emergency light. IC LM393 is used as comparator. LDR output is connected as input to comparator.
Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally
closed contact becomes open and normally open contact becomes closed. In normal condition, light falls on
LDR and LED emergency light stays off. Now consider second scenario when light irrupts, the LED emergency
light glows in the absence of light.
Explained Working of Circuit
First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and
components supplied along with the kit. Each component has to be soldered in its position on PCB.
Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact
value.
There are different methods in which values are defined on capacitors. But usually values are specified
numerically on them.
Can you make out the whole working of circuit and are you able to identify each component separately as to
where each of them has to be placed?
If yes only then proceed further to actually mounting and soldering the parts.
Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy
while troubleshooting.
How to Build
Start from left most corner of PCB and solder the components one by one on their correct position on PCB.
Before soldering any component see that you have placed it at its right position and with correct polarity. Give
due attention to diodes and electrolytic capacitors as they are polarity dependent.
Do the soldering of other components in the same way while keeping in mind that components with long and
sensitive leads like capacitors and transistors are soldered last.
After assembling and soldering of components on PCB, connect external DC power source of 5V.
For testing purpose manually hold hand palm over LDR. LED glows in this case.
Now set the desired intensity at which you want detection of light. This can be done by changing the resistive
value of R2 variable resistor.
Install the unit at ceiling of room.
Testing the Kit
The only IC used here is LM393
It is dual differential comparator IC.
This 8 pin IC is popular and commonly used IC
ICs Used Here
Part List
Semiconductors
U1 – LM393
https://smartxprokits.in/product/lm393/
Base – 8 pin
https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/
Resistors(all ¼ watt +/-5% carbon unless stated otherwise)
R2 – 10k Ohm(variable)
https://smartxprokits.in/product/10k-multiturn-potentiometer/
R3 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R4 – 1k Ohm
https://smartxprokits.in/product/1k-resistor-1-4-watt/
R5 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
R6 – 10k Ohm
https://smartxprokits.in/product/10k-resistor-1-4-watt/
Buy Now
https://youtu.be/cAoZ8gnSqEw https://smartxprokits.in/led-lighting-in-aquarium-
using-ldr-sensor-ready-kit-assembled-100-
tested/
5 V USB Cable
https://smartxprokits.in/product/micro-usb-cable/
PCB
LED
https://smartxprokits.in/product/5mm-white-led/
Relay
https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
Capacitor C1 – 1uF
Miscellaneous
D4: – LDR
https://smartxprokits.in/product/843/
D1: – Red LED
https://smartxprokits.in/product/3mm-red-led/
D2: – Green LED
https://smartxprokits.in/product/3mm-green-led/

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Top 10Science Exhibition Model for Class/Grade 8 with Youtube Tutorial

  • 1. Science Exhibition Model With Youtube Tutorial Top 10 Top 10 Top 10 For Class/Grade 8
  • 2. CONTACT US : +91 7276757409 www.smartxprokits.in Advantages All Connections are already done. No Soldering Needed. No Programming Needed. All kit 100% Tested. Buy Now SCIENCE EXHIBITION MODEL https://smartxprokits.in/product-category/science-fair-project-diykit-schooldiykit CONTACT US : www.smartxprokits.in +91 7276757409
  • 3. SR. NO. PROJECT NAME 1 Automatic Car Breaking System 2 Laser Security Alarm System For Bank 3 Temperature Control Alarm Sensor Kit 4 Smoke Detection Alarm Kit For Car 5 Vibration Detection Module For Industrial Machine 6 Automatic Water Dispenser Using IR Pair 7 Transformer Overheat Detection System 8 Automatic Irrigation System For Farmer 9 Water Level Indicator 10 LED Lighting in Aquarium Using LDR Sensor Science Exhibition Model Top 10 Top 10 Top 10 For Class/Grade 8
  • 4. The aim of the project is to plan and improve a control system based an electronically controlled automatic break by using IR Sensor. Due to the failure of brake the effectiveness of the brake system reduces resulting in accidents, when effective brake system which increase the stability of the vehicle. An efficient brake system is to bring the vehicle to rest within a reasonable distance. It is also desirable that the rate of retardation should be related to the pedal effort. A Automatic break indicator is consists of IR sensor, relay, rectifier buzzer and integrated circuit. The sensor is fixed car . The sensors sense the obstacle failure from distance and gives signal to the relay unit, which generate indication alarm. In case of failure due at that time of control unit sense the situation and gives the indication alarm. Automatic Car Breaking System Abstract Buy Online “Automatic Car Breaking System” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/automatic-breaking-system-using-ir-sensor-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://www.youtube.com/watch?v=axn3yJAIvTE
  • 5. Car safety is the escaping of accidents in automobiles or to the minimization of harmful effects of accidents, in particular as pertaining to natural life and healthiness. Special safety features which has been built into the cars for years, some for the safety of car’s occupants only, and some for the safety of others, which is fully equipped by sensors circuit. It is a fully equipped and designed respectively for automobile vehicles and this forms an integral part of best quality of the vehicles. This product underwent strenuous test in our automobile vehicles and it is good. Man has been needed and used energy at an increasing rate for its sustenance and a few million years ago when he came on earth. Primitive man required energy primarily in the method of food. He derived food by eating plants or may be sometimes animals which he hunted and eat in the little mean time. Subsequently he discovered fire and his energy needs increased as he started his way to make use of wood and other bio mass products to supply the dynamism needs for cooking as well as agriculture. He added a new dimension to the use of energy by domesticating and training animals to work for him. With further depletion for energy in this world, man began to use the wind for sailing ships and for driving windmills, and the force of failing water to turn the water wheels. Up to this time it would not be wrong to say that the sun was supplying all the energy that needs of man either directly proportional or indirectly proportional that man was using only renewable sources of energy in this planet. Introduction The aim is to the proposed design and develops and improves the control system based on intelligent breaking system of a normal conventional electronically controlled automotive braking system. Based on this concept model, strategies such as an ‘antilock braking system’ (ABS) and stability controlled system has been improved manoeuvrability via individual wheel braking which was actuated and developed in the later years. They have been considerable advances in modern vehicle braking systems in recent years. For an instance, electronically actuated ABS for emergency braking system electronically hydraulic actuated individual system as brake-by-wire (BBW) concepts for saloon cars and other electronically controlled pneumatic actuated systems for heavy goods vehicles. AT BREAKING CONDITION: The IR transmitter sensor transmits the infrared rays with the help of a Lm393. The IR receiver sensor receives the IR rays from the receiver. The transistor such as T1 are used as an amplifier section. At normal condition Transistor T5 is in OFF condition. At that time relay is OFF, the alarm is also switched OFF. Working
  • 6. Circuit Diagram of IR sensor Components Used IR Sensor https://smartxprokits.in/ir-proximity-sensor/ Buzzer https://smartxprokits.in/electromagnetic-buzzer-5v-pcb-mount/ Relay 5V https://smartxprokits.in/ir-proximity-sensor/ USB Cable https://smartxprokits.in/product/micro-usb-cable/ Buy Now https://www.youtube.com/watch? v=axn3yJAIvTEv=Dls35NnPdzw https://smartxprokits.in/smoke-detection-alarm-kit-assembled- 100-tested/? srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a 2tpOz72vYg8x5Eq
  • 7. A laser-based security system is a type of security alarm that uses a light sensor and laser light. In this tutorial, we are going to demonstrate a circuit of a laser security alarm system that will detect any irregular activity and will produce sound using a buzzer. One of the main components of this circuit is LDR. It will detect dark and light laser beams and will change its resistance to send a signal to the buzzer. Laser based Security System is a type of security and alarm system that uses laser light and a light sensor. A security system protects our homes, offices, banks, lockers etc. from intrusion and unauthorised access. There are different types of security systems available and laser based security system is an important and efficient type. A Laser security system can acts as a standalone system, which makes some sound or noise when it detects any irregular activity, or can be part of a much bigger security and home automation system, which can send messages, call the owner etc. In this project, we have designed a simple DIY lased based security system, which acts as a tripwire like security system and triggers an alarm when the laser in interrupted. WARNING: We have used a laser pointer in this project. Direct exposure of laser light on eyes can be very dangerous. Even though it is a low power laser, avoid direct eye exposure of laser. Laser Security Alarm System For Bank Abstract Buy Online “Laser Security Alarm System For Bank” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/laser-alarm-circuit-ldr-based-security-system-assembled-100-tested/
  • 8. Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://www.youtube.com/watch?v=ieSPjzmjD9E The design of the laser security system circuit is very simple. We will see the design of the circuit in this section and in the working explanation we will see the working of the individual component. Coming to the design of the circuit, first, the LDR and a 10 K Ω resistor are connected in a voltage divider fashion and its output (common point) is connected to the pin 3 (non – inverting) of the Op- Amp IC LM358. For the inverting terminal (pin 2), connect the wiper of a 10 KΩ potentiometer (other two terminal of the POT are connected to VCC and GND). The output of the Op – Amp (Pin 1) is connected to the base of the transistor (BC547) through a resistor. The trigger pin of 555 (Pin 2) is pulled high using a 10 KΩ resistor. The reset pin (pin 4) of the 555 is connected to VCC through a 10 KΩ resistor and a push button is connected between Pin 4 of 555 and GND. A bypass capacitor of 100 nF is connected between pins 5 and GND. A buzzer is connected to pin 3 of 555 IC. Rest of the connection are shown in the circuit diagram. Circuit Design A simple, cheap and effective laser based security system is developed in this project. Let us see the working of this project. First, the Op – Amp circuit acts as a comparator i.e. it compares the voltages at the inverting and non – inverting terminals and produces an output accordingly. The LDR – 10 KΩ resistor Voltage divider is connected to the non – inverting terminal of Op –Amp and a POT is connected to the inverting terminal. Working of the Project
  • 9. Assume, the laser pointer is placed directly in line of sight to the LDR and the light from the laser is continuously being incident on LDR. In this situation, the resistance of LDR falls down to few Ohms (or tens of Ohms) and as a result, the voltage at the non – inverting terminal will be less than that at the inverting voltage. The output of the Op –Amp is low and the transistor is OFF. If the laser light is blocked by an intruder from falling on the LDR (even for a small duration), the resistance of the LDR goes to few hundreds of Ohms and as a result, the output of the Op –Amp will be HIGH. This will turn on the Transistor. As the output of the transistor is connected to the Trigger Pin (Pin 2) of the 555 Timer IC, if the transistor is ON, the trigger pin gets a short low pulse and as a result, the output of the 555 becomes HIGH. This will activate the alarm by turning ON the buzzer. Since, the 555 Timer IC is configured as a Bi – Stable Multivibrator, a small active low trigger pulse at the trigger pin will set its output to HIGH and in order to reset it we need to push the reset button. LM358 (Op – Amp IC) NE555 (Timer IC) LDR 3 x 10 KΩ Resistors (1/4 Watt) 220 Ω Resistors (1/4 Watt) 10 KΩ Potentiometer BC547 (NPN Transistor) Small Buzzer 100 nF Capacitor (Ceramic Disc Type Capacitor – Code 104) Push Button Laser Pointer 9V Battery Connecting Wires Breadboard (Prototyping board) Components is Used The circuit, construction and setup for the Laser Security System is very simple. If used with a battery, the laser security system can work even when there is a power outage. Advantages The laser security system works only if the laser is obstructed. If the intruder passes without obstructing the laser, it is considered as a failure. In order to secure a larger area, we need more lasers and corresponding sensors. Disadvantages
  • 10. Laser Security System can be used in safety lockers in our homes, where even if the locker’s code is hacked, it acts as an additional layer of security. Apart from security systems, this laser based setup can also be used to check if pets or babies crossed a certain boundary. Applications Buy Now https://www.youtube.com/watch?v=ieSPjzmjD9E https://smartxprokits.in/laser-alarm-circuit-ldr-based-security- system-assembled-100-tested/
  • 11. Automatic Over Temperature Detection and Alert circuit is presented here is based on the readily available NTC, comparator IC LM393 and relay. The NTC is used as the temperature detector while IC LM393 used as comparator. In the absence of heat, no rise in temperature of the temperature sensor. As a result temperature sensor stop conducting and LED stays off. However, when temperature rises of the temperature sensor NTC starts conducting and LED glows and buzzer turns ON. Temperature Control Alarm Sensor Kit Abstract Buy Online “Temperature Control Alarm Sensor Kit ” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/automatic-over-temp-detection-and-alert-ready-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://www.youtube.com/watch?v=07QBYB69fVU
  • 12. Most of the NTC based circuits available in market use one or another kind of NTC which increases the cost and also require complicated circuitry around it. But this NTC based circuit uses readily available NTC as light detector. The functioning of this Automatic Over Temperature Detection and Alert circuit is to detect temperature and automatically activate the LED and buzzer with increase in temperature. LED glows and buzzer sound continuously indicating the increase in temperature of NTC. Application of the Circuit NTC used here as a temperature detector. The variation in temperature wanted can be easily done placing solder gun near to NTC. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON LED and buzzer when there is temperature rise. The NTC is needed for this purpose. NTC is thermistor. It is heat sensitive resistor element of which resistor value rapidly decreases with increase in temperature. Here, Automatic Over Temperature Detection and Alert circuit works as temperature detector while NTC working as temperature sensor that glows LED and turn ON the buzzer. IC LM393 is used as comparator. NTC output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, NTC temperature is low and LED and buzzer stays off. Now consider second scenario when temperature rises, the LED glows and buzzer turns ON. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. How to Build
  • 13. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually hold solder gun close to NTC. LED glows and buzzer sound in this case. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit at ceiling of room. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 14. https://www.youtube.com/watch?v=07QBYB69fVU https://smartxprokits.in/automatic-over-temp- detection-and-alert-ready-kit-assembled-100- tested/ Capacitor C1 – 1uF Miscellaneous D4: – NTC https://smartxprokits.in/product/843/ D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB Buzzer https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/ Buy Now Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
  • 15. In this project, we have designed Smoke Level Detector using MQ-135 Sensor for measuring the level of smoke in the environment. Simply we have interfaced MQ-135 Gas Sensor module with Relay and Buzzer. The Smoke sensor we used is the MQ-135 sensor. Smoke Detectors are very useful in detecting smoke or fire in buildings, and so are the important safety parameters. Smoke Detector Circuit which not only senses the smoke in the air but also reads and displays the level of Smoke in the Air. This circuit triggers the Buzzer when Smoke level becomes higher than the desirable limit, this threshold value can be changed in the Circuit according to the requirement. Smoke Detection Alarm kit Abstract Buy Online “Smoke Detection Alarm Kit” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/smoke-detection-alarm-kit-assembled-100-tested/? srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a2tpOz72vYg8x5Eq Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D MQ-135 Module sensor has lower conductivity in clean air. When the target combustible gas exists, the sensor’s conductivity is higher along with the gas concentration rising. Convert change of conductivity to correspond output signal of gas concentration. MQ135 gas sensor has high sensitivity to Ammonia, Sulphide and Benzene steam, also sensitive to smoke and other harmful gases. It is with low cost and suitable for different applications such as harmful gases/smoke detection. Introduction
  • 16. MQ135 Smoke Sensor Relay Module 5V https://smartxprokits.in/product/mq135-gas-sensor-module/ USB Cable https://smartxprokits.in/product/micro-usb-cable/ Buzzer 5V https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/ Buy Now Working The MQ-135 smoke sensor consists of a tin dioxide (SnO2), a perspective layer inside aluminum oxide microtubes (measuring electrodes) and a heating element inside a tubular casing. The end face of the sensor is enclosed by a stainless steel net and the backside holds the connection terminals. Smoke is emitted from the source by burning anything. With the smoke cascade on the tin dioxide sensing layer, the resistance decreases. By using the external load resistance the resistance variation is converted into a suitable voltage variation. Circuit Diagram Component Used https://www.youtube.com/watch? v=Dls35NnPdzw https://smartxprokits.in/smoke-detection-alarm-kit-assembled- 100-tested/? srsltid=AfmBOopHbQnj2bnUyycPNUNpKBkFcRC9La84naN5a 2tpOz72vYg8x5Eq
  • 17. Industrial Machine Vibration Detection circuit is presented here is based on the readily available vibration sensor also called piezoelectric sensor and comparator IC LM393. The Vibration sensor is used as the vibration detector while IC LM393 used as comparator. In the absence of vibration, no vibrations detect on the piezoelectric sensor. As a result piezoelectric sensor stop conducting and LED stays off. However, when vibrations detect on the piezoelectric sensor, piezoelectric sensor starts conducting and LED glows. Vibration Detection Module For Industrial Machine Abstract Buy Online “Industrial Machine Vibration Detection” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/induction-motor-vibration-detection-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://www.youtube.com/watch?v=hPgNWCX23Sg
  • 18. Most of the vibration sensor based circuits available in market use one or another kind of piezoelectric sensor which increases the cost and also require complicated circuitry around it. But this piezoelectric sensor based circuit uses readily available piezoelectric crystal as vibration detector. The functioning of this Industrial Machine Vibration Detection circuit is to detect vibration and automatically activate the LED in presence of vibration. LED glows continuously indicating the presence of vibration till vibration stops. Application of the Circuit Piezoelectric sensor used here as a vibration detector. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON LED in presence of vibration. The piezoelectric sensor is needed for this purpose. Vibration sensor is piezoelectric device as it converts vibrations to electric energy. Here, Industrial Machine Vibration Detection circuit works as vibration detector while piezoelectric sensor working as vibration sensor that glows LED. IC LM393 is used as comparator. Vibration sensor output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. In normal condition, no vibration detected and LED stays off. Now consider second scenario when vibration detects, the LED glows in the presence of vibration. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. How to Build
  • 19. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose vibration applied to vibration sensor. LED glows in this case. Now set the desired intensity at which you want detection of vibration. This can be done by changing the resistive value of R2 variable resistor. Install the unit at ceiling of room. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 20. Capacitor C1 – 1uF Miscellaneous D4: – Vibration Sensor D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB https://www.youtube.com/watch? v=hPgNWCX23Sg https://smartxprokits.in/induction-motor- vibration-detection-kit-assembled-100-tested/ Buy Now
  • 21. Automatic Water dispenser using IR Pair circuit is presented here is based on the readily available IR sensor, comparator IC LM393 and relay. The photo diode is used as the light intensity detector while IC LM393 used as comparator. IR beam is continuously falling on photodiode. On interruption the movement is detected. Hence, no IR beam falls on the photo diode. As a result photo diode stop conducting and water pump starts. However, when IR beam falls on the photo diode, photo diode starts conducting and water pump stays off. Automatic Water Dispenser Using IR Pair Abstract Buy Online “Automatic Water dispenser using IR Pair” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/product/automatic-water-dispenser-using-ir-pair-kit-assembled-100-tested/ Complete working video can be seen from https://youtu.be/6v3oMG6lpY0 Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D
  • 22. Most of the IR based circuits available in market use one or another kind of IR sensor which increases the cost and also require complicated circuitry around it. But this IR based circuit uses readily available IR sensor as IR beam detector. The functioning of this Automatic Water dispenser using IR Pair is to detect interruption in IR beam falling on photo diode and automatically activate the pump in absence of beam. Water pump continuously indicating the absence of beam till beam falls on the photo diode. Application of the Circuit IR sensor used here as a beam detector. The variation in beam wanted can be easily done by interrupting IR beam using hand palm. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON pump in absence of IR beam. The photo diode is needed for this purpose. Photo diode is photoelectric device as it converts light energy to electric energy. Here, Automatic Water dispenser using IR Pair works as IR beam detector while photo diode working as light sensor that pumps water. IC LM393 is used as comparator. Photo diode output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, IR beam falls on photo diode and water pump stays off. Now consider second scenario when IR beam is irrupted, the water pumps in the absence of light. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. How to Build
  • 23. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually hold hand palm over IR sensor. Water pumps in this case. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit in room. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/
  • 24. R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ Capacitor C1 – 1uF Miscellaneous D4: – IR Sensor https://smartxprokits.in/product/5mm-ir-led-infrared-led/ D3: – Photo diode https://smartxprokits.in/product/photodiode/ D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB Pump https://smartxprokits.in/product/5v-dc-mini-submersible-water-pump/ Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/
  • 26. Transformer Overheat Detection System circuit is presented here is based on the readily available NTC, comparator IC LM393 and relay. The NTC is used as the temperature detector while IC LM393 used as comparator. In the absence of heat, no rise in temperature of the temperature sensor. As a result temperature sensor stop conducting and LED stays off. However, when temperature rises of the temperature sensor NTC starts conducting and LED glows and buzzer turns ON. Transformer Overheat Detection System Abstract Buy Online “Transformer Overheat detection” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/transformer-overheat-detection-ready-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://youtu.be/pz2Lnq9nBis?si=9g4_5FW7nJ-Boz4N
  • 27. Most of the NTC based circuits available in market use one or another kind of NTC which increases the cost and also require complicated circuitry around it. But this NTC based circuit uses readily available NTC as light detector. The functioning of this Transformer Overheat Detection System circuit is to detect temperature and automatically activate the LED and buzzer with increase in temperature. LED glows and buzzer sound continuously indicating the increase in temperature of NTC. Application of the Circuit NTC used here as a temperature detector. The variation in temperature wanted can be easily done placing solder gun near to NTC. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON LED and buzzer when there is temperature rise. The NTC is needed for this purpose. NTC is thermistor. It is heat sensitive resistor element of which resistor value rapidly decreases with increase in temperature. Here, Transformer Overheat Detection System circuit works as temperature detector while NTC working as temperature sensor that glows LED and turn ON the buzzer. IC LM393 is used as comparator. NTC output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, NTC temperature is low and LED and buzzer stays off. Now consider second scenario when temperature rises, the LED glows and buzzer turns ON. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. How to Build
  • 28. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually hold solder gun close to NTC. LED glows and buzzer sound in this case. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit at ceiling of room. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Here Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 29. Capacitor C1 – 1uF Miscellaneous D4: – NTC https://smartxprokits.in/product/843/ D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB Buzzer https://smartxprokits.in/product/electromagnetic-buzzer-5v-pcb-mount/ Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/ https://youtu.be/pz2Lnq9nBis? si=gGClC1cizSKJIi8G https://smartxprokits.in/transformer-overheat- detection-ready-kit-assembled-100-tested/ Buy Now
  • 30. Automatic Irrigation System circuit is presented here is based on the readily available moisture sensor, comparator IC LM393 and relay. The moisture sensor is used as soil moisture detector while IC LM393 used as comparator. In the absence of water, no moisture sense in the soil. As a result moisture sensor start conducting and turn ON the water pump. However, when there is a moisture present in the soil the moisture sensor detect moisture and water pump stays off. Automatic Irrigation System for Farmer Abstract Buy Online “Automatic Irrigation System for Farmer” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/automatic-irrigation-system-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://www.youtube.com/watch?v=FTUc5eaMeLs
  • 31. Most of the moisture sensor based circuits available in market use one or another kind of soil moisture detector probe which increases the cost and also require complicated circuitry around it. But this moisture sensor based circuit uses readily available soil moisture detector probe as moisture detector. The functioning of this Automatic Irrigation System circuit is to detect moisture in soil and automatically activate the water pump in absence of moisture. Water pump is ON continuously indicating the absence of moisture till it detects moisture on moisture sensor. Application of the Circuit Soil moisture detector probe used here as a moisture detector. The variation in moisture wanted can be easily done by introducing water. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON water pump in absence of moisture. The soil moisture detector probe is needed for this purpose. Soil moisture detector probe is a device that converts soil moisture to electric energy. Here, Automatic Irrigation System circuit works as moisture detector while soil moisture detector probe working as moisture sensor that turns ON water pump. IC LM393 is used as comparator. Soil moisture detector probe output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, there is moisture in the soil and water pump stays off. Now consider second scenario when there is no moisture in the soil, the water pump turns ON. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. How to Build
  • 32. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually induce water in the soil. Pump turns on in absence of water. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit in soil. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Here Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 33. Capacitor C1 – 1uF Miscellaneous D4: – Moisture Sensor D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB Pump https://smartxprokits.in/product/5v-dc-mini-submersible-water-pump/ Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/ Buy Now https://www.youtube.com/watch?v=FTUc5eaMeLs https://smartxprokits.in/automatic-irrigation- system-kit-assembled-100-tested/
  • 34. Water Level Indicator circuit is presented here is based on the readily available moisture sensor, comparator IC LM393 and relay. The moisture sensor is used as moisture detector while IC LM393 used as comparator. In the absence of water, no moisture is sensed. As a result moisture sensor start conducting and turn ON the LED. However, when there is a moisture present the moisture sensor detect moisture and LED stays off. Water Level Indicator Abstract Buy Online “Water level indicator” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/water-level-indicator-kit-assembled-100-tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://youtu.be/AZ47vPnpZg8
  • 35. Most of the moisture sensor based circuits available in market use one or another kind of moisture detector probe which increases the cost and also require complicated circuitry around it. But this moisture sensor based circuit uses readily available moisture detector probe as moisture detector. The functioning of this Water Level Indicator circuit is to detect the moisture and automatically activate the LED in absence of moisture. Water pump is ON continuously indicating the absence of moisture till it detects moisture on moisture sensor. Application of the Circuit Moisture detector probe used here as a moisture detector. The variation in moisture wanted can be easily done by introducing water. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON LED in absence of moisture. The moisture detector probe is needed for this purpose. Moisture detector probe is a device that converts moisture to electric energy. Here, Water Level Indicator circuit works as moisture detector while moisture detector probe working as moisture sensor that turns ON LED. IC LM393 is used as comparator. Moisture detector probe output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, there is moisture and LED stays off. Now consider second scenario when there is no moisture, the LED turns ON. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. How to Build
  • 36. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually water is induced. LED turns on in absence of water. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit in tank. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Here Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 37. 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB LED https://smartxprokits.in/product/5mm-white-led/ Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/ Capacitor C1 – 1uF Miscellaneous D4: – Moisture Sensor D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/ Buy Now https://youtu.be/AZ47vPnpZg8 https://smartxprokits.in/water-level-indicator-kit- assembled-100-tested/
  • 38. LED Lighting in Aquarium Using LDR Sensor LED Lighting in Aquarium using LDR Sensor circuit is presented here is based on the readily available LDR, comparator IC LM393 and relay. The LDR is used as the light intensity detector while IC LM393 used as comparator. In the absence of light, no light falls on the photo sensor. As a result photo sensor stop conducting and LED emergency light glows. However, when light falls on the photo sensor photo sensor starts conducting and LED emergency light stays off. LED Lighting in Aquarium Using LDR Sensor Abstract Buy Online “LED Lighting in Aquarium using LDR Sensor” Ready Kit, 100% Tested from below and get fastest delivery in India https://smartxprokits.in/product/led-lighting-in-aquarium-using-ldr-sensor-ready-kit-assembled-100- tested/ Follow Us on Instagram https://www.instagram.com/smartxprokits/igsh=MWd0YXVoMTF1b2FqdA%3D%3D Complete working video can be seen from https://youtu.be/cAoZ8gnSqEw
  • 39. Most of the LDR based circuits available in market use one or another kind of LDR which increases the cost and also require complicated circuitry around it. But this LDR based circuit uses readily available LDR as light detector. The functioning of this LED Lighting in Aquarium using LDR Sensor circuit is to detect interruption in light and automatically activate the LED emergency light in absence of light. LED emergency light glows continuously indicating the absence of light till light falls on the LDR. Application of the Circuit LDR used here as a light detector. The variation in intensity of light wanted can be easily done by interrupting light using hand palm. The circuit operates normally over a DC voltage of 5V which can be obtained by DC supply cable. Why this Particular Circuit The basic idea behind the circuit operation is to turn ON LED emergency light in absence of light. The LDR is needed for this purpose. LDR is photoelectric device as it converts light energy to electric energy. Here, LED Lighting in Aquarium using LDR Sensor circuit works as light detector while LDR working as light sensor that glows LED emergency light. IC LM393 is used as comparator. LDR output is connected as input to comparator. Pin no. 4 of LM393 is pulled towards ground. Relay is used as a switch. When relay is activated, normally closed contact becomes open and normally open contact becomes closed. In normal condition, light falls on LDR and LED emergency light stays off. Now consider second scenario when light irrupts, the LED emergency light glows in the absence of light. Explained Working of Circuit First of all read the given manual thoroughly and study the circuit given in the figure. Also have look at PCB and components supplied along with the kit. Each component has to be soldered in its position on PCB. Identification of resistors is done by color coding. The color band on each resistor corresponds to its exact value. There are different methods in which values are defined on capacitors. But usually values are specified numerically on them. Can you make out the whole working of circuit and are you able to identify each component separately as to where each of them has to be placed? If yes only then proceed further to actually mounting and soldering the parts. Not ICs but their sockets are to be soldered on PCB. This is to make mounting and dismounting of ICs easy while troubleshooting. How to Build
  • 40. Start from left most corner of PCB and solder the components one by one on their correct position on PCB. Before soldering any component see that you have placed it at its right position and with correct polarity. Give due attention to diodes and electrolytic capacitors as they are polarity dependent. Do the soldering of other components in the same way while keeping in mind that components with long and sensitive leads like capacitors and transistors are soldered last. After assembling and soldering of components on PCB, connect external DC power source of 5V. For testing purpose manually hold hand palm over LDR. LED glows in this case. Now set the desired intensity at which you want detection of light. This can be done by changing the resistive value of R2 variable resistor. Install the unit at ceiling of room. Testing the Kit The only IC used here is LM393 It is dual differential comparator IC. This 8 pin IC is popular and commonly used IC ICs Used Here Part List Semiconductors U1 – LM393 https://smartxprokits.in/product/lm393/ Base – 8 pin https://smartxprokits.in/product/8-pin-dip-ic-socket-base-adaptor/ Resistors(all ¼ watt +/-5% carbon unless stated otherwise) R2 – 10k Ohm(variable) https://smartxprokits.in/product/10k-multiturn-potentiometer/ R3 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R4 – 1k Ohm https://smartxprokits.in/product/1k-resistor-1-4-watt/ R5 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/ R6 – 10k Ohm https://smartxprokits.in/product/10k-resistor-1-4-watt/
  • 41. Buy Now https://youtu.be/cAoZ8gnSqEw https://smartxprokits.in/led-lighting-in-aquarium- using-ldr-sensor-ready-kit-assembled-100- tested/ 5 V USB Cable https://smartxprokits.in/product/micro-usb-cable/ PCB LED https://smartxprokits.in/product/5mm-white-led/ Relay https://smartxprokits.in/product/5v-10a-pcb-mount-relay-spdt/ Capacitor C1 – 1uF Miscellaneous D4: – LDR https://smartxprokits.in/product/843/ D1: – Red LED https://smartxprokits.in/product/3mm-red-led/ D2: – Green LED https://smartxprokits.in/product/3mm-green-led/