ppt on fire alarm using thermistor circuit
#1

i want a doucument about fire alarm using thermester which gives me all information about this project.
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#2
i want ppt on fire alaram using thermistor and ic 555 pls can u post it
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#3



Many fire alarm circuits are presented here, but this time a new circuit using a thermistor and a timer to do the trick. The circuit is also simple and straightforward so that it can be easily implemented. The thermistor offers low resistance at high temperature and high strength at low temperatures. This phenomenon is used to detect the fire here.

IC1 (NE555) is configured as an oscillator free audio frequency. The transistors T1 and T2 drive of IC1. The output (PIN 3) of IC1 is couples to base of transistor Q3 (SL100), that causes the speaker to generate an alarm sound. The NE555 frequency depends on values of resistors R5 and R6 and C2 capability. When thermistor gets hot, it gives a ride to low resistance to the positive voltage at the base of the transistor T1 through diode D1 and the resistor R2. capacitor C1 is responsible up to the positive supply voltage and increases the time during which the alarm is activated. Plus the value of C1, more the positive bias applied to the base of the transistor T1 (BC548). As the T1 collector is coupled to the base of transistor Q2, the transistor Q2 provides a positive voltage to pin 4 (reset) of IC1 (NE555). Resistance R4 is chosen s0 NE555 which maintains inactive in the absence of the positive voltage. Led D1 will stop the C1 capacitor discharge when the thermistor is connected to the positive supply voltage cools to and provides a high resistance path. It also inhibits the live polarization of the transistor T1.
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#4

Many fire alarm circuits are presented here,but this time a new circuit using a thermistor and a timer to do the trick. The circuit is as simple and straight forward so that, it can be easily implemented. The thermistor offers a low resistance at high temperature and high resistance at low temperature. This phenomenon is employed here for sensing the fire.

The IC1 (NE555) is configured as a free running oscillator at audio frequency. The transistors T1 and T2 drive IC1. The output (pin 3) of IC1 is couples to base of transistor T3 (SL100), which drives the speaker to generate alarm sound. The frequency of NE555 depends on the values of resistances R5 and R6 and capacitance C2. When thermistor becomes hot, it gives a low-resistance path for the positive voltage to the base of transistor T1 through diode D1 and resistance R2. Capacitor C1 charges up to the positive supply voltage and increases the the time for which the alarm is ON. The larger the value of C1, the larger the positive bias applied to the base of transistor T1 (BC548). As the collector of T1 is coupled to the base of transistor T2, the transistor T2 provides a positive voltage to pin 4 (reset) of IC1 (NE555). Resistor R4 is selected s0 that NE555 keeps inactive in the absence of the positive voltage. Diode D1 stops discharging of capacitor C1 when the thermistor is in connection with the positive supply voltage cools out and provides a high resistance path. It also inhibits the forward biasing of transistor T1.
Fire alarms are prime necessities in modern buildings and architectures, especially in banks, data centers and gas stations. They detects the fire in ambiance at very early stage by sensing smoke or/and heat and raise an alarm which warns people about the fire and furnish sufficient time to take preventive measures. It not only prevents a big losses caused by deadly fire but sometimes proves to be life savers. Here we are building one simple fire alarm system with the help of 555 Timer IC, which will sense the fire (temperature rise in surrounding), and trigger the alarm.

The key component of the circuit is Thermistor, which has been used as fire detector or fire sensor. Thermistor is temperature sensitive resistor, whose resistance changes according to the temperature, its resistance decreases with the increase in temperature and vice versa.
We have built the circuit using, mainly three components that is, Thermistor, NPN transistor and 555 Timer IC.

Working Concept

Here the 555 timer IC has been configured in Astable mode so that Alarm (Buzzer) can produce an oscillating sound. In Astable mode, capacitor C charges though resistance R1 and R2, till 2/3 Vcc and discharges through R2 till it reaches to 1/3Vcc. During the charging time OUT PIN 3 of 555 IC remains HIGH and during discharging it remains LOW, thats how it oscillate. We have connected a Buzzer to OUT pin, so that it produce beep sound, when 555 is high. We can control the oscillation frequency of the alarm by adjusting the value of R2 and/or capacitor C.

Components

555 Timer IC
NPN Transistor BC547
Thermistor (10K)
Resistors (1K, 100K, 4.7K)
Variable resistor (1M)
Capacitor (10uF)
Buzzer and Battery (9v)
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