Tuesday, 31 January 2017
Security Door Electronic Key
It is a relatively simple circuit of electronic lock of safety with code of 7 digits. It should is given attention in the time that will be stepped the keys, that shape code and it does not exist it delays. With the right step of keys and if code is right then is activated exit Q7 for roughly 4 seconds, driving the transistor Q2, which with the line can drive one relay, for the opening of door, or any other circuit.
Circuit diagram :
Security Door Electronic Key Circuit Diagram
With LED D we can have optical clue of activation. The code of circuit, as it has been given have been:1704570 but can change, if we change the connections between in the exits of IC1 and the switches.
Parts List :
- R1-7=4.7Kohm
- R8=15Kohm
- R9=1Mohm
- R10-13=10Kohm
- R11=100ohm
- R12=220Kohm
- R14=1.2Kohm
- C1-3=100nF 100V
- C2=4.7uF 25V
- D1-2=1N4148
- D3=RED LED 3mm
- IC1=4022
- Q1=BS170
- Q2=BD679
- S1-10=Push button or keyboard
Monday, 9 January 2017
Little Door Guard
If some intruder tries to open the door of your house, this circuit sounds an alarm to alert you against the attempted intrusion. The circuit (Fig. 1) uses readily available, low-cost components. For compactness, an alkaline 12V battery is used for powering the unit. Input DC supply is further regulated to a steady DC voltage of 5V by 3-pin regulator IC 7805 (IC2).
Fig. 1: Circuit of the door guard
Assemble the unit on a general-purpose PCB as shown in Fig. 4 and mount the same on the door as shown in Fig. 3. Now mount a piece of mirror on the door frame such that it is exactly aligned with the unit. Pin configurations of IC UM3561 and transistors 2N5777 and BC547 are shown in Fig. 2.
Fig. 2: Pin configurations of UM3561 and transistors 2N5777 and BC547
Initially, when the door is closed, the infrared (IR) beam transmitted by IR LED1 is reflected (by the mirror) back to phototransistor 2N5777 (T1). The IR beam falling on phototransistor T1 reverse biases npn transistor T2 and IC1 does not get positive supply at its pin 5. As a result, no tone is produced at its output pin 3 and the loudspeaker remains silent. Resistor R1 limits the operating current for the IR LED.
When the door isopened, the absence of IR rays at phototransistor T1 forward biases npn transistor T2, which provides supply to positiveIC1. Now 3-sirensound generator IC UM3561 (IC1) gets power via resistor R5. The output of IC1 at pin 3 is amplified by Darlington-pair transistors T3 and T4 to produce the alert tone via the loudspeaker.
Fig. 3: Back view of the door assembly
Rotary switch S2 is used to select the three preprogrammed tones of IC1. IC1 produces fire engine, police and ambulance siren sounds when its pin 6 is connected to point F, P or A, respectively.
Fig. 4: Suggested enclosure with major components layout
Author : T.K. Hareendran - Copyright : EFY