Showing posts with label flop. Show all posts
Showing posts with label flop. Show all posts

Thursday, July 11, 2013

CMOS Toggle Flip Flop Using Laser Pointer

The circuit below is similar to the one above but can be used with a laser pointer to toggle the relay rather than a push button. The IR photo transistor Q1 (Radio Shack 276-145A) or similar is connected to the set input (pin 6). The photo transistor should be shielded from direct light so that the voltage at the set input (pin 6) is less than 1 volt under ambient conditions and moves to more than 10 volts when illuminated by the laser pointer or other light source.

CMOS Toggle Flip Flop Using Laser Pointer Circuit Diagram


CMOS Toggle Flip Flop Using Laser Pointer

The reset time is about a half second using a 4.7uF cap which prevents the circuit from toggling more than once during a half second interval. The 10K resistor and diode provide a faster discharge path for the 4.7uF cap so the circuit can be retoggled in less than 1 second. The 3K resistor in series with the photo transistor may need be adjusted for best performance. The relay shown is a solid state variety to be used with lights or other resistive loads at less than 3 amps. A mechanical relay can also be used as shown in circuit above.
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Sunday, March 31, 2013

Sound Operated Flip Flop Circuit

This is a design circuit in which the status of the output pins of a Flip Flop IC can be toggled by using sound. This circuit is based on LM324 IC. This is the figure of the circuit.


Processing operation of the circuit is a condenser microphone is used for picking up the sound. The first two op amp is in the IC1 LM324 is used to amplify the sound picked by the condenser microphone. The third op amp inside LM324 is wired as a level detector. When ever the voltage produced due to sound have a level more than that of the reference voltage at pin 5 of the third op amp, its output (pin 7) goes high, triggering the flip flop IC1 CD 4027.

As a result the state of the output pins of CD 4027 (pin 1 & pin 2) toggles for each burst of sound. The circuit can be powered from 4, 5 V DC. The mic M1 is a condenser mic. All capacitors must be rated 10V. The sensitivity of the circuit can be adjusted by varying the preset R9.

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