Let's Talk About Digital Electronics

"Digital electronics focuses on the design and implementation of the digital systems at the heart of much modern technology.

It has applications in technology such as mobile phones, television and computers, leading to demand for graduates in this area."

Monday, September 8, 2014

Latest Projects in Digital Electronics

1.Three in One Tone Generator

         Various tone generator circuit produces three different type of sound according to input three different logic levels (i.e. 0&1, 1&0 and 1&1).

Circuit description of One Tone Generator

         This circuit is designed around digital IC 7400 which is NAND gate. The working of the circuit is like the working principle of oscillator circuit, where frequency depends
upon capacitors C1 and C2. The duty cycle of this circuit is 50%. The output is given to power amplifier circuit which further drive loudspeaker or head phone. For low frequency value of capacitor C1 and C2 must be high and vice-versa.

circuit diagram of three tone generator

2.Multi-Mode Running light

         Running light based project is very interesting and one of the most made project. We use this type of project in many ceremony. Here is a unique project “Multi-Mode running-light” in the series of LED based project because it can operate in three different modes. 

Circuit description of Multi-Mode Running Light


        The whole circuit multi mode running light is designed and fabricated around timer IC and BCD UP-DOWN counter IC.
IC1 and IC2 is used to generate vary low and low frequency square wave respectively where output of IC1 is connected to different point (SW1) and is used when running light is working in differential modes and output of IC2 is connected to input of BCD-up-down counter IC 4510B (IC3) for producing sequential BCD output.
Outputs from IC3 is given to input pin of IC4 (BCD-to-decimal decoder 4028B) in order to decode the output from encoder IC (IC3). The ten outputs from IC4 are obtained and each output is connected to base of driver transistor in order to supply gate current to triac.
Here in circuit diagram of multi mode running light we show only one triac firing circuit because of complicated design. But similar triac firing circuit can be connected to each remaining output.
Variable resistor VR1 and VR2 is used to control period of interruption and period of running respectively where the direction of running light can be changed by mean of switch SW2.
multi mode running light

3.Twilight Lamp Blinker

    It is very difficult to indicate any obstruction in day time. So to overcome this type of problem the team of dreamlover technology design a cirucit simple and inexpensive twilight lamp blinker,which blinks and can be used near obstructions.

Circuit Description of Twilight Lamp Blinker


The entire circuit of twilight lamp blinker is designed and fabricated around LDR (Light Detector Resistor) and IC CD4093 (IC1). The preset VR1 is used to control brightness. For sensor LDR1 is used that has a high resistance during night (i.e. dark) and a low resistance at day time (i.e. light). The NAND gates (N3 and N4) of IC1 is used as oscillator where high input from NAND gate (N1) makes the output of NAND gate (N2) low and vice-versa. The high at NAND gate N2 result LED1 blinks by conducting transistor T1 where transistor T1 is the LED driver transistor. For more brightness more LEDs is connected parallel to LED1.

4.Digital Mains Failure/Resumption Alarm

       AC mains fails when over load is connected and this problem is common in now days. Here is the simple circuit using optocoupler Digital Mains failure and resumption alarm, for indicating AC mains fails or resumes by producing alarm sound.

Circuit Description of Digital Mains Failure Alarm

       The circuit digital mains failure alarm is build around optocoupler. The resistor R1, capacitor C1 & C2, with diode D1 &D2 provide sufficient voltage to glow internal LED of optocoupler. Here the IC2 CD4011 is used as oscillator to generate low frequency of 0.662 Hz to 1.855 KHz controlling with preset VR1. Audio sound is generator by timer IC NE555 (IC2). The generated frequencies from IC2 vary from 472 Hz to 1.55 KHz controlling with preset VR2. For sensing mains fails position of switch SW1 to point 1 and for sensing mains resumption change the position of switch SW1 to point 2.



 

48 comments:

  1. hmn.. i wonder how the real prototype of this projects would look like :)
    cute blog :D

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  2. with this blog i'm starting to love DIGITAL :D

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    1. thanks for appreciating :) masaya talaga magaral ng digital :)

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  3. thank you ma'am. nakahanap ako ng sagot sa assignment ko. :D

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    Replies
    1. your very much welcome my dear :) atleast nakatulong yung blog ko sa pagaaral mo :)

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  4. Nice ! thanks for the information about the latest project in digital electronics. :) GodBless

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  5. Thanks to the blogger who do all the effort to do this blog. Such a great help. :)

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  6. anhirap naman nito.. thanks to this.. medyo naliwanagan ako.. HAHAHA

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    Replies
    1. thanks for appreciating :) atleast ngayon nalaman mo na madaming applications ang digital electronics :)

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  7. I'm enlightened because of this..thanks for the info..

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    Replies
    1. thanks for reading my blog :) I hope that you learn alot from my posts :)

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  8. Improving na talaga ang technology. ^_^

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  9. Improving na talaga ang technology. ^_^

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  10. Interesting itong article. Andaming pwedeng gawing project. Nakakaexcite tuloy for both Major Lab. and Lec. Looking forward sa mga mangyayari at gagawing projects.

    (Real-Talk: Nakakahilo yung ibang circuit. Hahahahaha)

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    Replies
    1. thanks for appreciating :) atleast nakatulong yung post ko para magkaIdea na kayo about Digital Electronics :) since you are electronics major :)

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  11. naalala ko ang micro P naten :) makakatulong to para sa mga ideas .

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    1. your right my friend :) madami talagang applications lalo na ang digital electronics :)

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  12. luh?! grabeti! haha nakakahilo intindhin pero okay lng kase may advance info na din! haha kee[ it up ma'am ! :)

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    1. thanks for visiting my blog :) I hope that you learn something from my posts :) God Bless :)

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  13. di ko nagets ung iba pero ang galing. ang lupet tlga ng mga I.C andaming magagawang mga bagay na kakaiba at nakakatulong sa mga students specially for a electronic students like me. tnx for that info :)

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    Replies
    1. thanks for appreciating :) since electronics ang major mo , this blog will really helps you especially in taking up the subject "Digital Electronics" :)

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  14. nice blog very helpful and informative :)

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  15. Venice Julliane EnriquezSeptember 11, 2014 at 6:50 AM

    di pa po namen napagaaralan to pero buti nalang po may informations na kami tungkol dito in advance :) thanks mam! God bless po :)

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    1. thanks for visiting my blog :) sana nakatulong sa inyo mga posts ko :)

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  16. Circuit Circuit Circuit! Haaay nahihilo talaga ako dto XD Hahahaha Bytheway Thankyou for this Mam! :)

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    1. don't worry kapag naTake nito na yung Digital maiintindihan niyo din kung paano iConstruct yan :)

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  17. Patricia Micaela CentenoSeptember 11, 2014 at 7:50 AM

    Ang hirap intindihin yung circuits, ang daming connections huhuhu. Maghahanda na ko para sa next sem. Salamat sa info Ma'am!

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    1. mageGets niyo din kung paano iConstruct yung mga circuit kapag naTake niyo na yung Digital :) atleast nagkakaIdea na kayo about the subject :)

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  18. Informative blog ..
    I must keep this
    Tnx maam :)

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  19. I agree! This is a Informative blog. Kaso nakakaiyak yung mga CircuitT.T maygaaad! Btw, Thanks ma'am! :)

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    1. your very much welcome my dear ;) I'm sure yung mga informations dito ay magagamit mo next sem kapag may Digital na kayo :)

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  20. oh so you mean your latest project in electronics are Three in One Tone Generator,Multi-Mode Running light, Twilight Lamp Blinker,Digital Mains Failure/Resumption Alarm

    :O .. woww hehe ..
    thats great.. :D

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  21. aside from your cool pics, cute backgrounds and designs. this article is really informative, cant relate yet though at least we know whom to ask when we get into that particular studies. we're looking forward to do such one day.. hehe

    job well-done ma'am and thank you

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    1. thanks sa time na iVisit ang blog ko Sepril :) i hope that you learn something new about Digital Electronics :)

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  22. This comment has been removed by the author.

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