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The Learning Circuit
Documents 555 Timer Project -- The Learning Circuit 67
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  • Author Author: tariq.ahmad
  • Date Created: 6 Feb 2020 4:05 PM Date Created
  • Last Updated Last Updated: 13 Nov 2019 8:24 AM
  • Views 2655 views
  • Likes 10 likes
  • Comments 3 comments
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555 Timer Project -- The Learning Circuit 67

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555 Timer Project | Flashing LED Headband

The Learning Circuit | element14 presents |  Project Videos

 

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555 timers are one of the most popular and versatile ICs on the market. In the previous lesson, we learned how 555 timers get used in circuits. There are three main types of circuits in which they are used, monostable, bistable, and astable. Astable circuits are likely the most common use for 555 timers. In this episode, Karen shows how to create an astable circuit using a 555 timer. Follow along as she uses resistors and capacitors to create an RC circuit to affect the timing of the circuit. Karen’s final circuit uses a 4-position DIP switch to allow for the use of 4 different resistors and therefore 4 speeds to control the flashing of LEDs. While Karen uses this circuit to create flashing lights on a headband and a hat, the uses are endless. Try your hand at making the circuit and use it to make art, on decorations, or create warning lights. Come up with other ideas for how to use this circuit and post them in the comments below!

 

Final Schematic Circuit Layout
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Supplemental Content:

 

  • The Learning Circuit: 62: How 555 Timers Work
  • The Learning Circuit: 63: LED Dominos Using a 555 Timer
  • The Learning Circuit 66: 555 Timer Modes Explained
  • 555 Timer Voltage Inverter by fmilburn
  • 555cc by jc2048

 

 

Bill of Material:

 

Product Name Manufacturer Quantity Buy KitBuy Kit
Electrolytic Capacitor, Miniature, 10 µF, 25 V, 515D Series, ± 20%, Radial Leaded, 5 mm Vishay 1 Buy NowBuy Now
Ceramic Disc Capacitor, 0.01 µF, 100 V, ± 20%, 5 mm Vishay 1 Buy NowBuy Now
LM555CN - Timer, Oscillator & Pulse Generator IC, TTL Compatible, Astable, Monostable, 4.5 V to 16 V, DIP-8 On Semiconductor 1 Buy NowBuy Now
Through Hole Resistor, 220 ohm, 400 mW, ± 1% Vishay 1 Buy NowBuy Now
Through Hole Resistor, 1 kohm, 500 mW, ± 1% TT ELECTRONICS / WELWYN 1 Buy NowBuy Now
Through Hole Resistor, 22 kohm, 250 mW, ± 1%, Axial Leaded, 200 V TE Connectivity 1 Buy NowBuy Now
Through Hole Resistor, 47 kohm, 250 mW, - 1%, 200 V, Axial Leaded TE Connectivity 1 Buy NowBuy Now
Through Hole Resistor, 100 kohm, 250 mW, ± 1%, Axial Leaded, 200 V TE Connectivity 1 Buy NowBuy Now
Through Hole Resistor, 220 kohm, 250 mW, ± 1%, Axial Leaded, 250 V Multicomp 1 Buy NowBuy Now
Prototype Board, 25 x 15 grid, 1.6 mm, 72 mm, 47 mm Multicomp 1 Buy NowBuy Now
LED, Cool White, Through Hole, T-1 3/4 (5mm), 20 mA, 3.2 V Cree Buy NowBuy Now
Slide Switch, SPDT, On-On, 2.54mm, Through Hole, Side, 4 A, 250 V APEM 1 Buy NowBuy Now
DIP / SIP Switch, Raised Rocker, 4 Circuits, Rocker, Through Hole, SPST, 30 VDC, 150 mA GRAYHILL 1 Buy NowBuy Now
2226TG -Contact, 2226 Series, Socket, Crimp, 24 AWG, Pin Multicomp 2 Buy NowBuy Now
2226A-02 -Connector Housing, 2226 Series, Receptacle(Female), 2 Positions, 2.54 mm Multicomp 1 Buy NowBuy Now
Wire-To-Board Connector, 2.54 mm, 2 Contacts, Header, Male, 90deg AMP - TE CONNECTIVITY 1 Buy NowBuy Now
9V battery snap, flexible Multicomp 1 Buy NowBuy Now
Battery, 9 V, PP3, Alkaline, 565 mAh Pro Elec 1 Buy NowBuy Now
Hook-up Wire Spool Set - 22AWG Solid Core - 10 x 25ft Adafruit 1 Buy NowBuy Now

 

Additional Parts:

 

Product Name

LED strand or chosen Light source

 



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Top Comments

  • davedarko
    davedarko over 5 years ago +1
    Looks like you're selling this wrong; you have four bits for speed setting. Therefore you have 16 Speed settings when you have resistors switched to be parallel, forming another value. I like how it's…
  • beacon_dave
    beacon_dave over 5 years ago +1
    "... Come up with other ideas for how to use this circuit and post them in the comments below! " An option might be to swap the DIP switch for a variable resistor. Depends if the application benefits from…
Parents
  • davedarko
    davedarko over 5 years ago

    Looks like you're selling this wrong; you have four bits for speed setting. Therefore you have 16 Speed settings when you have resistors switched to be parallel, forming another value.

    I like how it's fading up, sometimes it's great not to whip out a computer and tiny MCU to make an LED blink.

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  • davedarko
    davedarko over 5 years ago

    Looks like you're selling this wrong; you have four bits for speed setting. Therefore you have 16 Speed settings when you have resistors switched to be parallel, forming another value.

    I like how it's fading up, sometimes it's great not to whip out a computer and tiny MCU to make an LED blink.

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    • Vote Up +1 Vote Down
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