Joule Thief - Use LEDs With Only One AA Battery!
by RazorConcepts in Circuits > LEDs
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Joule Thief - Use LEDs With Only One AA Battery!
![ible 006.jpg](/proxy/?url=https://content.instructables.com/FGP/G2SP/G23UML2X/FGPG2SPG23UML2X.jpg&filename=ible 006.jpg)
Making LED devices portable can be a little bulky due to the batteries. The Joule Thief solves that, by boosting a single AA battery's voltage to a high enough level to light a LED.
This ible will entail how to solder a joule thief together from www.thejoulethief.com. They cost $7 each.
The kit from thejoulethief is interesting in the fact that it deviates from the standard bulky joule thief design to a small and compact pcb layout with a few extra components for efficiency.
This ible will entail how to solder a joule thief together from www.thejoulethief.com. They cost $7 each.
The kit from thejoulethief is interesting in the fact that it deviates from the standard bulky joule thief design to a small and compact pcb layout with a few extra components for efficiency.
Open Source
![sch.bmp](/proxy/?url=https://content.instructables.com/FSF/98TV/G23UUSY3/FSF98TVG23UUSY3.bmp&filename=sch.bmp)
Attached are the Eagle schematic and board files.
Gather Parts
![parts.jpg](/proxy/?url=https://content.instructables.com/FTQ/R3W0/G23UXAY2/FTQR3W0G23UXAY2.jpg&filename=parts.jpg)
Make sure you have all of the parts. Here is the listing:
PCB
Qty 2. Transistor
2.2k resistor
Qty 2. 1k resistor
Inductor
Capacitor
LED (your choice of color)
Qty 2. wire pieces
PCB
Qty 2. Transistor
2.2k resistor
Qty 2. 1k resistor
Inductor
Capacitor
LED (your choice of color)
Qty 2. wire pieces
Inductor
![ible 001.jpg](/proxy/?url=https://content.instructables.com/FC0/ZNFL/G23UML3C/FC0ZNFLG23UML3C.jpg&filename=ible 001.jpg)
![ible 002.jpg](/proxy/?url=https://content.instructables.com/F4D/YE77/G23UXAY4/F4DYE77G23UXAY4.jpg&filename=ible 002.jpg)
![ible 003.jpg](/proxy/?url=https://content.instructables.com/FPW/MBTL/G23UML3I/FPWMBTLG23UML3I.jpg&filename=ible 003.jpg)
![ible 008.jpg](/proxy/?url=https://content.instructables.com/FFI/WWXN/G23UML3R/FFIWWXNG23UML3R.jpg&filename=ible 008.jpg)
I first chose to put in the inductor. The inductor looks like a fat resistor. There is a spot on the PCB labeled "L1" where the inductor should go.
Insert the inductor, bend the leads so that it says put, and solder it in.
Insert the inductor, bend the leads so that it says put, and solder it in.
Resistors
![ible 010.jpg](/proxy/?url=https://content.instructables.com/FLG/V71Z/G23UML46/FLGV71ZG23UML46.jpg&filename=ible 010.jpg)
![ible 011.jpg](/proxy/?url=https://content.instructables.com/FIE/4WLS/G23UUJGM/FIE4WLSG23UUJGM.jpg&filename=ible 011.jpg)
![ible 012.jpg](/proxy/?url=https://content.instructables.com/F0K/Q977/G23UXB01/F0KQ977G23UXB01.jpg&filename=ible 012.jpg)
![ible 013.jpg](/proxy/?url=https://content.instructables.com/FMJ/E8LU/G23UXB02/FMJE8LUG23UXB02.jpg&filename=ible 013.jpg)
Time for the resistors.
R1 is the 2.2k resistor (red red red).
R2 and R3 are the 1k resistors (brown black red)
Note that you should mount the resistors vertically to save space.
Insert, bend leads, and solder!
R1 is the 2.2k resistor (red red red).
R2 and R3 are the 1k resistors (brown black red)
Note that you should mount the resistors vertically to save space.
Insert, bend leads, and solder!
Capacitor
![ible 014.jpg](/proxy/?url=https://content.instructables.com/FUZ/O7B0/G23UUJGT/FUZO7B0G23UUJGT.jpg&filename=ible 014.jpg)
![ible 015.jpg](/proxy/?url=https://content.instructables.com/F2T/KGD1/G23UUJHA/F2TKGD1G23UUJHA.jpg&filename=ible 015.jpg)
![ible 016.jpg](/proxy/?url=https://content.instructables.com/FES/MFAL/G23UXB03/FESMFALG23UXB03.jpg&filename=ible 016.jpg)
Grab the capacitor, insert in the spot labeled C1, bend and solder.
Transistors
![ible 017.jpg](/proxy/?url=https://content.instructables.com/FH9/UTMQ/G23UML5J/FH9UTMQG23UML5J.jpg&filename=ible 017.jpg)
![ible 018.jpg](/proxy/?url=https://content.instructables.com/FOB/XTE9/G23UPWHF/FOBXTE9G23UPWHF.jpg&filename=ible 018.jpg)
![ible 019.jpg](/proxy/?url=https://content.instructables.com/FC8/8XKV/G23UML5P/FC88XKVG23UML5P.jpg&filename=ible 019.jpg)
![ible 020.jpg](/proxy/?url=https://content.instructables.com/FHO/QRIS/G23UML5U/FHOQRISG23UML5U.jpg&filename=ible 020.jpg)
![ible 021.jpg](/proxy/?url=https://content.instructables.com/FW2/0SGH/G23UXB05/FW20SGHG23UXB05.jpg&filename=ible 021.jpg)
The next step is kind of tricky. The transistor leads are normally in line, however to insert them in the PCB you will need to bend the leads into a triangle shape (see picture).
After bending the leads, carefully push down the transistor into the pcb until it seats nicely. Solder.
After bending the leads, carefully push down the transistor into the pcb until it seats nicely. Solder.
LED
![ible 022.jpg](/proxy/?url=https://content.instructables.com/FWY/5HAD/G23UML6F/FWY5HADG23UML6F.jpg&filename=ible 022.jpg)
![ible 023.jpg](/proxy/?url=https://content.instructables.com/FDE/1RAT/G23UPWHI/FDE1RATG23UPWHI.jpg&filename=ible 023.jpg)
The fun part! Put the LED in, make sure you note the orientation. The flat spot on the LED goes towards the flat spot on the silkscreen.
Wire
![ible 023.jpg](/proxy/?url=https://content.instructables.com/FTN/UL0V/G23UML6P/FTNUL0VG23UML6P.jpg&filename=ible 023.jpg)
![ible 024.jpg](/proxy/?url=https://content.instructables.com/F5T/KU9Q/G23UXB08/F5TKU9QG23UXB08.jpg&filename=ible 024.jpg)
![ible 025.jpg](/proxy/?url=https://content.instructables.com/F39/XRE8/G23UUJIM/F39XRE8G23UUJIM.jpg&filename=ible 025.jpg)
Here is the final step. Strip the wire ends, and solder it into the pads on the PCB.
DONE!
Next it is time to test it out!
DONE!
Next it is time to test it out!
Testing
![ible 027.jpg](/proxy/?url=https://content.instructables.com/F9S/X1QT/G23UML78/F9SX1QTG23UML78.jpg&filename=ible 027.jpg)
![ible 026.jpg](/proxy/?url=https://content.instructables.com/FKA/USWJ/G23UML75/FKAUSWJG23UML75.jpg&filename=ible 026.jpg)
The silkscreen marks which wire is positive and negative. Put the proper leads to any AA battery, dead or new, and see the LED light!
This is a great way to get compact LED lighting, using a minuscule circuit and one AA battery. The circuit operates off of "dead" AA batteries, making it a great way to reuse your old AAs.
Pick up a kit at www.thejoulethief.com and have fun!
This is a great way to get compact LED lighting, using a minuscule circuit and one AA battery. The circuit operates off of "dead" AA batteries, making it a great way to reuse your old AAs.
Pick up a kit at www.thejoulethief.com and have fun!