Will this work? (electronic flaslight circuit)
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Will this work? (electronic flaslight circuit)
I just made a little flasing light circuit. Not for real building so without values and stuff. But more for learning electronics. So I was wondering will the basics work?
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Edit: made a little adjustment.
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Edit: made a little adjustment.
Last edited by jeroen on Sun Mar 26, 2006 3:54 am, edited 1 time in total.
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blackbox_dev
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A.J. Franzman
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I think you need a current-limiting resistor in series with the LED. It seems to me that the one in series with the transistor base is for timing control, not current limiting (maybe it could do both, but that would depend on the transistor's gain, so not a very reliable way to do it since transistor gain is usually not very precisely spec'd.)
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interesting circuit...but i don't think it would even turn on. It would flash for a instant when the battery is first connected because it would be coupled through the capacitor, but after that the transistor would be off. The base of the transistor needs to be driven with current to turn it on, and DC current won't pass through the capacitor you have there. Were you trying to get a delay before the LED would turn on or something?
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Well it was supposed to turn on and off.codeman wrote:interesting circuit...but i don't think it would even turn on. It would flash for a instant when the battery is first connected because it would be coupled through the capacitor, but after that the transistor would be off. The base of the transistor needs to be driven with current to turn it on, and DC current won't pass through the capacitor you have there. Were you trying to get a delay before the LED would turn on or something?
the relationship between voltage and current for a capacitor is I = C*dV/dt. What it means is that current will only flow through a capacitor if the voltage across it is varying with respect to time, like the AC voltage in the wall. The only time that the voltage in that circuit is varying is when the voltage is first applied. So when it is first turned on it would flash for an instant and you might not even be able to see it.
What I have shown you is reality. What you remember, that is the illusion.
"Say, what does this button do?"
All the dishes rattle in the cupboards when the elephants arrive
"Say, what does this button do?"
All the dishes rattle in the cupboards when the elephants arrive
gannon wrote:It will blink at the rate it takes for the capacitor to charge. For a fast blink with a longer wait between blinks solder on a pulldown resistor to the transistor base.
um...no it won't. Assuming that the black square with the + sign is a capacitor, that will prevent the transistor from turning on, meaning that there is no complete circuit for current to flow through the LED. Even if the transistor would turn on it would never oscillate, so it would never blink repeatedly. If you wanted it to oscillate you'd need a schmitt trigger or something like it.
What I have shown you is reality. What you remember, that is the illusion.
"Say, what does this button do?"
All the dishes rattle in the cupboards when the elephants arrive
"Say, what does this button do?"
All the dishes rattle in the cupboards when the elephants arrive
are you sure it wouldnt work? listen to this logic:
assuming the black thing as a capacitor, and the white box isnt anything.
you turn on the circuit and the capacitor charges. but, when it gets charged a little, it opens the transistor and lets itself drain. but that closes the transistor, and it starts to charge again.
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current never actually flows through a capacitor. when it is charging or discharing, current flows into it (or out of it), which gives the illusion of current flowing through it for a breif instant.
assuming the black thing as a capacitor, and the white box isnt anything.
you turn on the circuit and the capacitor charges. but, when it gets charged a little, it opens the transistor and lets itself drain. but that closes the transistor, and it starts to charge again.
---
current never actually flows through a capacitor. when it is charging or discharing, current flows into it (or out of it), which gives the illusion of current flowing through it for a breif instant.

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