Since it's sole source of power is a little solar cell and a single 1.5 volt battery, I don't expect it to get overpowered.
My bad I thought you were going to hard wire it and "snip" the solar lead or 110v lead off.. You'll be fine..
Since it's sole source of power is a little solar cell and a single 1.5 volt battery, I don't expect it to get overpowered.
Depending on the soldering iron wattage used and length of time, yes they can be temp sensitive. The are definitely polarity sensitive.You're doing better than I am. I unsoldered the LED from the circuit board and soldered in a few inches of wire so I could move the LED away from the unit. Now, neither the LED nor the circuit board work.
Are LED's very temperature sensitive?
I've done this kind of thing before and didn't have any problems playing Dr. Frankenstein with the solar light to power the air pump but something went wrong here.
As others have answered - no, that seems to be a pretty basic linear regulator, which means... no RF noise. As also mentioned, the worst issue will probably be weathering, so anything you can do to protect the board and wiring from the elements will probably keep it running longer.Do you see anything that looks like a high frequency switching power supply there?
we did the same, before our 1st overnight race, I bought everyone their own petzel headlamp ... it worked really well.I love the ideas and ingenuity from everyone on this subject and everyone has their own way of doing things so here's my take on this. I did an overnight long distance solo race last year and I wore a headlamp. It allowed me to direct light wherever I was looking so I could see the windex, sails and telltales. If you're worried about your night vision, you can get one that can switch to red. I didn't notice that my night vision was affected at all.
Just a couple of pennies for you to ponder.
Turning your anchor light on is illegal. I doubt that the little LED could be considered an illegal light because it would be too small to ever be mistaken for a navigation light. No one would ever make a point of approach decision based on that little gleam.it's illegal lighting, but then so is what you're proposing (while underway anyway.)
You didn't see link to my project that he is trying to duplicate did you? I used the Davis windex light, replaced the bulb with an LED and powered it off of a solar lawn light fixture.Yeah, it's illegal lighting, but then so is what you're proposing (while underway anyway.)
Also, another option is that I think Davis actually makes an attachment for it's Windex to do exactly what you're proposing.
Thats what you get for over spending on the unitRoger Long said:Barbara had to get up and close the door because it was too bright for her to sleep and I could clearly see it shining around the door edges. If anything, it is too bright for the purpose. I don't want it to be distracting. I just want to be able to barely see the Windex on a very dark night.
Bill,I think you have the right concept but there's a number of significant problems with this description:LEDs can be dimmed by varying the voltage supplied to them. To figure out what you need I'd recommend a trimming pot (adjustable resistor) to experiment with. When you get the brightness right then measure the pot and use a resistor of that rating.
Alternately you can go to Radio shack and buy another LED and wire it in series with the current one. They will both light at reduced brightness. Repeat as needed.... not an elegant solution though.
or
get some 10 ohm resistors and try one and see if that floats the boat. If it is still too bright add another till nirvana is achieved.
If you wanted to do it with math you would need to know Vf and If for the LED. Since you bought the thing as a unit you would have to do some measuring to find out what the voltage drop across the LED is (Vf) and what the current flow is at Vf. If you have a multimeter this is pretty simple. Parallel for current and series for voltage.
V=IR is the formula, you are looking for R(led) so R=Vf/If
That would be the total resistance the LED supplies to the circuit. That should give you an idea of the size resistor you will need. Resistances in series are additive. You should get something around 70 ohms as a R(led) value.
Today I bought some cheapie garden solar lights ($20 for 10 at Home Depot), and took them apart... and I now have to retract my earlier assertion that these cheap lights don't have any high-frequency regulating components.This is the one I'm thinking of using:
![]()
Do you see anything that looks like a high frequency switching power supply there?
If you figure out the resistance to cut the brightness about 50%, let me know. It might save me buying a variable resistor.I can see that it would be relatively simple to modify it to reduce the brightness..
I've thunk it out a bit more. Charged NiCad batteries only put out about 1.2 v, but LEDs have a forward voltage drop of typically 2 volts. So, of course some sort of voltage boost would be necessary, and so that's job 1 of the flyback circuit.If you figure out the resistance to cut the brightness about 50%, let me know. It might save me buying a variable resistor.
I assume the added resistance would make the battery last longer. Might there be a chance though that the voltage could drop below some critical threshold so that the LED actually goes dark earlier?