Hello again,
Here's a thing: I need to build something that takes generic 3V LEDs of (almost) any color, running at half+quarter (3/4) of its brightness, which uses generic components anyone can find in electronics components seller (like NPN transistor), takes 0.7V~1.5V, and lights LED until the sun comes up, which is about 6~10 hours.
It does not have to be using rechargeable batteries (it'll be great if they do however) but it must sense light so it turns off when the sun shines.
(Nobody likes to change batteries daily just to enjoy teeny tiny light)
It'll be almost mass-produced (~100 units, hand-assembled) so it needs to be very simple.
Its circuit will be based on matrix type breadboards (not Veroboard, which has strips of copper running along the rows) and it does not need to be very small.
Battery types will vary from generic AAA size cells to LR42/AG13 batteries.
Colors: Green / Blue / White / Warm White, 2.7V~3.3V <- This is not the voltage the boost converter should output! This is for reference only!
Since it will be running at half of its maximum brightness, the voltage could be lower.
More information:
The output of the boost converter ("joule thief") should be just enough to light a generic 3V LED just enough to be visible in a dark room (illuminating small area around it), as mentioned earlier.
It uses high intensity LEDs with clear lens (instead of diffused one). You know, those LEDs used in toys such as spinning tops.
The LEDs are running in limitless mode. (there are no current-limiting resistors)
The circuit could be very tiny in some cases. (1.3cm in diameter, excluding batteries)
It needs no smoothing. (30Hz~)
Manufacturing cost should be minimal as I can't order ready-made ICs now.
Updated: There were some misleading lines. They're fixed now. Sorry for the confusion!