Chalo said:lance house said:I took the bike out for a ride today with a multimeter attached to it.
At an average cruising speed it outputs 8-12V, but down a light incline
it got up to 14V. Down a big hill I could easily see it topping 20 V,
(Ill check it out next time im near a big hill) so I think I need to
allow for a possibility of putting that much through the LEDs at least
occasionally (although extra cooled by speed, they might also be
operating in hot tropical climates.)
So in otherwords the LEDs will be recieving 0-20V
I would be quite surprised if the voltage goes that high when there is
a load on the output.
It won't, I'm sure. Bike generators are pretty close to constant
current devices. IOW, typical ones put out 0.5 amp, no matter the
resistance - or at least, they try to. The more resistance they see,
the more voltage they develop. I've measured as much as 35 volts off
certain ones in an open circuit condition (IIRC).
But you won't get one to put out more than 0.5 amp (at least, not by
much). And IIRC, the Sturmey-Archer Dynohub put out even less, maybe
0.3 amp instead. I've got the figures stashed somewhere - I'll double
check later.
Quoted message said:Quoted message said:I was thinking if linking it to a battery as well so that some power
went to the lights and the excess went to charge a batttery which then
powered the lights when I wasnt moving. I think this is why I thought I
need a rectifier, as mentioned on sheldon browns site.
That sounds complicated. You could get some of the benefits of
batteries by using supercapacitors. A Maxcap LV110505A is rated for
11V and 5 farads. If I understand correctly, this unit stores over
600 watt-seconds of energy at its rated voltage, and should store
about 180 watt-seconds if charged at 6V. That may cause too long an
interval between setting in motion and the lights coming on, but there
are other similar units with smaller capacitance that would charge and
discharge more quickly.
Quoted message said:My multimeter only measures up to 200mA and it maxes out on that at
pretty low speeds, so I guess that explains why it blew the last LEDs so
quickly.
I don't know about red LEDs' tolerance for being overdriven, but white
ones are routinely driven at 50mA in commercial flashlight
applications even though their specifications stipulate a nominal
current rating of 20mA and a maximum of 30mA.
Here's what I wonder: Since the generator is inherently current
limited, and since LEDs need current limitation, is it possible to just
put the proper number of LEDs in parallel, to share the current properly?
Unfortunately, we're talking about roughly 10 LEDs (i.e. 0.30 amp /
..030mA/LED) ... and since they're diodes, those 10 light during only
half the cycle. You'd want another 10 facing the other way.
Alternately, you could do a diode bridge, using the LEDs themselves as
diodes.
In any case, has anyone tried this idea - just using the inherent
current regulation of a generator to drive LEDs?
Quoted message said:Quoted message said:Incidentally, I tried hooking up a halogen to it and got a depressing
orange glow even at reasonable speeds. It says its a 2.5V 0.5A bulb, so
perhaps the dynohub outputs somewhere between 200-500mA, but if so it
seems that the Amp output is not linear with speed.
For a dynohub, try http://www.reflectalite.com/lightmodel.html#anchor1
to get a workable bulb. They recommend a GH 105 or 107.
BTW, I haven't tried this, so take it as a citation, not a recommendation!
Quoted message said:There's a clue that the voltage under load will not be as high as you
measured. Unfortunately, it's also a sign that the dynohub may be
unable to put out its rated 3 watts.
Again, it's not rated for 3 watts. Modern generators are, but old
Dynohubs weren't.
--
Frank Krygowski [To reply, remove rodent and vegetable dot com.
Substitute cc dot ysu dot
edu]