Travis said:I'm thinking of making a DIY halogen bike light, I've seen a few web
pages on them and it looks like they're neither difficult nor expensive
to make, the biggest cost is the battery and recharger.
Places like [censored] Smith sell 12V halogen globes for just a few bucks,
and I'm considering a 20W light system. I've got a very old cheap
incandescent bike light which I can put a bright bulb into and run
wires out to an external battery pack hanging from my top tube or
handlebar stem.
Battery options include sealed lead acid units and ligher, but more
expensive, NiMH packs.
Another option would be a bank of 10 rechargeable NiMH AA batteries in
series. This would provide the right voltage, but I'm wondering if
they could provide sufficient current (I'm aware of issues of internal
resistance etc) and would they be able to keep up the current for at
least an hour (my commute time).
First of all, would 10 NiMH batteries in series be capable of providing
a 1.7 amp current, and if so for how long?
If not, what are some suggested alternative batteries and chargers that
would fit the bill?
I could run two packs of 10, in parallel, which would provide the same
voltage but double the current, though 20 NiMh batteries would be
pretty costly and a sealed lead acid battery might be better and
cheaper anyway.
I don't do night races or offroad stuff, its just to provide a nice
wall of light for my winter night commutes.
Thanks in advance
Travis
Travis it's easy to make up a good soldered battery pack.
I have two NiMh packs that I've made myself. One is about 2.5 amp hour
and the other is 4 amp hour, both rated at 12 volts using 10 cells in
each. I made them from Sony batterys but most brands are quite good now.
You have to get the ones with the tabs on the top, but be careful
because some have stainless steel tabs which you need to spot weld and
some have tinned tabs. The tinned tabs are the ones you want.
Lay 5 cells side by side oriented so that the positive of one end is
next to the negative of the other. To do the connections you have to
bend one of the tabs backwards against its original bend, and you may
have to trim off some of the tab but leave enough so they completely
overlap for the width of the end of the battery.
Now you get some fine sand paper or steel wool and give the tinned
surfaces a bit of a rub or else the solder won't stick to it properly,
they seem to leave some sort of coating on them at the factory.
Next apply some solder to the surfaces but don't solder them together yet.
Use good solder which has about 70% led and 30%tin which has the lowest
melting temperature. The secret to good soldering is to always keep
things clean. Clean the surfaces before you solder them, make sure the
soldering iron tip is clean and free of crud, wipe it on a cloth and
apply fresh solder to it before making each join. The active component
of the flux evaporates out of the solder very quickly leaving
accumulated crud which is why it's important to always wipe the tip and
apply fresh solder. (The flux is inside the solder.)
So now that you've tinned all the tabs, use electricians insulation tape
to bind the 5 cells together so they don't move. Carefully solder all
the tabs together. Because you've presoldered them you should only need
to push them together with the soldering iron and the solder already on
them should be adequate to make the joint. Wrap a heap more tape around
it to make it firmer.
Make a second pack of 5 the same way.
Now solder some wire to the the main positive and negative of each pack,
plus a short bit that joins the two packs in series. Allow longer length
than you think you'll need.
I use special flexible wire from Farnell or Radio Spares which is like
the wire used in multimeter leads, it has a lot of fine strands and
flexes without breaking. Don't use single strand wire, it won't last
long at all. Secondly, use red for positive and black for negative, that
way there is no mistakes.
Use the wire to join the two packs instead of the tabs so as to allow
for some flexibility of the pack if it gets jolted around on the bike.
Now that you've got it all together wrap a heap more tape around the
whole pack so every part of it has at least three layers of tape over
it. By now it should be a nice solid pack.
Now you need to put some connectors on it. The ones I use are from [censored]
Smiths, they are a whitish plastic and you can buy the pins separate
from the plug. I use the two pin plug, it's designed so that it will
only fit one way so you can't reverse the connections and blow things
up, as an extra precaution I have one male pin and one female pin in
each plug so there's no way I can get it wrong. My lights, chargers and
battery packs are all set up with this arrangement. I use LED lights
which are fed via a Luxeon current regulator which allows me to use
between 8 and 14 volts and I have two NiMh batterys and two Lithium Ion
batterys so I can swap between any of these batterys on my lights by
simply unplugging one and plugging in the other.
I wrap the battery in bubble wrap and push it into a cut off water
bottle which goes into the cage on my down tube. An important thing is
to remove the battery from the bubble wrap when you charge it as the
bubble wrap is a very good heat insulator and you'll cook your battery
if it goes into an overcharge state. Lithium Ion batterys are especially
susceptible to this. (I know from experience!)
I've been using my batteries for at least two years now without
problems, my two old Gel Cell batteries are unused in the shed. (Lead
acid batteries should always be stored in a charged condition, a flat
lead acid battery dies very quickly.)
A good charger is the MW1768 from Master Instruments.
http://www.master-instruments.com.au/browse/Model/MW7168.html
It needs a 12 volt supply which might be a problem but it has a meter in
it and will charge 12 to 14 volt packs which most chargers won't do.
Master Instruments also have some other good chargers that are worth
looking at.
Good riding
Friday