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I have a 30• year old battery charger/ starter i would like to get working How to i calculate the correct resistor value to get the current down to 1.5a The transformer has 8 metal lines coming out of it that plug into a steel plate that the positive charger cable attached to

I assume each pair are for the 4 different amperage settings of the charger I think i am missing something on the math though A fully charged state can be maintained with a trickle charge of no more than the i/100 rate.

The original design worked as a battery charger by using different combinations of the primaries secondaries to get 6 or 12v at different currents

The only current limiting is via the resistance in the windings If you change anything, it is not necessarily going to work as a battery charger. As it's build, the charger isn't all that great It will keep charging a battery up to 16v, or maybe even 17v without any kind of limitation other than waiting for the battery to match the output voltage

So i think instead of just refurbishing it, i'll convert it into a benchtop power supply. It's 12 volt with settings for 2 amp, 40 amp, 60 amp and 200 amp jump start but both 60 and 200 amp are on the same position on the control switch On the 2 amp setting it's putting out 8.8 volts, on. Hello, my name is aiman

My focus research area is on battery chargers

I would like to know the part for constant current charging Your circuit is simply a variable voltage power supply producing as much current as it can. I have an unregulated 12v battery charger that is outputting over 15.3v I have seen that the recommended maximum charging voltage should be around 14.4v for a 12v lead acid battery

What regulator and associated components would achieve this for me? The charger cannot be left on the battery Basically what i am saying is it is a cheap model The lm338 looks very promising

Using the attached schematic i see i can create a 5a current regulator

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