3.3v - 2,7A
and
12v - 0,8A
well all of us know that if someone want to make it portable you will need a power regulator right?
So I remember now I had a broken gc (dol-001) MOBO death, and I still have the GC regulator board, then I saw Turbo Tax´s post and a interesting idea apeared in from me ^^
well, he said the pin 13 is 3.4v and the pin 21 is 12v?Turbo Tax 1.0 wrote:All right here's a pinout of the power regulator voltages:
first of all here's how the power regulator board looks:
all you really have to worry about are pins 12-22. pin 13 is 3.4v, pins 16-18 are 1.9v, pin 21 is 12v, and pin 22 is 5v. also you have to make sure you have ground.
here's the pins on the GC ( that box with the lines is the heatsink....I suck at paint):
pins 2 and 13 need 3.4v, pins 6,7,16,17,18,19 need 1.9v, pin 10 needs 12v, and pins 11 and 22 need 5v. just make sure that the pins that I've grouped together, like 6, 7, 16, 17, 18, 19 are connected together. they should be, though.
and that's how you only need 5 wires to attach the gc power regulator board to the GC board!!!!!!!!!!!!! that "bit of bad news" was that a gc regulator had fried and so I ordered another one....
* oh yeah if you turn on your GC and you don't get any sound, try getting the 12v not from the pin on the GC power regulator, but directly from the actual GC ac adapter. I also tried that from the 14.8v li-poly battery pack and it worked fine.
I think that you are starting to understand me now hehe.
well but I´m not fully sure if this will work
looking at the pin 13 wich it have 3.4v (the n64 have 3.3)
did 3.4 should work fine on the 3.3?
and did the pin 13 will give enough "A" ( 2,7 A required for the 3.3v ) for the n64?
about the 12v output on the regulator I think It work fine on the 12v in.
how do you think about this guys?
is this a good idea? or this will be a good way to fry another n64 mobo










