Why does this still have 10 pins? 2 pins would be plenty. 12v Power, Ground, and an overlaid capacitively coupled 2 way data comms running at a few hundred khz to send and receive status messages, fan speeds, model/serial numbers, firmware/ temperatures, on/off commands, etc.
to deliver 1500 watts at 12v through one pin would be 125 amps. 5 pins each with 25A I would think you’d want at least 14 gauge per pin and even then I think they would be rather warm.
Intel is changing the future of power supplies with its ATX12VO spec
31–40 of 188 posts
Re: Intel is changing the future of power supplies with its ATX12VO spec
#32Earlier quoted context omitted.
Probably would allow very cheap power supplies w/built-in UPSes. 12V±5% voltage is the allowed range.
Most desktop users would probably prefer a UPS that also ensured their monitor stayed on.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#3312V makes so much more sense to be sending around - the losses at lower voltages are rough. It would be nice to replace legacy molex connectors with a more modern standard, however.
> It would be nice to replace legacy molex connectors with a more modern standard Any example of the modern one? I personally have no issues with the current one. I am not sure if those molex connectors should be called as legacy.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#34Why does this still have 10 pins? 2 pins would be plenty. 12v Power, Ground, and an overlaid capacitively coupled 2 way data comms running at a few hundred khz to send and receive status messages, fan speeds, model/serial numbers, firmware/ temperatures, on/off commands, etc.
> Why does this still have 10 pins? 2 pins would be plenty. No, modern desktop can easily use up to 30A constant load. No way to provide so much over 1mm wires at 12V
Re: Intel is changing the future of power supplies with its ATX12VO spec
#35Why does this still have 10 pins? 2 pins would be plenty. 12v Power, Ground, and an overlaid capacitively coupled 2 way data comms running at a few hundred khz to send and receive status messages, fan speeds, model/serial numbers, firmware/ temperatures, on/off commands, etc.
> 2 pins would be plenty No. You are gonna burn wires.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#36Earlier quoted context omitted.
to deliver 1500 watts at 12v through one pin would be 125 amps. 5 pins each with 25A I would think you’d want at least 14 gauge per pin and even then I think they would be rather warm.
If you’re sending 1500 watts directly into a motherboard, something is probably wrong. Massive power draws (CPU, GPU) would always get their own direct connection, just as they do today. Apply this simple rule of thumb: watts become heat. The only major exception to this is where the power has exited the computer via USB or similar.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#37Earlier quoted context omitted.
Probably would allow very cheap power supplies w/built-in UPSes. 12V±5% voltage is the allowed range.
Most desktop users would probably prefer a UPS that also ensured their monitor stayed on.
If your goal is just to protect your data from sudden termination, then having a PSU with a built in UPS is quite nice.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#38Earlier quoted context omitted.
to deliver 1500 watts at 12v through one pin would be 125 amps. 5 pins each with 25A I would think you’d want at least 14 gauge per pin and even then I think they would be rather warm.
Not all your power requirements will go directly to the motherboard though in that single connector. For example the GPU will have its own dedicated power plug(s). I would expect the motherboard to need < 500w for most systems.
Re: Intel is changing the future of power supplies with its ATX12VO spec
#39Re: Intel is changing the future of power supplies with its ATX12VO spec
#40Earlier quoted context omitted.
to deliver 1500 watts at 12v through one pin would be 125 amps. 5 pins each with 25A I would think you’d want at least 14 gauge per pin and even then I think they would be rather warm.
If you’re sending 1500 watts directly into a motherboard, something is probably wrong. Massive power draws (CPU, GPU) would always get their own direct connection, just as they do today. Apply this simple rule of thumb: watts become heat. The only major exception to this is where the power has exited the computer via USB or similar.
Still a single pin is probably something like a #18 gauge and would only be good for 10A before it gets too warm for comfort.