Although it is a design in the interior, finally, it is not seen with the naked eye, the change is important because it impacts energy consumption and makes it lighter.
According to a specialist, the new PS5 model has been directly compared to the CFI-1000 versions, the one from the original 2020 release, and CFI-1100, the first revision of the device, which already weighed about 300 grams less than its predecessor.
The second update of the console continues on the same path, being even lighter. It weighs only 3.30 kilograms, compared to 3.54 kg for the IFC-1100 and 3.81 kg for the IFC-1000. This means that the PS5, at least in its Digital Edition, has lost almost half a kilo compared to the model that Sony introduced to the market at the end of 2020.
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But what has also attracted attention during the tests has been the energy consumption. It’s that the latest model uses up to almost 30 watts less when gaming than the IFC-1100 that came to users last year, and about 17 watts less than the original PS5. However, it has not yet been explained how Sony could have achieved this optimization.
The changes are to the IFC-1202B’s motherboard, for example, it’s about two inches smaller than previous versions. But the most drastic change has been seen again in the cooling system.
The CFI-1100 version that was released in 2021 had already reduced the size of the heat sink, compared to the original model. And this new revision of the equipment brings an even smaller one, with part of the most exposed copper tubes.
The other striking fact is that Sony has changed the location of the CMOS battery. Previously it was located away from the heat sink, while now it is below it. A striking decision, since, if at any time it must be replaced, the heat sink must be removed to access it.
Lastly, the Japanese have modified the bay to expand storage with an M.2 SSD. Previously the solid state drive rested on a PCB, but now it rests directly on a metal plate. This is due to the reduction in the size of the motherboard, although it is unknown if it is due to cost or heat dissipation.