Imagine you didnt have law on shape and voltage of ordinsry power plugs in a house, and if you buy a samsung power socket to ibstall in your house, you mist buy samsung fridge and samsung washing machine and samsung hair dryer
Imagine you didnt have law on shape and voltage of ordinsry power plugs in a house, and if you buy a samsung power socket to ibstall in your house, you mist buy samsung fridge and samsung washing machine and samsung hair dryer
[0] https://en.wikipedia.org/wiki/Common_external_power_supply
The current authoritarian power play for pushing usb-c on Apple is completely unwarranted by the market conditions. It's pure politics.
Therefore, regulation is actually only impacting one player, and is extremely likely to reduce electronics waste, which makes it quite a nice political move. The claim of "authoritarianism" makes no sense, because governments are regulatory bodies and this regulatory move has clear motivations and positive expected outcomes, plus is incredibly easy to enforce.
Nice try though.
You seem to be conflating the wall socket with the on-device socket.
I have several AC powered devices that use the same wall socket plug but have different on-device sockets - some with very different shapes. Even a single manufacturer may require different power cables: the original PS2, PS3, and PS4 all have different and incompatible power sockets and cables (squared/polarized 2-prong, "standard" 3-prong, and figure-8 2-prong, respectively).
US homes often have 220V sockets for large appliances (electric clothes dryers) as well as 110V sockets for smaller appliances (handheld hair dryers.) The sockets/plugs/cables are different and are not compatible.
As I understand it, every iPhone already comes with a charging cable in the box that plugs into a standard USB C power socket. Already better than anything with a wall wart power supply.
But I'm pretty much in favor of addressing the absurd proliferation of incompatible wall warts and other DC power supplies, even though they plug into the same wall socket.
And the intent of the law is to bring the uniformity that exists in wall sockets to the on-device sockets.
1. There are currently several kinds of wall power voltages and plugs/receptacles commonly in use the US. Notable examples are the various 220-240V NEMA receptacles and the various 110-120V receptacles such as polarized 2-prong, unpolarized 2-prong, and 3-prong/grounded.
2. Although there are code requirements (e.g requiring that new outlets be grounded and polarized, or requiring ground fault protection in bathrooms) it doesn't appear that they mandate a particular plug or receptacle design (?) Though the NEMA (trade association) developed plugs can and do conform to the code requirements.
3. Power cords and on-device sockets aren't entirely standardized, but it's not nearly as big a deal as if there were dozens of 110-120V wall socket types rather than the three in common use.
And yet, actually ever improving the power plug design is probably never going to happen.
Generally, something larger like a microwave or TV would come with an alternative power cord. Something smaller comes with a 2-prong European plug and a semi-permanent UK/Ireland adapter.
(Incidentally, the EU considered changing to a single mains plug, but wisely decided it wasn't worth the hassle.)
The EU seriously considered unifying wall sockets, but in the end it turned out to not really be worth the effort. Most devices have either a Europlug or CEE 7/7 plug, which are compatible with virtually all wall sockets in the EU.
Italy and Denmark are slowly switching their proprietary wall sockets to the more common Schuko variant, if I recall correctly, so improving it isn't impossible!
However it's not uncommon for this to be enforced by law, for example it is a legal requirement that in the UK all goods sold must adhere to the BS 1363-1 standard.
Every few years the National Fire Protection Agency (NFPA)--which is a non-governmental nonprofit--publishes an updated standard and then it's up to all the state legislatures to update the laws to require the new standard.
The problem is that the NFPA doesn't just post the NEC for free on the Internet. You have to pay for it (which is ridiculous) and it's copyrighted and as such, illegal to just give away. There was a lawsuit in Georgia that was supposed to determine whether or not that situation was OK (having laws that require expensive fees to view may be unconstitutional since that's like having secret laws). I don't know what the outcome was of that though.
The Supreme Court in 2020 ruled that OGCA is not copyrightable, this in 2022 indicates that it has been made available to the public for free.
There are four states who have not adopted the NEC on a statewide basis, leaving any such decision to the local authorities having jurisdiction: Arizona, Illinois, Mississippi, and Missouri.
And then there is the voltage conversion, which traditionally happened on the AC side (inexpensive and simple AC transformers are generally why the transmission and distribution systems are AC). Modern power supplies allow for buck/boost on the DC side.
USB-C power supplies are above 90% efficient. [1]
[0] https://eepower.com/new-industry-products/huawei-claims-most... [1] https://www.ti.com/lit/ug/tidudw2c/tidudw2c.pdf?ts=168350042...
That's a really strange thing to see here on HN. Where did you get this idea?
BTW Europe having 3-phase AC to the home is brilliant. Wish we had that in the U.S.
Are there three phase sockets available? I'd think you could build things like high power audio amplifiers or power supplies at radically better price points, if this were actually usable from the wall in places.
3 phase is 120 degrees out of phase. Wall power only has a single phase, 360 degrees. Via +/- rectification the situation gets more complex. The key thing, as the other commenter points out, is that there is always always power available. Where-as with wall-power you literally drop to zero voltage as you go + to - & back.
Why is this strange? I see this kind of ignorant nonsense here all the time.
This site is absolutely full of software people who, because of Dunning-Kruger, think they're experts at everything technical. Electrical engineering isn't that far from the software world (computers are electrical, and their design is within the EE world), so software people frequently think they're experts at anything EE when in fact they don't even understand Kirchoff's Laws, much less the realities of modern-day AC and DC power transmission.
There's been multiple discussions here in recent months with these people advocating absolutely idiotic stuff like a whole-house 5V DC supply, showing they don't even understand Ohm's Law.
On a side note, it's very frequent that I see posts here from people who apparently have never heard of an ad-blocker, yet are complaining about ads.
Theres a reason why china is spinning up DC power grids while posts like mine get bashed on.
If you're AC all the way, there's never a need to rectify your generator, either.