I agree this looks like spam. The arguments claimed don't really hold together from a physics, engineering and system perspective. For resistive devices (heater
| This article is rated C-class on Wikipedia's content assessment scale. It is of interest to the following WikiProjects: | |||||||||||||||||||||
| |||||||||||||||||||||
I agree this looks like spam. The arguments claimed don't really hold together from a physics, engineering and system perspective. For resistive devices (heaters, kettles, incandescent filament lightbulbs) then yes the instantaneous power will drop when the voltage is reduced... but this comes at the penalty of the lamp being dimmer (and the bulb actually being LESS efficient because of the shift to a lower filament-temperature and colour-temperature), the kettle taking longer to boil (and being /slightly/ less efficient as that's more time for the heat to escape), or for a thermostatically-controlled heater, then the thermostatic duty cycle will lengthen to consume the same overall energy. For electronic appliances with switch-mode power supplies, such as computers, TVs, phone chargers..., the power drawn will be constant (or in accordance with the appliance internal demand), and so the current drawn will increase as the supply voltage is forcibly reduced (so no energy savings). First law of thermodynamics - you can't get something for nothing.217.33.180.66 (talk) 19:07, 20 February 2012 (UTC)
Could we get some third-party confirmation that this actually exists? It looks like spam, and I'm always concerned about one-topic editors. --Wtshymanski (talk) 20:46, 5 September 2009 (UTC)
This article needs some attention. As it stands it is simply the (mostly unreferenced) marketing spiel of an employee or associate of PowerPerfector. You can check this by comparison to their website. eg. I did a quick check and you can find all of the businesses listed in the first paragraph on the PowerPerfector site under 'Case Studies'. Come to think of it, I don't see why it should be necessary, in an engineering article, to list adopters of the technology. 86.26.194.161 (talk) 22:33, 24 January 2010 (UTC)
Agreed - I've tagged it as an advert as there is no balance to the article at all. If nobody is able to improve the article I think it should probably be nominated for deletion. Rthorton (talk) 10:05, 9 September 2010 (UTC).
Yeah, this is pseudoscience inserted by a snake-oil salesman for the purpose of convincing potential victims of the scam. I can't be arsed to figure out the Wikipedia procedure for nominating a thing for deletion, but this thing very much needs deletion. The "technology" might deserve a mention on some article about pseudoscience, and then making the deleted page a redirect into that section. Myself248 (talk) 00:22, 17 February 2019 (UTC)
A persistent SPA anon IP wishes to add the following to the references section:
Voltage Regulators / Stabilisation
These devices will allow an increased level of saving to be achieved, particularly when there is a 24 hour high demand. The local network voltage rises at night due to general drop in demand on the network so where a fixed ratio transformer (discussed above) will also increase it's voltage output in line with the network voltage, a stabiliser will remain static at the desired output. This is best viewed in the comparative graph in this link [link redacted; seems to be spam magnet].
I've removed it three times in the last 24 hours for the following reasons:
Most Some A few editors read edit comments and observe why their golden prose was removed, and then fix it. --Wtshymanski (talk) 16:49, 18 August 2010 (UTC)
Hi, I have tried to edit the article to add balance. However this is my first time using Wikipedia, and I probably haven't done it quite right unfortunately. Please can someone check if the web links are cited appropriately.
I would say that "power optimisation" and "power optimization" as well as "voltage optimisation" and "voltage optimization" should be included in the wikipedia, because consumers will have to make decisions about how the things work, and whether they are worth buying. Even if the concept is a bit dubious, I guess it still needs some discussion.
Also, I have cited Ohm's law as the reason why it takes the same amount of power to boil a kettle at different voltages. However, I wonder whether there is a better law than this that includes Power in watts in the equation? I think if so, it would still be derived from Ohm's law though... Can this link through to a wikipedia page? Sorry for being a bit useless with the system
Finally, I have tried to clarify that "Power optimisers" mainly work by transforming the voltage supply, and describing briefly how an electrical transformer actually works. I don't know what they use to manage power spikes, though... Can this link to the article on "power transformer" on wikipedia? I think the sentence I've added is a bit weak, but it's the best explanation that I can provide at the moment from what I've read on the topic. There seems to be a bit of a mystery on some of the product pages of these devices about how the things actually work (in my opinion).
I would suggest that in the bit of the text before the background, the idea that there is a problem of overvoltage should be edited to say that "some people believe" there is a problem of overvoltage in the UK. It would be great if we knew who they were and whether this problem relates to particular parts of the electrical supply system... But I can't work out how to edit this bit - I can't see an edit link. I'm not talking about the text in the "background", it's the text that precedes this. Leeds011 (talk) 01:47, 14 May 2011 (UTC)
<ref>...</ref> like the other references.Some years ago, there were devices to improve the efficiency of plug-in appliances with induction motors. I have some for my washer and dryer (that I bought at thrift stores), but otherwise it seems to be a forgotten idea. It seems that induction motors must be designed to run at the low end of the line voltage tolerance. At a higher voltage, the motor will generate more heat, but otherwise operate the same way. The ones I know are not transformer based, but thyristor (power semiconductor) based. They also dynamically determine the appropriate operating voltage for the given load. This requires one device for each load. There should be references for such, though I haven't looked. Gah4 (talk) 17:49, 8 March 2018 (UTC)
I was working on a draft for an article on photoflood lamps, when I figured out that some of the values used were European. Incandescent lamps are more voltage sensitive than many devices, and photoflood lamps even more. I suspect that bulbs should be sold for 220V, 230V, and 240V, but don't actually know this. (In addition to 120V lamps in the US.). Some have rated life of 3 hours, running the filament at a higher temperature than ordinary light bulbs. Does anyone know what they actually sell in voltage optimized countries? Gah4 (talk) 07:07, 3 September 2019 (UTC)
There is no mention of the efficiency of the optimiser, a finger in the air guess is that is probably won't be any better than 95% --Anon user (talk) 17:20, 9 January 2020 (UTC)
Informasi ini disarikan dari Wikipedia dan disajikan kembali untuk tujuan edukasi. Konten tersedia di bawah lisensi CC BY-SA 3.0. Kami tidak bertanggung jawab atas ketidakakuratan data yang bersumber dari kontribusi publik tersebut.