110 or 230 Volts 

By on

Why the Difference

I've been considering a post on the 110 or 230 Volt issue for a while.  While browsing the Internet I came across a great summary by Borat over at  engineering.com.  He summarises the issue as:

  • Historical reasons. Edison insisted on 110 V (DC) but was convinced by Westinghouse to switch to AC so that transformers (step up/down) could be used. So that became the North American standard. In Europe AEG started with 110 V (following Edison) but at 50 Hz (instead of North American 60 Hz) because it fit neater into the metric system. After WWII the voltage was doubled to 220 V because higher voltages use less copper - which was at a premium. Other countries in the world usually followed the standards of their colonizing powers. The proliferation of 110 V receptacles and devices in North America prevented the doubling of voltage but that is one of the reasons your large appliances use 220-240V plugs. 

World Wide Breakdown

A bit more Googling found this Wikipedia image.  The image graphically shows a comparison of various voltages between different countries.


Source: Wikipedia
http://en.wikipedia.org/wiki/File:WorldMap_Voltage%26Frequency.png

Time to Reconsider a Single Worldwide Voltage Standard

There must be be massive advantages to standardisation on a single world wide voltage. Equipment would only need to be designed, built and tested for one voltage.  Supply systems would only need to be  designed, installed and testing for a single voltage.  Standardisation would be simplified by only having to deal with on voltage. 

With the world becoming more interconnected with a rapid increase in transfers of skills and materials across countries is it not time to reconsider the adoption of a single world voltage.

The Best Voltage

National pride and  arguments on installed systems etc. are the biggest obstacle to agreeing on a standard single worldwide voltage. Sooner or later surely these need to be overcome.

In looking at a standard level for a world voltage, I think there is an argument for considering the IEC accepted level of 230 V.  It appears to me that this voltage level has a significant number of advantages over 110 V:

  • there is a significant amount of international IEC standardisation based around 230 V
  • most countries are already operating at this voltage (or very close to it)
  • most residential/commercial equipment can be operated satisfactorily at this voltage
  • losses and material usage is reduced, making it a more sustainable selection

And Sockets

Assuming a universal adoption of 230 V, I also think the UK type square 3-pin plug would be a good choice for a common socket.  Currently this is only used on 230 V systems, has integrated earthing facilities, is a proven safe design and would be easily recognised.  Other socket outlets don't have all these features.  In addition, given the visual similarity between many other outlets (even if they are different) could make their use more confusing in the long run.

Will it happen

Given that we still do not have universal adoption of the SI system,  my guess for a universal domestic voltage is that this is probably unlikely in the near future.   This is unfortunate as the long term benefits would significantly outweigh any short/medium term disruptions in implementing a common system.

Related Links



Steven McFadyen's avatar Steven McFadyen

Steven has over twenty five years experience working on some of the largest construction projects. He has a deep technical understanding of electrical engineering and is keen to share this knowledge. About the author

myElectrical Engineering

comments powered by Disqus



Arc Flash Calculations

Working in the vicinity of electrical equipment poses an hazard. In addition to electric shock hazard, fault currents passing through air causes Arc Flash...

Paths of Flight

GE have put together a time-lapse video shown flight take-off and landings at some airports. An interesting view:

Closed Doors

"I can live with doubt and uncertainty and not knowing. I think it is much more interesting to live not knowing than to have answers that might be wrong...

The ac resistance of conductors

In a previous article I looked at the dc resistance of conductors and in this article we turn our attention to ac resistance. If you have not read the...

Generation of a Sine Wave

A fundamental concept behind the operation of alternating current systems is that voltage and current waveforms will be sinusoidal – a Sine Wave. This...

Electromechanical Relays

Electromechanical relays have been the traditional backbone of electrical protection systems.  While over recent years these have been replaced by microprocessor...

Inductance

When current flows within a wire, a magnetic field is created. The potion of this magnetic field perpendicular to the wire is called the magnetic flux...

ABB Technical Guides - Motor Operation

ABB has produced a range of technical guides that offer concise explanations of the major technologies and technical issues in low voltage AC drives. ...

Electromagnetic Compatibility (EMC)

Electromagnetic compatibility (EMC) is the study of coordinating electromagnetic fields give off equipment, with the withstand (compatibility) of other...

IEC 61439 Verification Methods

The (relatively new) switchgear and control gear standard, IEC 61439 'Low-voltage switchgear and controlgear assemblies' has three methods which can be...

Have some knowledge to share

If you have some expert knowledge or experience, why not consider sharing this with our community.  

By writing an electrical note, you will be educating our users and at the same time promoting your expertise within the engineering community.

To get started and understand our policy, you can read our How to Write an Electrical Note