Tuesday, December 20, 2011

LiteFuze LT-5000 5000 Watt Heavy Duty Voltage Converter Transformer - Step Up/Down 110/120/220/240V - Fully Grounded Cord (Free Euro Plug) - Patented Universal Output Socket - Circuit Breaker Protection

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5000 Watt Maximum Capacity Heavy-Duty Voltage Converter/Transformer Heavy duty for continuous use On/Off Power Switch LED Indicator for Power Source Single phase Dual Voltage Step Up or Step Down functionality Input: 110V/120V or 220V/230V/240V (Single Phase) Output 110V/120V or 220V/230V/240V (Single Phase) Input Selection in the rear of the converter Weight: 55 lbs. Dimensions: 7.25" x 9.75" x 6" Four outlets for output in the front - 2 sockets - Universal outlet (220v) - 2 sockets - German Shucko outlet (220v) - 2 sockets - USA Grounded (110v) Fuse protected - Fuse will cut off the current if the transformer is overloaded to protect the transformer and your appliance NOTE: We recommend to use a Voltage Converter / Transformer that's max watts is at least 50% higher than your appliance. Some appliances such as Power tools, Motors, Laser printers and TVs require 2-3 times more watts at start up than the printed rating.

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Tuesday, December 6, 2011

LiteFuze LR-5000 5000 Watt Heavy Duty Voltage Regulator w/ Voltage Converter Transformer - Step Up/Down 110/120/220/240V (Free Euro Plug) - Patented Universal Output Sockets

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Up to 5000 Watt Maximum Capacity Heavy-Duty Voltage Regulator Heavy duty for continuous use On/Off Power Switch LED Indicator for Power Source Single phase Dual Voltage Step Up or Step Down functionality Input: 110V/120V or 220V/230V/240V (Single Phase) Output 110V/120V or 220V/230V/240V (Single Phase) Input Selection in the rear of the converter Dimensions: 12"x11.5"x7" * Weight: 34 lbs. Five outlets for output in the front - 2 sockets - Universal outlet (220/240v single phase) - 3 sockets - Grounded USA (110/120v) Fuse protected with Built in Circuit Breaker NOTE: We recommend to use a Voltage Converter / Transformer that's max watts is at least 50% higher than your appliance. Some appliances such as Power tools, Motors, Laser printers and TVs require 2-3 times more watts at start up than the printed rating. We do not recommend voltage converters to use with coffee makers, hair dryers, microwave ovens and other heat producing appliances. US 220V products are two-phase 220V products and are not designed for use with this item.

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Saturday, November 26, 2011

LiteFuze LT-5000 5000 Watt Heavy Duty Voltage Converter Transformer - Step Up/Down 110/120/220/240V - Fully Grounded Cord (Free Euro Plug) - Patented Universal Output Socket - Circuit Breaker Protection

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Brand : LiteFuze | Rate : | Price : $199.00
Post Date : Nov 26, 2011 17:39:23 | Usually ships in 24 hours


5000 Watt Maximum Capacity Heavy-Duty Voltage Converter/Transformer Heavy duty for continuous use On/Off Power Switch LED Indicator for Power Source Single phase Dual Voltage Step Up or Step Down functionality Input: 110V/120V or 220V/230V/240V (Single Phase) Output 110V/120V or 220V/230V/240V (Single Phase) Input Selection in the rear of the converter Weight: 55 lbs. Dimensions: 7.25" x 9.75" x 6" Four outlets for output in the front - 2 sockets - Universal outlet (220v) - 2 sockets - German Shucko outlet (220v) - 2 sockets - USA Grounded (110v) Fuse protected - Fuse will cut off the current if the transformer is overloaded to protect the transformer and your appliance NOTE: We recommend to use a Voltage Converter / Transformer that's max watts is at least 50% higher than your appliance. Some appliances such as Power tools, Motors, Laser printers and TVs require 2-3 times more watts at start up than the printed rating.

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Tuesday, November 22, 2011

Power Bright VC1500W Voltage Transformer 1500 Watt Step Up/Down 110 Volt - 220 Volt

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Rate : | Price : $74.39 | Post Date : Nov 22, 2011 09:48:21
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This is a voltage converter or transformer that can be used as a step up transformer in 110/120 volt countries or as a step down transformer in 220/230/240 volt countries. This heavy duty voltage transformer can be used for continuous duty. It will convert voltages of 220-240 volts to 110-120 and will also convert voltages from 110-120 to 220-240 volts.

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Friday, November 18, 2011

Power Bright VC2000W Voltage Transformer 2000 Watt Step Up/Down 110 Volt - 220 Volt

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Rate : | Price : $88.39 | Post Date : Nov 19, 2011 03:04:11
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This is a voltage converter or transformer that can be used as a step up transformer in 110/120 volt countries or as a step down transformer in 220/230/240 volt countries. This heavy duty voltage transformer can be used for continuous duty. It will convert voltages of 220-240 volts to 110-120 and will also convert voltages from 110-120 to 220-240 volts.

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Thursday, November 10, 2011

High Voltage Spark Testers

!: High Voltage Spark Testers

A high voltage tester is a machine most commonly used to verify the overall structural integrity of any wiring, part of a total ensemble, known as the machine. If one wire is faulty, the main problem is probably the insulation around the wire. This is why a high voltage spark tester is the perfect device to test where the problem occurs. This is the article where we are going to talk about the main way in which a high voltage spark tester works and about the several types of testers available on the market.

As the general means in which the high voltage spark tester works, the wires are passed through a series of brass ball chains, are electrically charged. When the wires pass through this chain of current, they become electrically charged themselves, thus enabling the insulation to kick in. If during this journey any holes or weak points are detected within the structure of the wires, this problem will be signaled by the appearance of a spark. Later on, after detecting the problem, the wire can be sent back to manufacturer, or simply modified, as far as insulation goes, as to be properly used in the machine's structure.

High voltage spark testers are responsible of this great task, as faulty wiring may lead to short circuits that can burn entire electrical installations inside one's house. For example, if you were to use one of the many high voltage converters on any device in the room, and a wire did not have proper insulation, then the whole circuit could blow out and damage the entire electrical system in your house or office.

The Power Frequency Spark Tester is the first type of tester used on the market and is actually one of the earlier models to be made. It has an accuracy percentage of 85 and will leave a burn mark on the wire, in the case there is a fault detected on its surface. Later on, after analyzing the wire, in the absence of burns, and the wire is good to go, the problem may lay in the insulation.

The High Frequency Spark Tester is another type of tester, available for purchase, one more accurate tester than its older brother. It offers an accuracy percentage of 95 to 98, while it is mainly used as to determine the maximum amount of fault existing on the surface of a wire. Sometimes, a traditional tester may miss certain faults, however this is not the case here, as accuracy is the main feature for this tester.


High Voltage Spark Testers

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Monday, November 7, 2011

Goldsource® STU-3000 Step Up/Down Voltage Transformer Converter - AC 110/220 V - 3000 Watt

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Made by one of the leading manufacturers in the industry, the Goldsource ST series step up/down voltage transformers offer you a safe, reliable, affordable & convenient solution to converting voltages from 110-120 volts up to 220-240 volts or from 220-240 volts down to 110-120 volts for both home use & industrial applications. The ST-3000 is rated at 3000 watts maximum. It features a heavy-duty cord with a standard US 3-prong plug plus a free American to German outlet plug adapter. There are a total of two grounded outputs on the front panel, one is designated for 120 volts and the other is for 220 volts only. They both are standard US outlets and can be used simultaneously. For safety, it's recommended by the manufacturer that the voltage transformer's maximum power should be equal or greater than the power rating of your appliance multiplied by 1.5. For example, if you have an appliance rated at 100 watts, you will need to pick a transformer with a maximum power of 150 watts or greater.

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Wednesday, October 26, 2011

Voltage Transformers

!: Voltage Transformers

The transformer is an electrical device, which transforms voltage through magnetic coupling with no moving parts. It consists of a magnetic core, with two or more coupled windings, which either steps up or steps down the incoming voltage. This is done by the transfer of energy from one circuit to the other, through the magnetic core. These windings are generally termed as Primary and Secondary windings. The electromagnetic field thus created under goes a process of expanding and collapsing around the conductor and this changes the induced current, with the formation of an out put from the secondary coil, either stepping up or stepping down the input voltage.

In order to understand the function of a transformer, only two sets of windings are considered. When the main AC voltage is applied to the input of such an electrical device, the alternating current in the Primary winding creates a time varying magnetic flux in the core. This induces an AC voltage in the secondary coil, which is either the step up or step down voltage of the device. The terms, step up and step down are used with respect to the input voltage of the device. Therefore, if your equipment has been specified as input voltage 110 Volts AC, and if you are in one of those countries where the mains power supply is 220 Volts AC, you will need a step down transformer to run your equipment.

In high tension power transmission, where huge towers carry the cables which brings the power to cities, towns and villages, step up transformers are used as the power leaves the power stations and as they approach the destinations, the voltage is stepped down to the required mains supply, before it is distributed amongst the consumers. The reason for stepping up the power as they leave the power station is for the fact that,as it travels down the long power cables, there are power losses in the way, and the supply can reach the destinations in a proper specified power level to be stepped down as required by the consumers. In this application there are good many use of transformers are made.

The transformer is the most simplest of all electrical devices and its basic principle has not changed over the last 100 years, though the material used in such transformers and its design continue to improve. It has a very important application in transforming electrical energy, both for consumer use and power transmission. In a similar way, audio frequency transformers have been used in earlier experiments in development of telephones. These are still found in many electronic devices. The transformers come in various sizes, depending upon the application it is required for. It comes in the size of a thumb nail to huge units for the power transmission applications of national power grids. They all operate with the same basic principles.

The core of the transformer, as we have seen above, may be made with various materials. These include:

Air - This is ideal for high frequency transformer, with application in Radio Frequencies and provides least coupling.

Iron - All so called iron core transformers are steel. Various additives are made to improve the magnetic properties, as for example the magnetic permeability. The degree of magnetisation of a material required for a linear response to an applied magnetic field is termed as Permeability.

Ferrite - This is used to get a very high degree of permeability and excellent high frequency performance.

Etc.

The converter and the transformer are both electric conversion products, that enables you to run electric devices in foreign lands. As discussed earlier, if your electric device requires 110 Volts AC to run, you will need a transformer to step up the 220 volts AC supply voltage to 110 Volts AC before you can switch on that device that you have.

What is the difference between a converter and a transformer? If the device you are going to operate is a high power heating element or mechanical motor such as a hair dryer or iron, you will need a converter to run those appliances. But if your device is a computer, a printer or a VCR, you will need a transformer. Both of these category of appliances and devices can be run by a transformer, but only the electric appliance can be run with a converter. A word of caution in here is that, while transformers are designed for long term continuous operation, converters on the other hand can operate for an hour or two at a time.

In order to understand this better, we must understand the formation of a AC voltage. The alternating current voltage appears as a sine-wave, and depending upon the country you are in, the frequency of this sine-wave is either 50Hz or 60Hz. Now, if you look at a converter output, you would see that the upper half of the sine-wave has been chopped off, where-as, in a transformer the sine-wave remains in-tact. The electrical devices, like, iron, heater, a hair dryer, etc, would run with such a converter, but a computer, a printer or a VCR can be damaged if you attempt to operate those with a converter.

The frequency is the number of times the alternating voltage alternates each second. One such alternating cycle is termed as Hertz, having Hz as the short form. This cycling wave is termed as a Sinusoidal Wave. In the U.S. and the rest of North and Central America, with some parts of South America, the alternating current suppy is 60Hz. In Europe and rest of the world it is 50Hz.

There is a similar electrical device called Inverter. The purpose of this equipment is to convert Direct Current (DC) voltage to Alternating Current voltage. This device has many applications, for example, to provide appropriate limited AC power supply to devices like, electric fans, lights, etc. This inverter takes the DC voltage from a battery, like a heavy duty car battery and converts that into an appropriate AC voltage. Such supplies are limited because of the capacity of the battery capability and depending upon the battery the ampere-hour of the output can be increased, resulting in longer period of operation. The battery will need charging once it discharges.

There are variable transformers, which are known as Variacs. The principle is that the output voltage of this transformer can be manually varied with a fixed voltage as its input. For example, with a 110 Volt AC supply at the input, you can vary the output voltage from 0 to 110 Volts AC. The typical applications of these transformers are in testing devices for its lower and higher input voltage operation levels, quality control in testing equipment in burn-in condition, temperature and lighting control, etc.

Transformers are essential devices to operate any electrical or electronic equipment. As far as main supply voltage is concerned, if you are visiting Europe or any other country in Asia, the devices that you are taking with you will not operate in the mains supply voltage available in those countries. It is therefore necessary that you take with you the right device which can provide you with the right operating voltage for your equipment.


Voltage Transformers

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Monday, October 24, 2011

Power Bright VC3000W Voltage Transformer 3000 Watt Step Up/Down 110 Volt - 220 Volt

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Brand : Power Bright | Rate : | Price : $89.95
Post Date : Oct 24, 2011 08:21:22 | Usually ships in 1-2 business days

3000 Watt Voltage Transformer (VC3000W) This voltage converter can be used in 110 volt countries and 220 volt countries. It will convert from 220-240 volt to 110-120 volt AND from 110-120 volt to 220-240 volt.

  • 3000 watts continuous power
  • On and Off Switch
  • 2 Spare Fuses Included
  • FREE Grounded Adapter Included
  • Heavy Duty

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Friday, October 21, 2011

Residential Electrical Explains Converters and Voltage

!: Residential Electrical Explains Converters and Voltage

Many people who travel to or from the United States run into problems when they try to use electronics like a laptop or hair dryer. This is because the American 110 volt power system is different than the European 220 volt electricity. Without a converter, devices can fail or become damaged. Even the electrical system in use can be damaged. Always use caution when operating devices in another country and check the voltage before plugging them in.

Voltage Difference between US and Europe

The United States is one of the only countries that currently use the 110 volt/60 hertz electrical system. Most countries use a higher voltage system that handles 220 volts at 50 hertz. Appliances and electronics in these countries are designed to only work with the electrical system in that area. Because the voltage in Europe is twice that of the American system, plugging American devices into a European electrical system without a converter can destroy the device and even cause a fire. Devices intended for the 60 hertz cycle may not be able to function on the 50 hertz system as well.

Using Products Abroad

Using your devices in another country often requires the use of a converter. To see if the device needs a converter, check the information panel. Many manufacturers design electronics to work with range of voltages and these products will list acceptable input levels as 110-240 volts. If a specific voltage is required, the item needs a converter to work outside this range. Always look at the wattage requirement of the product before buying a converter. A residential electrician can recommend a good converter that has a higher wattage rating than the device, which prevents malfunction.

Using the American 110 Volt System

The main advantage most residential electricians see in the American system is the safety. If a live wire running on an 110v system is accidently touched there is a lower risk of harm. The chance of a fire from a short circuit is also lower on the 110v system.

Advantages of the 220 Volt System

Although it has more safety risks, the 220v system used throughout Europe can reduce energy use and the electrical load.

There is no clear winner between the 110 volt and 220 volt electrical systems. It is important to remember the differences and risks, however, when travelling to a different country. Using electrical devices on a system they were not made for can cause fires or cause the device to malfunction or break. A trained residential electrician can recommend the right converter to use electrical items on any voltage system.


Residential Electrical Explains Converters and Voltage

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Sunday, October 16, 2011

Goldsource® STU-2000 Step Up/Down Voltage Transformer Converter - AC 110/220 V - 2000 Watt

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Made by one of the leading manufacturers in the industry, the Goldsource ST series step up/down voltage transformers offer you a safe, reliable, affordable & convenient solution to converting voltages from 110-120 volts up to 220-240 volts or from 220-240 volts down to 110-120 volts for both home use & industrial applications. The ST-2000 is rated at 2000 watts maximum. It features a heavy-duty cord with a standard US 3-prong plug plus a free American to German outlet plug adapter. There are a total of two grounded outputs on the front panel, one is designated for 120 volts and the other is for 220 volts only. They both are standard US outlets and can be used simultaneously. For safety, it's recommended by the manufacturer that the voltage transformer's maximum power should be equal or greater than the power rating of your appliance multiplied by 1.5. For example, if you have an appliance rated at 100 watts, you will need to pick a transformer with a maximum power of 150 watts or greater.

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Monday, April 18, 2011

Electrical Plug Adapters

!: Electrical Plug Adapters

There are two considerable aspects to take note of. At the first instance, it is prominent to note that the electrical power specifications may vary from country to country that you are visiting. Not many countries have a electrical power specification as you have at home, and hence you should have the right adapter with you when you tour abroad. Secondly, the kind of wall mounted power outlet sockets in most of the countries, are not usually the ones that you find at home. It is entirely different, and your device power input plug may not fit into that socket at all.

The mains power voltage specifications differ from country to country. For example, the electrical and electronic devices in U.S. Control on 120 Volts Ac, but the United Kingdom has a 220 volts Ac outlet, which is separate from the one in the United States. Secondly, your device power input plug will never fit the power outlet sockets ready in the United Kingdom. Therefore, if you are traveling from home to the United Kingdom, you do not only need an adapter for your device power input plug, but a voltage converter as well, of the type which would convert the 220 Volts Ac electrical power yield to 110 Volts Ac for your device to work properly.

It is recommended that, when-ever you plan your next visit abroad, take a look at the guide of the power outlet specifications ready in the country or countries that you are visiting and get ready yourself to carry appropriate electrical Accessories for those devices to work properly. There are in fact universal plug adapters available, which will comply with the power out input sockets of many countries, but the need of voltage converters cannot be ignored

A guide to international electric outlet specification is presented below:

Country Voltage Frequency

Afghanistan 220V 50 Hz

Albania 20V* 50 Hz

Algeria 230V 50 Hz

American Samoa 120V 60 Hz

Andorra 230V 50Hz

Angola 220V 50 Hz

Anguilla 110V 60Hz

Antigua 230V* 60 Hz

Argentina 220V 50 Hz

Armenia 220V 50 Hz

Aruba 127V* 60 Hz
Australia 230V* 50 Hz

Austria 230V 50 Hz

Azerbaijan 220V 50 Hz

Azores 220V* 50 Hz

Bahamas 120V 60 Hz

Bahrain 230V* 50 Hz*

Balearic Islands 220V 50 Hz

Bangladesh 220V 50 Hz

Barbados 115V 50 Hz

Belarus 220V 50 Hz

Belgium 230V 50 Hz

Belize 110/220V 60 Hz

Benin 220V 50 Hz

Bermuda 120V 60 Hz

Bhutan 230V 50 Hz

Bolivia 220/230V* 50 Hz

Bosnia 220V 50 Hz

Botswana 231V 50 Hz

Brazil 110/220V* 60 Hz

Brunei 240V 50 Hz

Bulgaria 230V 50 Hz

Burkina Faso 220V 50 Hz

Burundi 220V 50 Hz

Cambodia 230V 50 Hz

Cameroon 220V 50 Hz

Canada 120V 60 Hz

Canary Islands 220V 50 Hz

Cape Verde 220V 50 Hz

Cayman Islands 120V 60 Hz

Central African Republic 220V 50 Hz

Chad 220V 50Hz

Channel Islands 230V 50 Hz

Chile 220V 50 Hz

China, People's Republic of 220V 50 Hz

Colombia 110V 60Hz

Comoros 220V 50 Hz

Congo, People's Rep. Of 230V 50 Hz

Congo, Dem. Rep. Of (former Zaire) 220V 50 Hz

Cook Islands 240V 50 Hz

Costa Rica 120V 60 Hz

Côte d'Ivoire

(Ivory Coast) 220V 50 Hz

Croatia 230V 50Hz

Cuba 110/220V 60Hz

Cyprus 240V 50 Hz

Czech Republic 230V 50 Hz

Denmark 230V 50 Hz

Djibouti 220V 50 Hz

Dominica 230V 50 Hz

Dominican Republic 110V 60 Hz

East Timor 220V 50 Hz

Ecuador 120-127V 60 Hz

Egypt 220V 50 Hz

El Salvador 115V 60 Hz

England (See United Kingdom)

Equatorial Guinea 220V* 50 Hz

Eritrea 230V 50 Hz

Estonia 230V 50 Hz

Ethiopia 220V 50 Hz

Faeroe Islands 220V 50 Hz

Falkland Islands 240V 50 Hz

Fiji 240V 50 Hz

Finland 230V 50 Hz

France 230V 50 Hz

French Guiana 220V 50 Hz

Gaza 230V 50 Hz

Gabon 220V 50 Hz

Gambia 230V 50 Hz

Germany 230V 50 Hz

Ghana 230V 50 Hz

Gibraltar 240V 50 Hz

Great Britain (See United Kingdom)

Greece 220V 50 Hz

Greenland 220V 50 Hz

Grenada (Windward Is.) 230V 50 Hz

Guadeloupe 230V 50 Hz

Guam 110V 60Hz

Guatemala 120V 60 Hz

Guinea 220V 50 Hz

Guinea-Bissau 220V 50 Hz

Guyana 240V* 60 Hz*

Haiti 110V 60 Hz

Honduras 110V 60 Hz

Hong Kong 220V* 50 Hz

Hungary 230V 50 Hz

Iceland 220V 50 Hz

India 230V 50 Hz

Indonesia 127/230V* 50 Hz

Iran 230V 50 Hz

Iraq 230V 50 Hz

Ireland (Eire) 230 50 Hz

Isle of Man 240V 50 Hz

Israel 230V 50 Hz

Italy 230V 50 Hz

Ivory Coast (See Côte d'Ivoire)

Jamaica 110V 50 Hz

Japan 100V 50/60 Hz*

Jordan 230V 50 Hz

Kenya 240V 50 Hz

Kazakhstan 220V 50 Hz

Kiribati 240V 50 Hz

Korea, South 220V 60 Hz

Kuwait 240V 50 Hz

Laos 230V 50 Hz

Latvia 220V 50 Hz

Lebanon 110/220V 50 Hz

Lesotho 220V 50 Hz

Liberia 120V 60 Hz

Libya 127V* 50 Hz

Lithuania 220V 50 Hz

Liechtenstein 230V 50 Hz

Luxembourg 220V 50 Hz

Macau 220V 50 Hz

Macedonia 220V 50 Hz

Madagascar 220V 50 Hz

Madeira 220V 50 Hz

Malawi 230V 50 Hz

Malaysia 240V 50 Hz

Maldives 230V 50 Hz

Mali 220V 50 Hz

Malta 240V 50 Hz

Martinique 220V 50 Hz

Mauritania 220V 50 Hz

Mauritius 230V 50 Hz

Mexico 127V 60 Hz

Micronesia (Federal States of) 120V 60 Hz

Monaco 127/220V 50 Hz

Mongolia 230V

Montserrat (Leeward Is.) 230V 60 Hz

Morocco 127/220V* 50 Hz

Mozambique 220V 50 Hz

Myanmar (formerly Burma) 230V 50 Hz

Namibia 220V 50 Hz

Nauru 240V 50 Hz

Nepal 230V 50 Hz

Netherlands 230V 50 Hz

Netherlands Antilles 127/220V* 50 Hz

New Caledonia 220V 50 Hz

New Zealand 230V 50 Hz

Nicaragua 120V 60 Hz

Niger 220V 50 Hz

Nigeria 240V 50 Hz

Northern Ireland (see United Kingdom)

Norway 230V 50 Hz

Okinawa 100V* 60 Hz

Oman 240V* 50 Hz

Pakistan 230V 50 Hz

Palmyra Atoll 120V 60Hz

Panama 110V* 60 Hz

Papua New Guinea 240V 50 Hz

Paraguay 220V 50 Hz

Peru 220V* 60 Hz*

Philippines 220V 60 Hz

Poland 230V 50 Hz

Portugal 230V 50 Hz

Puerto Rico 120V 60 Hz

Qatar 240V 50 Hz

Réunion Island 220V 50Hz

Romania 230V 50 Hz

Russian Federation 220V 50 Hz

Rwanda 230V 50 Hz

St. Kitts and Nevis (Leeward Is.) 230V 60 Hz

St. Lucia (Windward Is.) 240V 50 Hz

St. Vincent (Windward Is.) 230V 50 Hz

Saudi Arabia 127/220V 60 Hz

Scotland (See United Kingdom)

Senegal 230V 50 Hz

Serbia-Montenegro 220V 50 Hz

Seychelles 240V 50 Hz

Sierra Leone 230V 50 Hz

Singapore 230V 50 Hz

Slovak Republic 230V 50 Hz

Slovenia 220V 50 Hz

Somalia 220V* 50 Hz

South Africa 220/230V* 50 Hz

Spain 230V 50 Hz

Sri Lanka 230V 50 Hz

Sudan 230V 50 Hz

Suriname 127V 60 Hz

Swaziland 230V 50 Hz

Sweden 230V 50 Hz

Switzerland 230V 50 Hz

Syria 220V 50 Hz

Tahiti 110/220V 60 Hz

Tajikistan 220V 50 Hz

Taiwan 110V 60 Hz

Tanzania 230V 50 Hz

Thailand 220V 50 Hz

Togo 220V* 50 Hz

Tonga 240V 50 Hz

Trinidad & Tobago 115V 60 Hz

Tunisia 230V 50 Hz

Turkey 230V 50 Hz

Turkmenistan 220V 50 Hz

Uganda 240V 50 Hz

Ukraine 220V 50 Hz

United Arab Emirates 220V* 50 Hz

United Kingdom 230V* 50 Hz

United States of America 120V 60 Hz

Uruguay 220V 50 Hz

Uzbekistan 220V 50 Hz

Vanuatu 230V 50 Hz

Venezuela 120V 60 Hz

Vietnam 127/220V* 50 Hz

Virgin Islands (British and U.S.) 115V 60 Hz

Wales (See United Kingdom)

Western Samoa 230V 50 Hz

Yemen, Rep. Of 220/230V 50 Hz

Yugoslavia (Former) 220V 50 Hz

Zambia 230V 50 Hz

Zimbabwe 220V 50 Hz

Primary sources: electric Current Abroad (1998 edition), U.S. Branch of Commerce, National Technical information Service; World Electricity Supplies and Electrical Plugs; an International Survey, (both 1993), British Standards Institute. Additionally, since this table was first posted in late 1995, numerous revisions have (and continue to be) made as a consequent of personal observations or reports from other travelers.

For supplementary references please visit http://www.mindlogic.com/Volt_Adpt.shtml

Now, it is not the query of having the right adapter with you when you visit abroad. You must be also concerned with the electrical power specification that is ready in the country of your visit. Looking at the guide above, it is clearly understood that your electrical and electronic devices will require not only plug adapters but also a built-in or detach voltage converter. If you are planning a visit to the United Kingdom, you will need a device which converts the electrical power of 230 Volts Alternating Current (Ac) to 110 Volts Ac before you can apply that power to your equipment.. These converters need to be of the right specification of providing the right yield alternating current and the frequency as well for your equipment to work correctly.

If you need to payment your digital camera in Beijing, you will need an adapter which lets you plug in your charger on the wall socket. That's not all. Beijing has an electrical power yield of 220 Volts Ac with 50 Hz frequency and your charger can only accept an input voltage of 120 Volts Ac and 60Hz. Hz, which is the short form of Hertz, is the whole of cycles the alternating voltage goes straight through one cycle. This Ac yield voltage is usually a sine-wave, alternating in the middle of a definite and a negative level. This is a level variation with time as the other variant, and completion of one such cycle in one second is termed as 1Hz. Therefore, a 110 Volt Ac of 60 Hz has 60 cycles in one second.

Remaining on the aspect of charging your digital camera in Beijing, you do not only need a plug adapter but also the right voltage converter, which will give you a 120 Volts Ac, 60 Hz yield from an input of 220 Volts Ac of 50 Hz, which is the appropriate electrical power in China. The converted Ac voltage applied to your charger produces a much lower Direct Current (Dc) voltage yield to your digital camera, for charging the camera's re-chargeable battery. Application of the direct 220 Volts Ac output, without a converter will not only destroy the charger unit but may also damage your digital camera, if it is plugged into the charger,

Therefore, when you tour abroad, it is desirable that you check the electrical power specification of the country or countries that you are visiting. At the same time you should settle the plug adapter that you would be wanting. For this purpose you may like to visit http://www.mindlogic.com/Volt_Adpt.shtml for more information.

Voltage converters are ready in separate specifications, which mainly depend upon the purpose of its application. For example, a voltage converter for your digital camera recharging unit will be much smaller than the one you would need to turn on your iron, if you have one with you. The varying sizes of such converters depend upon the kind of alternating current or wattage that you would require to either turn on the charger or the iron. The wattage along with the specification of input and yield voltages are ordinarily specified on the body of the converter units that you are buying.

There are adapters ready which cater for multi-voltage operation. For example, the adapter itself will give you an selection to be switched from 110 Volts Ac yield to 230 volts Ac output. This is done straight through a toggle, at times appearing as a screw head on the converter body itself. But then again you may need a plug adapter to plug this mini-converter in the electrical power source ready in the country that you are visiting. In definite countries the electrical power may have surges. Surges are high frequency levels of very high voltages, suddenly appearing at the yield of the power source for a fraction of a millisecond or even micro-second. There are such adapters which are ready with surge protection. Please bear in mind, thunderstorms can produce these electrical surges which may damage your equipment.

Please visit http://www.planetomni.com/Volt_Adpt.shtml for more information on plug converter, tour adapter, international plug adapters, ac dc plug, foreign plugs adapters, tour adapters plugs, electrical converter, foreign power plug, universal plugs, electric adapter travel, universal plug adapter, tour electrical plug adaptor, adaptor plugs, plug adapter, international phone jacks.


Electrical Plug Adapters

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Wednesday, March 23, 2011

Simran 1875 Watts Travel Voltage Converter For Using 110V USA Products In 220V/240V Countries. Model SM-1875

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Price : $9.72
Post Date : Mar 24, 2011 00:40:11
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Ideal for travelling. You can use it with your hair dryers, iPods, phone chargers, camera battery chargers, Shavers etc. DO NOT USE - with the hair straightners, laptops, televisions, heating appliances or other household appliances with the motors.

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Friday, March 11, 2011

Power Voltage Converter/Transformer Step UP/Down 110-220 Volts popularelect.com

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