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Wednesday 16 November 2016

Some Important Tips To Choose the Best Distribution Transformer in India

A Transformer is used in transferring power from one voltage system to another with the help of electromagnetic induction. Each transformer consists of a metallic coil that carries the electric current.

Why is the transformer used?

The Distribution Transformer plays a significant role when it comes to matching the voltage of the load to the voltage supplied by the utility.

A Distribution Transformer is also known as the step-down transformer. It is used for electric power distribution purposes. There are many types of transformer utilized in the distribution system including, the Single phase. Three-phase transformer & other transformers. The size of the distribution transformer is not so big & has insulated oil. You can choose the distribution transformer according to usage & efficiency. Usually, the selection of a distribution transformer depends on its usage & budget. They are available in wide varieties in the market. You can choose a distribution transformer as per your budget.

Where is it used?

A Distribution Transformer is used in many places like Schools, Hospitals, Malls & residential areas.


Consider the Efficiency of Distribution Transformer

A distribution transformer is available in the market with different efficiency. The efficiency of the transformer means the ratio between the output & input power of the transformer at full load. When we talk about the distribution transformer the possibility of running a distribution transformer is nearly nil on full load condition.

Procedure to Select the Best Distribution Transformer for your Application

Distribution Transformers are available in different-different voltages but if you want to buy them then you need to search through your local electronics market or through online and find Best Distribution Transformer Manufacturer in India who provides you high-quality distribution equipment. The capacity of the transformer gives you an idea that how much power it can manage before the overloading. You can choose a transformer as per your needs.



Consider the KVA, Wattage required by the load: It is important to determine the wattage required by the load. The transformer size depends upon the KVA of the load. You can calculate KVA for single or 3 phase installations.

  • Single-phase KVA= Volts*Amps/1000
  • AMPS= KVA (VA)*1000/Volts
  • Three Phase KVA= 1.73*volts*Amps/1000
  • AMPS= KVA (VA)*1000/1.73*volts

A Clear Idea of the Voltage Required by the Load

You need to determine the voltage required by the load. This is the secondary voltage of the transformer. The secondary voltage is used to operate the lights, motor & other loads.

You can choose a Distribution Transformer as per your needs & usage. You can pick a transformer from a high, medium, or low voltage transformer. If we talk about the high voltage transformers, it can’t be used directly by the end-user but only used in power transmission applications. The transformer is very useful for transmitting power from a higher level to a lower level.


How to Choose the Right Distribution Transformer?

Always buy the transformer from a reputed transformer exporter. They can provide you a wide variety of transformer that suits your budget & requirements. Always compare the cost of the transformer before making the purchase, it may help you to find the best one for your requirements.

Wrapping it up: we hope the above-mentioned information would be helpful for you in finding the right transformer. Never compromises on quality over the price. An efficient transformer can be utilized for years & less maintenance required. Information is provided by Shakti Electrical Corporation. It is the most reputed importer, manufacturer, and supplier of Servo Voltage Stabilizers, Distribution, Step Down, and Isolation Transformer. Shakti Electrical Corporation is the Best Distribution Transformer Manufacturer in Jaipur, India who has a good reputation in their domain. To know more visit our website: www.shaktiecorp.com

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