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LITINDUSTRIES 65968916b73c4e12e2cf9454 Products https://www.litindustries.in

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Automatically transformers (variac transformers) are used to smoothly adjust the AC voltage in various works related to electrical engineering. They are most often used to change the voltage in household appliances, construction.Variac transformer is a type of transformer. The two windings in this device are directly connected to each other. As a result, between them there are two types of communication, one of which is electromagnetic, and the other electric. The coil has several pins with different voltage output values. The difference from conventional transformer is increased efficiency, due to partial change in power.
Variac Transformer
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When it comes to the manufacturing or fabrication of compact substations, a range of high quality materials is utilized. These materials are carefully selected based on their suitability for constructing compact substations that meet the required standards and specifications. The fabrication process involves the use of durable and resilient components, such as robust enclosures, efficient cooling systems, advanced electrical protection mechanisms and reliable monitoring and control systems.Compact substations exhibit a variety of noteworthy features. They are designed to occupy minimal space while offering optimal functionality. The compact design enables easy transportation, installation and maintenance. Additionally, these substations are built to withstand harsh environmental conditions and ensure reliable power distribution.
Compact Sub-Station
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An independent Loss-of-Phase device, to the inherent feature of the inverter, is required if one or more of the following apply: The LDC side of the Interface Transformer is of delta or tee configuration; There is more than one inverter in the DG configuration; It is deemed required by OESC or ESA; There is an Intermediate Transformer present between the Interface Transformer and the inverter(s).HV- Ground point of Intermediate Transformer primary winding.f) Secondary winding resistance measurement.Section: 66 KV Capacitor Voltage Transfor mer Page 4 of 4 SECTION: 66KV ISOLATOR: 1.1 GENERAL:1.1.1 The 66KV isolators shall be outdoor, horizontal centre break type (HCB) complete with terminal connectors suitable for both manual and motor operation.
Intermediate Transformer
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A booster transformer is used at end of the transmission line to increase the voltage to the desired value. The main function of the booster transformer is to compensate for the voltage drop in transmission when the transmission line is away from the source. A booster transformer is a device that is used to boost the voltage from the low level to the desired level. Construction of booster transformer    The booster transformer is consist of primary and secondary windings. The secondary winding of the booster transformer is connected in series with the transmission line whose voltage shall be controlled and the primary of the booster transformer is supplied from the secondary of the regulating transformer.
Booster Transformer
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A distribution transformer is the type of transformer that performs the last voltage transformation in a distribution grid. It converts the voltage used in the transmission lines to one suitable for household and commercial use, typically down to 240 volts.[1] These transformers are pole-mounted if the transmission lines run above ground (see figure 1), and they are pad-mounted (see figure 2) if the transmission lines lie underground, as is the case in many suburban areas. The pad-mounted transformer is usually green and visible on the front lawns of many homes.Every utility pole has a grounding wire. There is also a grounding wire that accompanies the two 120 volt hot wires that come from the transformer. These two 120 volt wires are 180° out of phase so that if both electric currents are used, there is a combined voltage of 240 volts. This allows for both 120-volt and 240-volt devices to be powered by the same distribution grid.[1]
Distribution Transformer
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Furnace transformers supply power to electric furnaces of various types like Arc furnace, Induction arc, Submerged arc, Rectifier duty & Ladle furnace transformers.In order withstand repeated short – circuit conditions and high thermal stress and to be protected from operational voltages resulting from the arc process, these transformers are designed after considering demanding conditions. The furnace transformer supplying power to furnace has to handle extremely high value currents in the order of kAmps depending upon furnace ratings.
Furnace Duty Transformer
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Transformers are critical components in solar energy production and distribution. Historically, transformers have “stepped-up” or “stepped-down” energy from non-renewable sources. There are different types of solar transformers including distribution, station, sub-station, pad mounted and grounding. All solar transformers have specialized needs that impact costs.For example, solar power applications experience steady state loading during inverter operation. When the sun’s out, there’s a dampened reaction process and more constant loading on the transformer.
Solar Transformer
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If you work in a power plant or power grid station or are familiar with such kind of power generation or power transmission system, you must know the function of the station transformer or auxiliary transformer. I feel obliged to answer this question for those who are a little bit far from this kind of working field. Let it make it easier to understand the station transformer, assuming that you have some basic knowledge about how a power plant or power grid station, or substation works. Any electrical or mechanical device may go out of order at any time. In such a situation you cannot afford a plant shut down due to the failure of any device. Station or auxiliary transformers are invariably used in all Grid Sub-Stations & Power plants. The KVA ratings of station transformers are normally 100 KVA, 33/0.4 kV. It is connected to the 33kV Main /Transfer Bus bar in the Grid substation with required protection & control.
Auxiliary Transformer
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A dry type transformer is defined as a transformer that does not use any liquid as an insulating or cooling medium for its windings or core. Instead, the windings and core are enclosed in a sealed tank that is filled with air or gas under pressure.Dry type transformers are widely used in various industries and applications because of their safety, reliability, and environmental benefits. They can operate in harsh conditions such as high humidity, fire risk, and seismic events without compromising their performance or posing any hazard to people or property.
Dry Type Transformer
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Lighting Transformers are designed to supply power to lighting equipments in a commercial / industrial / domestic unit. It's primary supply connected to higher voltage 3Ph source and secondary is to be connected to load.Lighting transformers serves as isolation between primary and secondary, it also restricts any high voltage spikes and EMF coming with the raw mains incoming power. LightingTransformers are very useful when system neutral is not available or faulty i.e where incoming supply is 3 phase 3 n wire and lighting load is 220 Volt single phase. It also restricts short circuit current in the load and saves major accidents.Power House lighting transformers are made with CRGO laminations and Electrolytic copper super enameled winding wires. They are available for wide range of inputs out are in the range and in capacity from 1K VA to 100 KVA.Construction : Lighting Transformers are two winding transformers with both windings made of copper. Electrolytic grade super enameled wire with best insulations are used. Core material are CRGO Strip cores. Experienced hands with best machines for winding ensures best results with minimum size. Appropriate class of insulation materials are used. Transformers are impregnated in insulating varnish for long lasting performance. Input and output are terminated on Glass Epoxy board with proper size of terminals. For Lighting Transformers greater than 30 KVA, usually a separate M.S Enclosure with temperature indicator is provided as shown in the drawing..
Lightning Transformer
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Traditional single-phase power wiring consists of a hot wire, a neutral wire, and a ground wire. When multiple, physically separated devices share a common power line, it is possible to create ground loops due to devices having different ground potentials. These ground loops are especially problematic in medical devices and can be troublesome during device test. For designers, it is difficult to measure ground loops with devices that use rectified line voltages. Grounded test equipment, like oscilloscopes, can inadvertently short power supplies in these devices. Also, high frequency noise can ride on AC power lines causing problems for sensitive transducers and instruments.All these problems can be avoided by the proper application of isolation transformers between the power input and the device.Isolation transformers provide separation from the power line ground connection to eliminate ground loops and inadvertent test equipment grounding. They also suppress high frequency noise riding on the power source.
Isolation Transformer
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As briefly mentioned, a distribution panel is the main source of a large set of electrical circuits. Distribution panels work by combining circuits from many different locations into one central hub. This allows you to access the entire electrical grid for your home from one spot.A distribution panel works by providing one main power switch that controls the power for all circuits. When turned off, the main power switch can temporarily shut down the entire grid. However, there are also times when you might need to control the power for separate components or locations in your home.For this reason, a distribution panel will separate each of the circuits into their own switches. This way, if you needed to shut off the power in just one location of your home you can do so without turning off the power for other areas that do need power at that time.
Distribution Panel
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