Exploring the Benefits of Vacuum Cast Coil (VCC) Dry type transformers

Vacuum Cast Coil (VCC) Dry type transformers offer a number of advantages over traditional oil-filled transformers. VCC transformers are more efficient, require less maintenance, and are safer to operate.
Efficiency: VCC transformers are designed with a vacuum-cast coil, which eliminates the need for insulation and reduces the amount of energy lost in the form of heat. This makes VCC transformers more efficient than traditional oil-filled transformers. alt-672 Maintenance: VCC transformers require less maintenance than oil-filled transformers. They are designed to be self-cooling, eliminating the need for external cooling systems. Additionally, VCC transformers are designed to be dust- and moisture-resistant, reducing the need for regular cleaning and maintenance. Safety: VCC transformers are designed to be safer to operate than oil-filled transformers. They are designed to be fire-resistant and are not prone to oil leaks, which can be a safety hazard. Additionally, VCC transformers are designed to be shock-resistant, reducing the risk of electric shock.

Comparing the Different Types of VCC Dry type transformers: Dyn11, Yyno, YNd11

Dyn11, Yyno, and YNd11 are three types of VCC Dry type transformers. Dyn11 transformers are designed for use in low voltage applications, such as lighting and heating. They are typically used in residential and commercial buildings. Yyno transformers are designed for medium voltage applications, such as industrial and commercial applications. They are typically used in large buildings and factories. YNd11 transformers are designed for high voltage applications, such as power transmission and distribution. They are typically used in power plants and substations. Each type of transformer has its own advantages and disadvantages, so it is important to consider the application before selecting the appropriate type.
TypeRated capacity (KVA)Voltage combination(KV)No-load losses(W)Load losses(W)No-load current (%)Short-circuit impedance (%)
SC13-30306,6.3,6.6,10,11/0.41507102.34.0
SC13-50506,6.3,6.6,10,11/0.421510002.24.0
SC13-80806,6.3,6.6,10,11/0.429513801.74.0
SC13-1001006,6.3,6.6,10,11/0.432015701.74.0
SC13-1251256,6.3,6.6,10,11/0.437518501.54.0
SCB13-1601606,6.3,6.6,10,11/0.443021301.54.0
SCB13-2002006,6.3,6.6,10,11/0.449525301.34.0
SCB13-2502506,6.3,6.6,10,11/0.457527601.34.0
SCB13-3153156,6.3,6.6,10,11/0.470534701.14.0
SCB13-4004006,6.3,6.6,10,11/0.478539901.14.0
SCB13-5005006,6.3,6.6,10,11/0.493048801.14.0
SCB13-6306306,6.3,6.6,10,11/0.4107058800.94.0
SCB13-6306306,6.3,6.6,10,11/0.4104059600.96.0
SCB13-8008006,6.3,6.6,10,11/0.4121069600.96.0
SCB13-100010006,6.3,6.6,10,11/0.4141081300.96.0
SCB13-125012506,6.3,6.6,10,11/0.4167096900.96.0
SCB13-160016006,6.3,6.6,10,11/0.41960117000.96.0
SCB13-200020006,6.3,6.6,10,11/0.42440144000.76.0
SCB13-250025006,6.3,6.6,10,11/0.42880171000.76.0

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