Technical SpecificationsRated Capacity: 1600kVARated Voltage: High-voltage side 10kV, Low-voltage side 0.4kVRated Current: High-voltage side approximately 88.68A, Low-voltage side approximately 3632.5AConnection Group Number: Dyn11Insulation Thermal Class: Class F or Class HWinding Temperature Rise Limit: 100K (Class F) or 125K (Class H)Partial Discharge Quantity: Less than 5pcShort Circuit Impedance: 4% to 6%Frequency: 50HzCooling Method: Natural Air Cooling (AN) or Forced Air Cooling (AF)Protection Level: IP20 or IP23Noise Level: Typically not exceeding 55dBApplication AreasThe SCB18-1600 dr
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Rated capacity: 1000 kVAVoltage level: Customizable according to actual needs, common options include 10/0.4 kV, etc.Frequency: 50 Hz or 60 HzConnection group: Yyn0, Dyn11, etc.No-load loss: Relatively low, specific values need to be checked in the product manual.Load loss: Also relatively low, specific values need to be checked in the product manual.Insulation class: F or higherCooling method: Natural air cooling (AN) or forced air cooling (AF)Noise level: LowDimensions and weight: Depending on specific designApplications:Distribution link in power systems: Suitable for urban power grid trans
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Technical ParametersCapacity: 2000 kVA (kilovolt-amperes), indicating its maximum output power.Voltage Level: Specific values should be referenced from the product manual or information provided by the manufacturer, but typically indicate the rated voltage for both the primary and secondary sides.Frequency: Generally 50 Hz or 60 Hz, suitable for different regional grid standards.Insulation Class: Choose appropriate insulation materials based on the actual application environment to ensure electrical safety.Cooling Method: Natural air cooling or forced air cooling, among others.Noise Level: Low
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Technical ParametersRated Capacity: 2500kVARated Voltage: High-voltage side 10kV, low-voltage side 0.4kVRated Current: High-voltage side approximately 125A, low-voltage side approximately 5982AConnection Group Number: Dyn11Insulation Thermal Class: Class F or Class HWinding Temperature Rise Limit: 100K (Class F) or 125K (Class H)Partial Discharge Quantity: Less than 5pcShort Circuit Impedance: 4% to 6%Frequency: 50HzCooling Method: Natural Air Cooling (AN) or Forced Air Cooling (AF)Protection Level: IP20 or IP23Noise Level: Generally not exceeding 55dBApplication ScenariosThe SCB14-2500 dry-ty
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Product DetailsThis transformer is designed with a focus on efficiency and longevity. The core is made from high-quality cold-rolled oriented silicon steel with a unique lamination structure, effectively reducing no-load loss and current. The transformer’s compact design improves short-circuit resistance, while its sealed oil tank and box structure help extend the lifespan by preventing contact with air.
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Technical ParametersRated Capacity: 200 kVAVoltage Level: Typically used for low-voltage distribution networks, such as 10/0.4kV, etc.No-load Loss: Significantly lower than traditional silicon steel core transformers, approximately 70% reduction.Load Loss: Also superior to conventional transformers, aiding in energy conservation and emission reduction.Noise Level: Low noise generated during operation.Insulation Class: Generally uses F or H grade insulation materials.Cooling Method: Natural air cooling (AN).UsesResidential Power Supply: Suitable for power distribution rooms in new residential a
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Technical ParametersRated capacity: 2500kVAVoltage level: 10kV/0.4kV or other configurationsCooling method: Oil-immersed self-cooling or dry air self-coolingConnection group: Yyn0 or Dyn11Insulation level: Class B or higherProtection level: IP20 or higherNo-load and load losses: Both are kept at a low level; specific values can be referenced in the technical specifications provided by the manufacturer.Application ScenariosThe SBH21-M.RL-2500 amorphous alloy transformer is suitable for various fields, including but not limited to:Industrial sector: Suitable for various factories, production wor
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Technical ParametersThe technical parameters include but are not limited to:Rated capacity: 630 kVAVoltage levels: Depending on the specific application, various combinations are possible, such as 10/0.4 kV, etc.Frequency: 50 Hz or 60 HzCooling method: Typically oil-immersed self-cooling or forced air-coolingInsulation level: According to national standardsNoise level: Relatively low, as amorphous alloy materials help reduce noiseNo-load loss: Much lower than traditional silicon steel sheet transformersLoad loss: Also superior to traditional transformersApplicationsThe SBH21-M.RL-630 amorphous
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Product DetailsThe GGD switchboard is a type of high voltage switchgear designed to distribute high-voltage energy to low-voltage devices efficiently. It plays a crucial role in power distribution systems, enabling the safe allocation and conversion of power according to circuit requirements. With its modular structure, high breaking capacity, and robust design, the GGD switchboard ensures reliable operation, exceptional stability, and adaptability to various environmental conditions.
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Product DetailsThe functional wind power photovoltaic combined box transformer is an all-in-one substation designed specifically for wind farms and photovoltaic fields. Pre-assembled in the factory, it includes the booster transformer, high-voltage switch, low-voltage switch, and other auxiliary equipment, all housed in a single unit. The product integrates the advantages of Oubian and Mebian technologies, offering a new type of booster equipment tailored to the specific needs of renewable energy sectors.
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The SG-30KVA three-phase dry-type isolation transformer is manufactured using high-quality materials and advanced technology, suitable for various power supply occasions with AC 50/60Hz, and input and output voltages not exceeding 500V.Dry Type Transformer Technical Parameters Capacity: 30KVAThree Phase Dry Type Transformer Input Voltage: 380V (can be customized according to customer requirements)Output Voltage: 220V (can be customized according to customer requirements)Transformer Connection Group: D/yn11Transformer Operating Environment Temperature: -15℃~+40℃Transformer Effic
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The SCB14-1000 is a state-of-the-art, three-phase dry-type power transformer with an encapsulated structure, specially designed using high-quality epoxy resin for insulation. It incorporates advanced foil winding technology on the high-voltage side. With a rated capacity of 1000kVA and voltage ratings of 10kV/0.4kV, this transformer is engineered for high performance and efficiency.
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The SCB14-200 is a three-phase dry-type power transformer featuring an encapsulated structure cast in high-quality epoxy resin. The transformer utilizes advanced foil winding technology on the high-voltage side, delivering a rated capacity of 200kVA and voltage levels of 10kV on the high-voltage side and 0.4kV on the low-voltage side.
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The SCB14-630 is a robust and high-performance three-phase dry-type power transformer with an encapsulated structure made of epoxy resin. Designed with advanced foil winding technology on the high-voltage side, this transformer offers a rated capacity of 630kVA and operates with voltage levels of 10kV/0.4kV.
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The SCB14-800 is a high-capacity, three-phase dry-type power transformer with an encapsulated structure, cast in epoxy resin. Featuring advanced foil winding technology on the high-voltage side, this transformer delivers a rated capacity of 800kVA and operates at voltage levels of 10kV/0.4kV.
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The SCB14-80 is a highly efficient three-phase dry-type power transformer with an encapsulated structure cast in epoxy resin. This transformer utilizes advanced foil winding technology on the high-voltage side, ensuring robust performance and energy efficiency.
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The SCB14-400 is a high-performance three-phase dry-type power transformer with an encapsulated structure cast in epoxy resin. The transformer utilizes foil winding technology on the high-voltage side and is designed for applications requiring reliable power distribution.
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The SCB14-100 is a three-phase dry-type power transformer, featuring an encapsulated structure that is cast in high-quality epoxy resin. The transformer is designed with foil winding technology on the high-voltage side, ensuring optimal performance and high efficiency.
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The SCB14-1250 is a three-phase dry-type power transformer designed with an encapsulated structure cast in epoxy resin. This transformer incorporates advanced foil winding technology on the high-voltage side, offering superior thermal management and energy efficiency.
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The SCB14-50 is a three-phase dry-type power transformer with an encapsulated structure cast in epoxy resin. The high-voltage side employs foil winding technology, with a rated capacity of 50kVA and voltage levels of 10kV/0.4kV.
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The SCB14-125 is a three-phase dry-type power transformer designed with an encapsulated structure, cast in high-quality epoxy resin. It features foil winding technology on the high-voltage side, ensuring optimal performance and efficiency.
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High-quality insulation materials: Ensure the transformer's insulation performance in various environments, enhancing operational safety.Heat dissipation design: May employ oil-immersed self-cooling or dry-type designs, ensuring good heat dissipation during long-term operation.Safety measures: Equipped with explosion-proof devices and other safety measures to ensure the transformer's safe operation under abnormal conditions.Low noise operation: Through optimized design, effectively reduce operating noise, suitable for environments with strict noise control requirements.Excellent short-
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Technical ParametersRated Capacity: 1250 kVA (kilovolt-amperes), indicating the maximum apparent power that the transformer can transmit.Voltage Level: Specific primary and secondary voltages should be referenced in the product specification sheet, but typically, this type of transformer is suitable for medium and low voltage power grids, such as configurations like 10 kV/0.4 kV.Frequency: 50 Hz or 60 Hz, depending on the standard of the power system in the region where it is used.Connection Group: Common types include Dyn11, Yyn0, etc., which specify the electrical connection method between t
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Main Features:This transformer features amorphous alloy materials that significantly reduce no-load and load losses, improving energy efficiency. The low-loss design lowers both hysteresis and eddy current losses, resulting in enhanced energy savings, particularly compared to traditional silicon steel transformers. Over time, this design helps reduce electricity consumption.For safety and environmental protection, the transformer utilizes high-quality insulating oil or dry-type designs that offer excellent insulation and heat dissipation.
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