Main Features:Energy-saving and efficient: Utilizing amorphous alloy materials, it significantly reduces no-load and load losses, improving the energy efficiency ratio.Safe and reliable: Using high-quality insulating materials and equipped with explosion-proof devices to ensure safe operation.Low noise operation: Optimizing the core and winding structure effectively reduces the noise level during operation.Strong resistance to short circuits: Amorphous alloy materials have high mechanical strength and can withstand large short-circuit current shocks.Compact and lightweight: Small in size and l
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Main FeaturesEnergy-Efficient and Cost-Effective: The use of amorphous alloy materials reduces no-load and load losses, significantly enhancing energy efficiency and lowering operational costs.Safe and Dependable: Manufactured with high-quality insulation materials and equipped with explosion-proof devices, ensuring safe and reliable operation.Low-Noise Operation: The optimized core and winding structure minimize noise during operation, making it suitable for noise-sensitive environments.Exceptional Short-Circuit Resistance: Amorphous alloy materials offer high mechanical strength, enabling th
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Main FeaturesEnergy-Efficient and Cost-Effective: Utilizing amorphous alloy materials, this transformer reduces no-load and load losses, improving overall energy efficiency and reducing operational costs.Safe and Dependable: Built with high-quality insulation materials and equipped with explosion-proof devices, ensuring safe and secure operation.Quiet Operation: The optimized core and winding structure significantly lowers noise during operation, creating a quieter environment.High Short-Circuit Resistance: Amorphous alloy materials provide superior mechanical strength, allowing the transforme
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Main FeaturesEnergy-saving and efficient: The use of amorphous alloy materials significantly reduces no-load and load losses, improving the energy efficiency ratio.Safe and reliable: High-quality insulating materials are used, equipped with explosion-proof devices to ensure safe operation.Low noise operation: The core and winding structure are optimized to effectively reduce the noise level during operation.Strong resistance to short circuits: Amorphous alloy materials have high mechanical strength and can withstand large short-circuit current shocks.Compact and lightweight: Small in size and
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Main Features:Energy-efficient and high-performance: Utilizing amorphous alloy materials, it significantly reduces no-load and load losses, enhancing the energy efficiency ratio.Safe and reliable: High-quality insulating materials are used, and explosion-proof devices are equipped to ensure operational safety.Low-noise operation: The core and winding structure are optimized to effectively reduce noise levels during operation.Strong resistance to short circuits: Amorphous alloy materials have high mechanical strength, capable of withstanding large short-circuit current shocks.Compact and lightw
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Main Features:Energy-efficient and efficient: The use of amorphous alloy materials significantly reduces no-load and load losses, improving the energy efficiency ratio.Safe and reliable: High-quality insulating materials are used, equipped with explosion-proof devices to ensure safe operation.Low noise operation: The core and winding structures are optimized to effectively reduce noise levels during operation.Strong resistance to short circuits: Amorphous alloy materials have high mechanical strength and can withstand large short-circuit current shocks.Compact and lightweight: Small in size an
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Features:- Utilizes high-quality insulating oil or dry design, offering excellent insulation performance and heat dissipation effects; equipped with explosion-proof devices to ensure operational safety.- Low noise: Optimized core and winding structures effectively reduce the noise level during operation, making it particularly suitable for noise-sensitive environments.- Strong resistance to short circuits: Amorphous alloy materials have high mechanical strength, capable of withstanding large short-circuit current shocks.- Small size, light weight: Compared to traditional silicon steel core tra
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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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Technical ParametersFeatures:Rated capacity: 200 kVAVoltage level: Customizable according to application needs, for example, 10/0.4 kV, etc.Frequency: 50 Hz or 60 HzConnection group: Typically Dyn11 or other typesShort-circuit impedance: About 4% approximatelyNo-load loss: Considerably reduced compared to traditional silicon steel sheet transformersLoad loss: LowNoise level: Below standard valuesTemperature rise limit: Compliant with relevant national standards requirementsApplicationsThe SBH21-M.RL-200 amorphous alloy transformer is widely used in the following fields:Urban power grid renovat
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Main Features:(1) High Efficiency and Energy SavingLow loss design: Amorphous alloy materials have extremely low hysteresis loss and eddy current loss, significantly reducing no-load and load losses, and improving the energy efficiency ratio.Energy-saving effect: Compared with traditional silicon steel sheet transformers, the energy efficiency ratio is significantly improved, and long-term operation can greatly save electricity.(2) Environmental Protection and SafetyInsulation and heat dissipation: High-quality insulating oil or dry design is adopted, with good insulation performance and heat
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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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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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Main Features:High Efficiency and Energy SavingLow Loss Design: Amorphous alloy materials offer extremely low hysteresis and eddy current losses, significantly reducing both no-load and load losses, thereby enhancing energy efficiency.Energy-Saving Benefits: Compared to traditional silicon steel transformers, this transformer offers a marked improvement in energy efficiency, delivering substantial electricity savings during prolonged operation.Environmental Protection and SafetyInsulation and Heat Dissipation: The transformer uses high-quality insulating oil or a dry-type design for excellent
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Technical ParametersKey Indicators:Rated Capacity: 1000 kVA (kilovolt-amperes), indicating the maximum apparent power that the transformer can transmit.Voltage Level: Specific voltage values for both the high-voltage and low-voltage sides are usually provided, such as 10/0.4 kV, etc.Short Circuit Impedance: An important parameter affecting system stability and the magnitude of fault currents.No-Load Loss: The electrical energy consumed by the transformer when there is no load, where amorphous alloy transformers perform exceptionally well.Load Loss: The energy loss when the transformer is opera
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Technical ParametersRated Capacity: 80 kVA (kilovolt-amperes), indicating the maximum power at which the transformer can operate continuously.Voltage Levels: Specific values should be referenced from the product manual or information provided by the manufacturer, typically including the voltage values for the primary side (input) and secondary side (output).No-load Loss: Very low, which is a significant advantage of amorphous alloy transformers, helping to reduce energy waste.Load Loss: Also relatively low, making it more energy-efficient compared to traditional silicon steel sheet transformer
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Product DetailsThe three-dimensional wound core transformer features an advanced circular coil structure and a symmetrical three-phase magnetic circuit design.
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Technical Parameters (Example):Rated Capacity: 500 kVAVoltage Level: Depending on the specific model, generally 10/0.4 kV or similar configurations.Frequency: 50 HzConnection Group: Dyn11 or other specified typesShort Circuit Impedance: Typically less than 6%No-load Loss: Much lower than traditional silicon steel sheet transformersLoad Loss: Also reduced compared to traditional transformersNoise Level: Relatively lowProtection Level: IP23 or higherPlease note that the above parameters are for reference only, and the specifications of the actual product may vary.
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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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Main Features:High-quality insulation and heat dissipation design: Utilizing high-quality insulating oil or adopting a dry design ensures the transformer has excellent insulation performance and heat dissipation effects.
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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: 1250 kVA (kilovolt-amperes), indicating the maximum apparent power that the transformer can handle.Voltage Level: Specific values are not given, but it typically indicates the operating voltage range of the primary side (input) and secondary side (output).
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Below are some basic technical parameters and applications of this model of transformer:Technical Parameters:Capacity: 100 kVA (specific values may vary slightly depending on the manufacturer)Voltage level: Typically 10/0.4 kV or customized according to user needsFrequency: 50 HzConnection group: Common types include Dyn11, etc.Insulation thermal class: F or aboveEfficiency: Meets the energy efficiency limits and energy-saving evaluation values specified in Chinese National Standard GB 20052Noise level: Below the standard-specified valuesProtection level: IP20 or higherApplications:Civil
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Technical ParametersCapacity: 1600 kVA (kilovolt-amperes), indicating the transformer's maximum output power.Voltage Levels: Specific values are not provided, but typically include two voltage values for the high-voltage and low-voltage sides.
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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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