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Small-Sized High-Temperature Superconducting Rotor Prototype
Small-Sized High-Temperature Superconducting Rotor Prototype
Small-Sized High-Temperature Superconducting Rotor Prototype

Small-Sized High-Temperature Superconducting Rotor Prototype

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Incoterm:FOB,CFR,CIF,EXW
Min. Order:1 Set/Sets
Transportation:Ocean,Land,Air
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Product Description
Output power: 100kW
Rated speed: 120rpm
Gap width: 5mm
Gap magnetic field: 2.23T
Coil type: ReBCO high-temperature superconducting track type coil
Coil temperature: 30K
Coil current: 350A
 

The Small-Sized High-Temperature Superconducting Rotor Prototype is an experimental model designed to study and test the application of high-temperature superconducting (HTS) materials in rotating machinery. These prototypes are primarily used in research areas such as superconducting rotating systems, electrical power transmission, magnetic levitation, and energy storage.

HTS materials, which typically operate at liquid nitrogen temperatures, exhibit zero electrical resistance and strong magnetic field effects, making them ideal for applications that require high efficiency and low energy loss. The small-sized HTS rotor prototype is developed to explore these materials' potential in superconducting motors, magnetic levitation systems, and other advanced technologies that demand high-performance, low-loss electrical components.

The high-temperature superconducting rotor system offers a significant advantage in reducing mechanical and electrical losses, improving energy efficiency in devices like superconducting motors and generators. In addition, the ability to operate in magnetic fields without resistance enables revolutionary applications in magnetic levitation and high-speed transportation systems. As a part of cutting-edge research in high-temperature superconductivity, the HTS rotor prototype is a crucial step toward commercializing next-generation, energy-efficient technologies.

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