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Brand Name: | ZXY |
Model Number: | ZXY-Magnet Ring |
MOQ: | Negotiable |
Price: | Negotiable |
Packaging Details: | Customized Carton |
Payment Terms: | T/T paypal xtransfer |
A High Current Magnet Ring Inductor is a type of inductor designed to handle high current levels while maintaining efficient magnetic performance. It is typically constructed using a toroidal (ring-shaped) core made of magnetic materials such as ferrite, powdered iron, or other high-permeability alloys. The toroidal shape minimizes electromagnetic interference (EMI) and provides a compact, efficient design.
Storage humidity | 30% to 95% |
Operating Frequency | 20kHz and 500kHz |
Output power | 0.5W and 10W |
1.High efficiency and reliability in high-current applications.
2.Reduced electromagnetic interference due to the toroidal design.
3.Compact and lightweight compared to other inductor types.
Advantage | Explanation in Application |
High Inductance for Energy Storage | With a 10mH inductance, it can store a significant amount of energy. In applications like power supplies for high - performance CPUs, it helps maintain a stable output voltage during transient load changes. For example, when the CPU suddenly demands more power, the inductor releases the stored energy to prevent voltage dips. |
High Current - handling Capability | Designed to handle high currents, making it suitable for power - hungry applications such as electric vehicle charging stations. It can manage the large currents involved in the charging process without suffering from magnetic saturation, ensuring reliable and efficient power transfer. |
Magnetic Shielding of the Ring Structure | The magnet ring design provides effective magnetic shielding. In sensitive electronic equipment like MRI machines, this feature prevents the inductor's magnetic field from interfering with other components, ensuring accurate and stable operation of the entire system. |
Low DC Resistance for Reduced Losses | Has a relatively low DC resistance, which minimizes power losses in the form of heat. In renewable energy systems like wind turbines, where every bit of energy efficiency counts, this inductor helps reduce waste and improve the overall conversion efficiency from mechanical to electrical energy. |
Wide Frequency Response | Maintains stable performance over a broad frequency range. In communication base stations, it can filter out unwanted high - frequency noise while allowing the desired radio - frequency signals to pass through, ensuring clear and reliable communication. |
Compact and Space - saving | Despite its high inductance and current - handling capabilities, the magnet ring inductor has a compact size. In consumer electronics like laptops, this space - saving design allows for more efficient use of the limited internal space, enabling the integration of other components without increasing the device's size. |
1.Power Supplies: Used in switch-mode power supplies (SMPS) and DC-DC converters.
2.Filter Circuits: Employed in high-current filtering applications to suppress noise and ripple.
3.Motor Drives: Utilized in motor control circuits to manage high current and reduce EMI.
4.Renewable Energy Systems: Found in inverters and converters for solar and wind energy systems.
5.Automotive Electronics: Used in electric vehicles (EVs) and hybrid vehicles for power management and filtering.
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Brand Name: | ZXY |
Model Number: | ZXY-Magnet Ring |
MOQ: | Negotiable |
Price: | Negotiable |
Packaging Details: | Customized Carton |
Payment Terms: | T/T paypal xtransfer |
A High Current Magnet Ring Inductor is a type of inductor designed to handle high current levels while maintaining efficient magnetic performance. It is typically constructed using a toroidal (ring-shaped) core made of magnetic materials such as ferrite, powdered iron, or other high-permeability alloys. The toroidal shape minimizes electromagnetic interference (EMI) and provides a compact, efficient design.
Storage humidity | 30% to 95% |
Operating Frequency | 20kHz and 500kHz |
Output power | 0.5W and 10W |
1.High efficiency and reliability in high-current applications.
2.Reduced electromagnetic interference due to the toroidal design.
3.Compact and lightweight compared to other inductor types.
Advantage | Explanation in Application |
High Inductance for Energy Storage | With a 10mH inductance, it can store a significant amount of energy. In applications like power supplies for high - performance CPUs, it helps maintain a stable output voltage during transient load changes. For example, when the CPU suddenly demands more power, the inductor releases the stored energy to prevent voltage dips. |
High Current - handling Capability | Designed to handle high currents, making it suitable for power - hungry applications such as electric vehicle charging stations. It can manage the large currents involved in the charging process without suffering from magnetic saturation, ensuring reliable and efficient power transfer. |
Magnetic Shielding of the Ring Structure | The magnet ring design provides effective magnetic shielding. In sensitive electronic equipment like MRI machines, this feature prevents the inductor's magnetic field from interfering with other components, ensuring accurate and stable operation of the entire system. |
Low DC Resistance for Reduced Losses | Has a relatively low DC resistance, which minimizes power losses in the form of heat. In renewable energy systems like wind turbines, where every bit of energy efficiency counts, this inductor helps reduce waste and improve the overall conversion efficiency from mechanical to electrical energy. |
Wide Frequency Response | Maintains stable performance over a broad frequency range. In communication base stations, it can filter out unwanted high - frequency noise while allowing the desired radio - frequency signals to pass through, ensuring clear and reliable communication. |
Compact and Space - saving | Despite its high inductance and current - handling capabilities, the magnet ring inductor has a compact size. In consumer electronics like laptops, this space - saving design allows for more efficient use of the limited internal space, enabling the integration of other components without increasing the device's size. |
1.Power Supplies: Used in switch-mode power supplies (SMPS) and DC-DC converters.
2.Filter Circuits: Employed in high-current filtering applications to suppress noise and ripple.
3.Motor Drives: Utilized in motor control circuits to manage high current and reduce EMI.
4.Renewable Energy Systems: Found in inverters and converters for solar and wind energy systems.
5.Automotive Electronics: Used in electric vehicles (EVs) and hybrid vehicles for power management and filtering.