| Brand Name: | VIIP WeiAiPu |
| Model Number: | V180162T |
| MOQ: | 1728 |
| Price: | 0.068$ |
| Packaging Details: | neutral |
The V180162T is a premium toroidal magnetic core fabricated from high-purity VN02 grade manganese-zinc ferrite material. It delivers a stable initial permeability (μi) of 650, providing dependable magnetic performance for industrial and commercial EMC circuit design. The core adopts standardized precise sizing: 19.0±0.6mm outer diameter, 13.0±0.6mm inner diameter and 11.0±0.6mm thickness. Featuring minimal magnetic loss, superior saturation magnetic flux density and excellent electrical resistance, this ferrite core boasts a Curie temperature above 110°C, ensuring steady magnetic output even in fluctuating temperature environments. With rigorous production tolerance control, each batch maintains consistent quality and reliable anti-interference ability, effectively attenuating EMI noise to help electronic circuits pass standard EMC certification tests. Its seamless toroidal structure also simplifies manual winding and automatic coil assembly procedures greatly.
V180162T is a professionally engineered Mn-Zn ferrite toroidal core based on optimized VN02 material formula. With a fixed initial permeability of 650, it achieves ultra-low power consumption and outstanding saturation magnetic stability under regular operating conditions. The core features accurate physical dimensions: OD 19.0±0.6mm, ID 13.0±0.6mm and height 11.0±0.6mm. It possesses high insulation resistivity and stable magnetic characteristics during long-duration continuous operation. Specially developed for high-frequency electromagnetic interference suppression, this magnetic ring efficiently cleans up stray EMI signals in various electronic devices. Strict dimensional precision guarantees excellent uniformity for large-scale mass production. The optimized toroidal shape allows flexible and neat wire winding, making it an ideal magnetic component for EMC filter circuits in switching power supplies and various electronic devices.
This multi-functional Mn-Zn ferrite toroidal core is widely utilized for high-frequency noise suppression and electromagnetic compatibility optimization in various electronic systems, covering the mainstream application scenarios as below:
A: Mn-Zn ferrite cores are designed for low to medium frequency interference suppression, generally working stably within 10kHz to 100MHz. They excel at attenuating low-frequency and mid-frequency power noise. For ultra-high frequency interference above 100MHz, Ni-Zn ferrite cores are more suitable for better filtering results.
A: Yes, installation position is critical. It is recommended to install the ferrite core as close as possible to the noise source or the equipment power input port. Installation far from the interference source will leave room for secondary noise coupling, significantly reducing the overall EMC filtering performance.
A: Standard bare ferrite cores are moisture-resistant to a certain extent, but long-term high humidity or damp condensation may affect surface insulation and cause subtle magnetic performance changes. For humid industrial scenarios, encapsulated or coated ferrite cores are recommended for enhanced stability and service life.
A: Tiny inductance deviations are mainly caused by minor dimensional tolerance differences, material formula uniformity and winding consistency. Professional manufacturers control tolerance within a reasonable range to ensure unified EMC performance. Slight fluctuations will not affect normal equipment application and EMC test results.
A: A single ferrite core can suppress partial high-frequency noise independently. However, to achieve comprehensive common-mode and differential-mode noise filtering effect, matching capacitor components to form a complete LC filter circuit can greatly improve EMC performance and meet stricter certification standards.
| Brand Name: | VIIP WeiAiPu |
| Model Number: | V180162T |
| MOQ: | 1728 |
| Price: | 0.068$ |
| Packaging Details: | neutral |
The V180162T is a premium toroidal magnetic core fabricated from high-purity VN02 grade manganese-zinc ferrite material. It delivers a stable initial permeability (μi) of 650, providing dependable magnetic performance for industrial and commercial EMC circuit design. The core adopts standardized precise sizing: 19.0±0.6mm outer diameter, 13.0±0.6mm inner diameter and 11.0±0.6mm thickness. Featuring minimal magnetic loss, superior saturation magnetic flux density and excellent electrical resistance, this ferrite core boasts a Curie temperature above 110°C, ensuring steady magnetic output even in fluctuating temperature environments. With rigorous production tolerance control, each batch maintains consistent quality and reliable anti-interference ability, effectively attenuating EMI noise to help electronic circuits pass standard EMC certification tests. Its seamless toroidal structure also simplifies manual winding and automatic coil assembly procedures greatly.
V180162T is a professionally engineered Mn-Zn ferrite toroidal core based on optimized VN02 material formula. With a fixed initial permeability of 650, it achieves ultra-low power consumption and outstanding saturation magnetic stability under regular operating conditions. The core features accurate physical dimensions: OD 19.0±0.6mm, ID 13.0±0.6mm and height 11.0±0.6mm. It possesses high insulation resistivity and stable magnetic characteristics during long-duration continuous operation. Specially developed for high-frequency electromagnetic interference suppression, this magnetic ring efficiently cleans up stray EMI signals in various electronic devices. Strict dimensional precision guarantees excellent uniformity for large-scale mass production. The optimized toroidal shape allows flexible and neat wire winding, making it an ideal magnetic component for EMC filter circuits in switching power supplies and various electronic devices.
This multi-functional Mn-Zn ferrite toroidal core is widely utilized for high-frequency noise suppression and electromagnetic compatibility optimization in various electronic systems, covering the mainstream application scenarios as below:
A: Mn-Zn ferrite cores are designed for low to medium frequency interference suppression, generally working stably within 10kHz to 100MHz. They excel at attenuating low-frequency and mid-frequency power noise. For ultra-high frequency interference above 100MHz, Ni-Zn ferrite cores are more suitable for better filtering results.
A: Yes, installation position is critical. It is recommended to install the ferrite core as close as possible to the noise source or the equipment power input port. Installation far from the interference source will leave room for secondary noise coupling, significantly reducing the overall EMC filtering performance.
A: Standard bare ferrite cores are moisture-resistant to a certain extent, but long-term high humidity or damp condensation may affect surface insulation and cause subtle magnetic performance changes. For humid industrial scenarios, encapsulated or coated ferrite cores are recommended for enhanced stability and service life.
A: Tiny inductance deviations are mainly caused by minor dimensional tolerance differences, material formula uniformity and winding consistency. Professional manufacturers control tolerance within a reasonable range to ensure unified EMC performance. Slight fluctuations will not affect normal equipment application and EMC test results.
A: A single ferrite core can suppress partial high-frequency noise independently. However, to achieve comprehensive common-mode and differential-mode noise filtering effect, matching capacitor components to form a complete LC filter circuit can greatly improve EMC performance and meet stricter certification standards.