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V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction

Brand Name: VIIP WeiAiPu
Model Number: V180162T
MOQ: 1728
Price: 0.068$
Packaging Details: neutral
Detail Information
Certification:
Rohs Reach
Relative Loss Factor:
20(0.1MHz)
Density:
4.9
Initial Permeability:
650
Mate-rial:
VNO2
Coercivity:
35
Reman-ence:
150
Highlight:

round ferrite magnetic core

,

high permeability ferrite ring

,

EMI noise reduction ferrite core

Product Description
Product Brief

The V180162T is a high-performance toroidal core crafted from premium VN02 grade manganese-zinc ferrite material. It features an initial magnetic permeability (μi) of 650, delivering outstanding magnetic stability for electronic EMC design. The core comes with precise dimensional specifications: 19.0±0.6mm outer diameter, 13.0±0.6mm inner diameter, and 11.0±0.6mm height. Boasting low magnetic loss, high saturation flux density and superior electrical resistivity, this ferrite core owns a Curie temperature exceeding 110°C and maintains stable magnetic characteristics amid temperature fluctuations. With strict batch dimensional consistency and reliable anti-interference properties, it efficiently attenuates EMI electromagnetic noise and helps electronic circuits meet standard EMC compliance requirements. Its streamlined toroidal structure also greatly simplifies manual and automated wire winding processes.

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction
Product Description

V180162T is a high-quality Mn-Zn ferrite toroidal core manufactured with refined VN02 material formulation. Equipped with 650 initial permeability, the component achieves ultra-low power loss and excellent saturation magnetic performance throughout conventional working environments. Standard dimensions include OD 19.0±0.6mm, ID 13.0±0.6mm, and height 11.0±0.6mm. This magnetic ring features high electrical insulation resistivity and consistent magnetic performance under continuous operating temperatures. Primarily designed for high-frequency EMI noise attenuation, it effectively eliminates electromagnetic interference in various electronic devices. Precise dimensional tolerance guarantees uniform product quality for mass production. The classic toroidal layout enables flexible and convenient winding assembly, making it an ideal core component for EMC filter circuits in power supplies and general electronic equipment.

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction
Application Range & Usage

This versatile Mn-Zn ferrite magnetic ring is widely applied for high-frequency noise suppression and EMC optimization in diverse electronic systems, covering the following core scenarios:

  • EMI noise filtering for switching power supply units
  • High-frequency interference suppression for power transmission cables
  • Electromagnetic noise reduction for power adapters and battery chargers
  • Signal purification and anti-interference processing for industrial control circuits
  • EMC performance optimization for civilian consumer electronics
  • High-frequency noise elimination for precision signal circuits
FAQ

Q1: What benefits does toroidal ferrite core have over square or rod cores?

A: Toroidal ferrite cores feature a closed magnetic circuit structure, which effectively reduces magnetic leakage flux. They offer higher magnetic efficiency, lower electromagnetic radiation, and more stable filtering performance. Meanwhile, their symmetrical structure supports uniform wire winding, bringing better noise suppression effect and smaller size compared with traditional-shaped cores.

Q2: How does winding turns affect the noise suppression effect of ferrite rings?

A: More winding turns increase the inductance value of the magnetic ring, significantly improving low-frequency noise attenuation. However, excessive turns will raise parasitic capacitance and weaken high-frequency filtering performance. It is necessary to match reasonable winding turns according to the target interference frequency band of the equipment.

Q3: Why does the same ferrite core show different filtering effects in different devices?

A: The actual anti-interference performance is affected by multiple factors including equipment working frequency, operating current, wiring mode, and ambient electromagnetic environment. Even with the same core model, mismatched working frequency band or irregular wiring layout will lead to inconsistent noise suppression results.

Q4: Do Mn-Zn ferrite cores degrade performance after long-term use?

A: High-quality Mn-Zn ferrite cores feature excellent aging resistance and stable physical and magnetic properties. Under rated temperature and normal working conditions, long-term operation will not cause obvious performance attenuation. Only long-term over-temperature operation or severe mechanical damage will affect its filtering capability.

Q5: Can one ferrite core solve all EMC noise problems of equipment?

A: No single magnetic ring can cover all interference frequency bands. Mn-Zn cores are mainly suitable for low and medium frequency noise suppression. For equipment with complex high-frequency and low-frequency mixed noise, a combination of different material cores or multi-stage filtering schemes is required to meet complete EMC compliance standards.

Good price  online

Products Details

Home > Products >
EMI Ferrite Core
>
V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction

Brand Name: VIIP WeiAiPu
Model Number: V180162T
MOQ: 1728
Price: 0.068$
Packaging Details: neutral
Detail Information
Brand Name:
VIIP WeiAiPu
Certification:
Rohs Reach
Model Number:
V180162T
Relative Loss Factor:
20(0.1MHz)
Density:
4.9
Initial Permeability:
650
Mate-rial:
VNO2
Coercivity:
35
Reman-ence:
150
Minimum Order Quantity:
1728
Price:
0.068$
Packaging Details:
neutral
Highlight:

round ferrite magnetic core

,

high permeability ferrite ring

,

EMI noise reduction ferrite core

Product Description
Product Brief

The V180162T is a high-performance toroidal core crafted from premium VN02 grade manganese-zinc ferrite material. It features an initial magnetic permeability (μi) of 650, delivering outstanding magnetic stability for electronic EMC design. The core comes with precise dimensional specifications: 19.0±0.6mm outer diameter, 13.0±0.6mm inner diameter, and 11.0±0.6mm height. Boasting low magnetic loss, high saturation flux density and superior electrical resistivity, this ferrite core owns a Curie temperature exceeding 110°C and maintains stable magnetic characteristics amid temperature fluctuations. With strict batch dimensional consistency and reliable anti-interference properties, it efficiently attenuates EMI electromagnetic noise and helps electronic circuits meet standard EMC compliance requirements. Its streamlined toroidal structure also greatly simplifies manual and automated wire winding processes.

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction
Product Description

V180162T is a high-quality Mn-Zn ferrite toroidal core manufactured with refined VN02 material formulation. Equipped with 650 initial permeability, the component achieves ultra-low power loss and excellent saturation magnetic performance throughout conventional working environments. Standard dimensions include OD 19.0±0.6mm, ID 13.0±0.6mm, and height 11.0±0.6mm. This magnetic ring features high electrical insulation resistivity and consistent magnetic performance under continuous operating temperatures. Primarily designed for high-frequency EMI noise attenuation, it effectively eliminates electromagnetic interference in various electronic devices. Precise dimensional tolerance guarantees uniform product quality for mass production. The classic toroidal layout enables flexible and convenient winding assembly, making it an ideal core component for EMC filter circuits in power supplies and general electronic equipment.

V180162T Round Ferrite Magnetic Core High Permeability Ring For EMI Noise Reduction
Application Range & Usage

This versatile Mn-Zn ferrite magnetic ring is widely applied for high-frequency noise suppression and EMC optimization in diverse electronic systems, covering the following core scenarios:

  • EMI noise filtering for switching power supply units
  • High-frequency interference suppression for power transmission cables
  • Electromagnetic noise reduction for power adapters and battery chargers
  • Signal purification and anti-interference processing for industrial control circuits
  • EMC performance optimization for civilian consumer electronics
  • High-frequency noise elimination for precision signal circuits
FAQ

Q1: What benefits does toroidal ferrite core have over square or rod cores?

A: Toroidal ferrite cores feature a closed magnetic circuit structure, which effectively reduces magnetic leakage flux. They offer higher magnetic efficiency, lower electromagnetic radiation, and more stable filtering performance. Meanwhile, their symmetrical structure supports uniform wire winding, bringing better noise suppression effect and smaller size compared with traditional-shaped cores.

Q2: How does winding turns affect the noise suppression effect of ferrite rings?

A: More winding turns increase the inductance value of the magnetic ring, significantly improving low-frequency noise attenuation. However, excessive turns will raise parasitic capacitance and weaken high-frequency filtering performance. It is necessary to match reasonable winding turns according to the target interference frequency band of the equipment.

Q3: Why does the same ferrite core show different filtering effects in different devices?

A: The actual anti-interference performance is affected by multiple factors including equipment working frequency, operating current, wiring mode, and ambient electromagnetic environment. Even with the same core model, mismatched working frequency band or irregular wiring layout will lead to inconsistent noise suppression results.

Q4: Do Mn-Zn ferrite cores degrade performance after long-term use?

A: High-quality Mn-Zn ferrite cores feature excellent aging resistance and stable physical and magnetic properties. Under rated temperature and normal working conditions, long-term operation will not cause obvious performance attenuation. Only long-term over-temperature operation or severe mechanical damage will affect its filtering capability.

Q5: Can one ferrite core solve all EMC noise problems of equipment?

A: No single magnetic ring can cover all interference frequency bands. Mn-Zn cores are mainly suitable for low and medium frequency noise suppression. For equipment with complex high-frequency and low-frequency mixed noise, a combination of different material cores or multi-stage filtering schemes is required to meet complete EMC compliance standards.