EMC Components Amorphous Toroidal Core Common Mode Choke

20A

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 Amorphous Common Mode Inductor

Features:

1. Low Core Loss: Amorphous materials exhibit lower core losses compared to conventional crystalline materials, making them highly efficient for high-frequency applications.
  
2. High Permeability: These inductors typically have high magnetic permeability, which allows for greater inductance with fewer wire turns.

3. Temperature Stability: Amorphous materials generally maintain their magnetic properties over a wide temperature range, ensuring consistent performance.

4. Compact Design: Their efficient design allows for smaller and lighter inductors without sacrificing performance.

5.Low Noise Operation: Amorphous inductors are effective at suppressing electromagnetic interference (EMI) and maintaining signal integrity.

Specifications:

1. Inductance Range: Typically ranges from microhenries (µH) to several millihenries (mH), depending on the application and design.

2. Rated Current: Inductors are available in various current ratings, usually defined by continuous and surge current capacities.

3. DC Resistance (DCR): Designed to have low DC resistance, minimizing power loss during operation.

4. Operating Frequency: Suitable for high-frequency applications, often in the range of kilohertz (kHz) to megahertz (MHz).

5.Temperature Range: Can operate in a wide environmental temperature range, often from -40°C to +125°C.

Applications:

1. Power Electronics: Used in power supply circuits to filter EMI and stabilize voltage levels.

2. Telecommunication Equipment: Found in communication devices to suppress noise in signal lines and improve transmission quality.

3. Consumer Electronics: Integrated into various devices, including computers, audio equipment, and home appliances to enhance noise performance.

4. Renewable Energy Systems: Applicable in inverters and converters within solar and wind energy systems to help manage voltage and suppress noise.

5. Industrial Automation: Used in control systems and robotics to ensure the reliability of electronic and electrical signals.

 
Model
 
Inductance
(MH)
Rated Current (A) Dimension (mm)±2  
A B C D Work Frequency  
YST8*4*3 0.2mH-1mH 0.1-2.5A 12 7 14 5 10-100KHZ  
YST9*5*3 0.8-3mH 0.1-2.5A 13 7 15 5 10-100KHZ  
YST12*6*5 0.8-3.1mH 0.1-2.5A 14 9 16 6 10-100KHZ  
YST14*9*5 1.5mH-4mH 0.1-3A 18 10 20 8 10-100KHZ  
YST16*9*5 1.5mH-4.5mH 0.1-3A 20 10 22 8 10-100KHZ  
YST18*10*8 1.8mH-5mH 1-5A 23 13 25 8 10-100KHZ  
 YST20*10*10 2.5mH-6mH 1-5A 24 15 26 12 10-100KHZ  
YST22*14*8 3mH-10mH 1-5A 26 13 28 12 10-100KHZ  
YST25*15*10 3.5mH-12mH 3-15A 30 18 32 13 10-100KHZ  
YST25*15*13 5mH-20mH 5-25A 30 18 32 15 10-100KHZ  
YST31*19*13 5mH-25mH 5-40A 36 18 38 16 10-100KHZ  
YST38*19*13 3mH-25mH 5-40A 44 18 46 16 10-100KHZ  
YST48*30*15 10mH-30mH 15-65A 54 20 56 18 10-100KHZ  
YST50*30*20 10mH-50mH 20-100A 60 65 35 20 10-100KHZ  
YST85*50*30 15mH-70mH 30-500A 100 150 120 30 10-100KHZ

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