What is a Common Mode Inductor?
Inductors, also called reactor chokes, are passive electrical components made by wounded coils, which can resist sudden changes in current and are widely used in filtering electrical signals. Common mode inductors are known as common mode chokes (CMC), which are electrical filters that block high frequency noise and electromagnetic interference (EMI), to prevent the interference problems in electronics and electrical circuits.
Common Mode Inductor Advantages
• High insulation voltage
Our power common mode chokes ensure reliable performance and safety in high-voltage applications.
• Wide frequency range
The common mode choke inductors allow for efficient operation across a broad spectrum of frequencies.
• Wide temperature range
Mentech common mode chokes enable stable performance in various environmental conditions. The operation and storage temperature range (including self-temperature rise) is -40℃ to +125℃ (-40℉ to 257℉).
• High impedance
Common mode noise filters can block high-frequency interference without affecting normal operation.
• EMI
The construction of common mode filters effectively reduces electromagnetic interference (EMI), ensuring a clean and stable electrical environment.
Introduction: Mentech Common Mode Inductor
Mentech Common mode chokes are designed to provide the highest common mode impedance over the widest frequency range. These parts are ideal for any application requiring a high DC current bias and are well-suited for use in switch-mode power supplies and Telecom and Automotive electronics. Widely used in EMl noise suppression electronics, personal computers and peripherals USB Line, DVC, STB's lEEE1394 line, LCD panel, low voltage differential signal, new energy vehicle, etc.
As a leading inductor manufacturer, Mentech specializes in common mode inductor design and production. Our R&D teams consist of over 70 experienced engineers, and our intelligent automotive manufacturing factories provide superior performance and reliable products. Feel free to contact us for more details.