High Voltage Inductance Choke Coil Common Mode Choke Coil Choke Coil Inductor

Choke coil, also known as inductor coil, reactance coil or impedance coil, is an electronic component that plays an important role in controlling the magnitude and phase of current in an AC circuit. It can isolate high frequency currents, generate inertial potentials, and limit the passage of current, thus realizing the control of current in the circuit.



Introduction:

Inductance coil choke inductor

Inductance is a property of a closed loop, that is, when the current passing through the closed loop changes, an electromotive force will appear to resist the change of the current. This kind of inductance is called self-inductance and is the property of the closed loop itself. Assuming that the current in a closed loop changes, an electromotive force is generated in another closed loop due to induction. This inductance is called mutual inductance

 

Choke coil inductor can be customised

Item Test Pin Test Value Condition
Inductance  1-4 15mh±30% 1KHZ  0.3V  100Ω
Voltage   5000VAC 2S/2mA

Applications:

  • Compact fluorescent lamp
  • Television receiver
  • Radio cassette player
  • PC power supply
  • Monitor,audio,VCD,DCD
  • UPS
  • The electronic apparatus
  • The noise rejection
  • Induction cooker,etc.

 

Feature:
  • High current capacity
  • Low core loss at frequency
  • High reliability, efficiency
  • Small packaged size
  • Operating Temperature: -30°C to +80°C

 

Hemei Electronics is committed to advancing the progress and development of magneto-electric signal coupling measurement technology and source-less power supply technology as well as mid-range wireless transmission technology. If you are interested in our products, or have a need in this area, please feel free to contact us.



INQUIRY

Contact us for all information about the product


click here to leave a message

leave a message
If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.