This Non-provisional application claims priority under U.S.C.§ 119(a) on Patent Application No(s). 094115569, filed in Taiwan, Republic Of China on May 13, 2005, the entire contents of which are hereby incorporated by reference.
The invention relates to choke coils, and in particular to choke coils capable of eliminating common mode noise, differential mode noise, and high-frequency noise.
Electronic devices are commonly used nowadays. Most of the electronic devices are driven by electricity. A common type of electricity from plugs in the wall is called alternating current. Alternating current usually generates noise due to power supply, high-frequency transformer, or operation of the parasitic capacitance and stray capacitance of other components in the device, commonly referred to as electrical interference.
Generally, noise generated when using alternating current includes differential mode noise and common mode noise. EMI filters can be the first defense against electromagnetic radiation. An EMI filter is mainly composed of a choke coil and a capacitor, and the choke coil can restrain generation of noise or prevent noise from entering the electrical devices or electrical apparatuses. Referring to
Therefore, in both economical and miniaturization of size considerations, a choke coil capable of eliminating both common mode noise and differential mode noise is desirous.
In view of the above, the present invention provides choke coils capable of eliminating common mode noise, differential mode noise, and high-frequency noise effectively. Also, it decreases manufacturing costs and occupied space.
An embodiment of a choke coil includes a bobbin, a coil and a core. The core is coupled to the bobbin and includes a first structure and a second structure. The first structure eliminates common mode noise, and the second structure eliminates high-frequency noise. The first structure is embedded in the second structure. The bobbin includes at least one cavity on a surface of the bobbin for accommodating the coil. The bobbin eliminates differential mode noise.
Another embodiment of a choke coil includes a bobbin, a coil and a core. The bobbin eliminates differential mode noise and high-frequency noise, and the core eliminates common mode noise. The bobbin has at least one cavity on a surface of the bobbin for accommodating the coil and the bobbin includes a through hole for allowing the core to pass therethrough. The core is coupled to the bobbin and has ferrite and a thin layer consisted of electrically conductive powders, wherein the ferrite is embedded in the thin layer. The ferrite includes iron, cobalt, nickel, or alloy thereof, and the thin layer includes polymers and highly electrically conductive powders which are selected from a group of carbon fiber, carbon powder, iron, silver, copper, gold, and a mixture thereof. The polymers are polyethylene, polyurethane, or other polymers with relatively low melting point.
The choke coil of the invention can filter and eliminate three different frequency ranges such as common mode noise, differential mode noise, and high-frequency noise by modulating composition of components in the choke coil.
The invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
The bobbin 21 is made of ferrite powders and polymers such as polypropylene or nylon. The ferrite powders are manganese-zinc-ferrite or nickel-zinc-ferrite. The first structure 231 is made of ferrite including iron, cobalt, nickel, or alloy thereof, and the second structure 232 is made of polymers and highly electrically conductive powders, such as carbon fiber, carbon powder, iron, silver, copper, gold, and a mixture thereof. The polymers are polyethylene, polyurethane, or other polymers with relatively low melting point. The second structure 232 is disposed around the first structure 231 by dipping or spraying.
Due to different composition, the bobbin 21 and the first structure 231 have different initial permeability (μ) . Because permeability of the bobbin 21 is less than that of the first structure 231, the bobbin 21 eliminates differential mode noise, and the first structure 231, made of ferrite, eliminates common mode noise. Moreover, the second structure 232 contains electrically conductive powders, which can eliminate high-frequency noise in frequency ranges corresponding to characteristics of the electrically conductive powders.
As the results, the choke coil of the invention capable of effectively eliminating common mode noise, differential mode noise and high-frequency noise. Also, the manufacturing costs and occupied space are decreased.
The choke coil of the invention can be applied in a filtering module for filtering noise in electrical appliances such as power supplies. Moreover, the choke coil can also be applied in an inductor for reduced size thereof.
While the invention has been described by way of example and in terms of preferred embodiments, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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94115569 | May 2005 | TW | national |