Film capacitors, also known as plastic capacitors, ceramic capacitors and Mylar capacitors, are capacitors utilizing polyester film, polypropylene film, Teflon film, polycarbonate film, metalized film, or other plastic films as dielectric mediums. They offer a wide range of electrical characteristics which are usually superior to traditional ceramic capacitors. Common advantages of film capacitors include low nature temperature stability, high dielectric strength, low loss, long life, and low leakage current, making them ideal for many different applications.
BFC247012184 Application Field and Working Principle
The BFC247012184 is a film capacitor designed for installations requiring high capacitance in a very small case size. Due to its excellent performance characteristics, the device is an excellent choice for automotive, industrial, medical, and many more applications. Its autotuned construction ensures reliable performance for all applications. The device offers an excellent capacitance tolerance over a wide temperature range, and its low ripple current capability makes it ideal for electronic equipment requiring stable voltage.
The working principle of the BFC247012184 is based on the same principles as any other capacitor, in which two conducting plates are separated by an insulating material. The conducting plates have an electric charge applied to them, which creates an electrostatic field between them. The electrostatic field stores energy, which is released when the two plates are shorted. The BFC247012184 operates within these principles, harnessing the power of the electrostatic field and converting the electrical energy to useful work.
Conclusion
The BFC247012184 is an excellent film capacitor for a variety of different applications. Its autotuned construction ensures reliable performance and excellent capacitance tolerance over a wide temperature range. Its low ripple current capability makes it ideal for electronic equipment and its small size is perfect for applications where space is at a premium.