18534896. INDUCTOR COMPONENT simplified abstract (Murata Manufacturing Co., Ltd.)

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INDUCTOR COMPONENT

Organization Name

Murata Manufacturing Co., Ltd.

Inventor(s)

Kenichi Tani of Nagaokakyo-shi (JP)

Yuuichirou Yoshida of Nagaokakyo-shi (JP)

INDUCTOR COMPONENT - A simplified explanation of the abstract

This abstract first appeared for US patent application 18534896 titled 'INDUCTOR COMPONENT

The abstract describes an inductor component with a body, a coil, and first and second outer electrodes. The coil is helically wound around an axis within the body, and the outer electrodes are electrically connected to the coil.

  • The coil is helically wound around an axis within the body.
  • The first and second outer electrodes are electrically connected to the coil.
  • The first outer electrode has end face and bottom face portions extending along the body.
  • The second outer electrode also has end face and bottom face portions extending along the body.
  • The axis is parallel to the bottom face of the body and forms an angle with the side faces.

Potential Applications: - Electrical circuits - Power electronics - Signal processing systems

Problems Solved: - Efficient energy transfer - Improved electromagnetic compatibility - Enhanced circuit performance

Benefits: - Increased inductor efficiency - Better signal quality - Enhanced overall system performance

Commercial Applications: Title: "Advanced Inductor Component for Enhanced Circuit Performance" This technology can be used in various industries such as telecommunications, automotive, and consumer electronics for improved circuit performance and energy efficiency.

Prior Art: Readers can explore prior art related to inductor components, coil design, and electromagnetic compatibility in electrical systems.

Frequently Updated Research: Stay updated on the latest advancements in inductor technology, coil winding techniques, and electromagnetic interference mitigation strategies.

Questions about Inductor Components: 1. How does the coil winding pattern affect the performance of the inductor component? 2. What are the key differences between traditional inductors and the innovative design described in the abstract?


Original Abstract Submitted

An inductor component includes a body, a coil, and first and second outer electrodes. The coil is in the body and is helically wound around an axis. The first outer electrode and the second outer electrode are at the body and are electrically connected to the coil. The first outer electrode includes a first end face portion extending along a first end face of the body and a first bottom face portion connected to the first end face portion and extending along a bottom face of the body. The second outer electrode includes a second end face portion extending along a second end face of the body and a second bottom face portion connected to the second end face portion and extending along the bottom face. The axis is parallel to the bottom face and forms an angle with respect to first and second side faces of the body.