18490358. COIL COMPONENT simplified abstract (TDK CORPORATION)

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COIL COMPONENT

Organization Name

TDK CORPORATION

Inventor(s)

Hokuto Eda of Tokyo (JP)

Masataro Saito of Tokyo (JP)

Kohei Takahashi of Tokyo (JP)

Takamasa Iwasaki of Tokyo (JP)

Hiroki Asafusa of Tokyo (JP)

Takahiro Nemoto of Tokyo (JP)

COIL COMPONENT - A simplified explanation of the abstract

This abstract first appeared for US patent application 18490358 titled 'COIL COMPONENT

Simplified Explanation: The patent application describes a coil component with multiple coils, where the current flow between the coils is optimized to reduce stray capacitance.

  • The coil component includes multiple coils, with the first coil having a shorter current route to the second coil portion, reducing voltage drop and minimizing stray capacitance.
  • By optimizing the current flow within the coil component, the stray capacitance between coils and external terminals is significantly reduced.

Key Features and Innovation:

  • Coil component with multiple coils.
  • Optimized current flow to reduce stray capacitance.
  • Minimized voltage drop in the outer peripheral turn of the second coil portion.

Potential Applications:

  • Electronics manufacturing.
  • Power transmission systems.
  • Electrical engineering.

Problems Solved:

  • Minimizing stray capacitance between coils.
  • Reducing voltage drop in coil components.

Benefits:

  • Improved efficiency in electronic systems.
  • Enhanced performance of power transmission.
  • Reduced interference in electrical circuits.

Commercial Applications: The optimized coil component can be used in various electronic devices, power systems, and electrical circuits to improve performance and reduce interference.

Prior Art: Readers can explore prior patents related to coil components, current optimization, and stray capacitance reduction in electrical systems.

Frequently Updated Research: Stay updated on the latest research in coil component design, current optimization techniques, and advancements in reducing stray capacitance in electronic devices.

Questions about Coil Components: 1. How does optimizing current flow reduce stray capacitance in coil components? 2. What are the potential applications of coil components with reduced stray capacitance?


Original Abstract Submitted

Since the coil body of the coil component includes a plurality of coils and the first coil is one of the plurality of coils included in the coil body, the current route from the external terminal of the first to the outer peripheral turn of the second coil portion where stray capacitance occurs is significantly shorter than the route of current flowing between the pair of external terminals, and the voltage drop in the outer peripheral turn of the second coil portion is relatively small, so that stray capacitance between the second coil portion and the first external terminal is small.