18583170. COIL DEVICE simplified abstract (TDK Corporation)

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COIL DEVICE

Organization Name

TDK Corporation

Inventor(s)

Kazunori Arimitsu of Tokyo (JP)

Kiichi Fujisawa of Tokyo (JP)

Masashi Hama of Tokyo (JP)

Nobuo Kitajima of Tokyo (JP)

Fuyuki Miura of Tokyo (JP)

Takehiko Narisawa of Tokyo (JP)

Masanori Sato of Tokyo (JP)

COIL DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18583170 titled 'COIL DEVICE

The abstract of the patent application describes a coil device with a wound portion, a leadout portion, a terminal with a wire connecting portion, and an element body covering these parts. The winding axis of the wound portion is perpendicular to the mounting facing surface of the element body. The leadout portion has a bent portion that protrudes inward along the winding axis, with an obtuse inner angle.

  • The coil device features a wound portion, leadout portion, terminal, and element body.
  • The winding axis of the wound portion is perpendicular to the element body's mounting facing surface.
  • The leadout portion includes a bent portion with an obtuse inner angle for inward protrusion.

Potential Applications: - Electrical components - Electronic devices - Automotive systems

Problems Solved: - Efficient leadout design - Compact coil device structure

Benefits: - Improved electrical connectivity - Space-saving design - Enhanced performance

Commercial Applications: Title: Innovative Coil Device for Enhanced Electrical Connectivity This technology can be used in various industries such as electronics, automotive, and telecommunications for improved electrical connectivity and space-saving design.

Questions about Coil Device: 1. How does the leadout portion of the coil device contribute to its overall performance? The leadout portion's design allows for efficient electrical connectivity and space-saving benefits. 2. What are the potential applications of this coil device in the automotive industry? This coil device can be used in automotive systems for improved electrical connectivity and compact design.


Original Abstract Submitted

A coil device has a wound portion, a leadout portion led out from the wound portion, a terminal including a wire connecting portion connected to the leadout portion, and an element body covering the wound portion, the leadout portion and the wire connecting portion. A winding axis of the wound portion is perpendicular to a mounting facing surface of the element body. The leadout portion has a bent portion bent so as to protrude inward when viewed along the winding axis, and an inner angle of the bent portion is an obtuse angle.