18616240. MULTILAYER CERAMIC CAPACITOR simplified abstract (Murata Manufacturing Co., Ltd.)

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MULTILAYER CERAMIC CAPACITOR

Organization Name

Murata Manufacturing Co., Ltd.

Inventor(s)

Tatsunori Yasuda of Nagaokakyo-shi (JP)

Kazuki Kurokawa of Nagaokakyo-shi (JP)

MULTILAYER CERAMIC CAPACITOR - A simplified explanation of the abstract

This abstract first appeared for US patent application 18616240 titled 'MULTILAYER CERAMIC CAPACITOR

The abstract describes a multilayer ceramic electronic component with internal electrode layers alternately laminated with ceramic layers, step layers exposed at each end surface, and distances between layers that increase closer to one main surface than the other.

  • Multilayer ceramic electronic component
  • Internal electrode layers alternately laminated with ceramic layers
  • Step layers exposed at each end surface
  • Distances between layers increase closer to one main surface
  • Enhanced design for improved performance

Potential Applications: - Electronics manufacturing - Circuit board assembly - Consumer electronics

Problems Solved: - Improved component reliability - Enhanced electrical performance - Space-saving design

Benefits: - Higher efficiency - Increased durability - Enhanced functionality

Commercial Applications: Title: "Advanced Multilayer Ceramic Components for Electronics Industry" This technology can be used in various electronic devices, such as smartphones, laptops, and automotive systems, to improve performance and reliability.

Questions about Multilayer Ceramic Electronic Component: 1. How does the design of the component contribute to its overall performance?

  - The design allows for better electrical conductivity and reliability.

2. What sets this multilayer ceramic component apart from traditional electronic components?

  - The innovative layering and step design enhance the component's efficiency and durability.


Original Abstract Submitted

A multilayer ceramic electronic component includes a multilayer body including first and second internal electrode layers alternately laminated with ceramic layers and exposed at one of first and second end surfaces, first step layers on a same plane as a respective one of the second internal electrode layers and exposed at the first end surface, and second step layers on a same plane as a respective one of the first internal electrode layers and exposed at the second end surface. Each of the first step layers and a corresponding one of the second internal electrode layers have a distance therebetween that increases closer to the first main surface than the second main surface, and each of the second step layers and a corresponding one of the first internal electrode layers have a distance therebetween that increases closer to the first main surface than the second main surface.