Murata manufacturing co., ltd. (20240347266). LAMINATED COIL COMPONENT simplified abstract
Contents
LAMINATED COIL COMPONENT
Organization Name
murata manufacturing co., ltd.
Inventor(s)
Reiji Ozawa of Nagaokakyo-shi (JP)
LAMINATED COIL COMPONENT - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240347266 titled 'LAMINATED COIL COMPONENT
Simplified Explanation: The patent application describes a laminated coil component that can carry a large current and exhibit impedance across a wide frequency range.
Key Features and Innovation:
- Laminated coil component capable of handling high current
- Wide frequency band impedance acquisition
Potential Applications: The technology could be used in various electrical systems and devices that require components with high current-carrying capacity and impedance characteristics across a broad frequency spectrum.
Problems Solved: This innovation addresses the need for a coil component that can handle large currents while maintaining impedance over a wide range of frequencies.
Benefits:
- Enhanced performance in electrical systems
- Improved efficiency in handling high currents
- Versatile application in different devices and systems
Commercial Applications: The laminated coil component could find applications in industries such as telecommunications, power electronics, and automotive, where high current handling and impedance characteristics are crucial.
Prior Art: Readers can explore prior art related to laminated coil components, high current handling components, and impedance characteristics in electrical components to understand the novelty of this technology.
Frequently Updated Research: Stay updated on research related to laminated coil components, impedance characteristics, and high current handling in electrical components to understand the latest advancements in the field.
Questions about Laminated Coil Components: 1. What are the key advantages of using laminated coil components in electrical systems? 2. How does the impedance of a laminated coil component vary across different frequency bands?
Original Abstract Submitted
a laminated coil component through which a large current can flow and which is capable of acquiring an impedance in a wide frequency band.