18753816. LAMINATED COIL COMPONENT simplified abstract (Murata Manufacturing Co., Ltd.)
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 18753816 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 electronic devices and systems where high current handling and impedance characteristics are required, such as power supplies, transformers, and electrical filters.
Problems Solved: The technology addresses the need for components that can efficiently handle large currents while maintaining impedance characteristics across a wide frequency range.
Benefits:
- Improved performance in electronic devices
- Enhanced efficiency in power supplies and transformers
- Versatile applications in various electronic systems
Commercial Applications: The technology could have significant commercial applications in industries such as electronics manufacturing, power distribution, and telecommunications, where high-performance components are essential for reliable operation.
Questions about the Technology: 1. How does the laminated coil component achieve impedance across a wide frequency band? 2. What are the specific advantages of using this technology in power supplies compared to traditional components?
Frequently Updated Research: Stay updated on the latest developments in laminated coil components and their applications in electronic systems for improved performance and efficiency.
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.