18239498. POWER TRANSMISSION COIL UNIT simplified abstract (TOYOTA JIDOSHA KABUSHIKI KAISHA)
Contents
- 1 POWER TRANSMISSION COIL UNIT
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 POWER TRANSMISSION COIL UNIT - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Potential Applications
- 1.6 Problems Solved
- 1.7 Benefits
- 1.8 Potential Commercial Applications
- 1.9 Possible Prior Art
- 1.10 How does the design of the protective member contribute to the overall durability of the power transmission coil unit?
- 1.11 What are the potential challenges in implementing this technology in different electronic devices or systems?
- 1.12 Original Abstract Submitted
POWER TRANSMISSION COIL UNIT
Organization Name
TOYOTA JIDOSHA KABUSHIKI KAISHA
Inventor(s)
Osamu Yamashita of Toyota-shi Aichi-ken (JP)
Naoki Iwata of Kasugai-shi Aichi-ken (JP)
Shinjiro Saigusa of Toyota-shi Aichi-ken (JP)
Sungmin Cho of Susono-shi Shizuoka-ken (JP)
Katsuya Kobayashi of Okazaki-shi Aichi-ken (JP)
Toshiya Hashimoto of Miyoshi-shi Aichi-ken (JP)
POWER TRANSMISSION COIL UNIT - A simplified explanation of the abstract
This abstract first appeared for US patent application 18239498 titled 'POWER TRANSMISSION COIL UNIT
Simplified Explanation
The power transmission coil unit described in the patent application includes a board with a component mounting part and a coil forming part, a core with a hole for housing electronic components, and a protective member at the front surface of the unit to receive applied loads.
- The board of the power transmission coil unit has a component mounting part and a coil forming part.
- The core is positioned against the back surface of the board and has a hole for housing electronic components.
- A protective member is located at the front surface of the unit to receive applied loads.
- A space is created on the back surface side of the protective member facing the component mounting part.
Potential Applications
The technology described in the patent application could be used in various electronic devices requiring power transmission coils, such as wireless chargers, RFID systems, and electric vehicles.
Problems Solved
This innovation solves the problem of protecting electronic components mounted on a board with a coil forming part while ensuring the unit can withstand applied loads.
Benefits
The power transmission coil unit provides a compact and efficient solution for integrating electronic components and coils, offering improved durability and reliability in various applications.
Potential Commercial Applications
The technology could be applied in the development of consumer electronics, automotive systems, industrial machinery, and medical devices, enhancing the performance and longevity of these products.
Possible Prior Art
One possible prior art for this technology could be the integration of coils and electronic components in various electronic devices, but the specific design and arrangement described in the patent application may offer unique advantages in terms of protection and load-bearing capacity.
Unanswered Questions
How does the design of the protective member contribute to the overall durability of the power transmission coil unit?
The design of the protective member plays a crucial role in ensuring the unit can withstand applied loads and protect the electronic components. By understanding the specific features and materials used in the protective member, we can better assess its impact on the unit's overall performance.
What are the potential challenges in implementing this technology in different electronic devices or systems?
While the patent application describes a specific design for the power transmission coil unit, there may be challenges in adapting this technology to various applications. Understanding the limitations and requirements of different devices or systems can help identify potential obstacles in implementing this innovation effectively.
Original Abstract Submitted
A power transmission coil unit provided with a board having at its back surface a component mounting part to which electronic components are mounted and a coil forming part at which a coil comprised of a conductor pattern is formed, a core arranged so as to abut against a back surface of the board and formed with a hole for housing the electronic components at a position facing the electronic components, and a protective member provided at a further front surface side of the power transmission coil unit than the component mounting part of the board and receiving a load applied to the power transmission coil unit. A space is formed on a back surface side of the facing portion of the protective member positioned at the location facing the component mounting part.
- TOYOTA JIDOSHA KABUSHIKI KAISHA
- Osamu Yamashita of Toyota-shi Aichi-ken (JP)
- Naoki Iwata of Kasugai-shi Aichi-ken (JP)
- Shinjiro Saigusa of Toyota-shi Aichi-ken (JP)
- Sungmin Cho of Susono-shi Shizuoka-ken (JP)
- Katsuya Kobayashi of Okazaki-shi Aichi-ken (JP)
- Toshiya Hashimoto of Miyoshi-shi Aichi-ken (JP)
- H01F38/14
- H01F17/04
- H01F27/28