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Kenichi Nakata

Researcher at Toyota

Publications -  7
Citations -  551

Kenichi Nakata is an academic researcher from Toyota. The author has contributed to research in topics: Coil noise & Electromagnetic coil. The author has an hindex of 7, co-authored 7 publications receiving 551 citations.

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Patent

Non-contact power transmission apparatus

TL;DR: In this paper, a non-contact power transmission apparatus with an AC power source and a resonance system is described. But the primary side resonance coil is separated from the primary coil in an axial direction by a first distance, and the secondary coil from the secondary side resonance coils in the axial directions by a second distance, at least one of the first distance is adjusted to be a distance that is determined in advance in accordance with the impedance of the load so that the power transmission efficiency is maintained at a proper value.
Patent

Non-contact power transmission apparatus and method for designing non-contact power transmission apparatus

TL;DR: In this paper, a non-contact power transmission apparatus with a resonance system is described, which includes a primary coil to which an alternating voltage from an alternating-current source is applied, a primary-side resonance coil, a secondary side resonance coil and a secondary coil to connect a load to the primary coil.
Patent

Non-contact power transmission apparatus and power transmission method using a non-contact power transmission apparatus

TL;DR: In this paper, a non-contact power transmission apparatus with an AC power source and a resonant system is described, and a variable-impedance circuit is constructed to adjust its own impedance in accordance with the state of the system detected by the state detection unit, in such a way that the input impedance and the output impedance at the resonant frequency are matching.
Patent

Non-contact power transmission device and design method thereof

TL;DR: In this article, a non-contact power transmission device is disclosed, where the relationship between an input impedance of the resonant system and a frequency of an AC voltage of the AC power source is shown in a graph.
Patent

Resonance type non-contact charging device

TL;DR: In this article, a non-contact charging device with a high frequency power source, a secondary side resonant coil, a charger, and a secondary battery is described, and the stop control unit stops the high-frequency power source before stopping the charger when charging is to be stopped.