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<journal-id journal-id-type="publisher">london-journal-of-engineering-research</journal-id>
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<journal-title>London Journal of Engineering Research</journal-title>
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<issn publication-format="print">2631-8474</issn>
<issn publication-format="electronic">2631-8482</issn>
<publisher><publisher-name>JournalsPress</publisher-name></publisher>
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<article-id pub-id-type="publisher-id">84729</article-id>
<title-group>
<article-title>The Manufacturing Method of the Field Driven Generator</article-title>
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<volume>22</volume>
<issue>4</issue>
<fpage>17</fpage>
<lpage>25</lpage>
<abstract><p>Today, the sun is a very useful energy source because it continuously radiates energy.　An electron is radiating energy continuously too. A new electrostatic generating method using this electron’s electric field energy as a driving force of charge carriers was invented, and its success was presented on ESA 2017 and ESA 2019 by a bench model. This new electrostatic generator was realized by asymmetric electrostatic force, which is a new phenomenon. The electric output of the bench model was only a few ten micro-watt. Then, it is confirmed by a simulation that the electric output becomes kilo-watt when parts size is reduced to 1/100. However, the simulated machine can’t be manufactured actually because it’s a lot of charge carriers are very small and complex. But this problem has been solved by a new shape of the charge carrier and its new manufacturing method.</p></abstract>
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<p>Today, the sun is a very useful energy source because it continuously radiates energy.　An electron is radiating energy continuously too. A new electrostatic generating method using this electron’s electric field energy as a driving force of charge carriers was invented, and its success was presented on ESA 2017 and ESA 2019 by a bench model. This new electrostatic generator was realized by asymmetric electrostatic force, which is a new phenomenon. The electric output of the bench model was only a few ten micro-watt. Then, it is confirmed by a simulation that the electric output becomes kilo-watt when parts size is reduced to 1/100. However, the simulated machine can’t be manufactured actually because it’s a lot of charge carriers are very small and complex. But this problem has been solved by a new shape of the charge carrier and its new manufacturing method. 

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