Latest Keppe Motor news: Efficiency Test – 1 HP motor

On May 31st, 2016 performance tests were carried out on Keppe Motor at Advanced Energy motor laboratory, in the United States.
Four prototypes of permanent magnet motors were tested in the presence of three representatives of Keppe Motor.
The TABLE below presents the summary of some key results obtained in the tests carried out on May 31st, 2016 at ADVANCED ENERGY motor laboratory on a single-phase KEPPE MOTOR, rated 1 HP.
[table style=”style2″]
[table_open_row]
[table_title]Speed (rpm)[/table_title]
[table_title]Torque (Nm)[/table_title]
[table_title]*Stator Temperature increase (°C)[/table_title]
[table_title]Power Input(W)[/table_title]
[table_title]Power Output(W)[/table_title]
[table_title]HP fraction[/table_title]
[table_title]Efficiency(%)[/table_title]
[/table_open_row]
[table_open_row]
[table_content]2.000[/table_content]
[table_content]1,77[/table_content]
[table_content]4,6[/table_content]
[table_content]428,3[/table_content]
[table_content]369,7[/table_content]
[table_content]1/2[/table_content]
[table_content]86,3[/table_content]
[/table_open_row]
[table_open_row]
[table_content]2.500[/table_content]
[table_content]1,41[/table_content]
[table_content]6,5[/table_content]
[table_content]421,9[/table_content]
[table_content]369,1[/table_content]
[table_content]1/2[/table_content]
[table_content]87,5[/table_content]
[/table_open_row]
[table_open_row]
[table_content]3.000[/table_content]
[table_content]1,77[/table_content]
[table_content]7,0[/table_content]
[table_content]629,1[/table_content]
[table_content]555,9[/table_content]
[table_content]3/4[/table_content]
[table_content]88,4[/table_content]
[/table_open_row]
[table_open_row]
[table_content]3.300[/table_content]
[table_content]1,59[/table_content]
[table_content]6,7[/table_content]
[table_content]618,0[/table_content]
[table_content]548,4[/table_content]
[table_content]3/4[/table_content]
[table_content]88,7[/table_content]
[/table_open_row]
[table_open_row]
[table_content]3.600[/table_content]
[table_content]2,00[/table_content]
[table_content]7,2[/table_content]
[table_content]844,8[/table_content]
[table_content]752,4[/table_content]
[table_content]1[/table_content]
[table_content]89,1[/table_content]
[/table_open_row]
[/table]

The figures in the following summary table were taken from a worldwide renowned motor manufacturer catalogue and serve as reference for comparison with the Keppe Motor. The motors related are industrial-type single-phase, 2-pole induction motors and are used for different applications.

[table style=”style2″]
[table_open_row]
[table_title]MOTOR TYPE(All Single-phase motors)[/table_title]
[table_title]Speed(rpm)[/table_title]
[table_title]HP fraction(Output)[/table_title]
[table_title]Efficiency(%)[/table_title]
[/table_open_row]
[table_title]NEMA 48 and 56/ JET PUMP[/table_title]
[table_open_row]
[table_content][/table_content]
[table_content]3465[/table_content]
[table_content]1/2[/table_content]
[table_content]60,3[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3535[/table_content]
[table_content]3/4[/table_content]
[table_content]59,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3520[/table_content]
[table_content]1[/table_content]
[table_content]63,5[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[/table_open_row]
[table_title]JET PUMP SPLIT-PHASE[/table_title]
[table_open_row]
[table_content][/table_content]
[table_content]3465[/table_content]
[table_content]1/2[/table_content]
[table_content]60,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3535[/table_content]
[table_content]3/4[/table_content]
[table_content]65,4[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3520[/table_content]
[table_content]1[/table_content]
[table_content]66,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[/table_open_row]
[table_title]IP55 for RURAL use[/table_title]
[table_open_row]
[table_content][/table_content]
[table_content]3465[/table_content]
[table_content]1/2[/table_content]
[table_content]55,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3510[/table_content]
[table_content]3/4[/table_content]
[table_content]60,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3500[/table_content]
[table_content]1[/table_content]
[table_content]67,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[/table_open_row]
[table_title]JET PUMP with built-in Flange[/table_title]
[table_open_row]
[table_content][/table_content]
[table_content]3470[/table_content]
[table_content]1/2[/table_content]
[table_content]65,5[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3480[/table_content]
[table_content]3/4[/table_content]
[table_content]68,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content]3480[/table_content]
[table_content]1[/table_content]
[table_content]67,0[/table_content]
[/table_open_row]
[table_open_row]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[table_content][/table_content]
[/table_open_row]
[/table]
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About Keppe Motor

The Keppe Motor is a highly efficient motor that uses the principle of electromagnetic resonance to optimize its efficiency. It was developed by three researchers, Carlos Cesar Soós, Alexandre Frascari and Roberto Heitor Frascari, based on the discoveries of the scientist Norberto da Rocha Keppe, set forth in his book “The New Physics Derived From A Disinverted Metaphysics,” first published in France, 1996.

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