Difference between revisions of "Spirit RPM Sensor"

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<languages />
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This sensor is HALL type which senses RPM by motion of the rotating magnets.
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Usually 1 - 2 neodymium magnets are mounted on the fan of combustion helicopters with a Nitro motor.</translate>
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; <translate><!--T:6-->
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Wire layout</translate>
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: <translate><!--T:7-->
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Orange wire: RPM Output Signal</translate>
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: <translate><!--T:8-->
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Red wire: Ground</translate>
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: <translate><!--T:9-->
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Brown wire: 3.3V - 15V</translate>
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<translate>Wiring Example</translate>
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[[File:SpiritSensor-connection.jpg|center|thumb]]
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== <translate><!--T:15-->
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Magnet mounting</translate> ==
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We highly recommend to orientate each magnet as '''Active''' for a proper operation.
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More magnets will result in a higher reading resolution thus increased readout precision.</translate>
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== <translate><!--T:17-->
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Governor Settings</translate> ==
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<translate><!--T:18-->
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When sensor is connected, please set the ''Sensor Divider'' parameter so that the value will represent count of the active magnets.
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Usually it is 1 or 2 magnets.</translate>
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[[File:<translate><!--T:19-->
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Gov-divider.png</translate>|center|thumb]]

Revision as of 11:39, 23 November 2021

Other languages:
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This sensor is HALL type which senses RPM by motion of the rotating magnets. Usually 1 - 2 neodymium magnets are mounted on the fan of combustion helicopters with a Nitro motor.

Wire layout
Orange wire: RPM Output Signal
Red wire: Ground
Brown wire: 3.3V - 15V


Wiring Example

SpiritSensor-connection.jpg

1 Magnet mounting

We highly recommend to orientate each magnet as Active for a proper operation. More magnets will result in a higher reading resolution thus increased readout precision.

2 Governor Settings

When sensor is connected, please set the Sensor Divider parameter so that the value will represent count of the active magnets. Usually it is 1 or 2 magnets.

Gov-divider.png