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In article ,
Morgans wrote: "RST Engineering" wrote in message ... Yes, all of the below. Sometimes you drill a hole in a small magnet and use a small screw to hold it to the propeller backing plate. Sometimes you use a strip of reflective tape on the prop itself. Sometimes you use a pulse from the #1 magneto lead. Jim This guy was talking about a notch and proximity detector for the phase detection. I know about all of the things you mentioned, but the proximity detector's workings are new to me. Think of a proximity detector as 'ultra short-range radar'. grin It may use reflected RF energy, or 'optical'. where the 'excursions' you're trying to measure are smaller than the wavelength of the measuring 'beam', you can use simple phase-shift between outgoing and returning signal, to determine distance. where the distance is much larger than the wavelength, you have to impress a carrier on the beam, and measure phase-shift in the carrier frequency. this gets an 'approximate' distance, that can be further refined by phase angle measurements of the beam itself. Capacitance tracking is also a possible approach. and/or "Hall effect". These can get 'messy', due to inherent non-linearity in the technology, that has to be compensated for, in 'reading' the signals. Capacitance tracking works best where there are *very*small* vibrations involved, and a very _smooth_ surface to measure against. The technique is capable of mapping individual atoms/molecules in a crystal lattice. Scientific American had a write-up -- at least 15 years ago -- about a new 'super microscope' (successor generation to the scanning electron microscope) that worked in that manner. a _very_fine_ 'needle' was carefully moved, raster-style, across the object being 'scanned', and the capacitance changes between the needle and the object were mapped. |
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