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In article kImTg.111$pS3.23@trnddc01,
"Dale Parfitt" wrote: " That was a self defeating test. The idea here is that you will have a lower noise floor in a locally noisy area with a shielded loop than a dipole antenna. There is going to be no advantage to using a loop over a dipole in an electrically quiet area. A shielded loop is not better at picking up a distant signal than a dipole but is less sensitive to local noise generators so in an area with high local noise you would have better signal to noise than a full size dipole antenna. Please see: http://www.w8ji.com/magnetic_receiving_loops.htm A nice page written by some amateur drawing wrong conclusions. Following his logic coax cable would not shield the center conductor either for example since the coax has to be open on both ends. He quotes a lot of good information and then spouts conclusion that don't follow. I don't have the patience to read the whole page but I scanned through it and for starters he does not seem to distinguish between far and near field energy. Far field has equal energy in the E and H fields so two antennas, example dipole and loop, that are strongly couple to one field and not the other generate the same power. No real difference then between antennas that are strongly affected by one field and not the other to far field signal or noise. Near field is a different story. Near field is what the local noise makers generate the most of and the electric tends to propagate farther than the magnetic from the source so you want to use an antenna that is sensitive to the H field for the same reason you try to get an antenna as far away from local noise sources as possible. You can see the logic in that right? And let's not forget about that very handy null in the loop pattern. I use that all the time on the AM portable with its built in loop stick antenna that is not even shielded. -- Telamon Ventura, California |
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