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Michael Black wrote:
HFguy ) writes: Joe Analssandrini wrote: John Plimmer wrote: There was also a long thread on this newsgroup that claimed the AOR 7030 had the best sync detector in the business, but I still punt the R8B as the 7030 sync was NOT sideband selectable, which is required for most good listening. Dear John, Contrary to what you write, the AR7030's synchronous detection circuit IS most definitely sideband-selectable and features double-sideband detection as well (so does the Drake R8B). It does not feature a "fixed" sideband selection as does the Drake R8B (or the Drake SW8/Grundig Satellit 800), but rather a "variable" one using the passband tuning. (You can tune the circuit this way as well on the Drake.) If your description (above) is technically accurate, the 7030 does not have a 'real' sideband sync' detector because it requires using the passband tuning to select the desired sideband in the double-sideband mode. The sideband sync' detector on the R8B uses phase cancellation for rejecting the unwanted sideband. This is a more effective rejection method than using only passband tuning. But are you arguing semantics, or outcome? Because the phasing method of selectable sideband reception is not as good as the filter method. A filter really knocks out the unwanted sideband, while the phasing method tends to give far less rejection of the unwanted sideband. Michael A sync' detector which implements sideband rejection using the quadrature method (phase shifting) allows the user to select one of two signals (either sideband) which are 180-deg. out of phase. This is a more effective way to reject the unwanted sideband of an AM signal than using *only* passband tuning. In the case of the R8B you can reject the unwanted sideband much better with the selectable sideband sync' than by using just the passband tuning. It occurred to me that we may be talking about different subjects, since you referred to phasing and filtering, which are two methods of bandwidth selection. |
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