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Hi all!There are some new exciters available from HiWave at Parts Express:http://www.parts-express.com/wizards/searchResults.cfm?srchExt=CAT&srchCat=634 - the most interesting one is the HiWave HIAX32C20-8 32mm Self Supported Exciter.http://www.parts-express.com/pe/showdetl.cfm?Partnumber=297-2114Although it has a power rating of 30W rms I doubt it is the best choice for low frequency reproduction because of restricted excursion capabilties due to its mechanical design. Nevertheless I think it's a big step in the right direction - especially regarding cost effectiveness.I've also performed extensive tests on the AR-50 during the last months - in my opinion it is no match to the HiWave exciters - soundwise and also regarding sensitivity - however their rugged, waterproof design offers some interesting ways of use. Another interesting design I came across is the following:http://usfps.com/mcma-transducers_en.htmlThe FPS0105HY-02 hybrid speaker seems to be an interesting toolregards-m
This is self supporting also, 32 mm voice coil diameter, and long excursionhttp://www.parts-express.com/pe/showdetl.cfm?Partnumber=297-224
Good find! I did not recognize this one because it looks the same as the Dayton Audio DAEX32 Balanced Exciter 32mm which has only a power rating of 10W rms. Nevertheless i suspect its suspension system is rather stiff.@ zygadr:I would not underestimate those little 11mm exciters - seriously 0,5W rms is not so bad keeping the size in mind - they allow for only 25mm center to center spacing - in a line array arrangement and have 32 ohms impedance - so its possible to wire up 8 in parallel for a 4 ohm total impedance. They also seem to be "balanced" (at least the HiWave HIAX11C005-32/LP 11mm Low Profile Exciter) - this is a big plus regarding reliability and will prevent "thumbling" at higher excursions and hence reduce distortion in comparision to the not balanced ones. Imagine a 1.6m or taller panel with 64 of these exciters in series parallel wiring. This will be as close as you can get to a real continous line source with single exciters - serious side lobes will start in the range above 10khz and powerhandling will be 32W rms in total. Using the right panel properties for these little suckers (quite thin, not too stiff) could improove several high frequency problems in comparision to former designs substatially and also could boost efficiency (also due to less spl drop per distance doubling) so that the power handling capability will be less of an issue. According to my experiments with close exciter spacing it will also bring the soundstage more in front, right in your face because the nearfield is extended not only for the lower frequency range (large panel with several evenly spaced exciters), also the higher ones - remember the very good paper of Mr. James Griffin on Near Field Line Arrays posted some time ago here in this thread. Most of the principles do definitely apply for this kind of transduction althoug the close coupling of the drive units complicates the whole thing a bit. There would be a big difference to an arrangement with just a few exciters spaced about one foot apart. Bass performance is another story - in my opinion the requirements for panel properties for a linear high and low frequency transduction are some kind of conflicting, but this is a matter that could fill a whole new thread of it's own. Anyway - just give it some thought.regards-mP.S.:I just visited the HiWave homepage and found it interesting that the power rating specifications are not really consistent - see for youself:taken from the HiWave homepage:and the datasheets:http://www.hi-wave.com/downloads/datasheets/DS-HIAX25C15-8SF.pdfhttp://www.hi-wave.com/downloads/datasheets/PDS-HIAX32C20-8.pdfhttp://www.hi-wave.com/downloads/datasheets/DS-HIAX32C30-4B.pdfGenerally the test methods for the automotive sector are among the strictest ones so the HIAX32C30 which was developed for this use is most likely the most robust one in the field. Also interesting is that only the maximum mechanical excursion (peak to peak) is specified, not the linear one - so at the given excursion the distortion figures will be quite high.