Don: thanks for the suggestion, but I think I'd rather not bother with these XOs at all. The small one has the L-pad shaft snapped clean off and it just seams like too much trouble when making a new one is relatively easy.
On the subject of making new ones I started doing a little homework and getting my big toe wet in the huge learning curve pool. I have a question. In looking at JM's work with his 604B/E-cone design here:
He specifies a 1.6mH air core inductor @ .3 Ohms made from 16 AWG wire. However, when I look at this inductor calculator Shavano Music Online - Cross-Over Network; Air Core Inductor Calculator and plug in 1.6mH you get this result:
My confusion is that in order to get a .3 Ohm value you need 14 AWG wire, not 16.
Same with the 1.1mH. In order to get to his stated value of .235 Ohms, you also need 14 AWG wire.
Inquiring minds want to know what I'm missing.
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Things get dicey when you get to the 4.7mH. He calls for 14 AWG. Again, plugging into the calculator it seems I would need 230' of 14 AWG wire to make this inductor. That's a lot of copper.
If I make this 4.7mH inductor from 18 AWG wire, I only need 191' of much cheaper wire, but my DCR doubles from .58 to 1.22 Ohms.
The question is: what effect will that have on the whole loudspeaker package? I assume that more resistance will generate more heat and it will also absorb a percentage of the wattage available to the driver. Since I will likely be driving my 604s with 1.5W monoblocks, I would like to retain all the power I can.
So the bigger the gauge the better for this purpose? And at what point does the sublime meet the ridiculous?
BTW, after starting to shop for wire it made me realize that Bill's price for his 1600 XOs at $178 are quite reasonable: Altec Lansing GPA N1600 16 Crossover New | eBay . Copper t'aint cheap.







you might want to check how hot it gets there with a roaring fire before you find your horns drooping.

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