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![]() I've pretty much decided to go ahead and build a T2FD "radiating dummy load", hopefully for use from 2 to 24 MHz. This will be almost (but not quite) exclusively for receiving, wherein my limiting factor is usually noise anyway, rather than antenna efficiency. If somebody appears on one of the frequencies I scan that I want to talk to, if he's not S9 or better I'll likely switch over to a "real" antenna. But, the occasional use for transmitting means I'll need the appropriate power resistor on the load end (100 watts or so). You guys have suggested googling for "T2FD" and "TTFD" and I have done that, but I haven't yet found anything that really lays out how to design and build one of these things, what the formulas are, etc. Some of the Google hits suggest using baluns and resistor values all the way from 11:1 balun, 550 ohm resistor, and 50-ohm coax to 4:1 balun, 300-ohm resistor, and 75-ohm coax. Some seem to imply that one should use a resistor value equal to the coax impedance times the balun ratio, and others say that the resistor value should be some percent higher than the coax impedance times the balun ratio (one site suggested 75 ohm coax, 4:1 balun, and 390-ohm resistor). Obviously I'd like to do this a cheaply as possible and I do have a W2AU 4:1 balun sitting on the shelf here, so would 50 or 75 ohm coax, 4:1 balun, and anywhere from 300 to 390 ohms for the terminating resistor work as well as a higher resistance value and a higher ratio, scarce, and more expensive balun? I have seen formulas, which I can no longer find, that say what the length should be for a given minimum frequency, and what the spacing between the conductors should be. I assume that the spacing of the conductors has a lot to do with the balun ratio and terminating resistor. I guess if I can find the length, conductor spacing, and terminating resistor value needed for 2 MHz minimum and 4:1 W2AU balun I should be all set. Thanks... |
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