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Roy Lewallen wrote:
It's not clear to me what's meant by the voltage (presumably relative to ground) at the tip of a dipole. Suppose it's a quarter wavelength above ground. How would you measure it? Or, how would you measure the voltage at the top of a quarter wavelength vertical? Who said anything about measuring it? We know it exists and can cause corona in moist/salty circumstances. But I assume it could be measured using something like an artificial ground at the tip of the monopole. A dipole is akin to a leaky unterminated transmission line. The forward wave travels out to the ends of the dipole where it is reflected by the open circuit. Just as there is a large voltage at the end of an unterminated transmission line, there is a large voltage at the ends of an unterminated dipole (or at the end of a monopole). And just as we can make some assumptions and estimate the magnitude of the voltage at the end of an unterminated transmission line, we can make some assumptions and estimate the magnitude of the voltage at the end of an unterminated dipole. The voltage anywhere along a center-fed dipole is (Vfwd+Vref). The current anywhere along a center-fed dipole is (Ifwd+Iref). The feedpoint impedance of a dipole is (Vfwd+Vref)/(Ifwd+Iref) at the feedpoint. A CF dipole is a standing-wave antenna with the voltages in phase and maximum at the tips. The voltages are out of phase and minimum at the center feedpoint. All we need is an estimate of the feedpoint impedance if the dipole was terminated at each end thus turning it into a traveling-wave antenna. I estimated about 600 ohms which put the tip voltage in the same ballpark as Reg's estimate based on 'Q'. -- 73, Cecil http://www.qsl.net/w5dxp -----= Posted via Newsfeeds.Com, Uncensored Usenet News =----- http://www.newsfeeds.com - The #1 Newsgroup Service in the World! -----== Over 100,000 Newsgroups - 19 Different Servers! =----- |
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