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https://www.google.com/search?client=firefox-b&ei=DU7YW_OWNIW55gLl_LXwCA&q=+carrier+derived+from+a+TTL+signal%3F&oq=+carrier+derived+from+a+TTL+signal%3F&gs_l=psy-ab.12...25558.31036.0.33024.2.2.0.0.0.0.180.360.0j2.2.0....0...1c.1.64.psy-ab..0.0.0....0.vvkf7aJhfHM https://www.google.com/search?client=firefox-b&ei=DU7YW_OWNIW55gLl_LXwCA&q=+carrier+derived+from+a+TTL+signal%3F&oq=+carrier+derived+from+a+TTL+signal%3F&gs_l=psy-ab.12...25558.31036.0.33024.2.2.0.0.0.0.180.360.0j2.2.0....0...1c.1.64.psy-ab..0.0.0....0.vvkf7aJhfHM
here have fun i am lazy today ..
(H)
---In [email protected], <mkjekyll@...> wrote :
Hector,
What is the carrier is derived from a TTL signal?
On 10/28/2018 6:37 AM, arkresearch@... mailto:arkresearch@... [EVGRAY] wrote:
Any signal has 2 conditions , current and voltage in phase = NON broadcasting !
Current and voltage 90deg off phase ( broadcasting ) RADIANT !! = RE
audio amp ( no LC tanks or stages )
RF amp LC tanks and or stages ......RF = RE .
the best option is to convert HF,VHF ,UHF to RF in the final antenna coupling stage after the coaxial end , coaxial capacitance taken into the equation ..
yes is complex as hell , but as i see i was the first to couple power engineering with RF engineering , RV is testimony to that .. so !
This information is proprietary:
ARK Research © 1999,2018 Public Disclosure ,
Not for patent or scientific papers Thesis .
reproduce & print with source statement OCT 28 2018
Hector Perez Torres
arkresearch@... mailto:arkresearch@...
ARK Ω
print & keep so you people later can challenge patents made from this PUBLIC info !
(H)
---In [email protected] mailto:[email protected], <mkjekyll@...> mailto:mkjekyll@... wrote :
Hector,
Where or when does an RF transmitter get it's leading power factor? I
do not fully understand your position of RF always being leading vs unity.
For instance is an RF amp designed to have a different power factor than
an audio power amp or are they the same until the signal arrives at the
loading?
I don't see how the power factor becomes leading until loaded by the
capacitive load antenna therefore designing the most efficient feedline
the transmitter power amp should sit right at the antenna.