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Overunity Machines Forum



Color's Kapanadze forum, FE builds circuits and comments

Started by AlienGrey, February 03, 2019, 05:22:13 AM

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0 Members and 21 Guests are viewing this topic.

AlienGrey

Have you a copy or pointer to this video I would be most great full to you and thank you for knowing you.

AG

color

AlienGrey

My dad is investigating the case of manipulating the counting machine for the US presidential election.
There will be an announcement soon.
Please understand that we cannot comment for the time being.


color

인덕턴스코일(L)과 축전기(C)는 서로 다른 역할을 합니다. 코일은 전압이 전류보다 1/4주기가 앞섭니다. 반대로 축전기는 전류가 전압보다 1/4주기 앞섭니다. 왜냐하면 코일에서는 자기력선속(자기장)이 발생하여 전류의 흐름을 방해합니다. 따라서 전류가 느려집니다. 반대로 축전기는 전류가 흐르고 나서 전하가 채워지면 전압이 생깁니다. 이러한 반대작용을 하는 L과 C를 조합한 LC회로는 에너지소모가 없이 전기장과 자기장의 진폭이 변하지 않는 진동전류가 흐릅니다. 이러한 일정한 진동수를 이용하여 특정 전파를 공명시켜 필요한 전파만 수신하는 기능을 합니다. 이렇게 각각의 R, L, C의 기능을 조합하여 특정 목적에 사용합니다.
Inductance coil (L) and capacitor (C) play different roles. The coil has a voltage that precedes the current by a quarter cycle. Conversely, in capacitors, the current leads the voltage by 1/4 cycle. Because a magnetic flux (magnetic field) is generated in the coil, it interferes with the flow of current. So the current slows down. Conversely, a capacitor produces a voltage when a current flows and then the charge is filled. In the LC circuit that combines L and C, which acts in the opposite way, the vibration current flows without energy consumption and the amplitude of the electric and magnetic fields does not change. Using this constant frequency, it resonates a specific radio wave and receives only the necessary radio waves. In this way, each function of R, L, C is combined and used for a specific purpose.

1/4주기는, 코일 길이에 맞는 캐패시터 용량을 맞추면 되는 일입니다.
이것은 아주 쉬운 언어지만 루슬란이 어렵게 말해서 일부 유저들이 어렵다고 오해하는 것이다.
For 1/4 cycle, you can adjust the capacitor capacity to match the coil length.
This is a very easy language, but Ruslan speaks it hard and some users misunderstand it as difficult.




2015년 리액턴스 및 임피던스, 1/4주기 공명(Reactance and impedance, 1/4 cycle resonance)
https://www.youtube.com/watch?v=z-csbNdfQj0

2015년 발전기의 PSU는 24V/250W 용량을 사용했고,
Yoke-변압기는, 밑변 11.4cm짜리를 사용했습니다.
1차코일 12+12.
2차코일 14+14.

2016년 리액턴스 및 임피던스, 1/4주기 공명(Reactance and impedance, 1/4 cycle resonance)
https://www.youtube.com/watch?v=PkdOOqLykUQ

2016년 발전기의 PSU는 24V/150W 용량을 사용했습니다.
Yoke-변압기는, 밑변 9cm짜리를 사용했습니다.
1차코일 8+8.
2차코일 10+10

루슬란이 만든 회로도를 약간 응용해서 만들었다.

당시 나의 아빠가 기록한 각종 캐패시터와 각종 크기의 Yoke-변압기 실험표입니다.
자질구레한 실험 기록이 많지만 일부만 게시합니다.

Reactance and impedance, 1/4 cycle resonance, 2015
https://www.youtube.com/watch?v=z-csbNdfQj0

In 2015, the PSU of the generator used a capacity of 24V/250W,
The Yoke-transformer used a 11.4cm base.
Primary coil 12+12.
Secondary coil 14+14.

Reactance and impedance, 1/4 cycle resonance, 2016
https://www.youtube.com/watch?v=PkdOOqLykUQ

In 2016, the generator's PSU used a capacity of 24V/150W.
The Yoke-transformer used a 9cm base.
Primary coil 8+8.
2nd coil 10+10

It was made by applying some of the circuit diagram Ruslan made.

This is the test table of various capacitors and Yoke-transformers of various sizes recorded by my dad at the time.
There are many chore records of experiments, but only a few are posted.

특이사항은 테스터기로 측정했을 때, 다이오드 브릿지를 사용하든, 사용하지 않든 AC와 DC가 모두 측정됩니다.
그리고 아날로그 측정기와 디지털 측정기 모두 다른 측정값이 나옵니다.
테스터기의 고장이 아니라 발전기 자체가 그런 주파수를 만들어 냅니다.
그래서 테스터기는 어느정도 기준으로 삼고 전구의 밝기를 가지고 실험하는 것을 권장합니다.

https://www.youtube.com/watch?v=cgbJ1tE8izM
루슬란은 위 동영상에서 암페어가 속임수라고 말합니다.
사실이다.
암페어 측정기를 고용량으로 측정하면, 저용량의 암페어 측정기로 측정한 값이 나오지 않습니다.
그리고 측정된 암페어 값은 발전기를 만드는 회로와 사실상 관계가 없다.
발전기를 만드는 과정에서 미완성된 상태에서 일부 부품의 실험에 지나지 않습니다.

아래 기록은 그래서 의미가 덜하지만 한국인들을 위해서 참고용으로 게시합니다.

The peculiarity is that when measured with a tester, both AC and DC are measured with or without a diode bridge.
And both analog and digital measuring instruments have different measurements.
The generator itself generates those frequencies, not the tester failure.
Therefore, it is recommended to use the tester as a standard and experiment with the brightness of the light bulb.

https://www.youtube.com/watch?v=cgbJ1tE8izM
In the video above, Ruslan says Ampere is a trick.
It is true.
If the ampere meter is measured at high capacity, the value measured by the low volume ampere meter will not come out.
And the measured amperage value has virtually nothing to do with the circuit that makes the generator.
In the process of making the generator, it is only an experiment of some parts in the unfinished state.

The record below is therefore less meaningful, but is posted as a reference for Koreans.

전기에 정통한 여러 회원분들은 금방 이해하겠지만,
전기 초보자들은 이해하기 어려울 수도 있습니다.

그리고 질문은 받지 않겠습니다.
위 루슬란 회로도를 약간만 응용하면 되는 문제이기 때문입니다.

Many members who are savvy in electricity will quickly understand,
Biography beginners may find it difficult to understand.

And I won't answer any questions.
This is because it is a problem that requires a small application of the above Ruslan schematic.

Thaelin

Quote from: color on October 10, 2020, 09:01:31 AM
7 more Very Windy JEE Plum Island Problems
https://www.youtube.com/watch?v=ycOFyutOhi0

The coast of Costa Rica is better to go with a second lover than a wife who is not fun.


Sure wish I could live in Costa Rica and still draw my SS from the states. Bet it would be great.