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Claimed OU circuit of Rosemary Ainslie

Started by TinselKoala, June 16, 2009, 09:52:52 PM

Previous topic - Next topic

0 Members and 19 Guests are viewing this topic.

TinselKoala

Quote
The sound tells the story if you don't know the differences between ringing and the shhhhh or hissing, then you really ought to do more experiments. This is why these mosfets are used to generate white noise.

irfpg50 mosfet "white noise" - Google Search

Google returned no results for this search.

And as you can see from the patent claims of 7129797, a mosfet used as a white noise generator isn't wired up like yours is.

"1. A white noise generator comprising a MOSFET operated in its linear region and having zero source-drain DC bias current wherein the source or drain terminal of the MOSFETis connected to a gate terminal of a MOSFET amplifier and wherein the MOSFET amplifier is a multi-stage differential amplifier.

2. The white noise generator according to claim 1, wherein the source and drain terminals are at the same DC potential so as to prevent the flow of DC current through the MOSFET.

3. The white noise generator according to claim 1, wherein the MOSFET amplifier comprises: a first differential amplifier having positive and negative inputs for coupling to respective noise sources and having respective positive and negativeoutputs, a second differential amplifier having positive and negative inputs coupled to the positive and negative outputs respectively of the first differential amplifier, a positive output of the second differential amplifier fed back to a noise sourcecoupled to the negative input of the first differential amplifier, and a negative output of the second differential amplifier fed back to a noise source coupled to the positive input of the first differential amplifier.

4. The white noise generator according to claim 1, wherein the MOSFET amplifier is configured as a frequency dependent feedback amplifier that operates at DC and low frequencies as a unity gain amplifier and whose feedback is significantlyreduced at higher frequencies, whereby 1/f noise is attenuated since low frequencies are substantially not amplified."

Yucca

QuoteTK will have tested the circuit in all it's fantabulous glory beyond the limits normally humanly possible before closing the book and moving on from this cantakerous debacle

@.99,
great writing!

qiman

Quote from: MileHigh on August 07, 2009, 01:39:49 PMI assume that you mean that you are listening to the normal 2.4 KHz excitation frequency here - no oscillation.

More fraudulent disinformation.

2.4khz is for Rosemary's own circuit. Each circuit will have it's own frequencies that it operates best at.

And assuming my circuit must be at 2.4khz - that shows you have no idea about resonance and that each circuit will have it's own.

You say no oscillation - this is your misdirection attempt - please don't try.

The coil whining at a steady tone is non oscillation.

When the coil sounds turns into an aerosol spray can sound, that is oscillation with aperiodic frequency and the sound turns into WHITE NOISE.


You IGNORE that distinction I made to get people off the track of the truth and try to make people believe that there is only one sound and it doesn't correspond to oscillation.

If anyone here at overunity.com is reading this, please don't fall for that bogus fraud.

qiman

Quote from: TinselKoala on August 07, 2009, 01:49:01 PM
irfpg50 mosfet "white noise" - Google Search

Google returned no results for this search.

And as you can see from the patent claims of 7129797, a mosfet used as a white noise generator isn't wired up like yours is.

"1. A white noise generator comprising a MOSFET operated in its linear region and having zero source-drain DC bias current wherein the source or drain terminal of the MOSFETis connected to a gate terminal of a MOSFET amplifier and wherein the MOSFET amplifier is a multi-stage differential amplifier.

2. The white noise generator according to claim 1, wherein the source and drain terminals are at the same DC potential so as to prevent the flow of DC current through the MOSFET.

3. The white noise generator according to claim 1, wherein the MOSFET amplifier comprises: a first differential amplifier having positive and negative inputs for coupling to respective noise sources and having respective positive and negativeoutputs, a second differential amplifier having positive and negative inputs coupled to the positive and negative outputs respectively of the first differential amplifier, a positive output of the second differential amplifier fed back to a noise sourcecoupled to the negative input of the first differential amplifier, and a negative output of the second differential amplifier fed back to a noise source coupled to the positive input of the first differential amplifier.

4. The white noise generator according to claim 1, wherein the MOSFET amplifier is configured as a frequency dependent feedback amplifier that operates at DC and low frequencies as a unity gain amplifier and whose feedback is significantlyreduced at higher frequencies, whereby 1/f noise is attenuated since low frequencies are substantially not amplified."

Please don't misinform people. Transistors and MOSFETS has the ability to create "randomness" from the fluctuations in the oscillations. If you don't understand that, give up.

The typical circuits to create the white noise are not the same as this but the intrinsic property of the oscillation will give randomness in virtually every topology. This is a FACT.

qiman

resonance vid
http://www.youtube.com/watch?v=RyRCN6f5qig

The increase in heat production compared to input correlates
to the circuit being in resonance as shown.

Here are some pics of resonance and what is not resonance.