Notch-Filter for Transverter

5 messages · 2018-10-09T17:35:39+00:00 → 2018-10-10T20:36:40+00:00

[1/5] Notch-Filter for Transverter

2018-10-09T17:35:39+00:00 · Sven Friedrich <[email protected]>
Message-ID: <[email protected]>
Hello Hector and All,

I did not quite understand the filter network between the transverter and the diode plug. The two capacitors with the inductors could give this network. So I could only transfer the narrow band to the diode plug. When the transverter goes into saturation and the current spike arises, that's actually a higher frequency hidden in the tip, actually, I just want to transfer the narrow band because it's the actual energy we want to extract. I hope I'm right. I have a link from a computer stored here is only in German.
 

 https://www.electronicdeveloper.de/filterpassivbandsperrelcpi_vollglied_3o.aspx https://www.electronicdeveloper.de/filterpassivbandsperrelcpi_vollglied_3o.aspx

 

 regards

Sven
Yes the higher Q the narrower the band becomes so its more efficient to use narrower frequency tanks to transfer the side bands into positive & negative vectors into usable joule potential within a capacitor recipient of the energy as is transferred from RE sine wave into dc potential half waves spikes  ( transversion ) diode plug ! in hi Q resonance the center of the sinewave becomes a peak loosing the side lobes and becoming extremely narrow banded at the center ( here we got also Normans neutral spike ! ) 

(H) 
 

---In [email protected], <s.friedrich@...> wrote :

 Hello Hector and All,

I did not quite understand the filter network between the transverter and the diode plug. The two capacitors with the inductors could give this network. So I could only transfer the narrow band to the diode plug. When the transverter goes into saturation and the current spike arises, that's actually a higher frequency hidden in the tip, actually, I just want to transfer the narrow band because it's the actual energy we want to extract. I hope I'm right. I have a link from a computer stored here is only in German.
 

 https://www.electronicdeveloper.de/filterpassivbandsperrelcpi_vollglied_3o.aspx https://www.electronicdeveloper.de/filterpassivbandsperrelcpi_vollglied_3o.aspx

 

 regards

Sven

[3/5] Re: Notch-Filter for Transverter

2018-10-10T10:28:33-07:00 · Sven Friedrich <[email protected]>
Message-ID: <[email protected]>
Can I use the link to perform the calculations roughly? The narrowband why does it change so, in the narrow peak the higher frequencies are summarized, I have nowhere clear explanations for the narrow band found.

I'm still googling to understand the context correctly. If I can think like a radio technician everything will be easier for me.

I think with smaller coupling capacitors I can transfer the tip and thus better tune the diode-plug circuit.

I will install a measuring shunt on the diode plug side of the transfer capacitors and measure current and voltage with the oscilloscope.

regards

Sven
As Miles Davis said 6/8 is really funky


On 10/10/2018 1:36 PM, [email protected] [EVGRAY] wrote:
>  
>
> remember your voltage rose within a logarithmic path along the Q gain
> and your band narrowing results in a higher voltage spike at the
> center , so capacitor voltage value and farad value needs to be
> calculated for the semy resonant joule charge transfer into it !
>
> I had mentioned one frequency to create the RE spike another to
> extract its energy...
>
> (H)
>
>
remember your voltage rose within a logarithmic path along the Q gain and your band narrowing results in a higher voltage spike at the center , so capacitor voltage value and farad value needs to be calculated for the semy resonant joule charge transfer into it ! 

I had mentioned one frequency to create the RE spike another to extract its energy...

(H)