AT115405B - Tube modulation circuit. - Google Patents

Tube modulation circuit.

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Publication number
AT115405B
AT115405B AT115405DA AT115405B AT 115405 B AT115405 B AT 115405B AT 115405D A AT115405D A AT 115405DA AT 115405 B AT115405 B AT 115405B
Authority
AT
Austria
Prior art keywords
modulation circuit
tube
tube modulation
voltage
grid
Prior art date
Application number
Other languages
German (de)
Inventor
Hans Dr Mayer
Original Assignee
Siemens Ag
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Siemens Ag filed Critical Siemens Ag
Application granted granted Critical
Publication of AT115405B publication Critical patent/AT115405B/en

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Description

  

   <Desc/Clms Page number 1> 
 



  Röhrenmodulationsschaltung. 



   Den Gegenstand der Erfindung bildet eine Röhrenmodulationsschaltung. durch die eine vollkommene lineare Abhängigkeit der Änderungen der   Trägerfrequenzamplitude   von den Änderungen des modulierenden Stromes gewährleistet wird. 



   Die Erfindung gründet sich auf folgende Überlegung : Wird dem Gitter einer Röhre eine Wechselspannung von der Trägerfrequenz aufgedruckt und der Arbeitspunkt der Gitterspannung entsprechend den Änderungen des steuernden Stromes hin und her bewegt (u. zw. im gekrümmten Teil der Anodenkennlinie), so wird zwar der Übertragungsgrad der Röhre und mit ihm die Ausgangsamplitude des Träger- 
 EMI1.1 
   . spannung, fa   = Anfangsspannung). Die Abhängigkeit ist bekanntlich nicht linear. 



   Erfindungsgemäss wird nun die Abhängigkeit des   Verstärkungsfaktors   von der Gitterspannung dadurch linear gemacht, dass die Modulationsschaltung aus zwei in Kaskade geschalteten Röhren gebildet wird, deren beiden Gittern zugleich die Steuerspannung aufgedruckt wird. Es herrschen dann folgende Verhältnisse : 
 EMI1.2 
 
 EMI1.3 
 wobei   8   die Steilheit. Ra der äussere Widerstand. Ri der innere   Rohrenwiderstand ist.   



   Für zwei in Reihe geschaltete Rohren ist dann der   Verstärkungsfaktor   
 EMI1.4 
 Wird nun   R" klein 'egen Ri angenommen.   so ist also 
 EMI1.5 
 
 EMI1.6 
 
 EMI1.7 
 

 <Desc/Clms Page number 2> 

 Setzt man nun (2) in   (1)   ein, so ergibt sich : 
 EMI2.1 
 
Hieraus folgt, dass bei zwei Röhren der   Verstärkungsfaktor   v linear von der   Gittervorspannung- Eg     der beiden Röhren abhängt. Dies wird durch die Kurve a'in Fig. 1 veranschaulicht. Die Verstärkung ist 0 für Eg = - D Ea.   
 EMI2.2 
 
 EMI2.3 
 
 EMI2.4 
 
 EMI2.5 
 
 EMI2.6 
 Setzt man hier   V   nach Gleichung (4) ein, so wird 
 EMI2.7 
 Unter   Vernachlässigung   aller Glieder, die b2 enthalten, erhält man hieraus 
 EMI2.8 
 
 EMI2.9 




   <Desc / Clms Page number 1>
 



  Tube modulation circuit.



   The subject of the invention is a tube modulation circuit. by which a perfectly linear dependence of the changes in the carrier frequency amplitude on the changes in the modulating current is ensured.



   The invention is based on the following consideration: If an alternating voltage of the carrier frequency is imprinted on the grid of a tube and the operating point of the grid voltage is moved back and forth according to the changes in the controlling current (e.g. in the curved part of the anode characteristic), the Transmission factor of the tube and with it the output amplitude of the carrier
 EMI1.1
   . voltage, fa = initial voltage). As is well known, the dependence is not linear.



   According to the invention, the dependence of the gain factor on the grid voltage is now made linear in that the modulation circuit is formed from two cascaded tubes, the two grids of which the control voltage is printed at the same time. The following conditions then prevail:
 EMI1.2
 
 EMI1.3
 where 8 is the slope. Ra the external resistance. Ri is the internal pipe resistance.



   For two pipes connected in series is then the gain factor
 EMI1.4
 If R "is now assumed to be smaller than Ri, then
 EMI1.5
 
 EMI1.6
 
 EMI1.7
 

 <Desc / Clms Page number 2>

 If we now insert (2) into (1), we get:
 EMI2.1
 
From this it follows that with two tubes the amplification factor v depends linearly on the grid bias Eg of the two tubes. This is illustrated by curve a ′ in FIG. The gain is 0 for Eg = - D Ea.
 EMI2.2
 
 EMI2.3
 
 EMI2.4
 
 EMI2.5
 
 EMI2.6
 If one substitutes V according to equation (4), then becomes
 EMI2.7
 Neglecting all terms that contain b2, one obtains from this
 EMI2.8
 
 EMI2.9


 
AT115405D 1927-06-24 1928-06-21 Tube modulation circuit. AT115405B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE115405X 1927-06-24

Publications (1)

Publication Number Publication Date
AT115405B true AT115405B (en) 1929-12-27

Family

ID=29276577

Family Applications (1)

Application Number Title Priority Date Filing Date
AT115405D AT115405B (en) 1927-06-24 1928-06-21 Tube modulation circuit.

Country Status (1)

Country Link
AT (1) AT115405B (en)

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