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G8MNY  > TECH     21.03.15 11:06l 92 Lines 4597 Bytes #999 (0) @ WW
BID : 25689_GB7CIP
Read: GUEST
Subj: DC current sources for coax/AF.
Path: IW8PGT<IZ3LSV<I0OJJ<GB7CIP
Sent: 150321/0843Z @:GB7CIP.#32.GBR.EURO #:25689 [Caterham Surrey GBR]
From: G8MNY@GB7CIP.#32.GBR.EURO
To  : TECH@WW

By G8MNY                                          (Updated May 09)
(8 Bit ASCII graphics use code page 437 or 850, Terminal Font)

HIGH Z CURRENT SOURCES.
There is a method often used for powering a TV camera over its video coax,
where a choke feed that could be used in RF applications just won't work.
Similar circuits can be used for balance mic lines were lossy resistor feeds
are not wanted.

C A M E R A   F E E D
+ve supply e.g. +24V @ 1A                         M I C   F E E D
ÄÄÄÄÄÄÂÄÄÄÄÄÄÄÄÄ¿                           +ve supply e.g. >+48V @ 10mA
      ³        0.5ê                            ÄÄÄÂÄÄÄÄÂÄÄÄÄÄÄÄÂÄÄÄÄ¿
     +³         ³                                 ³   100ê     ³   100ê
100u ===      ³/e                             47uF³+   ³   47uF³+   ³
      ³    ÚÄÄ´ TIP                              === ³/e      === ³/e
      ³  ³/e  ³\                                  ÃÄÄ´         ÃÄÄ´
      ÃÄÄ´      ³                                1M  ³\       1M  ³\
    100k ³\     ³                           47uF+ ³    ³       ÃÄÄÄÄÁÄ> To
      ÀÄÄÄÄÁÄÄÄÄ´ +12V nominal          AF <ÄÄ´ÃÄÄÁÄÄÄÄÁÄÄÄÄÄÄÄ)ÄÄÄÄÄÄ> Mic
Video         + ³                      Kit <ÄÄÄÄÄÄ´ÃÄÄÄÄÄÄÄÄÄÄÄÙ
Kit ÄÂÄ <ÄÄÄ´ÃÄÄÁÄÄÄÄ>DC to camera               47uF +
    75ê   1000uF     & Video from it
 ÄÄÄÄÁÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ>

In the camera feed due to the high current a PNP darlington arrangement is used
to amplify the DC through a 100k. The 100k value is dependent on the camera
DC load & adjusted to get the working voltage e.g. 12V to the camera. The video
can pass unimpaired as the 100uF decouples all the video frequencies from the
current source, effectively making the power feed look like a resistor of
100k/(HFE1*HFE2) + a huge AC choke where Xl = (HFE1*HFE2)/Xc. The emitter R
increases the voltage swing for any current changed making it more linear &
maintaining a high collector Z (constant current).

The Mic circuit is much the same but no darlington needed as lower current, but
low noise transistors needed for a balanced or single ended line. Power rail
hum decoupling is not really needed in either of these circuits.

HIGH Z DC LOADS.
To extract the line DC a reverse circuit is used normally with a regulator.
Some regulator IC can be used, providing they are not unstable with no input
Caps.
                                                                 +     /³
                                     Line + <ÄÄ68êÄÂÄÄÄÄÄÂÄÄÄÄÄÄÄÄ´ÃÄ<'b³
+ COAX       +                       with DC        \³ 100k     47uF  `\³
<ÄÄÄÂÄÄÄÄÂÄÄÄÄ´ÃÄÄÄÄÄ< Camera                        ÃÄÄÄ´
   1k  ³/    1000uF   Video                        e/³   ³     +19.5V
    ÃÄÄ´ TIP                                       ÃÄÄÄÄÄ)ÄÄÄÄÄÄÄÄÄÄÄÄÂÄÄÄ¿+
    ³  ³\e                                         e\³   ÃÄÄÄ¿       +³  ===
   _³_   ÃÄÄÄÄÄ>                                     ÃÄÄÄ´  _³_20V    ³   ³47u
9V /_\' +³100u   8.5V DC             DC +           /³ 100k /_\' +    ³/³ ³
    ³   ===      to Camera           Line - <ÄÄ68êÄÁÄÄÄÄÄÁÄÄÄ)ÄÄÄÄ´ÃÄ< a³ ³
ÄÄÄÄÁÄÄÄÄÁÄÄÄÄÄ>                                             ³  47uF -³\³ ³
C A M E R A   S U P P L Y           Shield  <ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÁÄÄÄÄÄÄÄÄÁÄÄÄÁÄ
                                          M I C   A M P    S U P P L Y


For mic preamps just 2 Rs are often used to feed the decoupled rail for the
preamp ICs & no transistors, but these circuits are better!

RF APPLICATIONS
For a fixed frequency or band of frequencies (HF) often a choke & capacitors
will do to isolate a DC path from RF.
              C                                  C
  Tx/Rx o)ÄÄÄÄ´ÃÄÄÂÄÄ0========coax=========0ÄÄÄÂÄÄ´ÃÄo)Aerial
                 L)  ³                     ³  L)   
Control DC>ÄÄÂÄÄÄÄÙ  ³                     ³   ÀÄÄÄÄÄÂÄÄ>Relay/ATU/Preamp   
            === C    ³                     ³        === C 
          ÄÄÄÁÄÄÄÄÄÄÄÙ                     ÀÄÄÄÄÄÄÄÄÄÁÄÄÄÄÄ             

C must be big so that Xc < Z (2x 50ê) e.g. Xc < 10ê @ the lowest frequency.

L must be large so the Xl > Z (50ê/2) e.g. Xl > 250ê @ the lowest frequency.
Also L must not reduce inductance @ DC load (e.g. ferrite/iron dust may do),
and the L must not over heat carrying the DC or the RF & must not have multi
wavelength resonances in it's winding! For more relay options a +/- supply
can control 2 with steering diodes etc.      

For VHF & UHF the C & L are quite small, but must be layed out leadless to
reduce the RF loss. 


See also "Phantom Bal Mic Preamp+Gun Mic" bul.


Why don't U send an interesting bul?

73 De John, G8MNY @ GB7CIP


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