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G8MNY  > TECH     07.06.16 19:04l 147 Lines 7744 Bytes #999 (0) @ WW
BID : 7338_GB7CIP
Read: GUEST DK3UZ DD3IA OE7FMI
Subj: HF ATU & SWR Bridge VC300LP/QT-1
Path: DB0FHN<OE2XZR<OE5XBL<F1OYP<IZ3LSV<ED1ZAC<GB7CIP
Sent: 160607/0925Z @:GB7CIP.#32.GBR.EURO #:7338 [Caterham Surrey GBR] $:7338_GB
From: G8MNY@GB7CIP.#32.GBR.EURO
To  : TECH@WW

By G8MNY                                     (Updated Jan 16)
(8 Bit ASCII graphics use code page 437 or 850, Terminal Font)
I have reverse engineered this from an old VECTRONICS ATU Model VC300LP(PreMFJ)
which has a 48 turn sliding contact high Q ferrite L. But it looks the same as
the VC-300DPL, & also the Canadian AEA's QT-1 model but that one has only a
simple 12 tap switched large lossy air inductor!

             F R O N T                               R E A R
旼컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴커   旼컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴커
� 旼컴컴컴�         栢賽栢         �   �                     1    2   Rig �
� � /~~~\ �  栢栢栢 栢複栢  栢栢栢 �   �                o   (o)  (o)  (o) �
� �|_/_\_|�  栢  栢 複複複  栢  栢 �   �               Bal                �
� 읕컴컴컴�  栢栢栢 栢  栢  栢栢栢 �   � Earth          o    o   (o)   *  �
�          o  o  o  賽賽賽         �   � -o-                Wire  Byp  12v�
읕컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴켸   읕컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴컴켸

It is a small cheaply made unit, but it does have many advantages as there is a
lot in the one box.

Aerial Tuning Units are also called Aerial Matching Units, but the best aerial
is one that is already tuned by design (cutting) & a good match (tap point)!

BLOCK DIAGRAM
Rig 旼컴컴컴컴컴커 旼컴컴컴커           旼컴컴컴�             旼컴컴컴컴커
 o)캑DUAL POWER &쳐�  direct쳐컴컴컴컴컴�       쳐컴컴컴컴컴컴퀱UMMY LOAD�
    �  SWR METERS� 쿌ERIAL  �           쿌ERIAL 쳐(o BYPASS   읕컴컴컴컴켸
    읓컴컴컫컴컴쬔 쿞ELECT  �           쿞ELECT 쳐(o COAX1       旼컴컴컴�
    Lamp Range PEP 쿞WITCH  � 旼컴컴컴� 쿞WITCH 쳐(o COAX2     >캑 Balun �
  >컴�             �     atu쳐� A.T.U.쳐�       쳐�< WIRE      >캑 Trans �
12V                읕컴컴컴켸 읓컴쩡컫� 읕컴컴컴좔�              읕컴컴컴�
                               C  L  C           _�_Earth 

FEATURES
  8 Position Switch:- 4 Aerial Choices, Bypass, Coax 1, Coax 2, & Wire.
  4 Option with ATU:- 3 Aerials & 1 Dummy load for pre tuning.
  300W max. (150W @ 1.8MHz) SSB ATU Rating. 4:1 Max SWR @ 300W.
  ATU is "T" Type, 48 tapped ferrite inductor, 2 tuning Caps (1000V rating).
  30W & 300W Forward scale cross needle power meter.
  6W & 60W Reverse power scales, for increased SWR sensitivity.
  Average & PEP meter modes. (PEP poor design)
  Built in dummy Load (50W cont, 10 seconds rated @ 300W ?).
  4:1 BALUN option for balanced aerials (link from wire ant)
  12V Meter scale Lamp & on/off switch.
  Size 10.2 x 9.4 x 3.5" or 257 x 85 x 197mm, weight 3.4LBs

CIRCUIT
The SWR bridge is quite conventional. The PEP mode with large 47uF is not
effective, an active system is really needed for true PEP!

     Ferrite ring                  8 WAY SELECTOR SWITCH
TX 0)컴컴컴컴컴컴컫컴컫컴컴컴쩡컴컴컴컴>o컴컴컴컴컴컴컴�
   컨� =====   50p�  ==='Nul �        / o컴컴컴컴컴컴컴)컴컴컴컴컴컴(0 BYPASS
   旼컴CCCCC컴커 === '�2-20p �   Direct o컴컴컴컴컴�)컴컴컴컴컴컴(0 COAX 2
   �     읕컴컴)컴탠컴�220p  �30p     \ o컴컴컴컴컴)컫�)컴컴컴컴컴컴(0 COAX 1
   쳐컴111鴛컴캑  L  ===    ===       / o�     旼>o� � �           컨�
  _�_         _�_ 읕컴좔컴컴캑     Via  o�     �  o컴� �
  \_/  4x10n  \_/Ge         컨�    ATU  o�     �  o컴컴)컴컴컴컴컴컴�0 WIRE
   쳐캑쳐쩡늘컴�                      \ o�     �  o컴컴좌컴커 Dummy  |
  100    �    100                        �_    �_   68p=== 50� Load  | Bridge
   쳐캑쳐탠늘컴� +47u                    �/�   �/�      읕컴�        | For
   �    컨�    쳐캑쳐커   PEP    Tx Cap ===   === Load     컨�       | Balanced
 旼좔쩡�100k커 쳐100k컨훟\__     35-200p/�    /�  Cap                | Aerial
47k  쳐컴늘컴좔)컴컴컴컴o\__�            쳐컴컴�35-200p              |
PRE  �  +47u 旼좔�         컨�    A.T.U. �                     ===== |
 �  47k     47k 47k                      � ======            旼CCCCC�0 4:1
47k PRE     PRE PRE            Adjustable읕CCCCCC__          �  컨�    BALUN
 픬 o�30w 60w픬 o�6w            Ferrite      /\____�         읕컴컴컴0 100�-1k�
300\          \    Meter        Inductor 0.2-40uH 컨�
   쳐늘컫컴늘컴�   Switch                              旼컫컴컴컴컫컴0 EARTH
Forward �   Reverse                                   컨� �   10n===
 Meter  �    Meter                                        �       �
1k5읕컴컨컫컴컴� 1k1                                      읕Meter컨컴(0 < 12V
200uA    컨� 200uA                                          Lamp    컨� 

CONSTRUCTION
It uses thick 2 U part aluminium case, thick open wire for all internal
connections & the impedance is then tamed by the addition of extra caps to
ground. (e.g. 68pF across the internal load & 30pF after the SWR Bridge.)

The toroid ferrite inductor has a sliding contact over 48 separated turns on a
moulded former, some similar models just have 12 taps to a switch.

A single PCB provides for all the component mounting except the main switch,
ATU components, & dummy load. All earths are to the local chassis with locking
washers.

The SWR bridge circuit has a few added components to ensure accuracy over the
whole HF frequency range. 

TUNING UP
The best tuning method is to use the ATU into the dummy load first at low power
(between 10 & 30W) & pre-tune it, set the ATU with both Cs @ 50% & adjust the L
tap for initial minimum SWR. Then tweak (rock too & throw) both the Cs for a
perfect 1:1 match. This can take time as they are interdependant & their
combined capacitance tunes the L for the frequency used & on 50� source & load
Cs will be equal in value. After that, switch to the aerial & re-tweak the Cs
for 1:1, they will no longer be equal on a non 50� load!

LOW POWER is the kindest tuning method for the ATU & also for minimum QRM. A
very briefly re-tweaking of Cs only at full power may be an advantage as the
meters are more accurately (sensitive) with more power.

Both the output select switch & the ATU variable L, should not be changed if
there is any great power flowing, as the contacts could be damaged with arcing!

IN USE
The ferrite balun & tapped ATU inductor can suffer saturation losses if used
in-appropriately. But in general there is much less loss with a ferrite cored
device, than the much bigger air spaced equivalents, as there is many times
less wire needed & associated copper loss. Typically power loss is only 5%
(0.2dB) @ 100W (100W in 95W out) on any band at any SWR (due to the "T" type
ATU's high Q) which is quite low for a combined ATU & SWR bridge.

If the random wire aerial won't tune up to give 1:1 SWR then try a different
length wire (shorter or longer by a metre or so) or add a series cap (200pF) or
L (20 tursns) can help.

The "T" type ATU is easy to use, but is not so good at removing Tx harmonics as
the � (pi) type. But it does an excellent job of protecting the Rx from static
& strong signals on lower bands (e.g. removing MW Broadcast signals as it is
>-18dB for each frequency halving.)

MODS
1/ The black knobs on black background are not that visible, I have painted
   white lines on mine, so I can easily see their directions in low light.

2/ I blackened the dummy load & the aluminium plate it is on, with spray mat
   black, & used heat compound between that & box bottom. This all improves the
   load's dissipation, so more power for longer is possable, or less chance or
   burning it out!

3/ The cross needle meter needed damping as it is, is very swingy, see my Meter
   damping/speed up bulletin for corrective action.


See also my Tech buls on "HF ATU & SWR Bridge MFJ-904H", "Palstar AT1500CV ATU"
"Drake WH7 QRO HF SWR Bridge", "A Homebrew HF SWR Bridge", "PEP Meter
modification", "Meter Damping & Speed Up" & "QRP SWR Bridge".


Why don't U send an interesting bul?

73 De John, G8MNY @ GB7CIP


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