Instructions Of Use; Front Panel (Fig. 11); Rear Panel (Fig.12); Welding Parameter Control And Setting Panel (Fig. 13) - Helvi COMPACT 211 EASY Manuel D'instructions

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INSTRUCTIONS OF USE

FRONT PANEL (FIG. 11)

1. Control panel
2. Regulation knob for welding current and
welding parameters
3. Display showing the preset parameters,
voltage or current during welding
4. Negative plug (-): Connect the ground
lead or the electrode holder in case of
MMA welding (depending on the polarity
requested by the electrode, printed on the
packaging) and the torch in case of TIG
welding
5. Positive plug (+): Connect the ground
lead or the electrode holder in case of
MMA welding (depending on the polarity
requested by the electrode, printed on the
packaging) and the ground lead in case
of TIG welding
6. Connector for the connection of the torch
gas tube
7. Connector for the torch trigger cable, for
the remote or pedal control cable connec-
tion.
7
4

REAR PANEL (FIG.12)

A. Generator ON/OFF switch
B. Power cable
C. Connector for the protection gas tube for
TIG arc welding.
3
1
Fig.11
C
A
WELDING PARAMETER CONTROL
AND SETTING PANEL (FIG. 13)
8. Power voltage present (green LED on).
9. Thermal protection intervention (yellow
2
LED on);
10. Welding Mode selection key (Red LED
on): TIG AC, TIG or MMA DC ;
6
11. Selection button for 2T or 4T torch (red
LED on);
5
12. Menu key for the regulation of welding pa-
rameters (red LED on). Press the button
several times to visualize on the display
the welding parameters related to the se-
lected process, and which can be adju-
sted using the knob (pos. 2).
• Iw Welding Current
5÷200 (DC)
10÷200 (AC)
• Balance (only in TIG-AC)
The balance adjustment is mainly used to
set the regulation of the elimination of me-
tal oxide (such as aluminum, magnesium
and its alloy) in AC.
Unit of measure %
Setting range 15 ÷ 50
Default setting 15%
• AC Frequency (only in TIG-AC)
Unit of measure Hz
Setting range
50÷250 (Iw<70A)
50÷200 ( 70A≤Iw<100A)
50÷150 (100A≤Iw<140A)
50÷120 (140A≤Iw<170A)
50÷100 (170A≤Iw)
EN-9
Fig.12
B

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