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Secondary current read out and control are "turned on" by
programming a Turns Ratio of 0. You must have a toroid coil
connected to TS4. The toroid coil is considered optional and is not
normally installed. The secondary current range is controlled by
a combination of "W" jumpers W5 – W6, where
W5 W6
Maximum A. @ 99% AVC Mode
ON ON
20 kA. (normal)
OFF ON
26 kA.
ON OFF 60
kA.
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The CAL CURRENT process forces the control to display the
current value you think the value should be, for the last weld
made. This process may be done for line voltage, primary and
secondary current. After this calibration, the readout should
match your instrumentation (whether it is correct or not).
Improper or no calibration will not affect the control’s ability to
deliver a percent of available current in AVC mode.The
numerical current readout and Constant Current control is
relative to the perception of the user. The control does not "care"
what that value is, or what it means. The T2050 delivers (if it can)
in constant current the value request based on the RMS current of
the last weld and the value you told the control it was.
The greatest concern is that the current NOT exceed the
maximum level permitted by the W jumpers installed. The
working current level should be in the middle, or somewhat mid-
lower portion, of the range chosen. If the working current is near
the maximum, the percent of available current requested must
also be near maximum. If the value is near the maximum and the
percent of available current reported by the control is low, the
peak current for that RMS value is probably in over range.
The computer units which represent the peak A. were at
maximum, jammed at the largest number during the peak of the
current crest wave form. To correct this computer unit "clipping"
problem, choose the next higher current range, re-welding and
re-calibrating with the W jumper installed in the new range.
Содержание Technitron T2050
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