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9
DESIGN
DESIGN
SPECIFICATIONS
2
Also called 'inverse time' or 'thermal/magnetic' circuit breakers;
circuit breakers that have a delay in tripping action that decreases
as the magnitude of current increases.
POWER SOURCES - INPUT VOLTAGE AND CURRENT
WELDING PROCESSES
PROCESS
ELECTRODE DIAMETER RANGE
OUTPUT RANGE
(AMPERES)
WIRE FEED
SPEED RANGE
GMAW
.025-.035”
(0.6-1.0MM)
20-211
50-500 IPM
FCAW
.030-.045”
(0.8-1.2MM)
20-211
50-500 IPM
PHYSICAL DIMENSIONS
MODEL
HEIGHT
WIDTH
DEPTH
WEIGHT
K
15.10IN
(383MM)
10.90IN
(276MM)
21.49IN
(546MM)
1 LBS
6 KG
POWER SOURCES -
RECOMMENDED INPUT WIRE AND FUSE SIZES
1
VOLTAGE/
PHASE
FREQUENCY
INPUT
AMPERES
EFFECTIVE
FUSE
(SUPER LAG)
OR BREAKER
SIZE
2
TYPE 75C COPPER WIRE IN
CONDUIT AWG (IEC) SIZES
40C (104°F) AMBIENT
230/1/60
15A
40
12
120/1/60
15A
20
12
1 Cord and Fuse Sizes based upon the U.S. National Electric Code and maximum output
DUTY CYCLE
(OUTPUT)
INPUT VOLTAGE INPUT AMPERES
MAX
IDLE AMPS
30%
( 5A / 22. V)
230
22.5A
. A
60%
(95A /
V)
120
20A
. A
POWER MIG 211i
®
ENGINE DRIVEN GENERATOR
The machine is designed to operate on engine driven generators as
long as the auxiliary can supply adequate voltage, frequency and
power as indicated in the “Technical Specification” Installation
Section of this manual. The auxiliary supply of the generator must
also meet the following conditions:
Frequency
: 60 Hz
RMS voltage of the AC waveform:
90-250 V; Out of this range will
trigger undervoltage and overvoltage protections.
Generator Minimum
3 kW (120VAC) 6kW (230VAC)
It is important to check these conditions because many engine driven
generators produce high voltage spikes. Operation of this machine
with engine driven generators not conforming to these conditions is
not recommend and may damage the machine and is also NOT
covered by warranty.