THERMAL ARC 95 S
INTRODUCTION
Manual 0-5086
2-2
Introduction
2.07 Specifi cations
Power Source Part Number
W1003200
Welding Output
Welding Current Range
5 - 95 Amps
Nominal DC Open Circuit Voltage (OCV)
60V
Welding Output, 104º F (40º C), 10 min.
(quoted fi gures refer to SMAW output)
50A / 22V @ 100%
80A / 23.2V @ 30%
90A / 23.6V @ 20%
Rated Input Current (A) for STICK Welding
33.5A
I
ο
= 90A @ 23.6V
Rated Input Current (A) for TIG Welding
21.0A
Io = [email protected]
Rated Output for STICK Welding
90A / 23.6V @ 20%
Rated Output for TIG Welding
95A / 13.8V @ 20%
Duty Cycle (%)
20% @ 90A / 23.6V
Welder Type
Inverter Power Source
Output Terminal Type
Dinse 25
Mains Power
Number of Phases
Single Phase
Nominal Supply Voltage
115V
Nominal Supply Frequency
50/60 Hz
Effective Input Current (l1eff)
15.0 Amps
Maximum Input Current (l1 max)
Δ 33.5 Amps
Single Phase Generator Requirements
6 KVA
Classifi cation
Protection Class
IP23S
Standards
IEC 60974-1
Cooling Method
Fan Cooled
Dimensions and Weight
Welding Power Source Mass
9.7 lb. (4.4 kg)
Welding Power Source Dimensions (Height x Width x Depth)
H 13.0" x W 5.1" x D 9.0"
(H 330mm x W 130mm x D 230mm)
Δ
The recommended time delay fuse or circuit breaker size is 30 amp. An individual branch circuit capable of
carrying 30 amperes and protected by fuses or circuit breaker is recommended for this application. Fuse size is
based on not more than 200 percent of the rated input amperage of the welding power source (Based on Article
630, National Electrical Code).
Thermal Arc continuously strives to produce the best product possible and therefore reserves the right to change, improve or
revise the specifi cations or design of this or any product without prior notice. Such updates or changes do not entitle the buyer of
equipment previously sold or shipped to the corresponding changes, updates, improvements or replacement of such items.
The values specifi ed in the table above are optimal values, your values may differ. Individual equipment may differ from the above
specifi cations due to in part, but not exclusively, to any one or more of the following; variations or changes in manufactured
components, installation location and conditions and local power grid supply conditions.
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