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EXP4000
- Dynamic Motor Analyzer
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Click
on Image to Enlarge
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instruments accomplished fully remote
monitoring from the Motor Control Center
(MCC), is a non-hazardous low-voltage
battery operated unit, and is highly
portable and durable for use in even the
tightest and most rugged circumstances.
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This
in-service motor
analyzer takes the
next step in
providing complete
P/PM programs. It
provides root
cause analysis
through the
separation of
mechanical and
electrical issues.
The SKF Dynamic
Motor Analyzer -
EXP4000 were
designed to
pinpoint
challenges
(voltage source,
VFD, motor, load)
your rotating
machinery faces.
This
self-contained
portable
instrument is
computer driven
with proven
engineering,
allowing all
testing to be
accomplished
directly from the
MCC or from the
Baker EP
connection. |
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The
SKF Dynamic Motor
Analyzer - EXP4000
performs seven
major functions
for predictive
maintenance
programs. It
identifies
possible power
circuit problems
that degrade motor
health, examines
overall motor
power conditions,
monitors the load
and observes motor
performance plus
estimating energy
savings. It is
programmed to
supply information
on voltage level,
voltage balance,
harmonic and total
distortion, rotor
cage condition,
motor efficiency,
effective service
factor,
overcurrent,
operating
condition, torque
and load.
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Once
testing is
completed, results
can be saved and
stored for each
individual motor.
This type of
documentation is
critical for any
predictive
maintenance
program. It allows
the recalling of
previous
information for
true trending
capabilities. With
the SKF Dynamic
Motor Analyzer -
EXP4000, test
results are
collected, stored,
recalled and
managed using
standard MS Access®
relational
database file
formats. Reports
can be generated
quickly and easily
through the main
print console,
allowing operators
visual
confirmation of
motor integrity.
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Survey
plant wide motor
efficiency with
the SKF Dynamic
Motor Analyzer -
EXP4000 and
determine load
mismatches,
oscillating load,
and transient peak
energy. These
on-line
capabilities allow
accurate
assessment of
operating load
conditions over
time. Results are
immediate and show
operating
efficiencies
allowing the
operator to
determine the true
cost of wasted
energy.
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