Product description
• Microprocessor-based, multifunctional
motor protection
• Intel-I-Trip overload protection based on
motor data
• Event recording and operational logging
• Motor start profile
• Optional quick release drawout case
• Used on AMPGARD and medium
voltage assemblies
• “Help” menu provides user
operational assistance

Application description
The Cutler-Hammer MP-4000 motor protection
relay by Eaton Corporation is a multifunctional
microprocessor-based protective relay for the
protection of three-phase AC motors. The
MP-4000 motor relay may be applied to any size
motor at any voltage level. It is most commonly
used on large, medium voltage three-phase induc
tion motors. It has also been widely used on
important low voltage (480V) motor applications
and synchronous motors.
The MP-4000 motor relay monitors three-phase
and ground currents and three-phase voltages.
It provides motor overload, stall, short circuit,
phase unbalance, single phasing over/undervolt
age, underpower, power factor, and ground fault
motor protection.
It can also be used to provide protection for a load
jam or loss of load condition.
The MP-4000 motor relay provides start control
logic to protect the motor against excessive starts
or starting the motor before it has had sufficient
time to cool down. The MP-4000 motor relay
may be applied to either across-the-line starters
or reduced-voltage starters. On reduced-voltage
starters, the MP-4000 relay can control the switch
from reduced voltage to full voltage based on time
and/or motor transition. The MP-4000 can protect
the starter against failure to transition to full volt
age through contact feedback and an incomplete
sequence function.
MP-4000 motor relay
The MP-4000 motor relay is generally used on
a motor starter or a breaker used for a motor
load. The MP-4000 motor relay provides the
intelligence to protect and control the motor
against abnormal operating conditions. It monitors
the currents from either a 5A or a 1A secondary
of a CT circuit. Ground current may be obtained
from either a ground CT or from the residual
connection of the phase CTs. It provides a Form C
contact output for controlling the starter contacts
or breaker operation.
The protection functions are listed below:
• I2t overload protection (49/51)
• Locked rotor (49S/51)
• Ultimate trip current (51)
• Current unbalance (46)
• Instantaneous overcurrent (50)
• Ground fault protection (50G)
• Undervoltage (27)
• Overvoltage (59)
• Under power (32)
• Voltage unbalance (47)
• Power factor (55)
• RTD trip and alarm with URTD module (49/38)
• Underload trip (37)
• Starts per time (66)
• Jam or stall (51R)
• Auto or manual reset (86)
• Fail-safe or non-fail-safe trip modes
The metering functions are:
• Metering:
− Average current (I Ave)
− Amperes: magnitude and angle in primary values
− Amperes: positive, negative, and zero sequence
− Average voltage (V Ave)
− Voltage: magnitude and angle
− Voltage: positive, negative, and zero sequence
− Percent of full load
− Percent current unbalance
− Percent voltage unbalance
− Power, vars, and VA
− Power factor
− Frequency
− Energy metering with time and date stamps
• RTD temperatures:
− Individual winding
− Motor bearing
− Load
− Auxiliary temperatures
• Motor conditions:
− Percent of I2t thermal bucket
− Time before start
− Remaining starts allowed
− Oldest start time
Features, benefi ts, and functions
• Complete motor protection and control in a single compact case
reduces panel space requirements and wiring costs
• Microprocessor design with self diagnostics eliminates calibration
and reduces installation, commissioning, and maintenance
• Programmable stop 2–20% of PCT
• Intel-I-Trip overload protection develops customized curve from
manufacturer’s supplied motor data
• Intel-I-Trip overload protection provides adaptive trip characteris
tics based on motor temperature when motor RTDs are
connected through an optional URTD module
• Meets UL 1053 ground fault protection standards that eliminates
the need for a separate ground relay saving cost, space, wiring,
and time
• Voltage dip/loss ride through capability reduces unnecessary trips
caused by poor power quality
• Motor currents, temperatures, and conditions are monitored and
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