Page 44
I.L. 17562
PR 0.3 Effective 8/99
Page
Line
Value
Complete Help Message
Description
OF EVENT"
WT2 XXX
WINDING TEMP 2 IN
DEGREES (F OR C) AT TIME
OF EVENT"
WT3 XXX
WINDING TEMP 3 IN
DEGREES (F OR C) AT TIME
OF EVENT"
WT4 XXX
WINDING TEMP 4 IN
DEGREES (F OR C) AT TIME
OF EVENT"
WT5 XXX
WINDING TEMP 5 IN
DEGREES (F OR C) AT TIME
OF EVENT"
WT6 XXX
WINDING TEMP 6 IN
DEGREES (F OR C) AT TIME
OF EVENT"
MT1 XXX
MOTOR BEARING TEMP 1 IN
DEGREES (F OR C) AT TIME
OF EVENT
MT2 XXX
MOTOR BEARING TEMP 2 IN
DEGREES (F OR C) AT TIME
OF EVENT
LT1 XXX
LOAD BEARING TEMP 1 IN
DEGREES (F OR C) AT TIME
OF EVENT
LT2 XXX
LOAD BEARING TEMP 2 IN
DEGREES (F OR C) AT TIME
OF EVENT
AXT XXX
AUXILIARY TEMP IN
DEGREES (F OR C) AT TIME
OF EVENT
LOG
STRT
DETAILED LOG OF THE LAST
4 STARTS
This page contains detailed
information about the last four
motor starts.
START X
START NUMBER MOST
RECENT START EQUAL 1
Each of the last 4 starts are
numbered 1 being the most recent
and 4 being the oldest. Press line
up to get the latest start line down
to get the oldest start.
MM/DD/YY
DATE OF EVENT
The date of start
HH.MM
TIME OF EVENT
The time of start
IA XXX
MAXIMUM PHASE A
CURRENT DURING START
Highest of each phase current in
amps during start
IB XXX
MAXIMUM PHASE B
CURRENT DURING START
IC XXX
MAXIMUM PHASE C
CURRENT DURING START
IG XXX
MAXIMUM GROUND FAULT
CURRENT DURING START
The highest ground fault current in
amps during start
UB XXX
MAXIMUM PHASE
UNBALANCE DURING START
The highest percent sequence
current unbalance during start
ITR XXX
AVERAGE CURRENT AT TIME
OF TRANSITION IN AMPS
The average current of all three
phases in amps at start transition
TSTI XXX
TIME FROM START TO
The elapsed time from start to
Summary of Contents for MP-3000
Page 18: ...Page 18 I L 17562 PR 0 3 Effective 8 99 Figure 4 1 MP 3000 Pushbuttons...
Page 19: ...I L 17562 Page 19 PR 0 3 Effective 8 99 Figure 4 2 MP 3000 LED Indicators...
Page 72: ...Page 72 I L 17562 PR 0 3 Effective 8 99 Figure 6 1 Panel Cutout Dimensions...
Page 73: ...I L 17562 Page 73 PR 0 3 Effective 8 99 Figure 6 2 Faceplate Dimensions...
Page 74: ...Page 74 I L 17562 PR 0 3 Effective 8 99 Figure 6 3 MP 3000 Case Depth Dimensions...
Page 75: ...I L 17562 Page 75 PR 0 3 Effective 8 99 Figure 6 4 Universal RTD Module Mounting Dimensions...
Page 76: ...Page 76 I L 17562 PR 0 3 Effective 8 99 Figure 6 5 Rear Panel Terminals...
Page 78: ...Page 78 I L 17562 PR 0 3 Effective 8 99 Figure 6 7 Typical ac Supply and URTD Wiring...
Page 79: ...I L 17562 Page 79 PR 0 3 Effective 8 99 Figure 6 8 Alternatives for Discrete Input Wiring...
Page 80: ...Page 80 I L 17562 PR 0 3 Effective 8 99 Figure 6 9 RTD Wiring to URTD Module...
Page 100: ...Page 100 I L 17562 PR 0 3 Effective 8 99 Figure 9 1 Rotor Temperature Tracking...
Page 101: ...I L 17562 Page 101 PR 0 3 Effective 8 99 Figure 9 2 Motor Protection Curve...
Page 102: ...Page 102 I L 17562 PR 0 3 Effective 8 99 Figure 9 3 Underload Jam Protection Curve...
Page 104: ...Page 104 I L 17562 PR 0 3 Effective 8 99 Figure 9 5 Motor Protection Curve Example with RTDs...
Page 105: ...I L 17562 Page 105 PR 0 3 Effective 8 99 Figure 9 6 Motor Start and Run Cycles...
Page 109: ...I L 17562 Page 109 PR 0 3 Effective 8 99 P5L8 40 Incomplete Sequence time 1 60s OFF 1 240s...