D.
Compare the results observed. The wire connection that yield-
ed the highest pressure and flow rate is the proper connection.
Interchange the two leads only if necessary
(Figure 3.3, Changing Motor Rotation).
Figure 3.3
Changing Motor
Rotation
3.6.3
Three-Phase Power Imbalance
Current imbalance should not exceed 5% of the average three-phase current.
The current imbalance can be calculated as follows:
STEPS
1.
Measure the current through each of the three legs.
2.
Average the three current measurements together.
3.
Determine the difference between the current in each leg and the
average of all three legs.
4.
Take the difference with the largest value, and divide it by the average
current. Multiply by 100 to obtain the current imbalance percentage.
5.
If the current imbalance is greater than 5%, “roll” the leads and retest
(Figure 3.4, Rolling the Leads to Balance Current Rotation). If “rolling”
the leads does not correct the problem, the source of imbalance must
be located and corrected. For more information on current imbal-
ance, refer to the motor operation manual.
10
Summary of Contents for OSMONICS TONKAFLO SS1000 SERIES
Page 2: ......
Page 6: ......
Page 17: ...Figure 3 4 Rolling the Leads to Balance Current Draw 11 ...
Page 29: ...8 0 DIMENSIONAL DRAWINGS 8 1 500X Motor Adapter Pumps Figure 8 8 500X Motor Adapter Pump 23 ...
Page 30: ...8 2 500 XB Motor Adapter Pumps Figure 8 9 500 XB Motor Adapter Pump 24 ...
Page 31: ...8 3 1000X and 1800X Motor Adapter Pumps Figure 8 10 1000X and 1800X Motor Adapter Pump 25 ...
Page 32: ...8 4 1800XB Motor Adapter Pumps Figure 8 11 1800XB Motor Adapter Pump 26 ...
Page 33: ...8 5 1800XC Motor Adapter Pumps Figure 8 12 1800XC Motor Adapter Pump 27 ...
Page 34: ...9 0 CUTAWAY DRAWINGS 9 1 X Motor Adapter Pump Figure 9 13 X Motor Adapter Pump 28 ...
Page 35: ...9 2 XB and XC Motor Adapter Pump Figure 9 14 XB and XC Motor Adapter Pump 29 ...
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