9365200990 Rev F
BE1-CDS240 Testing and Maintenance
13-47
Command Purpose
SL-VO1=87RT
Enables OUT1 to close with 87 restrained trip.
SG-CT1=1,WYE,NA,0
Ctr = 1, ct = wye, xfmr = na, no grd source.
SG-CT2=1,WYE,NA,0
Ctr = 1, ct = wye, xfmr = na, no grd source.
SG-CT3=1,WYE,NA,0
Ctr = 1, ct = wye, xfmr = na, no grd source.
SG-CT4=1,WYE,NA,0
Ctr = 1, ct = wye, xfmr = na, no grd source.
SG-TRIGGER=87RT,87RPU,0
Enable 87RT to log and trigger fault recording.
S#-TAP87=MANUAL,2.00,2.00
set Tap 1 = 2.00 and Tap 2 = 2.00.
S#-87=0.35,15,0,0,0,1
Minpu = 0.35, slope = 15%, 2
nd
= disabled, 5
th
= disabled, URO=
disabled, 2
nd
harmonic sharing = shared.
E Exit.
Y Save
settings.
Step 3:
Apply 1 multiple of tap current (2 amperes) to both A-phase Input 1 and A-phase Input 2 (at
180
o
phase relation to Input 1).
Step 4:
To force a restrained trip at 1.5 times pickup, you must apply a step change in the current on
Input 2 to 3.05 amps. Apply the step change in current to Input 2 and record the time interval
between the time the step change was initiated to the time OUT1 output contact closes (the
restrained trip (87RT)).
Step 5:
Reduce the current to Input 2 until OUT1 Contact opens.
Step 6:
Apply 1 multiple of tap current (2 amperes) to both A-phase Input 1 and A-phase Input 2 (at
180
o
phase relation to Input 1).
Step 7:
To force a restrained trip at 5 times pickup, you must apply a step change in the current on
input 2 to 8.0 amperes. This value (8.0 amperes) was derived from the following:
I
op
= 5 * I
op trip
I
2
– I = 5 * (I
2
* slope)
I
2
– I
1
= 5 * (I
2
* 0.15)
I
2
– I = 0.75 I
2
0.25 I
2
= 1
I
2
= 4 per unit
I
2
= 8 amperes
Step 8:
Apply the step change in current to input 2 and record the time interval between the time the
step change was initiated to the time OUT1 Output Contact closes (the restrained trip (87RT)).
Step 9:
Reduce the current to Input 2 until OUT1 Contact opens.
Step 10: The time measured in Steps 4 and 8 should be less than those shown in Table 13-33.
Table 13-33. Restrained Trip Operate Times
Function Differential
Current
Time
Restrained trip
1.5 times pu
Less than 3 cycles
Restrained trip
5 times pu
Less than 2 cycles
Step 11: (Optional.) Repeat for each pair of CT inputs (CT1-CT3, CT1-CT4, CT2-CT3, CT2-CT4, and
CT3-CT4).
Summary of Contents for BE1-CDS240
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Page 38: ...1 28 BE1 CDS240 General Information 9365200990 Rev F This page intentionally left blank ...
Page 40: ...ii BE1 CDS240 Quick Start 9365200990 Rev F This page intentionally left blank ...
Page 152: ...ii BE1 CDS240 Metering 9365200990 Rev F This page intentionally left blank ...
Page 226: ...iv BE1 CDS240 Application 9365200990 Rev F This page intentionally left blank ...
Page 286: ...ii BE1 CDS240 Security 9365200990 Rev F This page intentionally left blank ...
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Page 292: ...ii BE1 CDS240 Human Machine Interface 9365200990 Rev F This page intentionally left blank ...
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Page 308: ...ii BE1 CDS240 ASCII Command Interface 9365200990 Rev F This page intentionally left blank ...
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Page 349: ...Figure 12 5 Horizontal Rack Mount Front View 9365200990 Rev F BE1 CDS240 Installation 12 5 ...
Page 361: ...Figure 12 17 Typical DC Connection Diagrams 9365200990 Rev F BE1 CDS240 Installation 12 17 ...
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Page 544: ...ii BE1 CDS240 Terminal Communication 9365200990 Rev F This page intentionally left blank ...
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