4-58
BE1-CDS240 Protection and Control
9365200990 Rev F
Table 4-31. Operating Settings for Breaker Failure
Setting Rang
Unit of
M
Default
e
Increment
easure
Pickup
Sec. Amps, Pri. A
r. U. Amps,
N/A N/A
Sec.
Amps
mps, Pe
% Amps
Time Milliseconds,
Seconds,
Minutes, Cycles
N/A
N/A
Milliseconds
Ph
ult
0.01 A
(See Pickup)
ase Fa
Detector PU
5A CT: 0.5 A to 10.00 A
1A CT: 0.1 A to 2.00 A
0.00
Neutral Fault
Detector PU
5A CT: 0.5 A to 10.00 A
0.01 A
(See Pickup)
0.00
1A CT: 0.1 A to 2.00 A
0 = Disabled
N/A
N/A
50 to 999 ms
1 m
Milli
ds
secon
0.05 to 0.999 seconds
0.1 sec
Seconds
Delay Timer
to 49.97 (50 Hz)
0
0 to 59.96 (60 Hz) or 0
Cycles
0 = Disabled
N/A
N/A
50 to 999 ms
1 m
Milli
ds
secon
0.05 to 0.999 seconds
0.1 sec
Seconds
Control Timer
to 49.95 (50 Hz)
0
0 to 59.94 (60 Hz) or 0
Cycles
Time delays less
arest 0
cles fro
ont panel HMI. All
xample 1.
Make the following operational settings to the breaker failure element. See Figure 4-51.
etrieving Breaker Failure Status from the Relay
than 10 cycles can be entered to the ne
.1 cy
m the fr
time delays can be entered to the nearest 0.01 cycles from the ASCII command interface. Time delays
entered in cycles are converted to milliseconds or seconds. Increment precision after conversion is limited
to that appropriate for each of those units of measure.
E
Pickup
:
secondary
amps
Time
:
ms
Phase Fault Detector PU
: 3.00
Neutral Fault Detector PU
: 3.00
Control Timer
:
100
Delay Timer
:
100
R
ined from the ASCII command interface using the RG-
LOGIC TIMERS
The status of each logic variable can be determ
STAT (report general-status) or the RL (report logic) commands. Status can also be determined using
BESTCOMS
Metering
screen. See Section 6,
Reporting and Alarm Functions, General Status Reporting,
for more information.
62 - General Purpose Logic Timers
ral-purpose logic timers, which are extremely versatile. Each can
BE1-CDS240 relays provide four gene
be set for one of five modes of operation to emulate virtually any type of timer. Each function block has
one output (62, 162, 262, or 362) that is asserted when the timing criteria has been met according to the
BESTlogic mode setting. Figure 4-52 shows the 62 function block as an example. Each mode of
operation is described in detail in the following paragraphs.
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 ...
Page 290: ...9 4 BE1 CDS240 Security 9365200990 Rev F This page intentionally left blank ...
Page 292: ...ii BE1 CDS240 Human Machine Interface 9365200990 Rev F This page intentionally left blank ...
Page 306: ...10 14 BE1 CDS240 Human Machine Interface 9365200990 Rev F This page intentionally left blank ...
Page 308: ...ii BE1 CDS240 ASCII Command Interface 9365200990 Rev F This page intentionally left blank ...
Page 342: ...11 34 BE1 CDS240 ASCII Command Interface 9365200990 Rev F This page intentionally left blank ...
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 468: ...13 92 BE1 CDS240 Testing and Maintenance 9365200990 Rev F This page intentionally left blank ...
Page 512: ...14 42 BE1 CDS240 BESTCOMS Software 9365200990 Rev F This page intentionally left blank ...
Page 544: ...ii BE1 CDS240 Terminal Communication 9365200990 Rev F This page intentionally left blank ...
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