8-16
BE1-CDS240 Application
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Table 8-12. CDS240-BA87-B-BE Hardware Output Logic
Output Purpose
Description
OUTA
Relay Trouble Alarm.
OUTA contact closes when relay trouble alarm
occurs.
BESTlogic Expression: OUTA=VOA
OUT1
Phase differential trip. OUT1 is a high-speed
trip contact.
OUT1 contact closes if restrained or unrestrained
trip occurs.
BESTlogic Expression: OUT1=VO1
OUT2
Phase differential trip.
OUT2 contact closes if restrained or unrestrained
trip occurs.
BESTlogic Expression: OUT2=VO1
OUT3
Phase differential trip.
OUT3 contact closes if restrained or unrestrained
trip occurs.
BESTlogic Expression: OUT3=VO1
OUT4
Time overcurrent trip. May be used to direct trip
main breaker or lockout.
OUT4 contact closes if any time overcurrent (51P,
N, or Q) trip occurs.
BESTlogic Expression: OUT4=VO4
OUT5
Spare output contact.
N/A
BESTlogic Expression: OUT5=0
OUT6
Used to annunciate an alarm.
OUT6 contact closes when any programmed major
alarm condition is TRUE.
BESTlogic Expression: OUT6=VO6
OUT7 -
14
Spare output contacts.
N/A
BESTlogic Expression: OUT7-14 =0
CDS240-TXCL-B-BE (BASIC TRANSFORMER WITH CONTROL) LOGIC SCHEME
The Basic Transformer With Control Logic (CDS240-TXCL-B-BE) scheme was designed to provide a
primary zone of differential relaying and three backup zones of time overcurrent relaying for phase and
ground faults in two-winding transformer applications. This scheme also uses virtual control switch logic to
eliminate the need for external control switches.
The control switch elements are referred to as virtual because they have no physical form. These
elements exist only in logic form and they can only be operated via the ASCII command interface or by
the front panel HMI. The virtual 101 switch is used to trip and close the transformer low-side breaker.
Virtual Control Switches 43 and 143 are used to trip and close the transformer high-side breaker. Virtual
Control Switch 243 turns off the 87 protection element and 343 selects whether the setting group control
is automatic or manual.
Figure 8-5 is a one-line drawing and Figure 8-6 is a logic drawing that represents the logic settings shown
in Table 8-13. In Table 8-13, the user can see the protection and control elements that are enabled for the
CDS240-TXCL-B-BE application and how the elements are logically wired together (equations). If the
user should decide to build on this scheme, all elements required for a more detailed application are
available through programming. For programming details, refer to Section 7,
BESTlogic Programmable
Logic.
Summary of Contents for BE1-CDS240
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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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