2-8 Quick
Start
BE1-CDS220
3.)
What voltage level is used to develop current flow through the contact sensing inputs?
Voltage level is dependent on the power supply option (BE1-CDS220 style) and the position of
the contact sensing jumper. See Section 12, Installation, for additional information.
4.)
How can the BE1-CDS220 be configured into a simple transformer differential relay?
Two preprogrammed schemes perform this function. One is BASIC-87 from the BESTCOMS
logic library (Basic Differential) and the other is the embedded logic scheme BASIC-TX (Basic
Transformer). See Section 8, Application, for additional information.
5.)
How can the BE1-CDS220 be configured into a generator differential relay?
The BE1-CDS220 can be configured into a generator differential relay by loading the
preprogrammed logic scheme BASIC-87 from the BESTCOMS library. You may disable the
2nd and 5th harmonic functions by setting these thresholds to zero. See Section 8, Application,
for additional information.
6.)
Do I have to connect my current transformers in a special way to compensate for the
phase shift between the high side and low side of a transformer?
No, the BE1-CDS220 can compensate for phase shift. See Section 3, Input and Output
Functions, for additional information.
7.)
Should I be concerned about zero-sequence blocking in my CT connections?
No, the BE1-CDS220 can compensate for zero-sequence blocking. See Section 3, Input and
Output Functions, for additional information.
8.)
Does the BE1-CDS220 trip output contact latch after a fault?
The answer to the question is Yes and No. In general, once the fault goes away the output
contacts open. The BE1-CDS220 does offer an option to ensure that the contact will stay
closed for at least 200 milliseconds. See Section 3, Input and Output Functions, for additional
information on that function. However, BESTlogic can latch the relay outputs. See Section 8,
Application, Application Tips, for additional information.
9.)
Why won't a function work when I put in settings such as the pickup and time delays?
Make sure that the logic function is enabled.
10.) How many overcurrent elements does the BE1-CDS220 have available?
The BE1-CDS220 has nine instantaneous overcurrent and nine time overcurrent elements. Just
like any element, each of these elements can be assigned to any output for building logic
equations.
11.) Can I make logic settings from the front panel?
No, the front panel cannot program logic settings. Logic settings must be programmed using
the ASCII command interface or BESTCOMS communication software.
12.) Since the BE1-CDS220 is a programmable device, what are the factory defaults?
The factory default logic is BASIC-87 logic. Default settings are shown with each function in the
instruction manual. For input or output default settings see Section 3, Input and Output
Functions. For protection and control functions, see Section 4, Protection and Control. The
default settings are also embedded in the BE1-CDS220 spreadsheets that are available from
the Basler Electric web site, http://www.basler.com, in the Download Section under Software
Tools.
Содержание BE1-CDS220
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Страница 258: ...ii ASCII Command Interface BE1 CDS220 This page intentionally left blank...
Страница 289: ...BE1 CDS220 Installation 12 7 Figure 12 8 MX Case Horizontal Panel Mount Front View Overall Dimensions...
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Страница 424: ...ii Time Current Characteristics BE1 CDS220 This page intentionally left blank...
Страница 441: ...BE1 CDS220 Time Overcurrent Characteristic Curves A 17 Figure A 13 Time Characteristic Curve A Standard Inverse 99 1621...
Страница 442: ...A 18 Time Overcurrent Characteristic Curves BE1 CDS220 Figure A 14 Time Characteristic Curve B Very Inverse 99 1376...
Страница 443: ...BE1 CDS220 Time Overcurrent Characteristic Curves A 19 Figure A 15 Time Characteristic Curve C Extremely Inverse 99 1377...
Страница 444: ...A 20 Time Overcurrent Characteristic Curves BE1 CDS220 Figure A 16 Time Characteristic Curve G Long Time Inverse 99 1622...
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