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BE1-46N General Information

TAP ADJUST Selection Range

(5 Ampere CT)

Continuously adjustable over the range of 3.0 amperes to 5.0 amperes.
This adjustment establishes the full load reference level (I

N

) for the

application.

(1 Ampere CT)

Continuously adjustable over the range of 0.6 A to 1.0 A.  This adjustment
establishes the full load reference level (I

N

) for the application.

PICKUP Selection Range

Adjustable over the range of 1 to 50% in increments of 1%.

PICKUP Measuring Accuracy

±0.5% of I

2

.

PICKUP Dropout Ratio

Better than 98% of pickup.

ALARM Selection Range

Adjustable over the range of 1 to 50% in increments of 1%.

ALARM Pickup Measuring

±0.5% of I

2

.

Accuracy

ALARM Time Delay

Factory set at 3.0 seconds.

ALARM Dropout Ratio

Better than 98% of ALARM pickup level.

K SET Timing Accuracy

±5% of the selected curve.

Minimum Trip Timer Accuracy

200 ±25 milliseconds.

MAX TIME (X 10 SEC)

Adjustable over the range of 10 to 990 seconds in increments of 10

Selection Range

seconds.

MAX TIME Accuracy

±5% of the setting.

Radio Frequency

Field tested using a five watt, hand-held transceiver operating at random

Interference (RFI)

frequencies centered around 144  megahertz and 440  megahertz, with  the
antenna located six inches from the relay in both horizontal and vertical
planes.

Fast Transient

Qualified to ANSI/IEEE C37.90.1-1989.

Isolation

In accordance with ANSI/IEEE C37.90-1989 one minute dielectric (high
potential) test as follows:,

All circuits to ground:

2121 Vdc.

Input to output circuits:

1500 Vac or 2121 Vdc.

Surge Withstand Capability

3WCNKHKGF VQ #05++''' % 5VCPFCTF 5WTIG 9KVJUVCPF %C

RCDKNKV[ 59% 6GUVU HQT 2TQVGEVKXG 4GNC[U CPF 4GNC[ 5[UVGOU

Shock

In standard tests, the relay has withstood 15 g in each of three mutually
perpendicular planes without structural damage or degradation of perfor-
mance.

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Summary of Contents for BE1-46N

Page 1: ...INSTRUCTION MANUAL FOR NEGATIVE SEQUENCE OVERCURRENT RELAY BE1 46N Publication Number 9 1700 00 990 Revision F 02 01 w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 2: ...IN THIS MANUAL INTRODUCTION This manual provides information concerning the operation and installation of the BE1 46N Negative Sequence Overcurrent Relay To accomplish this the following is provided b...

Page 3: ...does this manual provide data for every possible contingency regarding installation or operation The availability and design of all features and options are subject to modification without notice Shou...

Page 4: ...3 4 MAX TIME 3 4 Calculation Example 3 5 Setting Tap Adjust 3 5 Method 1 Single Phase 3 5 Method 2 Three Phase 3 6 Further Considerations 3 7 Characteristic Curves 3 8 SECTION 4 INSTALLATION 4 1 Gener...

Page 5: ...g 5 1 Operational Test Procedure 5 1 Pickup and Alarm 5 1 Timing 5 2 MAX TIME 5 3 SECTION 6 MAINTENANCE 6 1 General 6 1 In House Repair 6 1 Storage 6 1 SECTION 7 MANUAL CHANGE INFORMATION 7 1 Summary...

Page 6: ...phase quantities These quantities are the positive negative and zero sequence components of current and voltage The positive sequence component of current I1 represents the portion of the total curren...

Page 7: ...range of 3 0 to 5 0 A nominal at 60 hertz H Alarm output relay contacts NC and trip output relay contacts NO B8 I 2 2 t timing characteristics S Field selectable 48 or 125 Vdc power supply B One curre...

Page 8: ...125 Vdc 24 to 150 Vdc 24 to 150 Vdc 5 5 W 6 0 W T High Range 250 Vdc 240 Vac 62 to 280 Vdc 90 to 270 Vac 7 0 W 16 0 VA Type R power supply initially requires 14 Vdc to begin operating Once operating t...

Page 9: ...ip Timer Accuracy 200 25 milliseconds MAX TIME X 10 SEC Adjustable over the range of 10 to 990 seconds in increments of 10 Selection Range seconds MAX TIME Accuracy 5 of the setting Radio Frequency Fi...

Page 10: ...eeps 15 minutes each sweep without structural damage or degradation of performance UL Recognized UL Recognized per Standard 508 UL File No E97033 Note Output contacts are not UL Recognized for voltage...

Page 11: ...SEC Front panel thumbwheel switch provides selection of the maximum trip time over the range of 10 to 990 seconds in increments of 10 seconds Refer to Figure 3 2 for characteristic curves A setting of...

Page 12: ...rface K ALARM LED LED illuminates when level of I2 exceeds the ALARM trip level setting L PICKUP LED LED illuminates when level of I2 exceeds PICKUP trip level setting Figure 2 1 Location of Controls...

Page 13: ...ontrol for selecting tap values between the settings of the TAP ADJUST switch The output from the filter is applied to the analog to digital A D conversion network and to the buffer amplifier to drive...

Page 14: ...ut relays are provided for trip and alarm functions An auxiliary output relay is available that operates at the same time as the trip relay Trip and auxiliary output relays are available with either n...

Page 15: ...elow the requirements for proper operation the power supply status output relay de energizes thus closing the NC output contacts SETTING CONSIDERATIONS As the generator is subjected to unbalanced curr...

Page 16: ...d After pickup I2 pu I2 In the trip level detector circuit applies the sensed negative sequence current I2 pu to the minimum and maximum trip timers and the network which integrates the value I2 2 dt...

Page 17: ...nt being applied to the relay would be 5 Amp CT 1 Amp CT The relay TAP ADJUST should be set for this value of full load current SETTING TAP ADJUST Two methods for setting the TAP ADJUST are the single...

Page 18: ...mple phase A input relay case terminals 8 9 and adjust the TAP CAL control from a fully clockwise position counter clockwise until the front panel PICKUP LED is ON The nominal current value is now set...

Page 19: ...hat the manufacturer or the ANSI standard has specified a K factor of 30 Set K 30 The maximum negative sequence current I2 for an open phase occurs when the open is in the generator leads whether at t...

Page 20: ...2 per unit will be used Set the PICKUP thumbwheel to this value To set the value for the ALARM level of negative sequence current it is only necessary to determine the level that will give an operator...

Page 21: ...BE1 46N Functional Description 3 9 Figure 3 2 Characteristic Curves w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 22: ...ng precautions 1 A minimum of 0 2 A in the output circuit is required to ensure operation of current operated targets 2 The relay is a solid state device If a wiring insulation test is required remove...

Page 23: ...4 2 BE1 46N Installation 2 02 01 D1427 01 Figure 4 1 S1 Case Outline Dimensions Front View w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 24: ...BE1 46N Installation 4 3 Figure 4 2 S1 Case Panel Drilling Diagram Semi Flush Mounting w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 25: ...4 4 BE1 46N Installation Figure 4 3 S1 Case Double Ended Semi Flush Mounting Outline Dimensions Rear View w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 26: ...BE1 46N Installation 4 5 D1427 27 02 2001 Figure 4 4 S1 Case Double Ended Semi Flush Mounting Side View w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 27: ...4 6 BE1 46N Installation Figure 4 5 S1 Case Double Ended Projection Mounting Panel Drilling Diagram Rear View w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 28: ...7 03 02 2001 DETAIL A A SHOWING THE ADDITION OF WASHERS OVER THE BOSS TO TIGHTEN THE RELAY AGAINST THE PANEL CASE Figure 4 6 S1 Case Double Ended Projection Mounting Side View w w w E l e c t r i c a...

Page 29: ...number against the options listed in the Style Number Identification Chart before connecting and energizing a particular relay Except as noted previously connections should be made with minimum wire...

Page 30: ...BE1 46N Installation 4 9 Figure 4 8 Typical DC Control Connections w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 31: ...4 10 BE1 46N Installation Figure 4 9 Typical AC Sensing Connections w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 32: ...BE1 46N Installation 4 11 Figure 4 10 Typical Internal Connections w w w E l e c t r i c a l P a r t M a n u a l s c o m...

Page 33: ...ed into three different functional areas The functional areas are Pickup and alarm Timing Max time OPERATIONAL TEST PROCEDURE Pickup and Alarm Additional testing to verify trip and alarm circuit picku...

Page 34: ...e the current any further Step 5 Measure and record the applied current and observe the remote meter RESULT The recorded pickup value should be 3 168 A 0 048 A for 5 A CTs and 0 634 A 0 048 A for 1 A...

Page 35: ...d for the timing function use the following formula Substituting in the formula MAX TIME The following procedure will show how the MAX Time affects relay timing Step 1 Connect the test circuit shown i...

Page 36: ...calculate the time required for the timing function use the following formula We find t 160 seconds But because the MAX TIME was set for 10 100 seconds trip occurred at 100 seconds This concludes the...

Page 37: ...rsonnel are available Where special components are involved Basler Electric part numbers may be obtained from the number stamped on the component or assembly the schematic or parts list These parts ma...

Page 38: ...standard styles Changed Section 1 Specifications and Section 3 to reflect the changes in the relay Changed Figures 4 9 and 4 11 to remove power supply status references Updated Figures 1 1 and 3 2 to...

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