Thermal memory, Actual long time pickup is 112% of nominal pickup, Fuse shaped steep long time overcurrent – GE Industrial Solutions EntelliGuard TU Trip Units User Manual

Page 18

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EntelliGuard TU Trip Units: UL/ANSI Models

DEH-4567B

Protection

8

©2012 General Electric All Rights Reserved

Thermal Memory

The Long Time and Short Time pick up algorithm also includes a cooling cycle that keeps track of current if it oscillates in
and out of pick up range. This Thermal Memory is also active in case the circuit breaker trips on Long Time or Short Time to
account for residual heating in conductors. If a circuit breaker is closed soon after a Long Time trip or Short Time trip, a
subsequent trip may happen faster than indicated by the time current curve due to the residual cable Thermal Memory
effect. In trips without control power, the Thermal Memory is powered from the trip battery. The cooling algorithm requires
up to 14 minutes to fully reset to zero.

Table 2-1 shows the nominal clearing and commit times for X multipliers of nominal pickup.

Table 2-1: Nominal Time Delays for Thermal Shaped Long Time Bands

X =

1.5

1.5

6

6

7.2

7.2

10

10

Commit

Clear

Commit

Clear

Commit

Clear

Commit

Clear

Min CB

4.25

8.04

0.20

0.33

0.14

0.24

0.072

0.137

C-2

12.7

24.1

0.60

0.94

0.42

0.66

0.21

0.35

C-3

25.5

48.1

1.21

1.84

0.83

1.28

0.43

0.67

C-4

34.0

64.1

1.61

2.45

1.11

1.70

0.57

0.89

C-5

51.0

96.2

2.41

3.66

1.67

2.53

0.86

1.32

C-6

67.9

128

3.21

4.87

2.22

3.37

1.15

1.75

C-7

84.9

160

4.02

6.08

2.78

4.20

1.43

2.18

C-8

102

192

4.82

7.29

3.33

5.03

1.72

2.61

C-9

119

224

5.62

8.49

3.89

5.87

2.01

3.03

C-10

136

256

6.43

9.70

4.44

6.70

2.29

3.46

C-11

153

289

7.23

10.9

5.00

7.54

2.58

3.89

C-12

170

321

8.04

12.1

5.56

8.37

2.87

4.32

C-13

204

385

9.64

14.5

6.67

10.0

3.44

5.18

C-14

238

449

11.2

17.0

7.78

11.7

4.01

6.04

C-15

272

513

12.9

19.4

8.89

13.4

4.59

6.90

C-16

306

577

14.5

21.8

10.0

15.0

5.16

7.76

C-17

340

641

16.1

24.2

11.1

16.7

5.73

8.61

C-18

374

705

17.7

26.6

12.2

18.4

6.30

9.47

Max CB

408

769

19.3

29.1

13.3

20.0

6.88

10.3

• Algorithm will not commit below 1.5 cycles, clearing time will not be less than 0.088 seconds.

• Actual Long Time pickup is 112% of nominal pickup.

Fuse Shaped Steep Long Time Overcurrent

The optional steeper fuse characteristic is a straight line K=I

4

t shape for application in systems where fuses and circuit

breakers are used together. Twenty-two different time bands are available in each trip unit. Figure displays minimum and
maximum bands. Table 2-2 displays the nominal time delays for each of the 22 bands at various multiples of nominal
current pickup.

Drawn bands also include a constant time component, which accounts for the slight widening evident in the time current
curve at the lower (right) end of the faster (lower) time bands.

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