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Terminals 

aux. contacts

screw terminals 

M3

max. cable cross section

flexible with wire end ferrule w/wo plastic sleeve  

0.25 – 2.5 mm

2

wire stripping length 

8 mm

tightening torque (EN 60934) 

0.5 - 0.6 Nm

Housing material 

moulded

Mounting

symmetrical rail to EN 60715-35x7.5

Ambient temperature

0...+50 °C (without condensation, see 

EN 60204-1)

Storage temperature

-20...+70 °C

Humidity

96 hrs/95 % RH/40 °C to   

IEC 60068-2-78, test Cab.

climate class 3K3 to EN 60721

Vibration

3 g, test to IEC 60068-2-6 test Fc

Degree of protectio

housing: IP20 EN 60529  

terminals: IP20 EN 60529

EMC (EMC directive, 

CE logo)

emission: EN 61000-6-3

susceptibility: EN 61000-6-2

Insulation co-ordination 

(IEC 60934)

0.5 kV/2 pollution degree 2

re-inforced insulation in operating area

dielectric strength

max. DC 32 V (load circuit)

Insulation resistance

(OFF condition)

n/a, only electronic disconnection

Dimensions (W x H x D)

12.5 x 80 x 83 mm

Mass

approx. 65 g

2  Technical Data (Tambient = 25 °C, US = DC 24 V)

Schematic diagram ESX10-TB-124 (Example)

Failsaf

e

R

sens

e

LINE (+)

DC 24 V

LOAD (+)

load output

0 V

SF   status output

RE   reset input

status indication

green/orange/red

S1

ON/OFF

electronic control unit

Time/Current characteristic curve (TA = 25 °C) 

disconnection 

typically 1.1 x IN

   

IK

10000

1000

1

2

4

trip time in second

s

...times rated current

100

10

1

0.1

0.01

3

5

0

1.8 x IN

5

  current limitation

typically 1.8 x IN

l

 

The trip time is typically 3 s in the range between 1.1 and 1.8 x I

N

 

(e.g. ESX10-TB-...-6 A) 

l

  

Electronic current limitation I

Limit

 occurs at typically 1.8 x I

N

 

which means that under all overload conditions (independent 

of the power supply and the resistance of the load circuit) 

the max. overload before disconnection will not exceed 1.8 

x I

N

 times the current rating. The individual current limitation 

value I

Limit

 depends on the current rating (see table1). Trip 

time is between 100 ms and 3 sec (depending on overload 

or at short circuit).

 

l

 

Without this current limitation a considerably higher overload 

current would flow in the event of an overload or short circuit.

ESX10-T Signal inputs / outputs (wiring diagram)

ESX10-T signal inputs / outputs (schematic diagrams)

Auxiliary contacts are shown in OFF or error condition

LINE+ 1

LOAD+

2

0V 3

LINE+ 1

14

13

2

LOAD+

0V 3

LINE+ 1

12

11

2 LOAD+

0V 3

LINE+ 1

SF 23

IN 21

2 LOAD+

0V 3

LINE+ 1

SF 23

RE 22

2 LOAD+

0V 3

LINE+ 1

SF 23

RE 22

2 LOAD+

0V 3

ESX10-TA-100
without signal input/output

ESX10-TB-101
without signal input
with signal output F
(single signal, N/O)

ESX10-TB-102
without signal input
with signal output F
(single signal, N/C)

ESX10-TB-114
with control input IN+

(+DC 24 V)

with status output SF

(+24 V = load output ON)

operating 

condition: 

13-14 closed

fault condition: 

13-14 open

operating 

condition: 

11-12 open

fault condition: 

11-12 closed 

operating 

condition: 

SF +24 V = OK

fault condition: 

SF 0 V

ESX10-TB-124
with reset input RE
(+DC 24 V 

)

with status output SF
(+24 V = load output ON)

ESX10-TB-127
with reset input RE
(+DC 24 V 

)

with inverse status output SF
(0 V = load output ON)

operating

condition: 

SF +24 V = OK

fault condition: 

SF 0 V

operating 

condition: 

SF 0 V = OK

fault condition: 

SF +24 V

Summary of Contents for ESX10-TA-DC 24 V

Page 1: ...P 54 is achieved after installation in a UV protected fully enclosed room control cabinet IEC EN60079 0 and IEC EN 60079 14 have be observed for installation Safety This device is not protected agains...

Page 2: ...rcuit external free wheeling diode recommended with inductive load Several load outputs must not be connected in parallel Status output SF ESX10 T 114 124 127 Electrical data plus switching signal out...

Page 3: ...ESX10 TB 6 A l Electronic current limitation ILimit occurs at typically 1 8 x IN which means that under all overload conditions independent of the power supply and the resistance of the load circuit t...

Page 4: ...0 TB 124 Load Load Load 22 1 LINE RE SF 23 22 1 LINE RE SF 23 22 1 LINE RE SF 23 Reset button 3 0V 3 0V 3 0V 24 V 0 V 0 5 A ESX10 TA 100 1 LINE 1 LINE 1 LINE 1 LINE 2 LOAD 2 LOAD 2 LOAD 2 LOAD 3 0V 3...

Page 5: ...or jumper X22200513 grey remove protection against brush contact from bottom side 12 5 x n 3 length of busbars 0 5 e g 12 5 x 5 3 59 5 0 5 insert protection against brush contact continuous busbar 50...

Page 6: ...MENT ESX10 TA TB ISA 12 12 01 2015 UL File E320024 Operating Temperature Code T4 This equipment is suitable for use in Class Division 2 Groups A B C and D or non hazardous locations only T4 A 0 C to 5...

Page 7: ...7...

Page 8: ...nly In the interest of improved design performance and cost effectiveness the right to make changes in these specifications without notice is reserved Product markings may not be exactly as the orderi...

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