Schmersal

101181691

FWS 2105 A UE: 24...230V AC/DC
101181691
101181691
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Electrical data

Rated operating voltage
24 ... 230 VAC | 24 ... 230 VDC
Rated AC voltage for controls, 50 Hz, minimum
20.4 VAC
Rated control voltage at AC 50 Hz, maximum
253 VAC
Rated AC voltage for controls, 60 Hz, minimum
20.4 VAC
Rated control voltage at AC 60 Hz, maximum
253 VAC
Rated AC voltage for controls at DC minimum
20.4 VDC
Rated control voltage at DC, maximum
253 VDC
Electrical power consumption, maximum
5 W
Contact resistance, maximum
0.1 Ω
Note (Contact resistance)
in new state
Material of the contacts, electrical
Ag-Ni + Au

Note

Note (General)
Inductive loads (e.g. contactors, relays, etc.) are to be suppressed by means of a suitable circuit.

Mechanical data - Dimensions

Width
45 mm
Height
100 mm
Depth
121 mm

Ambient conditions - Insulation values

Rated impulse withstand voltage U
4.8 kV
Overvoltage category
III
Degree of pollution
2

General data - Features

Stop-Category
0
Wire breakage detection
Yes
Automatic reset function
Yes
Reset after disconnection of supply voltage
Yes
Integral system diagnostics, status
Yes
Number of LEDs
1
Number of undelayed semi-conductor outputs with signaling function
2
Number of safety contacts
1
Number of signalling outputs
2

General data

Standards
BG-GS-ET-20 | EN IEC 62061 | EN ISO 13849-1 | EN IEC 60947-5-1 | EN IEC 60947-5-3 | EN IEC 60947-5-5 | EN IEC 60204-1 | EN IEC 60947-1
Climatic stress
EN 60068-2-3 | BG-GS-ET-14
Enclosure material
Glass-fibre reinforced thermoplastic, ventilated
Gross weight
283 g

Safety classification

Standards
EN IEC 61508
Performance Level, up to
d
Category
3
PFH value
1.00 x 10⁻⁷ /h
Safety Integrity Level (SIL), suitable for applications in
2
Mission time
20 Year(s)

Wiring example

Note (Wiring diagram)
The wiring diagram is shown with guard doors closed and in de-energised condition. | The ISD tables (Intergral System Diagnostics) for analysis of the fault indications and their causes are shown in the appendix. | To monitor one guard door at plants with dangerous run-on movements up to PL d and Category 3 | Standstill monitoring for unlocking solenoid interlocks | The solenoid interlock can be opened, when the fail-safe standstill monitor has detected the end of the run-on movement by means of two inductive proximity switches. When the button (E) is actuated, the coil of the solenoid interlock is energised. | For suitable IFL range p-type inductive proximity switches, refer to "Schmersal Catalogue Automatisierungstechnik".

Other data

Note (applications)
safe standstill monitoring

Ambient conditions

Degree of protection of the enclosure
IP40
Degree of protection of the mounting space
IP54
Degree of protection of clips or terminals
IP20
Ambient temperature
+0 ... +55 °C
Storage and transport temperature, minimum
-25 °C
Storage and transport temperature, maximum
+70 °C
Resistance to vibrations
10 ... 55 Hz, Amplitude 0.35 mm
Restistance to shock
30 g / 11 ms

Mechanical data - Connection technique

Termination
rigid or flexible | Screw terminals M20 x 1.5
Terminal designations
IEC/EN 60947-1
Cable section, minimum
0.2 mm²
Cable section, maximum
2.5 mm²
Tightening torque of Clips
0.6 Nm

Electrical data - Safe relay outputs

Voltage, Utilisation category AC-15
230 VAC
Current, Utilisation category AC-15
3 A
Voltage, Utilisation category DC-13
24 VDC
Current, Utilisation category DC-13
2 A
Switching capacity, minimum
10 VDC
Switching capacity, minimum
10 mA
Switching capacity, maximum
250 VAC
Switching capacity, maximum
6 A

Mechanical data

Mechanical life, minimum
20,000,000 Operations
Mounting
Snaps onto standard DIN rail to EN 60715

Specifications

Width
45 mm
Height
100 mm
Depth
121 mm

Approvals - Standards

Certificates
BG | cULus

Electrical data - Digital inputs

Input signal, HIGH Signal "1"
10 … 30 VDC
Input signal, LOW Signal "0"
0 … 2 VDC
Conduction resistance, maximum
40 Ω

Integral system diagnosis (ISD)

Note (ISD -Faults)
The following faults are registered by the safety monitoring modules and indicated by ISD.
Faults
Failure of the safety relay to pull-in or drop-out | Fault on the input circuits or the relay control circuits of the safety monitoring module | Failure of the proximity switches | Failure of one channel being evaluated | Interruption of the connections to the inductive proximity switches