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216706
Model code: M22-DDL-WS-X1/X0

Eaton Moeller® series M22 Double actuator pushbutton, RMQ-Titan, Actuators and indicator lights non-flush, momentary, White lens, white, black, inscribed, Bezel: titanium

General specifications

Product Name
Eaton Moeller® series M22 Double actuator pushbutton
Catalog Number
216706
Model Code
M22-DDL-WS-X1/X0
EAN
4015082167066
Product Length/Depth
30 mm
Product Height
55 mm
Product Width
30 mm
Product Weight
0.015 kg
Certifications
CSA
UL File No.: E29184
CSA Class No.: 3211-03
IEC/EN 60947
UL 508
CSA-C22.2 No. 14-05
CE
CSA File No.: 012528
CSA-C22.2 No. 94-91
VDE 0660
IEC/EN 60947-5
UL
UL Category Control No.: NKCR
DNV
GL
LR

Features & Functions

Bezel color
Titanium
Bezel material
Plastic
Design
Non-Flush
Classical
Features
Labelled
Fitted with:
Front ring
Inscription
Inscribed
Lens color
White

General

Degree of protection
NEMA 13
IP66
NEMA 12
NEMA 4X
NEMA 3R
Degree of protection (front side)
NEMA 4X
IP66
Lifespan, mechanical
200,000 Operations
Opening diameter
22.5 mm
Operating frequency
3600 Operations/h
Product category
RMQ-Titan
Size
Front dimensions: 29,7 x 54,7 mm
Suitable for
Illumination
Type
Double actuator

Ambient conditions, mechanical

Mounting position
As required
Shock resistance
Mechanical, According to IEC/EN 60068-2-27
30 g, Mechanical, According to IEC/EN 60068-2-27, Sinusoidal shock 11 ms

Climatic environmental conditions

Ambient operating temperature - min
-25 °C
Ambient operating temperature - max
70 °C
Ambient storage temperature - min
40 °C
Ambient storage temperature - max
80 °C
Climatic proofing
Damp heat, cyclic, to IEC 60068-2-30
Damp heat, constant, to IEC 60068-2-78

Communication

Connection to SmartWire-DT
With SWD-RMQ connections
Yes

Actuator

Actuating force
5 N
Actuator color
Black and white
Actuator function
Momentary
Spring-return

Contacts

Force for positive opening - min
0 N

Design verification

Equipment heat dissipation, current-dependent Pvid
0 W
Heat dissipation capacity Pdiss
0 W
Heat dissipation per pole, current-dependent Pvid
0 W
Rated operational current for specified heat dissipation (In)
0 A
Static heat dissipation, non-current-dependent Pvs
0 W
10.2.2 Corrosion resistance
Meets the product standard's requirements.
10.2.3.1 Verification of thermal stability of enclosures
Meets the product standard's requirements.
10.2.3.2 Verification of resistance of insulating materials to normal heat
Meets the product standard's requirements.
10.2.3.3 Resist. of insul. mat. to abnormal heat/fire by internal elect. effects
Meets the product standard's requirements.
10.2.4 Resistance to ultra-violet (UV) radiation
Please enquire
10.2.5 Lifting
Does not apply, since the entire switchgear needs to be evaluated.
10.2.6 Mechanical impact
Does not apply, since the entire switchgear needs to be evaluated.
10.2.7 Inscriptions
Meets the product standard's requirements.
10.3 Degree of protection of assemblies
Does not apply, since the entire switchgear needs to be evaluated.
10.4 Clearances and creepage distances
Meets the product standard's requirements.
10.5 Protection against electric shock
Does not apply, since the entire switchgear needs to be evaluated.
10.6 Incorporation of switching devices and components
Does not apply, since the entire switchgear needs to be evaluated.
10.7 Internal electrical circuits and connections
Is the panel builder's responsibility.
10.8 Connections for external conductors
Is the panel builder's responsibility.
10.9.2 Power-frequency electric strength
Is the panel builder's responsibility.
10.9.3 Impulse withstand voltage
Is the panel builder's responsibility.
10.9.4 Testing of enclosures made of insulating material
Is the panel builder's responsibility.
10.10 Temperature rise
Not applicable.
10.11 Short-circuit rating
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
10.12 Electromagnetic compatibility
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
10.13 Mechanical function
The device meets the requirements, provided the information in the instruction leaflet (IL) is observed.

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