Eaton Moeller® series M22 Pushbutton, RMQ-Titan, Flat, maintained, red, Blank, Bezel: black
Product Name |
Eaton Moeller® series M22 Pushbutton
|
Catalog Number |
216618
|
EAN |
4015082166182
|
Product Length/Depth |
30 mm
|
Product Height |
30 mm
|
Product Width |
30 mm
|
Product Weight |
0.011 kg
|
Compliances |
GoST-R
Bureau Veritas CE Marked |
Certifications |
CSA Certified
Lloyd's Register Certified CCC Marked IEC/EN 60947 UL Category Control No.: NKCR UL CSA File No.: 012528 UL File No.: E29184 VDE 0660 CE CSA CSA Class No.: 3211-03 UL 508 CSA-C22.2 No. 94-91 IEC/EN 60947-5 CSA-C22.2 No. 14-05 DNV GL LR |
Catalog Notes |
Includes contact block mounting adapter.
|
Model Code |
M22S-DR-R
|
Bezel color |
Black
|
Bezel material |
Plastic
|
Design |
Flat
Classical |
Fitted with: |
Front ring
|
Functions |
Stay-put/spring-return function can be changed on device
|
Illumination |
Non-illuminated
|
Degree of protection |
IP67
NEMA 4X NEMA 3R NEMA 13 IP69K IP66 NEMA 12 |
Degree of protection (front side) |
NEMA 4X
IP67/IP69K |
Lifespan, mechanical |
1,000,000 Operations (AC operated)
|
Opening diameter |
22.5 mm
|
Operating frequency |
1800 Operations/h
|
Size |
Front dimensions: 22 x 22 mm
|
Type |
Pushbutton actuator
|
Type |
Pushbutton actuator
|
Mounting position |
As required
|
Shock resistance |
30 g, Mechanical, According to IEC/EN 60068-2-27, Sinusoidal shock 11 ms
Mechanical, According to IEC/EN 60068-2-27 |
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 |
Connection to SmartWire-DT |
With SWD-RMQ connections
Yes |
Actuating force |
5 N
|
Actuator color |
Red
|
Actuator function |
Maintained
Switching function latching |
Force for positive opening - min |
0 N
|
Heat dissipation capacity Pdiss |
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.
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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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