LB Management push-button 2-gang ME1702C
In stock: No
Vendor stock: No
Minimal order quantity: 1
Price (excl. VAT):
53,92 €
This price is valid until 31.12.25
Estimate delivery time at our warehouse (approx.):
2-4 weeks
Technical Information
Item condition |
New |
Manufacture name |
LB Management push-button 2-gang ME1702C |
Brand |
Jung
|
Categories |
Control devices for switches and sockets
|
Country of origin |
DE |
Harmonized System Code |
8538 9099 00
|
Colour |
Brass |
Halogen free |
Yes |
Application |
Control of electrical users |
Surface protection |
Other |
With cover |
Yes |
Material quality |
Other |
Material |
Metal |
Number of buttons |
2 |
Suitable for application with dimmer |
Yes |
Suitable for application with venetian shutter switch |
No |
Suitable for application with switch |
Yes |
RAL-number (similar) |
0 |
With LED indication |
No |
Transparent |
No |
Surface finishing |
Matt |
Number of actuation points |
4 |
Packing details
Packing level 1 |
4011377169074 |
Packing level 2 |
4011377169074 |
Downloads
Description
LB Management push-button 2-gang ME1702C.Operates as a control interface for electrical systems, enabling direct activation or adjustment of circuitry.Suited for power switching and dimmer-compatible setups. Halogen-free material construction ensures safety compliance.Brass-toned finish with metal build quality, protected by undefined surface treatment classified under "Other." Matte surface finish without transparency elements rounds off aesthetics and tactile feedback properties.RAL value not specified;product maintains non-standard coding visually correlating to brass-tone appearances.Equipped with two physical buttons and covers included;four actuation points integrated for functional operation precision in system interfaces suitable for switch applications only where no LED indication persists.Suitable solely for dimmers, barring compatibility with venetian shutter mechanisms entirely evident dismissals around automation supports like Apple HomeKit or related ecosystems effectively removed boundary logic outputs focused on core manual controls prevalent fine-switching tuned designs exhibiting ruggedness optimize end-user engagement reliability