ENO radio transmitter ENOLS995
In stock: No
Vendor stock: No
Minimal order quantity: 1
Price (excl. VAT):
94,31 €
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 |
ENO radio transmitter ENOLS995 |
Brand |
Jung
|
Categories |
Switches
Remote Controls & RF/IR Receivers
|
Country of origin |
DE |
Harmonized System Code |
8526 9200 00
|
Mounting method |
Surface mounted (plaster) |
Halogen free |
Yes |
Surface protection |
Other |
Signal transmission |
Radio frequency (RF) |
Number of channels |
4 |
Range |
300 m |
With remote control |
No |
Wall-mounted transmitter |
Yes |
Suitable for switch |
Yes |
Suitable for dimmer |
Yes |
Material quality |
Thermoplastic |
Material |
Plastic |
Suitable for venetian shutter switch |
Yes |
RAL-number (similar) |
1013 |
Transparent |
No |
Surface finishing |
Glossy |
Window transmitter |
No |
Suitable for indication element |
No |
Packing details
Packing level 1 |
4011377052864 |
Packing level 2 |
4011377052864 |
Description
ENO radio transmitter ENOLS995 functions as a surface-mounted RF unit designed for signal transmission in switch applications.Facilitates multiple channels, integration with dimmers, and venetian shutter systems. Surface mounted (plaster), halogen free, thermoplastic material with glossy surface finishing and plastic composition.RAL-number approx.1013 for color similarity purposes.RF-based signal transmission range up to 300 m with support for 4 operational channels.Wall-mounted transmitter functionality verified;not transparent by design, intended solely as integrated system component without user-centric control elements like remote or manual transmitters.Suitable compatibility includes switches, dimmers, venetian shutter switches;excludes indication elements explicitly per specification constraints.Radio frequency operation confirmed:streamlined performance across specified electronic interfacing modules maximizing architectural integration potential within defined ranges of system capabilities under standardized conditions of multi-point connectivity interaction parameters