SOMFY Ø60 Short Tubular Motor OXIMO-S IO
SOMFY OXIMO-S IO short tubular motor for Ø60 shaft, is ideal for short residential roller shutters. It is wireless, very fast but with silent termination, and it has electronically adjustable limits (no screw regulators or buttons) so that the installer does not need access to the motor head at all and it self-tests every month (self-learning mode). In addition, it constantly checks the torque, immediately perceives any sudden change and automatically stops its operation to protect both itself and the roll from obstacles and frost.
Wireless Operation
The built-in IO receiver, io-homecontrol® technology at 868.95 MHz, allows remote control of the motor and feedback on its operation. You can control them all from a remote control or your mobile phone or by voice by adding a digital voice assistant (Amazon Alexa, Google Assistant, Apple HomeKit). It has a large memory, rolling code of 16 million possibilities, and stores up to 9 different remote controls.
Compatibility
SOMFY OXIMO-S IO wireless short tubular motor is compatible with all SOMFY IO remote controls and Smart Hubs.
- SOMFY Connectivity Kit
- SOMFY TaHoma
- SOMFY IO
Technical Specifications
SOMFY OXIMO-S IO short tubular motor is connected with the built-in 3m white VVF 3×0.75mm² cable to AC-RGE1-230V/50HZ current and can work safely in a current voltage range of 195.5-253V and temperature from -20°C up to +70°C. It is additionally protected by a built-in 4-minute thermal, while the IP44 protection index makes it safe even for outdoor use inside an awning shaft.
SPECS
Torque :
Speed :
Load :
Noise :
Length :
Amperage :
Consumption :
6/17
6 Nm
17 rpm
11 Kg
46 dB
375 mm
0.4 A
90 W
Availability
The product is usually Immediately Available. But as there may be a shortage due to high demand or delay in imports, it is better to contact us for availability and expected delivery time.
ATTENTION!
The lifting load of each motor should be documented and confirmed by the roll manufacturer, as they must account for both friction and shaft thickness change per revolution, as well as some safety margin.
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