SHUTTER - 230 V Wi-Fi blinds controller 230 V
Wifi roller shutter controller with 230 V motor with a load capacity of up to 320 W.
SHUTTER - is a roller shutter or shutter controller with the possibility of smooth control of the slats. Thanks to the active power measurement function, it is not necessary to manually calibrate the roller shutter movement times *. The application allows you to perform "quick steps", ie raise - lower, and to set the slat angle of the shutter to -90 ᣞ➱ 0 ᣞ➱ 90 ᣞ. In the case of the blinds, after they are lowered or raised, the controller sets the slats to the angle in which the slats were located a moment earlier.
Application for phones and tablets
Remote access via Wi-Fi and F&F cloud
Voice control
Programming using calendars
Smooth control of the angle of the slats in the blinds
Properties
- Control of a single roller shutter with a 230 V AC motor with a load of up to 320 W;
- Ability of local connection of one or two buttons for direct control of the roller shutter operation;
- Controlling the level of the roller shutter opening and ability to control the degree of the slat tilt;
- Set the desired level of roller shutter opening and slat tilt using the mobile app and time programmers;
- Built-in clock with power backup and backup copy of the work program guarantees proper operation also without a Wi-Fi connection;
- REST API support enabling integration of the controller also with other home automation systems;
- Electric protection of the roller shutter motor;
- Built-in thermal protection;
- Convenient installation in an installation box with a diameter of fi 60 mm.
FOX - Wi-Fi control system
To control devices, the FOX system uses a free mobile application, which is available for devices with iOS and Android systems.
The application allows you to manage the installed modules in a simple and intuitive way. Thanks to the use of the home Wi-Fi network and the F&F cloud, you have the ability to constantly control devices at home from anywhere in the world with Internet access.
If you do not want to control your Fox system from outside your home, you can choose not to use the F&F cloud and still fully enjoy the functional control that works only over your local Wi-Fi or Bluetooth network.
Plan activities of the FOX system using online calendars
Use calendars and plan the operation of the module for the time of the day or evening. It depends on you when and what functions will be performed. You can schedule the lighting to be turned on at a given time or to water the garden at different times according to the schedule you set.
Control your voice with the Google assistant
The voice control service is available in Polish. After a simple configuration, the control of individual devices may be performed by saying the phrase: “Ok Google. Open all blinds. ”,“ Turn on blue light in entertainment room ”, or when you leave the house:“ Ok Google. Turn off all devices. "
- Power supply voltage
- 85÷265 V AC
- Control input
- 85÷265 V AC
- Control pulse current
- less than 1 mA
- Maksymalny prąd obciążenia (AC-1) - prąd znamionowy
- silnik AC - maks. 320 W
- Maximum load current (AC-1)
- AC-1: 6 A; AC-3: 1,5 A
- Humidity (non-condensing)
- ≤ 90%
- Radio frequency
- 2,4 GHz
- Transmission
- WI-FI
- Radio power (IEEE 802.11n)
- ≤ 13 dBm
- Terminal
- pluggable terminal blocks 2,5 mm²
- Tightening torque
- 0,4 Nm
- Working temperature
- 0÷45°C
- Dimensions
- Ø54 (48×43 mm), height: 25 mm
- Assembly
- in a flush-mounted box Ø60
- Ingress Protection Marking
- IP20
Z uwagi na niskie napięcie zasilania nie należy stosować przycisków podświetlanych.
Maksymalny prąd obciążenia
Prąd styku podany w danych technicznych jest wartością maksymalną i może podlegać ograniczeniom – więcej informacji. Jeśli z przedstawionych informacji wynika, że przekaźnik w urządzeniu jest niewystarczający zaleca się stosować zewnętrzny element przełączający (np. stycznik) przystosowany do przełączania dużych prądów udarowych.
Pamięć stanu
Wersja przekaźnika z literą "M" posiada pamięć pozycji styku, tzn. po załączeniu zasilania zostanie przywrócony stan przekaźnika jaki był w momencie wyłączenia zasilania.