Abstract:
The invention concerns a controlling device (10) having terminals for connection to an electrical circuit (11) comprising: - a first user device (12) energized by a first voltage power supply and configured to switch between at least an on-state and an off-state, - a second user device (13) configured to be connected in series with the first device (12) and energized by a second voltage or current power supply, the controlling device (10) being configured to be connected in parallel of the first user device (12) and to: - absorb a leakage current flowing through the electrical circuit (11) below a first predetermined threshold, and - control the voltage or current between the terminals of the controlling device (10), so as to ensure that the second user device (13) is supplied with the second voltage or current.
Abstract:
L'invention concerne essentiellement un système (100) pour gérer l'énergie consommée par un dosimètre (110) portatif comprenant au moins un capteur (126, 128) de rayonnements ultraviolets (R), ledit système comportant : - des moyens (122, 162) pour déterminer l'heure à la position géographique du dosimètre, et - des moyens de contrôle (112) aptes à : - mettre en veille le dosimètre (110) si au moins une condition de mise en veille d'un ensemble de conditions de mise en veille est satisfaite, et - activer le dosimètre (110) si chaque condition d'un ensemble de conditions d'activation est satisfaite.
Abstract:
DEVICE AND METHOD FOR CONTROLLING A WINDOW OR WINDOW SHADING DEVICE BASED ON MEASUREMENTS AND A SETPOINT The invention relates to a device to control a window or a window shading device, based on at least indoor temperature or indoor humidity, and a temperature setpoint or a humidity setpoint. The devices of the invention have a number of interesting applications, such as the control of temperature or humidity in the 10 room. The invention also discloses embodiments including the detection of the presence or absence of a human being in the room. coo coo oc Coo Coo co c coo coo CoY CoY cy0
Abstract:
The invention relates to a device to control a window or a window shading device, based on at least indoor temperature or indoor humidity, and a temperature setpoint or a humidity setpoint. The devices of the invention have a number of interesting applications, such as the control of temperature or humidity in the room. The invention also discloses embodiments including the detection of the presence or absence of a human being in the room.
Abstract:
The invention discloses a network communication logic that is configured to have an access to one or more previous versions of a connection driver. The network communication logic is capable to generate and evaluate connections/configuration tests and, if the tests fail for a predefined duration or number of times, the network communication logic is configured to automatically trigger a replacement of a current version of the connection driver by one of the previous versions. Thanks to the invention, the IoT device in which this type of network communication logic is embedded, may become operative again, even if an update has disseminated a version that does not work in the configuration of the device.
Abstract:
The invention concerns a thermostatic radiator valve (TRV) (21) configured to adjust a flow of heating fluid from a heat generator (10) entering a heat emitter (11) in a room (101) with a room temperature (Tr1) based on a temperature setpoint, the heat generator (10) and the heat emitter (11) configured to heat a building (9), the TRV (21) comprising: a communication link (41) to a thermostat (60) controlling the heat generator (10) based on a thermostat temperature setpoint (61); an input interface configured to allow a user to enter a defined temperature setpoint or acquire the defined temperature setpoint (T2); wherein the TRV (21) is configured to send to the thermostat (60) a command to trigger the heat generator (10) if a difference between the defined temperature setpoint (T2) and the room temperature (Tr1) has a same sign as a gradient of temperature to be generated by the thermal energy generator and the thermostat (60) has reached the thermostat temperature setpoint (61).
Abstract:
The invention concerns a multi-state device (10) comprising a communication port (13) configured to receive a stimulus from a remote control (14), a transmitter (15) of an identifying code (16) on a line-of-sight carrier, a controller (17) configured to one or more of compare an identifying code received from the remote control (14) to the identifying code (16) of the multi-state device or make the multi-state device (10) switch from one state (11) to another state (12). The invention also concerns a method for controlling a multi-state device (10) using a remote control (14).
Abstract:
In a number of aspects, the invention discloses a device (100) comprising one or more infrared light sources (40, 41); one or more visible light sources (50, 51); an image sensor (10); a processing unit (20) configured to analyze a series of images of a region of interest output by the image sensor; a control unit (30) configured to generate one or more of an activation of the one or more visible light sources or an alarm based on a command received from the processing unit; wherein the analyze comprises detecting a moving foreground in the series of images of the region of interest, tracking one or more characterizing features in the moving foreground and classifying the one or more characterizing features into two of more types of objects of interest, a type of an object of interest determining a command sent by the processing unit to the control unit.
Abstract:
L'invention concerne essentiellement un système (100) pour gérer l'énergie consommée par un dosimètre (110) portatif comprenant au moins un capteur (126, 128) de rayonnements ultraviolets (R), ledit système comportant : - des moyens (122, 162) pour déterminer l'heure à la position géographique du dosimètre, et - des moyens de contrôle (112) aptes à : - mettre en veille le dosimètre (110) si au moins une condition de mise en veille d'un ensemble de conditions de mise en veille est satisfaite, et - activer le dosimètre (110) si chaque condition d'un ensemble de conditions d'activation est satisfaite.
Abstract:
The invention discloses a system comprising: a first remote controller comprising: at least one emitter of electromagnetic waves; at least one receiver of electromagnetic waves configured, during a training phase, to receive, from a second remote controller associated to an air conditioning (AC) system, electromagnetic waves carrying a plurality of data frames corresponding respectively to a plurality of defined commands of the AC system; at least one processing logic configured to: define, during said training phase, from said plurality of data frames corresponding to said plurality of defined commands of the AC system, a set of possible data frames corresponding respectively to a set of possible commands of the AC system defining a protocol of communication with the AC system; use, during an operating phase, said at least one emitter to send to the AC system, upon an input from a user to send one of the possible commands, electromagnetic waves carrying one of the possible data frames corresponding to said one of the possible commands.