摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
A refrigerator cabinet comprising an insulated food storage compartment (2), and evaporator (3) and heating means (4) in thermal relation with said compartment (2); the cabinet comprises a thermal conductor member (5) movably arranged within the compartment (2) between a cooling position and a thawing position, actuating means for driving the thermal conductor member (5) between said positions, control means to energize the heating means (4) depending on said positions, in said cooling position the thermal conductor member (5) being in contact with or adjacent to the evaporator (3) to maximize heat transmission therebetween, so that the thermal conductor member (5) is capable of absorbing heat from said compartment (2), in said thawing position the heating means (4) being energized and the thermal conductor member (5) being spaced apart from the evaporator (3) to thermally separate the compartment (2) from the evaporator.
摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
The present invention relates to a capacitive sensor system comprising a sensor circuit connected to a first (15) and a second (11) antenna, the first antenna (15) is arranged on a first object (10) and the second antenna (11) is arranged on a second object (11) movable relative to said first object (10). The first antenna (15) is arranged right next to the second object (11) for the sensor circuit to detect the movement and/or position of the second object (11).
摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
A domestic appliance (1) with a bus (2) is disclosed. A plurality of modules (3) are connected to the bus, each controlling an operational component (4). Initial programming of the modules may take place from a single connection point (61). The modules may be configured to control the domestic appliance jointly and non-hierarchically. Suitably, all modules are identical up to content of a data memory provided therein.
摘要:
Rapid chilling apparatus for beverages comprising a receptacle (2) adapted to accommodate beverage containers (3) of differing length, and cooling means adapted to cool down said receptacle (2), wherein said receptacle (2) comprises a plurality of electrodes (4) arranged in succession one after the other along an inner surface (5) of said receptacle (2), said inner surface (5) being adapted to support a container (3) in such manner that the electrodes (4) turn out as being distributed along the whole length of the container (3), said electrodes (4) being connected to circuit means (6) adapted to detect and measure the capacitance value on each electrode (4) as brought about by the presence of a container (3) made of a conductive material in proximity of the same electrode (4) so as to determine the actual length of the container (3), or, in the case of a container (3) made of a non-conductive material, said capacitance value as brought about by the presence, inside the container, of beverage liquid in proximity of the same electrode (4), so as to determine the actual length of the container (3) being wetted by the beverage liquid contained thereinside, control means (7) being provided to operate said cooling means in response to the capacitance values detected by said circuit means (6) for a period of time, the duration of which is made dependant on the so determined length of the container (3).
摘要:
A turbidity sensor for use in a machine for washing articles, e.g., a washing machine (400). The turbidity sensor comprises a light source (210) for emitting light. The emitted light has a radiant intensity which is variable. The sensor further comprises a light-sensitive element (220) for receiving light emitted from the light source (210). The light source (211) and the light-sensitive element (220) are positioned relative to each other so that, when the light source (210) is in operation, light emitted from the light source (210) can propagate through a washing liquid contained in the washing machine (400) on its way to the light sensitive element (220). The light-sensitive element (220) is configured to measure the radiant intensity of light received at the light-sensitive element (221). Furthermore, the sensor comprises a controller (230) which is communicatively coupled to the light source (210) and the light-sensitive element (220). The controller (230) is configured to adjust the radiant intensity of the light emitted by the light source (210) in dependence of the measured radiant intensity of light received at the light-sensitive element (220).