摘要:
A system for controlling a louver blind mobile panel that is moveable along a rail installed in a living space construct. The mobile panel featuring an inner volume capable of housing at least one motor that is functionally coupled to an electronics unit. The electronics unit is controlled with a wireless remove controller to control the activity of the at least one motor.
摘要:
A shutter assembly (1) for architectural openings (3), includes a first rectangular panel (5) hinged to a perimeter (9) of the architectural opening (3), and a second panel (7) hinged to the first panel (5). Each of the first and second panels (5, 7) comprises spaced parallel first and second vertical frame columns (17A, 17B, 19), and spaced parallel top and bottom horizontal frame beams (21, 23) connecting upper longitudinal ends and lower longitudinal ends of the first and second vertical columns (17A, 17B, 9) defining a rectangular perimeter frame. First and second rectangular plates (27A, 27B) are arranged within the rectangular frame in relative sliding arrangement. The first and second plates (27A, 27B) each have a pattern of apertures (29, 29A) complementary to one another, to provide an open position, in which the apertures (29, 29A) of each plate (27A, 27B) are in register with one another, and a closed position, in which areas without apertures of one of the first and second plates (27A, 27B) are in register with apertures (29, 29A) in another of the first and second plates (27A, 27B). Indexing means (41, 45, 47) are operatively interposed between the first and second plates (27A, 27B). The indexing means (41, 45, 47) are arranged to provide identical positions of adjustment of the first and second plates (27A, 27B) between the open and closed positions in each of a plurality of shutter panels (5, 7, 5A, 7A).
摘要:
A unitary assembly for an architectural fenestration, providing dynamic solar heat gain control, which (1) provides a track-based frame structure/blind combination in which the blind is self-correcting should the blind material fall outside of the track; (2) provides directional shading, where the assembly provides for dynamically controlling the amount of light allowed to reach the heat storage unit; (3) provides a blind motor without limiter switches and with a quick-release slip-ring; and (4) provides a heat storage unit which is a thermally efficient, transparent and translucent structure, with which gain from sunny winter days is greater than nighttime loss, so as to provide supplemental heat.
摘要:
The present invention provides a mechanism for controlling the spacing between louvers 14, e.g. in a blind. The louvers are secured to a top rail 10 and a bottom rail 12. The connections are at an angle to each other so that the louvers are naturally twisted. The louvers extend through slots 22,24 in a comb 16 that can be moved up and down the louvers. The function of the comb 16 is to alter the position of the twist 28 as it is moved up and down the louvers, thereby opening and closing the blind.
摘要:
A unitary assembly for an architectural fenestration, providing dynamic solar heat gain control, which (1) provides a track-based frame structure/blind combination in which the blind is self-correcting should the blind material fall outside of the track; (2) provides directional shading, where the assembly provides for dynamically controlling the amount of light allowed to reach the heat storage unit; (3) provides a blind motor without limiter switches and with a quick-release slip-ring; and (4) provides a heat storage unit which is a thermally efficient, transparent and translucent structure, with which gain from sunny winter days is greater than nighttime loss, so as to provide supplemental heat.
摘要:
The invention is an air ventilator (2) which comprises an air inlet (2.1), an air outlet (2.2), and an air channel (2.3) to enable air flow between the air inlet (2.1) and the air outlet (2.2). The air ventilator (2) also comprises a backflow trap (1) for preventing air flowing to a backwards direction in the air channel (2.3). The air ventilator (2) further comprises a first section (2.7) and a second section (2.8). The first section (2.7) having a first height (h1) comprises channelling means (2.9) for controlling the direction of the air flow in the air channel (2.3). The height (h2) of the second section (2.8) is greater that the height (h1) of the first section (2.7). The second section (2.8) comprises a filter (9) for filtering impurities from the air flowing through the air channel (2.3).