Multifunctional window with windproof lighting function
A multi-functional, window technology, applied in the field of multi-functional windows, can solve the problems of non-conformance, the windows are not intelligent, the threat to the life safety of residential users, etc., to prevent dangerous accidents, control lighting and ventilation, and have free structure. flexible effects
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Embodiment 1
[0047] This embodiment discloses a multifunctional window with windproof and daylighting functions, see figure 1 , including two rod group rotation devices 1, scissor telescopic devices 2, wind and rain protection devices 3, PLC controller 4 and sensor components.
[0048] The two rod group rotating devices 1 are arranged symmetrically on the two side walls of the window opening. Specifically, see figure 2 and image 3 , the rod set rotating device 1 includes a rotating servo 101 , a worm 102 , a rocker 104 , a crank 105 , a connecting rod I 106 , a connecting rod II 107 , a connecting rod III 108 , a support frame 109 , a restraining rod 110 and a fixing plate 111 .
[0049] The fixing plate 111 is vertically connected to the side wall of the window opening by screws. The rotating steering gear 101 is connected to the fixing plate 111 by screws, and the rotating steering gear 101 is a 360° rotating steering gear. The worm 102 is vertically connected to the output shaft o...
Embodiment 2
[0087] This embodiment provides a relatively basic implementation. This embodiment discloses a multifunctional window with windproof and daylighting functions. See figure 1 , including two rod group rotation devices 1 , scissor telescopic devices 2 , windproof and rainproof devices 3 and PLC controllers 4 .
[0088] The two rod group rotating devices 1 are arranged symmetrically on the two side walls of the window opening. Specifically, see figure 2 and image 3 The rod group rotating device 1 includes a rotating servo 101, a worm 102, a worm wheel 103, a rocker 104, a crank 105, a connecting rod I 106, a connecting rod II 107, a connecting rod III 108, a support frame 109, a restraining rod 110 and a fixed plate 111 .
[0089] The fixing plate 111 is vertically connected to the side wall of the window opening by screws. The rotary steering gear 101 is connected to the fixing plate 111 by screws. The worm 102 is vertically connected to the output shaft of the rotary stee...
Embodiment 3
[0111] The main structure of this embodiment is the same as that of Embodiment 2, and further includes sensor components. see Figure 8 , the sensor assembly includes a wind sensor 501 , a rain sensor 502 , a temperature sensor 503 and a humidity sensor 504 .
[0112] The wind sensor 501 and the raindrop sensor 502 are installed on the outer rod 2091 of the scissor telescopic rod group 209 for measuring outdoor wind data and rainfall data. The first connecting rod 2093, the second connecting rod 2094, the third connecting rod 2095 and the fourth connecting rod 2096 of the scissor type telescopic rod group 209 are marked as an intermediate rod group. The temperature sensor 503 and the humidity sensor 504 are installed on the middle pole group for measuring indoor or outdoor temperature and humidity data. In this embodiment, the temperature sensor 503 is installed on the second connecting rod 2094 , and the humidity sensor 504 is installed on the fourth connecting rod 2096 . ...
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