Integrated intelligent temperature-inducting constant-temperature ecological lighting awning and temperature controlling method
A technology of constant temperature and ceiling, applied in the direction of control input, application, and heating method related to air characteristics, it can solve the problems of troublesome installation, reduce heat exchange, and greatly energy consumption of air conditioners, and achieve the effect of convenient installation and prevention of loss
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Embodiment 1
[0047] Embodiment 1: see figure 1 , an integrated temperature-sensing intelligent constant temperature ecological lighting ceiling system, including mechanical parts and circuit parts, the inner glass 1 used in the intelligent constant temperature lighting ceiling system is single-layer glass, the outer glass 2 is hollow double-layer glass, single-layer glass A hollow layer 3 is formed between the double-layer glass and the building, and the two sides of the hollow layer 3 are provided with circulating air outlets 21; A temperature control unit is arranged in the hollow layer, so that the air in the hollow layer 3 can circulate without exchanging air with the outside air, which is more energy-saving.
[0048] see image 3 As shown, the circuit part of the daylighting ceiling, the microcontroller model is AT89C51, wherein the input end is coupled to the hollow layer temperature sensor 52 and the outdoor temperature sensor 51, and the output end is coupled to the first opening...
Embodiment 2
[0071] Embodiment two, see Figure 4 As shown, an integrated temperature-sensing intelligent constant-temperature ecological daylighting ceiling differs from Embodiment 1 in that there is no vent 11 on the profile in this embodiment, and it can be ventilated when the temperature is suitable.
Embodiment 3
[0072] Embodiment 3, an integrated temperature-sensing intelligent constant-temperature ecological daylighting ceiling, differs from Embodiment 1 in that the air conditioner 4 can be replaced with a semiconductor cooling and heating element to adjust the temperature of the hollow layer 3 .
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