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Ventilation skylight based on intelligent control
The invention discloses a ventilation skylight based on intelligent control, relates to the technical field of ventilation skylights, and aims at solving the problems that an existing ventilation skylight is low in flexibility, the size of a ventilation opening cannot be automatically adjusted and controlled according to the external environment, and the size of the ventilation opening cannot be automatically adjusted and controlled according to the internal environment of a building. The ventilation skylight structure comprises a structural framework, a light-transmitting skylight and an electric shutter assembly, the structural framework comprises a plurality of cross beams and a plurality of vertical beams, the cross beams are located at the upper end of the structural framework, the vertical beams are located at the lower end of the structural framework, and the vertical beams are located on the two sides of the lower ends of the cross beams correspondingly; a first mounting groove is formed between the two cross beams, a second mounting groove is formed between the two vertical beams, the light-transmitting skylights are located on the inner side of the first mounting groove, the electric shutter assemblies are located on the inner side of the second mounting groove, and the light-transmitting skylights are located at the top end of the ventilation skylight structure.
本发明公开了一种基于智能控制的通风天窗,涉及通风天窗技术领域,为解决现有的通风天窗灵活性较低,无法根据外部环境对通风口大小进行自动调控,也无法根据建筑内部环境对通风口大小进行自动调控的问题。所述通风天窗结构包括结构骨架、透光天窗和电动百叶窗组件,所述结构骨架包括若干横梁和若干竖梁,若干所述横梁位于结构骨架的上端,若干所述竖梁位于结构骨架下端,若干所述竖梁分别位于横梁下端的两侧,两个所述横梁之间设置有第一安装槽,两个所述竖梁之间设置有第二安装槽,所述透光天窗位于第一安装槽的内侧,所述电动百叶窗组件位于第二安装槽的内侧,若干所述透光天窗位于通风天窗结构的顶端。
Ventilation skylight based on intelligent control
The invention discloses a ventilation skylight based on intelligent control, relates to the technical field of ventilation skylights, and aims at solving the problems that an existing ventilation skylight is low in flexibility, the size of a ventilation opening cannot be automatically adjusted and controlled according to the external environment, and the size of the ventilation opening cannot be automatically adjusted and controlled according to the internal environment of a building. The ventilation skylight structure comprises a structural framework, a light-transmitting skylight and an electric shutter assembly, the structural framework comprises a plurality of cross beams and a plurality of vertical beams, the cross beams are located at the upper end of the structural framework, the vertical beams are located at the lower end of the structural framework, and the vertical beams are located on the two sides of the lower ends of the cross beams correspondingly; a first mounting groove is formed between the two cross beams, a second mounting groove is formed between the two vertical beams, the light-transmitting skylights are located on the inner side of the first mounting groove, the electric shutter assemblies are located on the inner side of the second mounting groove, and the light-transmitting skylights are located at the top end of the ventilation skylight structure.
本发明公开了一种基于智能控制的通风天窗,涉及通风天窗技术领域,为解决现有的通风天窗灵活性较低,无法根据外部环境对通风口大小进行自动调控,也无法根据建筑内部环境对通风口大小进行自动调控的问题。所述通风天窗结构包括结构骨架、透光天窗和电动百叶窗组件,所述结构骨架包括若干横梁和若干竖梁,若干所述横梁位于结构骨架的上端,若干所述竖梁位于结构骨架下端,若干所述竖梁分别位于横梁下端的两侧,两个所述横梁之间设置有第一安装槽,两个所述竖梁之间设置有第二安装槽,所述透光天窗位于第一安装槽的内侧,所述电动百叶窗组件位于第二安装槽的内侧,若干所述透光天窗位于通风天窗结构的顶端。
Ventilation skylight based on intelligent control
一种基于智能控制的通风天窗
MAO HAILIN (Autor:in) / CAI PENG (Autor:in) / QI YIFEI (Autor:in) / ZHAO FENGYI (Autor:in)
06.12.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E06B
Feste oder bewegliche Abschlüsse für Öffnungen in Bauwerken, Fahrzeugen, Zäunen oder ähnlichen Einfriedungen allgemein, z.B. Türen, Fenster, Läden, Tore
,
FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES, OR LIKE ENCLOSURES, IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
/
E04D
ROOF COVERINGS
,
Dacheindeckungen
Intelligent opening and closing type roof ventilation skylight
Europäisches Patentamt | 2020
|