Intelligent high-power chip-level entertainment lighting source module
A lighting source, high-power technology, applied in the field of spotlights, can solve the problems of increasing material usage, cost increase, and increasing the space size of spotlights, etc., to achieve the effect of reducing distance, avoiding waste, convenient setting and uniform force point
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Embodiment 1
[0035] see figure 1 The schematic diagram of the structure of the intelligent high-power chip-level entertainment lighting source module shown. An embodiment of the present invention provides an intelligent high-power chip-level entertainment lighting light source module.
[0036] The intelligent high-power chip-level entertainment lighting source module includes lampshade 01, hydraulic drive mechanism 02, curved surface extrusion mechanism 03, guide seat 04, LED light source 05, variable curved surface reflector 06, planar convex lens 07 and zoom linkage mechanism 08 . One end of lampshade 01 offers light hole. The plane convex lens 07 is embedded in the light hole. The curved surface extrusion mechanism 03 is located in the lampshade 01 and coaxially arranged with the planar convex lens 07 . The variable curved surface mirror 06 is clamped on the curved surface extrusion mechanism 03 . The hydraulic drive mechanism 02 resists the curved surface extrusion mechanism 03 . ...
specific Embodiment approach
[0053] The specific implementation of the intelligent high-power chip-level entertainment lighting light source module provided in this embodiment is as follows:
[0054] When it is necessary to change the focusing range, the piston rod pushes the curved surface extrusion mechanism 03 by actuating the hydraulic drive mechanism 02, and then the curved surface extrusion mechanism 03 squeezes the variable curved surface mirror 06 to make the curvature change. At the same time, the LED The position of the light source 05 also moves driven by the zoom link mechanism 08. When the curvature is stable, the range of parallel beams formed by the LED light source 05 will change, which in turn will cause the range of beams focused by the planar convex lens 07 to change.
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