The present invention relates to a light source of a lighting device, and particularly to a light emitting diode (LED) array optical cup structure with a focal position.
With the rise of light emitting diodes (LEDs), the conventional light source 1 is gradually replaced by LED light sources. For example, the Taiwan Patent Nos. I321364, M512292 and I428535 disclose associated patents. In a current LED light source, a single LED chip is usually packaged in a single reflecting optical cup, or multiple LED chips are packaged in a single reflective optical cup. That is to say, the LED structure is a single reflective optical cup, and so each LED structure is a single light source focus. Thus, multiple LED structures assembled form and present multiple light source focuses.
Further, the light intensity (brightness) of a single LED light source is lower and has a smaller illumination angle, and multiple LED light sources are thus collectively utilized to increase overall brightness and divergence angle. Referring to
That is to say, a conventional design of multiple LEDs 5 assembled causes mismatch in the focusing lens 2 (secondary optical component), which then needs to be re-designed in practice in order to coordinate with an LED assembly having multiple light source focuses. Further, the structure of the secondary optical component has an enlarged volume due to multiple dispersed light source focuses, and leads to not only space waste and environmental unfriendliness due to increased materials used, but also increased costs and reduced manufacturing efficiency.
Therefore, it is a primary object of the present invention to provide a light emitting diode (LED) array optical cup structure with a focal position. The LED array optical cup structure is directly applicable to a conventional secondary optical component to satisfy application requirements.
The present invention provides an LED array optical cup structure with a focal position. The LED array optical cup structure includes a substrate, at least three reflective optical cups disposed on the substrate, and a plurality of LEDs in a quantity corresponding to the reflective optical cups. The reflective optical cups are arranged closely side by side to form a geometric shape, and each tapers downwards to form a cone-shaped accommodating space with an opening. The LEDs are disposed on the substrate and respectively accommodated in the cone-shaped accommodating spaces, and form a focal position at a center of the LEDs.
Accordingly, as opposed to the prior art, through the close and side by side arrangement of the reflective optical cups, the present invention allows the LEDs to produce a focal position. Thus, the present invention may adopt existing conventional secondary optical components without needing a new design, so that production costs are reduced and manufacturing needs are satisfied by adopting such conventional small-sized and low-cost secondary optical components.
To better understand the features, objects and effects of the present invention, details of the present invention are given in preferred embodiments with the accompanying drawings below.
Referring to
The reflective optical cups 20 are arranged closely side by side to form a geometric shape. In this embodiment, four reflective optical cups 20 are arranged closely to form a quadrilateral as an example. Each of the reflective optical cups 20 is tapered downwards to form a cone-shaped accommodating space 21 including an opening 22. The LEDs 30 are disposed on the substrate 10, and are respectively accommodated in the cone-shaped accommodating spaces 21. Further, the LEDs 30 form a focal position 40 at a center of the LEDs 30.
Referring to
Referring to
Further, the opening 22 of each cone-shaped accommodating space 21 is not limited to any specific shape, and may be selected from the group consisting of a polygon, a circle or an ellipsoid, or other types of patterns, depending on the overall optical design of a product to be applied to. Further, the shapes of the openings 22 of the reflective optical cups 20 need not be the same, and may be different.
Referring to
In conclusion, the present invention provides following features as opposed to the prior art.
1. With the design of closely arranging the reflective optical cups side by side, the LEDs are caused to produce a focal position. Thus, the present invention may adopt existing conventional secondary optical components without needing a new design.
2. The present invention provides a design of a focal position, and so the secondary optical components involved may be miniaturized to reduce production costs and satisfy manufacturing requirements.
3. The number of reflective optical cups may be appropriately selected to meet different brightness requirements.
4. LEDs in different specifications, i.e., LEDs in different colors, may be selected and placed in the reflective optical cups to satisfy requirements of matching different specifications.
Number | Date | Country | Kind |
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105214530 | Sep 2016 | TW | national |