This application claims the priority of a Chinese Patent Application No. 202311862347.2, filed on Dec. 29, 2023, the disclosure of which is incorporated herein by reference in its entirety.
This application relates to the field of LED technology, and in particular to an ambient light bar and a television.
As an important broadcasting and video communication tool, television (TV) has become one of the essential electrical appliances in modern life. In recent years, since the ambient light can be synchronized with the color of the TV screen, reduce the eye strain caused by watching TV and produce an immersive viewing experience, it has attracted more and more attention.
Referring to
Based on this, an object of the present application is to provide an ambient light bar and a television.
In a first aspect, an ambient light bar is provided according to the present application, which includes: a printed circuit board (PCB) board; at least one beveled light emitting diode (LED) bead group and a lens assembly.
Each of the at least one beveled LED bead group includes at least two beveled LED beads, and the at least two beveled LED beads are fixed on the PCB board according to a preset arrangement. A chip mounting face and a welding plane of each of the beveled LED beads form a bevel angle, and bevel angles of the at least two beveled LED beads are different.
The lens assembly is covered above at a light output side of the beveled LED bead group and is fixed on the PCB board.
In some embodiments, the beveled LED bead group includes four beveled LED beads, and bevel angles of the beveled LED beads are 35°, 60°, 50° and 20°, respectively.
In some embodiments, the beveled LED beads are arranged in a straight line shape or a rectangular shape.
In some embodiments, the beveled LED beads are arranged at intervals in a straight line shape in an order of the bevel angles of 35°, 60°, 50° and 20°.
In some embodiments, the beveled LED beads are arranged in two rows and two columns. In a row direction, the beveled LED bead with the bevel angle of 20° is arranged at an interval from the beveled LED bead with the bevel angle of 50°. In a column direction, the beveled LED bead with the bevel angle of 20° is arranged at an interval from the beveled LED bead with the bevel angle of 35°.
In some embodiments, the lens assembly includes a base, at least two bosses and at least two lenses. Each of the bosses is provided with at least one opening, each of the lenses is fixed on an upper surface at an opening of a corresponding boss, and the beveled LED beads are located in openings of the bosses, respectively. Angles formed by the base and upper surfaces of the bosses are not equal, and curvatures of the lenses are different.
In some embodiments, the lens assembly includes a first boss, a second boss, a third boss, a first lens, a second lens, a third lens and a fourth lens.
The first boss is provided with a first opening, the first lens is fixed on an upper surface at the first opening of the first boss, and the beveled LED bead with the bevel angle of 35° is located in the first opening of the first boss.
The second boss is provided with a second opening and a third opening. The second lens is fixed on an upper surface at the second opening of the second boss, and the beveled LED bead with the bevel angle of 60° is located in the second opening of the second boss. The third lens is fixed on an upper surface at the third opening of the second boss, and the beveled LED bead with the bevel angle of 50° is located in the third opening of the second boss.
The third boss is provided with a fourth opening, the fourth lens is fixed on an upper surface at the fourth opening of the third boss, and the beveled LED bead with the bevel angle of 20° is located in the fourth opening of the third boss.
In some embodiments, the PCB board is provided with silk screen information of bevel angles of the beveled LED beads and/or silk screen information of surface mount areas of the lenses.
In some embodiments, the PCB board is provided with a through hole, the lens assembly further includes a column foot, and the through hole is configured for the column foot to be inserted.
In some embodiments, the ambient light bar includes at least two beveled LED bead groups.
In some embodiments, the spacing between adjacent beveled LED bead groups ranges from 40 mm to 120 mm.
In some embodiments, the ambient light bar further includes: a fill light unit, located at one side of the at least one beveled LED bead group.
The fill light unit includes at least two beveled LED beads and a lens body, the at least two beveled LED beads of the fill light unit are fixed on the PCB board at intervals according to a preset arrangement. The lens body is covered above a light output side of the beveled LED beads and fixed on the PCB board.
In some embodiments, in the fill light unit, the distance between adjacent beveled LED beads ranges from 3 mm to 10 mm.
In some embodiments, the fill light unit includes four beveled LED beads with bevel angles of 35°, 60°, 50° and 20° respectively, and the four beveled LED beads are arranged at intervals in an order of the bevel angles of 20°, 35°, 50° and 60°. The beveled LED bead with the bevel angle of 60° is arranged close to the at least one beveled LED bead group.
In some embodiments, a plane where a beveled LED bead of the fill light unit is located and a plane where a beveled LED bead of the beveled LED bead group is located form an angle ranging from 15° to 45°.
In some embodiments, the lens body includes: a base; and a boss and four lens spheres which are arranged at a front side of the base. The boss is covered above the beveled LED beads. The boss includes a bevel, the bevel of the boss is provided with four openings, the beveled LED beads are located in the openings of the boss respectively, and the four lens spheres are fixed on upper surfaces at the openings of the boss, respectively.
In a second aspect, a television is provided according to the present application, which includes a screen, a back panel opposite to the screen, and multiple ambient light bars as described above. The multiple ambient light bars are sequentially arranged on left, upper and right edges of the back panel, and the ambient light bars emit light to the outside of the edges of the back panel.
In some embodiments, the back panel includes multiple through holes opened in its panel surface, and the multiple ambient light bars are embedded in the through holes from the inside of the television and protrude from the back panel.
In some embodiments, the fill light unit is located at an intersection area of a left edge and an upper edge of the television and an intersection area of the upper edge and a right edge.
In order to make the above-mentioned objects, features and advantages of the present application easier to understand, the embodiments of the present application are described in detail hereinafter in conjunction with the drawings. In the following description, many specific details are explained to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and the person skilled in the art can make similar improvements without violating the connotation of the present application, so the present application is not limited by the embodiments disclosed below.
In the ambient light bar of the related art, ordinary LED beads are employed, which have problems such as single color level and small coverage. In view of this, an LED light source module is proposed according to the present application, which includes at least two beveled LED beads, a chip mounting face and a welding plane of each beveled LED bead form a bevel angle, and the bevel angles of at least two beveled LED beads are different, which can expand the light output range, and can perform color control on different light output areas separately, so as to achieve a multi-leveled colored ambient light.
The following is a further description of embodiments of the present application in conjunction with the drawings.
Referring to
The beveled LED bead group 20 includes four beveled LED beads 200 with different bevel angles. Referring to
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The first boss 304 is covered above the beveled LED bead with the bevel angle of 35°, and is provided with a first opening. A first angle is formed between an upper surface of the first boss 304 and the base 302. The beveled LED bead with the bevel angle of 35° is located in the first opening of the first boss 304. The first lens 310 is fixed on an upper surface at the first opening of the first boss 304, and is configured to converge and shape the light beam emitted by the beveled LED bead with the bevel angle of 35° to form a first light spot.
The second boss 306 is covered above the beveled LED beads with bevel angles of 60° and 50°, and is provided with a second opening and a third opening. A second angle is formed between an upper surface of the second boss 306 and the base 302. The beveled LED bead with the bevel angle of 60° is located in the second opening of the second boss 306, and the beveled LED bead with the bevel angle of 50° is located in the third opening of the second boss 306. The second lens 312 is fixed on an upper surface at the second opening of the second boss 306, and is configured to converge and shape the light beam emitted by the beveled LED bead with the bevel angle of 60° to form a second light spot. The third lens 314 is fixed on an upper surface at the third opening of the second boss 306, and is configured to converge and shape the light beam emitted by the beveled LED bead with the bevel angle of 50° to form a third light spot.
The third boss 308 is covered above the beveled LED bead with the bevel angle of 20°, and is provided with a fourth opening. A third angle is formed between an upper surface of the third boss 308 and the base 302. The beveled LED bead with the bevel angle of 20° is located in the fourth opening of the third boss 308. The fourth lens 316 is fixed on an upper surface at the fourth opening of the third boss 308, and is configured to converge and shape the light beam emitted by the beveled LED bead with the bevel angle of 20° to form a fourth light spot.
Specifically, the first angle formed by the first boss 304 and the base 302, the second angle formed by the second boss 306 and the base 302, and the third angle formed by the third boss 308 and the base 302 are not equal, and the curvatures of the first lens 310, the second lens 312, the third lens 314 and the fourth lens 316 are different, respectively matching the corresponding beveled LED beads, so that each beveled LED bead irradiates the emitted light to the selected area and direction. Referring to
The beveled LED bead group 20 and the corresponding lens assembly 30 constitute a display unit. Referring to
Referring to
Compared with the related art, the ambient light bar of the present application includes an assembly of beveled LED beads with different bevel angles, which cooperates with the lens assembly to expand the light output area of the ambient light bar, and can control the color of different light output areas to improve the uniformity of mixed light.
Compared with the related art, the LED light source module of the present application includes at least two beveled LED beads, a chip mounting face of each beveled LED bead and a welding plane form a bevel angle, and the bevel angles of at least two beveled LED beads are different, which can expand the light output range, and can perform color control on different light output areas separately, so as to achieve a multi-leveled colored ambient light.
The present application may have a variety of variant implementations, for example, the spacings of the beveled LED beads in the display unit can be adjusted, and the curvatures of the lens can be adjusted accordingly, and the spacing of adjacent display units can be controlled to be adjusted within the range of 40 mm˜120 mm; the number of beveled LED bead groups can be adjusted according to the mounting position of the light bar, and so on.
Further, a television is further provided according to the present application, which includes a screen, a back panel opposite to the screen and multiple ambient light bars. The multiple ambient light bars are sequentially arranged on the left, upper and right edges of the back panel, and the ambient light bars are configured to emit light to the outside of the edges of the back panel. The back panel includes multiple through holes opened in its panel face, and the multiple ambient light bars are embedded in the through holes from the inside of the television and protrude from the back panel, thereby being fixed to the back panel.
The difference of the ambient light bar of this embodiment two from the ambient light bar of the embodiment one lies in the structure of the beveled LED bead group 20 and the lens assembly 30.
Referring to
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The difference of the ambient light bar of this embodiment three from the ambient light bar of the embodiment one lies in that it further includes a fill light unit 40. Referring to
The fill light unit 40 includes four beveled LED beads with bevel angles of 35°, 60°, 50° and 20°, respectively, and a lens body. The four beveled LED beads are arranged in a straight line shape at intervals in the order of the bevel angles of 20°, 35°, 50° and 60°. The beveled LED bead with the bevel angle of 60° is arranged close to the beveled LED bead group 20, and the distance between adjacent beveled LED beads ranges from 3 mm to 10 mm.
The lens body structure of the fill light unit 40 is the same as the lens assembly of the embodiment one. Referring to
The plane where the beveled LED beads of the fill light unit 40 are located forms an angle with the plane where the beveled LED beads of the beveled LED bead group 20 are located, and cooperates with the lens body, to allow the angle between the light output plane of the fill light unit 40 and the light output plane of the beveled LED bead group 20 to range from 15° to 45°, preferably 30°, so that the corners where dark areas are prone to appear can be filled with light to solve the problem of dark areas in corners.
The difference of this embodiment four from the embodiment one lies in that the ambient light bar of the TV is different.
Referring to
In this embodiment, four fill light units are provided at the intersection area of the left edge and the upper edge as well as the intersection area of the upper edge and the right edge of the back panel of the TV, so that the dark areas in the corners are greatly reduced, the obtained illumination is uniform, the brightness is enhanced, and the mixed light crosstalk phenomenon is less.
The present application may have a variety of variant implementations, for example, the number of ambient light bars may be adjusted according to the size of the TV, and the numbers of beveled LED bead groups in the ambient light bars may also be adjusted.
The technical features of the embodiments described above may be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combinations of these technical features, the combinations should be considered as the scope of this specification.
The above-mentioned embodiments express several implementations of the present application, and the description is relatively specific and detailed, but it cannot be understood as a limitation on the scope of the patent application. It should be pointed out that for the person of ordinary skill in the art, several modifications and improvements can be made without departing from the concept of the present application, and all the modifications and improvements fall into the scope of protection of the present application. Therefore, the scope of protection of the patent of this application shall be based on the attached claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 202311862347.2 | Dec 2023 | CN | national |