Vehicular lighting fixture
The vehicle lamp integrates light sources and shades on a common mounting unit, controlled by a single controller, to simplify installation and reduce cutoff line variations, achieving precise low and high beam patterns.
Patent Information
- Application Number
- JP2024022385
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-16
- Publication Date
- 2025-08-28
AI Technical Summary
Precise alignment and installation of multiple lighting units in vehicle headlamps is complicated, leading to variations in cutoff lines of light distribution patterns.
A vehicle lamp design with integrated first and second light sources mounted on a common mounting portion, controlled by a single controller, and utilizing shades and lenses to form multiple light distribution patterns with adjustable cutoff lines, reducing positional variations through shared mounting and control.
The design effectively minimizes variations in cutoff line positions across different light distribution patterns, enabling precise and efficient formation of low and high beam patterns with reduced complexity in installation and adjustment.
Smart Images

Figure 2025126027000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a vehicle lamp. [Background technology]
[0002] Conventionally, a vehicle headlamp has been devised that forms a low-beam light distribution pattern by light irradiation from multiple lamp units (see Patent Document 1). This vehicle headlamp is configured to form a low-beam light distribution pattern as a composite light distribution pattern of three medium-diffusion light distribution patterns formed by light irradiation from three medium-diffusion lamp units, three concentrating light distribution patterns formed by light irradiation from three concentrating lamp units, and two wide-diffusion light distribution patterns formed by light irradiation from two wide-diffusion lamp units. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2005-166590 Summary of the Invention [Problem to be solved by the invention]
[0004] However, in order to precisely align the cutoff lines of the light distribution patterns formed by the separate lighting units, it is necessary to precisely fix each lighting unit to a predetermined location within the lamp chamber, and the work of installing and adjusting each lighting unit is complicated.
[0005] The present invention has been made in view of the above circumstances, and one of its exemplary purposes is to provide a new vehicle lamp that reduces variations in the positions of the cutoff lines of a plurality of light distribution patterns. [Means for solving the problem]
[0006] In order to solve the above problems, a vehicle lamp according to one embodiment of the present invention includes a first light source, a second light source, a mounting portion on which the first light source and the second light source are mounted, a first shade that blocks a portion of the first light emitted from the first light source, a second shade that blocks a portion of the second light emitted from the second light source, a first lens that projects the blocked first light onto a first region below the horizon, a second lens that projects the blocked second light onto a second region adjacent to and above the first region, and a controller that controls the turning on and off of the first light source and the second light source. The controller turns on the first light source and the second light source to form a first light distribution pattern that includes the first region and the second region.
[0007] According to this embodiment, since the first light source and the second light source are mounted on the same mounting portion, it is possible to reduce variations in the positions of the first region and the second region.
[0008] The first cutoff line in the first region formed by the first shade and the second cutoff line in the second region formed by the second shade may have different shapes, thereby realizing a plurality of light distribution patterns with different cutoff lines by controlling the on / off states of the first light source and the second light source.
[0009] The lamp may further include a single holding member that holds both the first shade and the second shade, thereby reducing variations in the positions of the first cutoff line and the second cutoff line.
[0010] The first shade may be a plate-shaped member that is held by a holding member so that the plate surface is aligned in the horizontal direction of the vehicle, and the second shade may be a plate-shaped member that is held by a holding member so that the plate surface is aligned in the vertical direction of the vehicle.
[0011] The holding member may be a resin reflector that reflects a portion of the first light, thereby allowing the portion of the first light to be used for the light distribution pattern.
[0012] The vehicle may further include a third light source having a plurality of light-emitting elements arranged in an array. The third light source is mounted on the mounting portion so as to be located lower than the first light source in a front view of the mounting portion seen from the front of the vehicle, the first shade may block a portion of the third light emitted from the third light source, the first lens may project the blocked third light onto a third region above the horizon, and the control unit may form a second light distribution pattern including the first region and the third region by turning on the first light source and the third light source. This allows the second light distribution pattern to be formed including a region above the first light distribution pattern.
[0013] The control unit may form a third light distribution pattern including the first region and a part of the third region by turning on only a part of the plurality of light-emitting elements of the third light source and turning off or dimming the second light source. This makes it possible to suppress brightness near the second cutoff line when the third light distribution pattern is formed.
[0014] Any combination of the above components, and conversion of the present invention between a manufacturing method, a lighting fixture or lighting device, a light emitting module, a light source, etc. are also valid aspects of the present invention. [Effects of the Invention]
[0015] According to the present invention, it is possible to suppress variations in the positions of the cutoff lines of a plurality of light distribution patterns. [Brief explanation of the drawings]
[0016] [Figure 1] 1 is a perspective view of a vehicle lamp according to an embodiment of the present invention; [Figure 2] FIG. 2 is an exploded perspective view of the vehicle lamp shown in FIG. [Figure 3] FIG. 2 is a front view of the vehicle lamp shown in FIG. [Figure 4] 4 is a cross-sectional view of the vehicle lamp shown in FIG. 3 along the line AA. [Figure 5] FIG. 2 is a schematic diagram for explaining the optical paths of light emitted from each light source. [Figure 6]Figure 6(a) is a schematic diagram showing a second area formed by illuminating the area in front of the vehicle with second light emitted from a second light source, Figure 6(b) is a schematic diagram showing a first area formed by illuminating the area in front of the vehicle with first light emitted from a first light source, and Figure 6(c) is a schematic diagram showing a third illumination area formed by illuminating the area in front of the vehicle with third light emitted from a third light source. [Figure 7] Figure 7(a) shows a low beam light distribution pattern PL that mainly illuminates an area below the horizon on a screen in front of the vehicle, and Figure 7(b) shows a high beam light distribution pattern PH that mainly illuminates an area above the horizon on a screen in front of the vehicle. [Figure 8] FIG. 2 is a front view of the reflector as seen from the front of the vehicle. [Figure 9] 9(a) is a cross-sectional view taken along line BB including components in the vicinity of the reflector shown in FIG. 8, and FIG. 9(b) is an enlarged cross-sectional view of region C in FIG. 9(a). DETAILED DESCRIPTION OF THE INVENTION
[0017] The present invention will be described below based on preferred embodiments with reference to the drawings. The same or equivalent components, parts, and processes shown in each drawing will be given the same reference numerals, and redundant explanations will be omitted where appropriate. Furthermore, the embodiments are illustrative and do not limit the invention, and all features and combinations thereof described in the embodiments are not necessarily essential to the invention.
[0018] Fig. 1 is a perspective view of a vehicle lamp according to this embodiment. Fig. 2 is an exploded perspective view of the vehicle lamp shown in Fig. 1. Fig. 3 is a front view of the vehicle lamp shown in Fig. 1. Fig. 4 is a cross-sectional view taken along line AA of the vehicle lamp shown in Fig. 3. The vehicle lamps shown in Figs. 1 to 4 are vehicle headlamps, and are configured to be able to form both low beam and high beam light distribution patterns.
[0019] The vehicle lamp 10 includes a projection lens 12, a lens holder 14, a reflector 16, a circuit board 18, and a heat sink 20. The projection lens 12 is composed of two components: a first projection lens 12a located below and a second projection lens 12b located above, and controls the optical path of light emitted from each light source. Each lens is attached to a predetermined position in the lens holder 14. Each lens is manufactured by injection molding using a highly transparent and heat-resistant resin material such as acrylic or polycarbonate. The lens holder 14 is fastened to the heat sink 20 with screws 22.
[0020] The reflector 16 is made of a metal or resin material and has a horizontally elongated base surface portion 16a facing the front-to-rear direction, openings 16b and 16c formed in the center of the reflector 16, side reflection portions 16d provided so as to protrude forward from both the left and right sides of the opening 16b, and an upper reflector 16e whose inner surface of a beam-shaped portion above the opening 16b serves as a reflection surface.
[0021] A shade 24, which is a plate-shaped member, is attached to the lower surface of the side reflecting portion 16d and protrudes forward from the lower edge of the opening 16b. The shade 24 is held by the reflector 16 so that its plate surface is aligned with the horizontal direction of the vehicle. A shade 26, which is a plate-shaped member, is attached to the base surface portion 16a. The shade 26 is a plate-shaped member and is held by the reflector 16 so that its plate surface is aligned with the vertical direction of the vehicle. The vehicle lamp 10 according to this embodiment further includes a shade 28. The shade 28 is a plate-shaped member that blocks light that passes through the opening 16b and travels diagonally upward, and also blocks light that passes through the opening 16c and travels diagonally downward. In this embodiment, the shade 26 and the shade 28 are a single member arranged in an L-shape, but the shade 26 and the shade 28 may be separate members.
[0022] The circuit board 18 has a first light source 30a having a plurality of light-emitting elements 28a arranged in a horizontal row for forming a first region of a low-beam light distribution pattern, a second light source 30b having a plurality of light-emitting elements 28b arranged in a horizontal row for forming a second region of a low-beam light distribution pattern, a third light source 30c having a plurality of light-emitting elements 28c arranged in a horizontal row for forming a high-beam light distribution pattern, and a drive circuit (not shown) that drives each light-emitting element.
[0023] The third light source 30c is disposed adjacent to the first light source 30a. The first light source 30a is located on the upper stage, and the third light source 30c is located on the lower stage. The drive circuit is a combination of passive elements such as capacitors and coils, active elements such as transistors and diodes, IC chips, memory, etc., and functions as a control unit that controls the on / off of the first light source 30a, the second light source 30b, and the third light source 30c. The circuit board 18 is a mounting unit on which each light source is mounted, and is fixed at a predetermined position on the heat sink 20. In other words, the circuit board 18 and the heat sink 20 are also an integrated mounting unit.
[0024] A lens plate 32 is disposed in front of the first light source 30a and the third light source 30c, and the lens plate 32 collects and blocks part of the light emitted from the first light source 30a and the third light source 30c. In addition, a lens plate 34 is disposed in front of the second light source 30b, and the lens plate 32 collects the light emitted from the second light source 30b. The lens plate 32 and the lens plate 34 are sandwiched between the reflector 16 and the circuit board 18. In this state, the reflector 16 is fastened to the heat sink 20 with screws 36, thereby determining the positional relationship of each component.
[0025] FIG. 5 is a schematic diagram for explaining the optical paths of light emitted from each light source. Note that some components of the vehicle lamp 10 have been omitted or modified to the extent that it does not affect the explanation. The first light L1 emitted from the first light source 30a is partially blocked by the shade 24. The first projection lens 12a projects the blocked first light L1 onto a first region below the horizon. The second light L2 emitted from the second light source 30b is partially blocked by the shade 26. The second projection lens 12b projects the blocked second light L2 onto a second region below the horizon.
[0026] Fig. 6(a) is a schematic diagram showing a second region formed by illuminating the area in front of the vehicle with second light emitted from a second light source, Fig. 6(b) is a schematic diagram showing a first region formed by illuminating the area in front of the vehicle with first light emitted from a first light source, and Fig. 6(c) is a schematic diagram showing a third illumination region formed by illuminating the area in front of the vehicle with third light emitted from a third light source. Fig. 7(a) is a diagram showing a low-beam light distribution pattern PL that mainly illuminates an area below the horizon on a screen in front of the vehicle, and Fig. 7(b) is a diagram showing a high-beam light distribution pattern PH that mainly illuminates an area above the horizon on a screen in front of the vehicle.
[0027] The first region R1 shown in Fig. 6(b) has a first cutoff line C1. The second region R2 shown in Fig. 6(a) is adjacent to and above the first region R1 and has a second cutoff line C2. The control unit according to this embodiment turns on the first light source 30a and the second light source 30b to form a low-beam light distribution pattern including the first region R1 and the second region R2, as shown in Fig. 7(a).
[0028] In the vehicle lamp 10 according to this embodiment, the first light source 30a and the second light source 30b are mounted on the same circuit board 18 (heat sink 20), and therefore, variations in the positions of the first region R1 and the second region R2 can be reduced, as in the low beam light distribution pattern PL shown in FIG. 7(a).
[0029] In addition, in the vehicle lamp 10, the first cutoff line C1 in the first region R1 formed by the shade 24 and the second cutoff line C2 in the second region R2 formed by the shade 26 have different shapes. This makes it possible to realize a plurality of light distribution patterns having different cutoff lines by controlling the on / off states of the first light source 30a and the second light source 30b.
[0030] Furthermore, the reflector 16 according to this embodiment holds both the shade 24 and the shade 26. This makes it possible to reduce variations in the positions of the first cutoff line C1 and the second cutoff line C2. Furthermore, the reflector 16 may be a resin reflector that reflects a portion of the first light L1. For example, a metal film is formed on the reflective surface of the reflector 16. This allows a portion of the first light L1 to be used for the light distribution pattern.
[0031] As described above, the vehicular lamp 10 according to this embodiment further includes the third light source 30c, which is an array of light-emitting elements 28c. The third light source 30c is mounted on the circuit board 18 so as to be located below the first light source 30a in a front view of the circuit board 18 seen from the front of the vehicle. As shown in FIG. 5, the shade 24 blocks a portion of the third light L3 emitted from the third light source 30c. The first projection lens 12a projects the blocked third light L3 onto a third region (FIG. 6(c)) above the horizon.
[0032] The control unit according to the present embodiment forms a high beam light distribution pattern PH including the first region R1 and the third region R3 by turning on the first light source 30a and the third light source 30c, thereby forming a high beam light distribution pattern PH including an area above the low beam light distribution pattern PL.
[0033] Furthermore, the control unit can form a variable light distribution pattern PH' that includes first region R1 and part of third region R3 by turning on first light source 30a, turning on only some of multiple light-emitting elements 28c of third light source 30c, and turning off or dimming second light source 30b. This makes it possible to suppress brightness near second cutoff line C2 when variable light distribution pattern PH' is formed.
[0034] In this way, in the vehicle lamp 10 according to this embodiment, the light sources that illuminate the first region R1, the second region R2, and the third region R3 are mounted on the same circuit board 18, and in addition, the shades are also held by the same reflector 16, so that variation in the position of the cutoff lines of multiple light distribution patterns can be reduced.
[0035] Fig. 8 is a front view of the reflector as seen from the front of the vehicle, Fig. 9(a) is a cross-sectional view taken along line BB including components near the reflector shown in Fig. 8, and Fig. 9(b) is an enlarged cross-sectional view of area C in Fig. 9(a).
[0036] 8 is formed by melting and fixing a pin 16g provided on the base surface portion 16a of the reflector 16 while the pin 16g is inserted into a positioning hole in the shade 26. Also, the thermal caulking portion 40 is formed by melting and fixing a pin (not shown) provided on the underside of the side reflection portion 16d of the reflector 16 while the pin is inserted into a positioning hole in the shade 24. This allows the shade 24 and the shade 26 to be fixed to the reflector 16 without using screws, thereby making it possible to reduce the size of each shade.
[0037] Furthermore, the lens plate 32 and the lens plate 34 according to the present embodiment are fixed in a state in which they are pressed against the circuit board 18 on the back surface of the reflector 16. In this case, it is preferable that the pressed portion 34a of the lens plate 34 is positioned away from the direct back of the pin 16g when viewed from the front of the reflector 16. If the reflector 16 is a resin molded product, a depression due to sink may occur on the back surface of the pin 16g, and if this depression and the pressed portion 34a are positioned to overlap, the pressing force with which the reflector 16 presses the lens plate 34 against the circuit board 18 will be weakened.
[0038] (Variation) In the vehicle lamp 10 described above, both the shade 24 and the shade 26 are attached to the reflector 16, but the shade 26 may be disposed in front of the second light source 30b via another component.
[0039] Although the present invention has been described above with reference to the above-mentioned embodiments, the present invention is not limited to the above-mentioned embodiments, and suitable combinations and substitutions of the configurations of the embodiments are also included in the present invention. Furthermore, it is possible to suitably rearrange the combinations and processing orders in the embodiments based on the knowledge of those skilled in the art, and to make modifications to the embodiments such as various design changes, and such modified embodiments are also included in the scope of the present invention. [Explanation of symbols]
[0040] 10 Vehicle lamp, 12 Projection lens, 12a First projection lens, 12b Second projection lens, 14 Lens holder, 16 Reflector, 16a Base surface portion, 16b Opening, 16c Opening, 16d Side reflection portion, 16e Upper reflector, 16g Pin, 18 Circuit board, 20 Heat sink, 24 Shade, 26 Shade, 28a Light-emitting element, 28b Light-emitting element, 28c Light-emitting element, 30a First light source, 30b Second light source, 30c Third light source, 32 Lens plate, 34 Lens plate, 34a Pressurized portion, 38 Thermal caulking portion, 40 Thermal caulking portion, C1 First cutoff line, C2 Second cutoff line, L1 First light, L2 Second light, L3 third light, R1 first region, R2 second region, R3 third region.
Claims
1. a first light source; a second light source; and a mounting portion on which the first light source and the second light source are mounted; a first shade that blocks a portion of the first light emitted from the first light source; a second shade that blocks a portion of the second light emitted from the second light source; a first lens that projects the blocked first light onto a first region below the horizon; a second lens that projects the blocked second light onto a second area adjacent to and above the first area; a control unit that controls turning on and off the first light source and the second light source, The control unit forms a first light distribution pattern including the first region and the second region by turning on the first light source and the second light source.
2. 2. The vehicle lamp according to claim 1, wherein a first cutoff line in the first region formed by the first shade and a second cutoff line in the second region formed by the second shade have different shapes.
3. 3. The vehicle lamp according to claim 1, further comprising a holding member that holds both the first shade and the second shade.
4. the first shade is a plate-shaped member and is held by the holding member so that a plate surface thereof is aligned along a horizontal direction of the vehicle; 4. The vehicle lamp according to claim 3, wherein the second shade is a plate-like member, and is held by the holding member so that a plate surface thereof is aligned in a vertical direction of the vehicle.
5. 4. The vehicle lamp according to claim 3, wherein the holding member is a resin reflector that reflects a part of the first light.
6. Further provided is a third light source in which a plurality of light-emitting elements are arranged in an array, the third light source is mounted on the mounting portion so as to be located lower than the first light source in a front view of the mounting portion seen from the front of the vehicle, the first shade blocks a portion of the third light emitted from the third light source; the first lens projects the blocked third light onto a third region above the horizon; 3. The vehicular lamp according to claim 1, wherein the control unit forms a second light distribution pattern including the first region and the third region by turning on the first light source and the third light source.
7. 7. The vehicular lamp according to claim 6, wherein the control unit forms a third light distribution pattern including the first region and a portion of the third region by turning on only a portion of the plurality of light-emitting elements of the third light source and turning off or dimming the second light source.
Citation Information
Patent Citations
Vehicular headlamp
JP2005166590A