This application claims priority of Taiwanese Patent Application No. 105113898, filed on May 5, 2016.
The disclosure relates to a headlight, and more particularly to a headlight of a vehicle.
A conventional headlight for a vehicle is required to produce a high beam and a low beam. The way in which the beams are produced determines if a conventional headlight is classified as a multi-reflector headlight or a projector headlight. A conventional projector headlight includes an elliptic reflector, alight source located at a first focal point of the elliptic reflector, a light shielding plate located at a second focal point of the elliptic reflector, and a condenser lens (e.g., an aspheric convex lens) located at a front of the light shielding plate. The light emitted from the light source is reflected by the elliptic reflector towards the light shielding plate, which is in part shielded by the light shielding plate and focused by the condenser lens so as to define and produce a low beam cutoff line.
In some countries, safety requirements for driving dictate that the low beam produced by the projector headlight should have a clear cutoff line, and that the luminance of an area above the cutoff line should be at a certain level. However, the conventional projector headlight often cannot provide enough luminance at the area above the cutoff line, so that the low beam produced thereby may not conform with safety standards in these countries.
Therefore, an object of the disclosure is to provide a headlight that can alleviate at least one of the drawbacks of the prior art.
The headlight includes a housing, a light source module, a light shielding unit and a lens.
The housing defines a reflection space, and a channel in front of the reflection space.
The light source module is mounted in the reflection space, and is configured to emit a light beam that is to be reflected into the channel.
The light shielding unit includes a light shielding plate that is mounted in the channel for shielding the light beam passing through the channel to make the light beam have a cutoff line.
The lens is disposed on the housing in front of the light shielding unit, and includes a main focusing portion, and a supplementary portion protruding from the main focusing portion toward the light shielding plate for guiding the light beam to an area above the cutoff line.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
The headlight includes a housing 1, a light source module 2, a light shielding unit 3 and a lens 4 that are mounted on the housing 1.
The housing 1 includes abase 11, and a cover 12 located at a front of the base 11. The base 11 includes an installation plane 111 that is a horizontal plane facing upward, and a reflecting surface 112 that is a curved surface (e.g., an elliptic surface) extending upward and frontward from a rear edge of the installation plane 111. The installation plane 111 and the reflecting surface 112 cooperatively define a reflection space 113 facing frontward (i.e., facing the lens 4). The cover 12 defines a channel 121 in front of the reflection space 113, and has a connection end 13 that is connected to the base 11 and a distal end 14 that is opposite to the connection end 13 and that defines an opening 124 of the channel 121. In particular, the cover 12 includes a surrounding wall 122 defining the channel 121, and a ring wall 123 having the distal end 14 and extending radially and inwardly from a front edge of the surrounding wall 122. The cross-sectional area of the channel 121 shrinks gradually from the side of the connection end 13 to the side of the opening 124.
The light source module 2 is mounted in the reflection space 113, and is configured to emit a light beam that is to be reflected into the channel 121. The light source module 2 includes a circuit board 21 mounted on the installation plane 111, and a first lighting component 22 and a second lighting component 23 that are electrically connected to the circuit board 21, and that are spaced apart from each other in a left-right direction. In particular, the first and second lighting components 22 and 23 are located at opposite left and right sides of the circuit board 21. The circuit board 21 has a top plane 211 facing upward. In this embodiment, the first and second lighting components 22 and 23 are light-emitting diodes (LEDs). The number of lighting components is not limited to two, and may be different in other embodiments.
The light shielding unit 3 includes a motor 31 that is mounted to a lateral side of the base 11, and a light shielding plate 32 that is mounted in the channel 121 and near the reflection space 113 for shielding the light beam passing through the channel 121 to make the light beam have a cutoff line (P) (shown in
Referring to
The supplementary portion 43 protrudes from the incident surface 413, is formed with the main focusing portion 41 as one piece, and is below an imaginary horizontal line 411 passing through a geometric center 410 of the incident surface 413. The supplementary portion 43 is located on the incident surface 413 in a manner that a projection of a geometric central point of the supplementary portion 43 in a traveling direction of the light beam intersects an imaginary vertical line 412 passing through the geometric center 410 of the incident surface 413 and being perpendicular to the imaginary horizontal line 411.
The supplementary portion 43 includes an upper corrugated strip 431 near the horizontal line 411, and a lower corrugated strip 432 that is connected to the upper corrugated strip 431 and that is below the upper corrugated strip 431. The lower corrugated strip 432 is shorter than the upper corrugated strip 431 in a direction along the imaginary horizontal line 411.
The upper corrugated strip 431 has an upper uneven surface 433 facing the light shielding unit 3, and the lower corrugated strip 432 has a lower uneven surface 434 facing the light shielding unit 3. The upper uneven surface 433 has a plurality of upper inclined surface portions 4331 facing one of a left-back direction and a right-back direction, and the lower uneven surface 434 has a plurality of lower inclined surface portions 4341 facing the other one of the left- and right-back directions. The upper inclined surface portions 4331 are equally divided into only two groups located respectively at opposite sides of the imaginary vertical line 412, and the lower inclined surface portions 4341 are equally divided into only two groups located respectively at the opposite sides of the imaginary vertical line 412. For example, in this embodiment, the upper uneven surface 433 has six upper inclined surface portions 4331 that face the right-back direction (see
When in use, the headlight is user-operable to switch between the high-beam mode and the low-beam mode according to user demand. When the headlight operates in the high-beam mode, the light shielding plate 32 is at the high-beam-mode position as shown by the dotted line in
When the headlight operates in the low-beam mode, the light shielding plate 32 is rotated by the motor 31 to the low-beam-mode position as shown by the solid lines in
As a result, the light beam emitted from each of the first and second lighting components 22 and 23 is reflected by the reflection space 112, and passes through the channel 121 toward the lens 4. The light beam passing through the channel 121 is shielded by the first inclined segment 321 of the light shielding plate 32, such that a low-beam pattern has the cutoff line (P) that is formed sharply as shown in
Furthermore, besides producing the cutoff line (P) and the low-beam pattern which satisfy the safety regulations, the headlight is capable of guiding the light beam to an upper area (Q) above the cutoff line (P) via the upper and lower uneven surfaces 433 and 434, so that luminance of the upper area (Q) is enhanced. In other words, without an additional light source, the headlight according to this disclosure may enhance the luminance of the upper area (Q) above the cutoff line (P) by virtue of the supplementary portion 43 which is formed as one piece with the main focusing portion 41. Therefore, the low-beam pattern produced by the headlight according to this disclosure may satisfy the safety regulations associated with the low-beam pattern in many countries, and driving safety would be improved. Moreover, since the supplementary portion 43 and the main focusing portion 41 of the lens 4 are formed as one piece, no additional component would be required, and the manufacture and assembly of the headlight would be rather convenient.
It should be noted that, although the headlight of this embodiment is exemplified by a left-side headlight configured to be mounted on the left side of the vehicle, the headlight according to this disclosure can be configured as a right-side headlight to be mounted on the right side of the vehicle by simply modifying the light shielding plate 32. In other words, the lens 4 of the headlight according to this disclosure could be applied in both the left-side and right-side headlights to enhance the luminance of the upper area (Q) above the cutoff line (P).
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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105113898 | May 2016 | TW | national |