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    • 7. 发明公开
    • HEADLIGHT DEVICE FOR SADDLE-TYPE VEHICLE
    • EP3437967A1
    • 2019-02-06
    • EP17773690.7
    • 2017-02-07
    • Honda Motor Co., Ltd.
    • OGUCHI Tsuyoshi
    • B62J6/02B60Q1/04F21S8/10F21W101/10F21Y101/00F21Y115/10
    • The present invention provides a headlight device for a saddled vehicle in which an LED is used as a light source and the illumination range at the time of turning traveling can be enlarged upward in the turning direction. At a position on an outer side, in regard of the vehicle width direction, of a high-beam reflector (46) that reflects emitted light from a high-beam LED (60) toward a vehicle body front side, an outer reflection section (47) that reflects the emitted light further upward than the direction of emission of the high-beam reflectors (42, 46) is provided. The outer reflection section (47) is configured to be covered by an extension (37) serving as a decorative part, in front view of the vehicle body. A low-beam portion (80) that emits a low beam with an illumination range restricted so as not to dazzle a person facing the vehicle with the emitted light and a high-beam portion (90) that emits a high beam with an unrestricted illumination range are provided as a left-and-right pair in the vehicle width direction, and the outer reflection section (47) is provided on at least one of the left and right high-beam reflectors (46).
    • 9. 发明公开
    • LICHTMODUL
    • EP3416852A1
    • 2018-12-26
    • EP17705846.8
    • 2017-02-15
    • Automotive Lighting Reutlingen GmbH
    • ROSENHAHN, Ernst-OlafBUCHBERGER, ChristianLICHT, MartinKNITTEL, Joachim
    • B60Q11/00F21S8/10
    • B60Q11/005F21S41/16
    • The invention relates to a light module (10) comprising: – at least one laser light source (12) for emitting a primary light beam (22) of laser light with wavelengths in a primary spectral range in a primary spatial angle range (20) about a primary beam direction (18), and a wavelength converter (16) which is arranged in such a way that the primary light beam (22) is incident on the wavelength converter (16), and which is designed in such a way that a secondary light distribution (24) of secondary light with wavelengths in a secondary spectral range in a secondary spatial angle range (26) is emitted by the incident primary light beam (22), and an emission optics device (36) for converting the secondary light distribution into an emission light distribution (37) of the light module. A primary detector (28) is provided in such a way that it is possible to measure a radiation intensity which, when considered from the wavelength converter (16) is present within the primary spatial angle range (20) about the primary beam direction (18), and a secondary detector (30) is provided in such a way that a radiation intensity lies in a range which lies outside the primary spatial angle range (20) when considered from the wavelength converter (16).