Vehicle lamp, lamp unit, and reflector module
11486557 · 2022-11-01
Assignee
Inventors
Cpc classification
F21S41/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/55
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/148
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/39
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/295
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/39
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/148
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
To provide a vehicle lamp that, without providing an additional light blocking member, is capable of blocking light emission that is not routed via a lens or reflector for light distribution control, with a simple and compact configuration. It is provided with a first substrate 61b on which a first light source 61a is mounted that emits first light L1 towards the front of the lamp, a second substrate 62b provided in non-parallel to the first substrate 61b, wherein a second light source 62a for emitting second light L2 in a direction different from the direction of the first light L1 is mounted on the second substrate, and a rotating reflector 8 that rotates a reflective surface about a rotating shaft, the reflective surface reflecting the second light L2, wherein part of the first light L1 is blocked by a protruding portion 62c provided where one end of the second substrate 62b protrudes in the direction of emission of the first light L1 beyond the point of intersection where the extension of the first substrate 61b intersects the second substrate 62b.
Claims
1. A lamp unit, comprising a light emitting element, a substrate on which the light emitting element is mounted, a rotating reflector for rotating a reflective surface about a rotating shaft, the reflective surface reflecting light of the light emitting element a rotating reflector case that holds the rotating reflector, a projection lens for projecting the light traveling via the reflective surface to a lamp front, a lens bolder that holds the projection lens, and a support member that supports the substrate, the rotating reflector, and the lens holder, the lamp unit including, a cover lens that is disposed between the light emitting element and the reflective surface and made of a transparent member that transmits the light emitted by the light emitting element, and a fixing member that secures the cover lens to the substrate, the lamp unit being characterized in that the fixing member blocks part of the light emitted from the cover lens.
2. The lamp unit of claim 1, wherein the cover lens includes a light distribution control portion for projecting the light emitted from the light emitting element to the reflective surface of the rotating reflector, the cover lens further including a leg portion integrally molded with the light distribution control portion, wherein the fixing member includes an opening that exposes the light distribution control portion, and wherein the fixing member blocks the part of the light emitted from the cover lens that does not enter the light distribution control portion.
3. The lamp unit of claim 1, wherein the fixing member includes a vertical wall on at least part of a peripheral edge of the opening, the vertical wall blocking part of the light emitted by the light emitting element.
4. The lamp unit of claim 1, wherein the fixing member includes a vertical wall on at least part of a peripheral edge of the opening, and wherein the vertical wall blocks part of the light emitted by the light emitting element that is not projected to the rotating reflector.
5. The lamp unit of claim 1, wherein the fixing member includes a vertical wall on at least part of a peripheral edge of the opening, and wherein the vertical wall is interposed between the projection lens and the cover lens.
6. A reflector module comprising a reflector with a reflective surface on a front sick and a case that contains the reflector, the reflector module being characterized in that a vertical wall is provided on a periphery of an inner bottom surface of the case, the vertical wall enclosing an outer peripheral surface of the reflector, and that a motor is disposed on a back side of the reflector for rotating the reflector about a rotating shaft via a bottom of the case, wherein the motor includes a motor drive unit for driving the motor, wherein a cover is provided on an outer bottom surface of the case to cover at least part of the motor drive unit, wherein the motor drive unit includes a yoke portion and a control circuit board on which a control circuit for controlling the yoke portion is mounted, wherein the cover includes an opening that exposes part of the yoke portion, and wherein a gap formed between the yoke and the control circuit board is provided where the gap is not exposed via the opening.
7. The reflector module of claim 6, wherein the front side of the reflector is contained further inward than a top end plane of the vertical wall.
8. The reflector module of claim 6, wherein a cover is provided on an outer bottom surface of the case to cover at least part of the motor drive unit, and wherein a retainer member is provided on an outer bottom surface of the cover to retain, in a predetermined position, a wiring member used to supply power to the motor.
9. The reflector module of claim 6, wherein a cover is provided on an outer bottom surface of the case to cover at least part of the motor drive unit, wherein a retainer member is provided on an outer bottom surface of the cover to retain, in a predetermined position, a wiring member used to supply power to the motor, wherein the retainer member includes a shielding wall that shields the wiring member used to supply power to the motor and the yoke portion from coming into contact with each other, and wherein an engaging portion that supports the wiring member from both sides thereof is provided in a portion of the shielding wall.
10. A lamp unit, comprising a light emitting element a substrate on which the light emitting element is mounted, a rotating reflector for rotating a reflective surface about a rotating shaft, the reflective surface reflecting light of the light emitting element, a rotating reflector case that holds the rotating reflector, a lens for projecting the light traveling via the reflective surface to a lamp front, a lens holder that holds the lens, and a support member that supports the substrate, the rotating reflector, and the lens holder, wherein the lens holder includes a main body that holds that lens and fastening portions that fasten the main body to the support member, and the lamp unit characterized in that the fastening portions have base ends thereof on the main body and are erected towards a lamp rear, the fastening portions being disposed where the fastening portions are shielded by the lens and the main body as seen from a front of the lamp unit.
11. The lamp unit of claim 10, wherein the lens holder includes two or more of the fastening portions and an approximately U-shaped reinforcing member that has base ends thereof on one fastening portion and another fastening portion and extends toward the lamp rear.
12. The lamp unit of claim 10, wherein the lens holder includes two or more of the fastening portions, wherein the main body is formed in a shape of an approximate rectangular frame, and wherein the fastening portions arc provided in approximate centers of a pair of long sides of the main body.
13. The lamp unit of claim 10, wherein the lens holder includes two or more of the fastening portions, wherein the fastening portions have a bole into which a bar-shaped fastening member is inserted, and wherein the holes are open in a direction parallel to a lens surface of the lens.
14. The lamp unit of claim 10, wherein the substrate and the rotating reflector case have holes into which a bar-shaped fastening member can be inserted, and which the holes in the substrate and the rotating reflector case are open in the same direction as the holes in the lens holder.
15. The lamp unit of claim 10, wherein the lens holder includes two or more of the fastening portions and an approximately U-shaped reinforcing member that has base ends thereof on one fastening portion and another fastening portion and extends toward the lamp rear, wherein the rotating reflector case and the lens holder are supported by the support member in positions where the rotating shaft of the rotating reflector is not parallel to an optical axis of the lens, wherein the fastening portions and the reinforcing member of the lens holder include ribs erected toward the rotating reflector case, and wherein the ribs of the reinforcing member are lower than the ribs of the connecting portions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EMBODIMENTS
(31) The following describes the present invention embodied as a vehicle lamp, a lamp unit, and a reflector module with reference to the drawings. In each of the drawings, identical symbols designate identical or similar components.
Embodiment 1
(32) As shown in
(33) The lamp unit 5 is provided with first and second light source units 61 and 62, a reflector module 8, inner lenses 91 and 92, a projection lens 93, and a support member 10. The light source units 61 and 62, the reflector module 8, the inner lenses 91 and 92, and the projection lens 93 are supported by the support member 10. The support member 10 is integrally molded with heat radiation fins 7 and held to the lamp body 2 by an aiming adjustment member 11. An extension reflector 12 is provided around the projection lens 93, covering the area between the front opening of the lamp body 2 and the lamp unit 5 from the front. Light L1 and L2 is the output light emitted from the first and second light source units 61 and 62, and is subjected to light distribution control by the inner lenses 91 and 92 and the reflector module 8 and emitted from the projection lens 93 towards the front of the lamp.
(34) As shown in
(35) Next, the reflector module 8 will be described. As shown in
(36) As shown in
(37) The light-blocking and heat-dissipating functions of the substrates 61b and 62b will now be described based on
(38)
(39) In this regard, as shown in
(40) Accordingly, in the present application, as shown in
(41) As shown in
(42) According to the foregoing configuration of the vehicle lamp, as the protruding portion 62c is provided on the substrate 62b to block the unwanted light L1′ with the protruding portion 62c, a remarkable effect is provided that enables appropriate light distribution control with a simple and compact configuration without providing an additional light blocking member. In addition, since the space S formed between the protruding portion 62c and the substrate 61b is filled with heat-dissipating grease 13 to expand the heat-dissipating range, the light source 62a can be placed on the protruding portion 62c, which has the effect of increasing the degree of freedom in the layout of the light sources 61a and 62a.
Embodiment 2
(43) As shown in
(44) The lamp unit 202 is also provided with a support member 207. The support member 207 supports the first and second light source units 203 and 204, the reflector module 205, and the lens unit 206, and also has a heat sink 209 behind the mounting surfaces 207a and 207b on which the first and second light source units 203 and 204 are mounted so as to dissipate the heat generated by the first and second light source units 203 and 204. The support member 207 is held to the lamp body 212 by an aiming adjustment member 215.
(45) The first light source unit 203 is provided with a light emitting element 221 and a substrate 223 on which the light emitting elements 221 is mounted, and the second light source unit 204 is provided with light emitting elements 222 and a substrate 224 on which the light emitting elements 222 are mounted. The reflector module 205 is provided with a rotating reflector 225 that rotates around a rotating shaft R, a reflector case 229 that holds the rotating reflector 225, and a motor 226 that drives the rotating reflector 225. The lens unit 206 is provided with first and second lenses 231 and 232 and a lens holder 208 that holds the first and second lenses 231 and 232.
(46) The light L1 emitted from the light emitting element 221 is transmitted through the first lens 231 and enters the second lens 232. On the other hand, the light L2 emitted from the second light source unit 204 is reflected by the reflective surfaces 225a of the rotating reflector 225 and enters the second lens 232. The light L1 and L2 of the first and second light source units incident on the second lens 232 is projected in front of the lamp to form a desired light distribution pattern. In order to direct the direct light L1 and the light L2 reflected off the rotating reflector to the second lens 232, the substrates 223 and 224 are provided in a non-parallel manner.
(47) As shown in
(48) As shown in
(49) As shown in
(50) As shown in
(51) The opening 242a of the fixing member 242 is formed so as to expose the light distribution control portion 241a, and a standing wall 242b is provided on a peripheral edge of the opening 242a so as to block the space between the second lens 232 and the cover lens 241.
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(53) Conversely, the light L4 emitted from the leg portion 242b of the cover lens 241 and the light L3 traveling directly towards the second lens 232, not by way of the rotating reflector 225 after being emitted from the light distribution control unit 241a, is uncontrolled, unwanted light and would not form the desired light distribution pattern. Otherwise, it would interfere with the formation of the light distribution pattern by light L2.
(54) In this case, the fixing member 242 covers the cover lens 241, exposes the light distribution control portion 241a through the opening 242a, and has the vertical wall 242b on a peripheral edge of the opening 242a, in particular, on the side where the second lens 232 is located. As a result, the light L4 is blocked by the fixing member 242, and the light L3 is blocked by the vertical wall 242b. As a result, only the controlled light L2 and the light L1 from the first light source unit 203 (see
(55) The lamp unit 202 configured as above has the effect of being able to project only the control light L2 because the uncontrolled light L3, L4 exiting the cover lens 241 is blocked by the fixing member 242 and the vertical wall provided on the fixing member 242. As an additional effect, the number of parts of the lamp unit 202 can be reduced and the size of the lamp unit 202 can be made smaller as the fixing member 242, which is an existing member, is modified for the use.
Embodiment 3
(56) As shown in
(57) It should be noted that the lamp unit 303 is mounted in a predetermined position on the lamp body 313 in a manner that enables aim control, and a part of the lamp unit 303 is shielded from the outside of the vehicle lamp 1 by an extension 314.
(58) The support member 309 supports the light emitting element substrate 307 so that the light from the light emitting elements 305 is directed to the rotating reflector 331, and also supports the reflector module 304 in a position where the rotating shaft R of the rotating reflector 331 is inclined with respect to the mounting surface 321. A light emitting element substrate 308 on which a light emitting element 306 is mounted is also set on the support member 309. The light L2 emitted from the light emitting element 306 is projected out of the vehicle via the inner lens 311 and the projection lens 310 without being routed by way of the rotating reflector 331. In the vicinity of the light emitting element substrates 307 and 308, a heat sink (not shown) is disposed to dissipate the heat generated by the light emitting elements 305 and 306.
(59) As shown in
(60) As shown in
(61) The present application employs a blade scan method that utilizes these inclined reflective surfaces 331a of the blades 351. The blade scan method is a technology that controls the lighting of the light emitting elements 305 only while the blades 351 rotate between predetermined rotation angles, and forms a desired light distribution pattern by using the effect of the gradual change in the projection direction of the reflected light according to the gradual inclination of the reflective surfaces 331a of the blades 351. The light distribution pattern is controlled according to the traffic conditions. For example, vehicle-mounted sensors are used to detect the presence or absence of a vehicle ahead, an oncoming vehicle, or a pedestrian, and the light distribution pattern is adjusted to properly notify each vehicle or pedestrian of the presence of the own vehicle. This technology is known as ADB (Adaptive Driving Beam).
(62) As shown in
(63) The motor 332 includes a motor drive unit. The motor drive unit is comprised of a yoke portion 354, coils 357, and a control circuit board 356 that has a control circuit 355 installed thereon that controls the yoke portion 354 and the coils 357. A cover 335 is provided on the outer bottom surface of the case 333 to cover the control circuit board 356.
(64) The cover 335 should be provided to the extent that it covers at least part of the motor drive unit while exposing at least part of the yoke portion 354. For example, as shown in
(65) The vertical wall 334 of the case 333 has a cutout 334a in one portion thereof, and is configured to have a partially lower height. The cutout 334a prevents interference between the case 333 and the support member 309 of the lamp unit 343, and enables the reflector module 304 to be safely and stably assembled to the lamp unit 303.
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(68) According to the reflector module 304 and lamp unit 303 configured as above, as a case 333 is provided for the rotating reflector 331, and a vertical wall 334 surrounding the rotating reflector 331 is provided at the inner periphery of the bottom surface of the case 333, an effect is provided that safely prevents its contact with other components placed in close proximity to the reflector module 304. In addition, when assembling the reflector module 304 to the retainer member 336, it is possible to manually hold the case 333 during the assembling work, which effectively allows this work to be done without contaminating the reflective surface 331a of the rotating reflector 331.
(69) As a cover 335 covering the control circuit board 356 is provided on the back side of the case 333, and a retainer member 336 holding the harness 358 is provided on the outer bottom surface of the cover 335, the control circuit board 356 can be effectively protected from the outside while preventing contact between the yoke 354, which is a rotating body, and the harness 358.
(70) Furthermore, since the vertical wall 334 of the case 333, especially in the portion thereof located rear of the light emitting elements 305 in the lamp, is provided with a cutout 334a so that part of the vertical wall is lower, it is possible to stably and safely assemble the reflector module 304 to the lamp unit 303 while avoiding interference between the support member 309 and the vertical wall 334.
Embodiment 4
(71) As shown in
(72) In addition, the lamp unit 402 has a support member 407 that supports first and second light source units 403 and 404, a reflector module 405, and a lens unit 406. The support member 407 has a heat sink 409 behind the mounting surfaces 407a and 407b (see
(73) The light L1 emitted from the first light source unit 403 passes through the first lens 431 and enters the second lens 432. On the other hand, the light L2 emitted from the second light source unit 404 is reflected by the reflective surfaces 425a of the rotating reflector 425 and enters the second lens 432. The light L1 and L2 of the first and second light source units incident on the second lens 432 is projected to the front of the lamp. In this way, in order to cause the light L1 and the light L2 to enter the second lens 432, the substrates 423 and 424 are provided in a non-parallel manner.
(74) As shown in
(75) The substrate 424, the fixing member 442, a lens holder 408, and a reflector case 429 includes screw holes 424i, 442i, 408j, and 429k into which bar-shaped fastening members, i.e., screws 450i, 450j, and 450k, can be inserted. The screw holes 424i, 442i, 408j, and 429k are open towards the support member 407 in the same direction. The lamp unit 402 is assembled upon inserting screws 450i into the screw holes 424i, 442i, the screws 450j into the screw holes 408j, and the screws 450k into the screw holes 429k, and tightening these screws in the screw holes 407i, 407j, 407k, respectively, in the support member 407. In the lamp unit 402, the screws 450i, 450j, and 450k are arranged in parallel.
(76) As shown in
(77) As shown in
(78) As shown in
(79) As shown in
(80) Moreover, as shown in
(81)
(82) While fastening portions 434 protrude laterally from the lens in a conventional lens holder 468 (see
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(84) As shown in
(85) As shown in
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(88) According to the lamp unit 402 of the above configuration, the fastening portions 434 are arranged so that they do not protrude from the second lens 432 and the main body 433 in the front view of the lamp unit 402, thus providing a remarkable effect of improving the appearance of the lamp unit 402. Also, as the lens holder 408 can be fastened from the same direction as the substrate 424 and the reflector case 429, the time and effort required for the assembly work can also be effectively reduced. Furthermore, by providing the reinforcing member 435, it is possible to prevent torsion of the fastening portion 434 while the screws 450j are fastened, and once the screws are fastened, the approximate U-shape can be engaged with the fixing member 442 to prevent the lens holder 408 from rattling or falling off.
(89) It should be noted that the present invention is not limited to Embodiments 1-4 above and can also be practiced by changing the shape or the configuration of some components as appropriate without departing from the spirit of the present invention, for example, as set forth below: (1) For example, it is preferred to provide a protruding portion on the substrate 61b and to block light L2 emitted by the second light source 62a and directed to the projection lens 93 without being routed via the inner lens 92 and/or the rotating reflector 8. (2) The retainer member 336 may also be erected as a pinch, instead of the shielding wall 336a and the engaging portion 336b, that is provided with a gripper at the top thereof to support the harness 358 from both sides thereof. In addition, the rotating reflector 331 may be comprised of any number of blades 351, single or multiple, having a reflective surface 331a, and the blades can be provided as triangular, rectangular, or various other polygonal shaped plate members.
LIST OF REFERENCE NUMERALS
(90) 1 Vehicle headlamp
(91) 2 Lamp body
(92) 3 Translucent cover
(93) 4 Lamp chamber
(94) 5 Lamp unit
(95) 7 Heat radiation fins
(96) 8 Reflector module
(97) 9 Lens holder
(98) 10 Support member
(99) 11 Aiming adjustment member
(100) 12 Extension reflector
(101) 13 Heat-dissipating grease
(102) 81 Rotating reflector
(103) 82 Reflector case
(104) 83 Motor
(105) 61, 62 Lighting source unit (a: light source, b: substrate, c: protruding portion)
(106) 91, 92 Inner lenses
(107) 93 Projection lens
(108) 201 Vehicle lamp
(109) 202 Lamp unit
(110) 203 First light source unit
(111) 204 Second light source unit
(112) 205 Reflector module
(113) 206 Lens unit
(114) 207 Support member
(115) 208 Lens holder
(116) 209 Heat sink
(117) 211 Outer lens
(118) 212 Lamp body
(119) 213 Lamp chamber
(120) 214 Extension
(121) 215 Aiming adjustment member
(122) 221, 222 Light emitting elements
(123) 223, 224 Substrates
(124) 225 Rotating reflector (a: reflective surface)
(125) 226 Motor
(126) 227 Control circuit board
(127) 229 Reflector case (a: vertical wall)
(128) 231 First lens
(129) 232 Second lens (projection lens)
(130) 241 Cover lens (a: light distribution control portion, b: leg portion)
(131) 242 Fixing member (a: opening, b: vertical wall)
(132) 301 Vehicle lamp
(133) 302 Lamp chamber
(134) 303 Lamp unit
(135) 304 Reflector module
(136) 305, 306 Light emitting elements
(137) 307, 308 Light emitting element substrates
(138) 309 Support member
(139) 310 Projection lens
(140) 311 Inner lens
(141) 312 Outer lens
(142) 313 Lamp body
(143) 314 Extension
(144) 321 Mounting surface
(145) 331 Rotating reflector (a: reflective surface, b: front side)
(146) 332 Motor
(147) 333 Case
(148) 334 Vertical wall (a: cutout, b: top end plane)
(149) 335 Cover (a: opening)
(150) 336 Retainer member (a: shielding wall, b: engaging portion)
(151) 351 Blade
(152) 354 Yoke portion
(153) 355 Control circuit
(154) 356 Control circuit board
(155) 358 Harness
(156) 401 Vehicle lamp
(157) 402 Lamp unit
(158) 403 First light source unit
(159) 404 Second light source unit
(160) 405 Reflector module
(161) 406 Lens unit
(162) 407 Support member
(163) 408 Lens holder
(164) 409 Heat sink
(165) 411 Outer lens
(166) 412 Lamp body
(167) 413 Lamp chamber
(168) 414 Extension
(169) 421, 422 Light emitting elements
(170) 423, 424 Substrates
(171) 425 Rotating reflector
(172) 426 Motor
(173) 427 Control circuit board
(174) 429 Reflector case
(175) 430 Vertical wall
(176) 431 First lens
(177) 432 Second lens
(178) 433 Body portion
(179) 434 Fastening portion
(180) 435 Reinforcing member
(181) 441 Cover lens
(182) 442 Fixing member
(183) 450 Screw
(184) L, L1, L2, L3, L4 Light
(185) Y Range
(186) R Rotating shaft