The present invention generally relates to external vehicular lighting fixtures, more specifically, an external vehicular lighting fixture having an internal heatsink attached to a light-emitting diode (LED) lamp.
Many vehicles include the use of LED lighting for headlamps and other signal lighting on the exterior of the vehicle. The use of LED lighting within these fixtures tends to generate large amounts of heat that require heatsinks to be attached in order to dissipate the heat generated when the LED fixture is in operation. Conventional heatsinks for LED fixtures include heatsinks that attach to the back of an LED fixture and project directly rearward of the LED fixture. LED fixtures having such a configuration can occupy significant amounts of space within the engine compartment and various body panels of the vehicle. Additionally, conventional heatsinks can provide little to no heat transfer from the LED fixture to the outer areas of the light fixture proximate the lens.
According to one aspect of the present invention, a vehicle headlight includes a headlight housing including an external lens and an outer wall that define a headlight interior. A lighting element includes a light-emitting diode lamp and an internal heatsink is coupled to at least a portion of the lamp. The lamp is in thermal communication with the internal heatsink. The lighting element is disposed within the headlight interior and coupled to an element receptacle defined by the outer wall. The internal heatsink of the lighting element is in thermal communication with the external lens.
According to another aspect of the present invention, a vehicle headlight includes an internal heatsink defining a lamp receptacle. A lamp is disposed within the lamp receptacle and is in thermal communication with the internal heatsink. A headlight housing includes an external lens and an outer wall that define an interior volume. The internal heatsink and lamp are disposed within the interior volume. The internal heatsink is in thermal communication with the external lens.
According to yet another aspect of the present invention, an external vehicle lamp includes a heatsink defining an element receptacle. A lamp is disposed within the element receptacle and is in thermal communication with the heatsink. A light housing includes a lens and an outer wall that define an interior volume. The heatsink and lamp are disposed within the interior volume, wherein the heatsink is in thermal communication with the lens.
These and other aspects, objects, and features of the present invention will be understood and appreciated by those skilled in the art upon studying the following specification, claims, and appended drawings.
In the drawings:
For purposes of description herein, the terms “upper,” “lower,” “right,” “left,” “rear,” “front,” “vertical,” “horizontal,” and derivatives thereof shall relate to the invention as oriented in
As shown in
Referring now to the embodiment illustrated in
Referring now to the embodiment illustrated in
In various embodiments, the electrical components 74 for the LED lamp 24 is disposed on the backplate 64 of the bracket 60. The tabs 68 of the bracket 60 serve to position the back portion 72 of the LED lamp 24 having the electrical interface 90 of the LED lamp 24 in electrical engagement with the electrical components 74 of the bracket 60. It is also contemplated that the electrical components 74 can be disposed on a portion of the internal heatsink 26, such that the LED lamp 24 is installed in electrical engagement with the internal heatsink 26 when the LED lamp 24 is installed in the lamp receptacle 62.
In the various embodiments, the tabs 68 of the bracket 60 are configured to selectively retain the LED lamp 24 in an installed position, wherein the LED lamp 24 is placed in electrical communication with the various electrical components 74 and wiring for the headlight 10. In the event that an LED lamp 24 needs to be repaired and/or replaced, the LED lamp 24 can be removed from the bracket 60 manually, and without the use of tools. It is contemplated that various retaining structures in addition to, or other than, tabs 68 can be used to retain the LED lamp 24 within the lamp receptacle 62. Such retaining structures can include, but are not limited by, hooks, clasps, detents, protrusions, and other similar interference-type mechanisms. It is further contemplated that in various alternate embodiments, the LED lamp 24 can be mechanically fastened to the bracket 60 such that tools are required to remove and/or replace an LED lamp 24 within the lamp receptacle 62. It is further contemplated that in order to access the lighting element 22 within the headlight housing 14, the headlight housing 14 can be removed, or, the headlight housing 14 can include an access aperture through which the lighting element 22 can be accessed and removed for repair and/or replacement of the LED lamp 24. In the various embodiments, the headlight housing 14 can be configured such that user access to the headlight interior 20 for maintenance of the lighting element 22 can be accomplished manually, by hand, and without the use of tools. Alternatively, access to the headlight interior 20 can be configured such that tools are required in order to access the headlight interior 20 to maintain the lighting element 22.
Referring again to the embodiment as illustrated in
Referring again to the embodiment illustrated in
In the various embodiments, the elongated members 110 of the internal heatsink 26 can extend generally perpendicular from the back portion 72 of the internal heatsink 26. In such an embodiment, the elongated members 110 can be substantially linear, or can include various angled and/or curved portions that extend toward the distal ends 112 of each of the elongated members 110. It is contemplated that, in various embodiments, the elongated members 110 can extend in an angled configuration or a curved configuration, or both, relative to the back portion 72 of the internal heatsink 26. It is further contemplated that each elongated member 110 can have configurations that can include, but are not limited to, linear, curved, angled, trapezoidal, among other configurations. Additionally, various cross members 128 can be included that extend across the elongated members 110 to add structure to the elongated members 110 and also add surface area through which heat 120 can be transferred from the LED lamp 24 to areas outside of the lighting element 22, including the external lens 16. It is also contemplated that the elongated members 110 may not have a consistent length, but may have a length that substantially matches the profile of the headlight housing 14. Such configurations may include a triangular profile, a trapezoidal profile, a curved profile, an irregular profile, among other similarly shaped profiles. Various embodiments of the internal heatsink 26 may also include more than one row of elongated members 110, such as an inner layer and outer layer of elongated members 110 that extend around the perimeter of the LED lamp 24.
In the various embodiments, the internal heatsink 26 can be made of various materials that have a high thermal connectivity. Such materials can include, but are not limited to, aluminum, aluminum alloys, copper, composite materials that incorporate materials having a high thermal connectivity, combinations thereof, and other materials that are at least partially thermally conductive.
Referring now to the embodiments illustrated in
In the various embodiments, it is contemplated that the lighting element 22 can be configured to exclude the bracket 60, such that the lamp receptacle 62 is defined within an inner portion 140 of the internal heatsink 26. In such an embodiment, the LED lamp 24 is coupled directly to the internal heatsink 26 and the internal heatsink 26 includes various tabbed features and/or interference members that are configured to selectively retain the LED lamp 24 within the internal heatsink 26. Additionally, various electrical components 74 that are configured to engage the LED lamp 24 and place the LED lamp 24 in electrical communication with the electrical system of the vehicle 12 can be disposed on a portion of the internal heatsink 26.
According to the various embodiments, the LED lamp 24 can be fixed to the internal heatsink 26, either by direct connection, or by connection through a bracket 60 that engages the LED lamp 24 to the internal heatsink 26. In such embodiments, replacement and/or repair of the LED lamp 24 can be accomplished through replacement of the entire lighting element 22, including the internal heatsink 26, the bracket 60 and the LED lamp 24.
It is contemplated that the lighting element 22 can include a generally rectangular configuration, wherein the LED lamp 24, the bracket 60 and the internal heatsink 26 can similarly include a generally rectangular shape. In various alternate embodiments, the lighting element 22 can include a generally curved configuration, wherein each component of the lighting element 22 is generally curved, circular, oval, elliptical, or other curved shape to generally match the shape of the headlight housing 14. It is also contemplated that the various components of the lighting element 22 can have dissimilar shapes, where one or more component is generally rectilinear and other components are generally curved.
Referring again to the embodiment illustrated in
In the various embodiments, the lighting element can incorporate an LED lamp 24 or some other lighting source. These lighting sources can include any source that gives off light and heat that can be transferred by the internal heatsink 26 during use. Such sources include, but are not limited to, incandescent, halogen, metal halide, or other similar heat emitting light source.
It is to be understood that variations and modifications can be made on the aforementioned structure without departing from the concepts of the present invention, and further it is to be understood that such concepts are intended to be covered by the following claims unless these claims by their language expressly state otherwise.
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Number | Date | Country | |
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20150241018 A1 | Aug 2015 | US |