Vehicle lighting with thermal control
A vehicle lighting assembly includes a solid state light emitter mounted on a first side of a substrate. A second side of the substrate is connected or adjacent to a heatsink. The heatsink may have a lower thermal conductivity than the second side of the substrate. A blower fluidly engages with the heatsink to flow fluid, e.g., air, through passages in the heatsink. The heatsink can include at least one aperture such that the moving fluid from the blower contacts at least a portion of the second side of the substrate.
1. A vehicle lighting assembly, comprising:
at least one light emitter;
a substrate having a first side on which the at least one light emitter is mounted, and a second side remote from the first side and including a thermally conductive material;
a heatsink adjacent the second side of the substrate, the heatsink including a base defining a surface extending in a flat plane parallel to and spaced apart from the second side of the substrate with a thermal interface material disposed therebetween, the base defining an aperture exposing a portion of the second side of the substrate wherein the heatsink further includes a plurality of fins extending from the surface of the base, away from the substrate, and defining venting passages between adjacent fins of the plurality of fins; and
a blower fluidly engaged with the heatsink to drive air through the heatsink, into the aperture, across the portion of the second side of the substrate and substantially entirely out through the venting passages between the plurality of fins.
2. The vehicle lighting assembly of claim 1 , wherein the thermally conductive material includes at least one of: a metal film, a metal plate, copper, copper alloy, aluminum, and aluminum alloy.
3. The vehicle lighting assembly of claim 1 , wherein the thermal interface material includes at least one of: a thermal paste, a thermal grease, a thermal gap filler, and a thermal adhesive.
4. The vehicle lighting assembly of claim 1 , wherein the aperture is axially aligned with the light emitter that is positioned on the first side of the substrate.
5. The vehicle lighting assembly of claim 1 , wherein the plurality of fins extend outwardly from the aperture.
6. The vehicle lighting assembly of claim 5 , wherein the plurality of fins have an arcuate shape.
7. The vehicle lighting assembly of claim 1 , wherein the light emitter is chosen from a light emitting diode, a high-intensity discharge lamp, a type of electrical gas-discharge lamp, and a laser emitter.
8. The vehicle lighting assembly of claim 1 , wherein the substrate is a printed circuit board, and the light emitter includes a light emitter heatsink on the first side of the substrate and is connected to the second side through conductive components chosen from traces on the substrate and a via extending through the substrate from the first side to the second side.
9. The vehicle lighting assembly of claim 1 , wherein the second side of the substrate has a higher thermal conductivity than the heatsink.
10. The vehicle lighting assembly of claim 1 , further comprising: a reflector mounted at the first side of the substrate and adapted to direct light from the light emitter; and a lens configured to receive light from the reflector and output light therefrom.
11. A vehicle lighting assembly, comprising:
at least one light emitter;
a substrate having a first side on which the at least one light emitter is mounted, and a second side remote from the first side and including a thermally conductive material; and
a heatsink adjacent the second side, the heatsink including a base defining a surface extending in a flat plane parallel to the second side of the substrate, the base defining an aperture exposing a portion of the second side of the substrate, wherein the heatsink includes a plurality of fins extending from the surface of the base and defining venting passages between adjacent fins of the plurality of fins; and
a blower fluidly engaged with the heatsink to drive air through the heatsink, into the aperture, across the portion of the second side of the substrate, and substantially entirely out through the venting passages between the plurality of fins.
12. The vehicle lighting assembly of claim 11 , wherein the aperture is axially aligned with the light emitter that is positioned on the first side of the substrate.
13. The vehicle lighting assembly of claim 11 , wherein the heatsink includes a plurality of fins extending outwardly from the aperture and a plurality of channels intermediate the plurality of fins.
14. The vehicle lighting assembly of claim 13 , wherein the plurality of fins have an arcuate shape.
15. A vehicle headlamp assembly comprising:
a printed circuit board (PCB) having a first side and a second side opposite the first side;
at least one light emitting diode (LED) mounted to the first side of the PCB and configured to emit light; and
a heatsink contacting the second side of the PCB and configured to dissipate heat generated by the LED, the heatsink including a base defining a surface extending in a flat plane parallel to the second side of the PCB, the base defining an aperture exposing a portion of the second side of the PCB, wherein the heatsink further includes a plurality of fins extending from the surface of the base, away from the substrate, and defining venting passages; and
wherein the plurality of fins are arcuate and extend both circumferentially and radially along the surface of the base.
16. The vehicle headlamp assembly of claim 15 , wherein the vehicle headlamp assembly further comprises a fan including an inlet and an outlet, wherein the outlet of the fan is configured to direct the discharged air through the aperture towards the second side of the PCB and through the venting passages.
17. The vehicle headlamp assembly of claim 15 , wherein the plurality of fins are arranged to originate from positions along a periphery of the aperture and extend toward a periphery of the base.
18. The vehicle headlamp assembly of claim 15 , further comprising metal positioned on a substantial portion of the second side of the PCB, and a thermal interface material disposed between a first portion of the metal between the first portion and the heatsink.
19. The vehicle headlamp assembly of claim 18 , wherein the thermal interface material includes at least one of: a thermal paste, a thermal grease, a thermal gap filler, and a thermal adhesive.