Lighting device and method of cooling lighting device
View Patent ↗A lighting device comprising a solid state light emitter and a fan, the fan blowing fluid toward the emitter. A lighting device comprising a solid state light emitter and a baffle, the solid state light emitter being movable. A lighting device comprising a solid state light emitter, a substrate and a diaphragm, the diaphragm defining a chamber having a valve and being movable. A lighting device comprising a housing and a solid state light emitter within the housing, the solid state light emitter being movable. Also, methods of cooling a lighting device.
1. A lighting device comprising:
at least one solid state light emitter; and
at least one fan,
the solid state light emitter and the fan positioned relative to one another and the fan oriented such that when power is supplied to the fan, the fan blows fluid from the fan toward the solid state light emitter, and
at least one layer surrounding the solid state light emitter on all sides of the solid state light emitter, the at least one layer substantially preventing liquid from contacting the solid state light emitter, at least one layer configured to substantially prevent liquid from contacting the solid state light emitter to the extent that if a solid state light emitter element comprising the at least one layer and the solid state light emitter were submerged in water at 15 psi and 25 degrees C. for 24 hours, not more than an amount of water that weighs 5% of the weight of the solid state light emitter would penetrate and remain within the solid state light emitter element.
2. A lighting device as recited in claim 1 , wherein:
the lighting device further comprises at least one substrate; and
at least one nozzle, the nozzle having an exit orifice,
the substrate comprises at least a first surface and a second surface,
the solid state light emitter is mounted on the first surface,
the substrate comprises at least one hole extending from the first surface to the second surface,
when power is supplied to the fan, the fan blows fluid from the fan directly through the hole,
the fan and the nozzle are oriented relative to one another such that when power is supplied to the fan, the fan blows fluid through the exit orifice, and
the nozzle comprises a compression chamber and an expansion area.
3. A lighting device as recited in claim 2 , wherein when power is supplied to the fan, the fan blows fluid through the hole from adjacent the second surface to adjacent the first surface.
4. A lighting device as recited in claim 2 , wherein the fluid comprises at least one gas.
5. A lighting device as recited in claim 2 , wherein the fluid comprises at least one liquid.
6. A method of cooling a lighting device, comprising supplying power to at least one fan and blowing fluid toward at least one solid state light emitter, at least one layer surrounding the solid state light emitter on all sides of the solid state light emitter, the at least one layer substantially preventing liquid from contacting the solid state light emitter the at least one layer substantially preventing liquid from contacting the solid state light emitter to the extent that if a solid state light emitter element comprising the at least one layer and the solid state light emitter were submerged in water at 15 psi and 25 degrees C. for 24 hours, not more than an amount of water that weighs 5% of the weight of the solid state light emitter would penetrate and remain within the solid state light emitter element.
7. A method as recited in claim 6 , wherein:
said method further comprises supplying power to at least one fan,
the lighting device comprises at least one substrate,
the substrate comprises at least a first surface and a second surface,
a solid state light emitter is mounted on the first surface,
the substrate comprises at least one hole extending from the first surface to the second surface,
the fan blows fluid from the fan directly through an exit orifice in a nozzle and then through the hole, and
the nozzle comprises a compression chamber and an expansion area.
8. A method as recited in claim 7 , wherein the fan blows fluid through the hole from adjacent the second surface to adjacent the first surface.
9. A method as recited in claim 7 , wherein the method further comprises immersing the solid state light emitter and the layer in a moving flow of cooling liquid.
10. A method as recited in claim 7 , wherein the fluid comprises at least one gas.
11. A method as recited in claim 10 , wherein the fluid comprises at least one liquid.