Wedge shaped heat sink for gimbal mounted solid state recessed lighting
09851081 · 2017-12-26
Assignee
Inventors
Cpc classification
F21V29/763
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0091
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A heat sink for a directional recessed lighting fixture, comprises a wedge-shaped rotatable inner heat sink 110 configured to fit within a hollow interior of an outer heat sink 130. The inner heat sink has an opening 120, for transmission of light from a light source 125 it houses. The inner heat sink includes a gimbal shaft 115 pivotally mounted to an inside wall 132 of the outer heat sink. The inner heat sink has a vertical surface 112 formed on one side, which is close to inside wall 132, when rotated in one direction (FIG. 1A) to direct light in a first direction. The inner heat sink has an angularly offset surface 114 formed on an opposite side, which is close to the inside wall, when rotated in an opposite direction (FIG. 1B) to direct light in a second direction.
Claims
1. A heat sink for a directional lighting fixture, comprising: a rotatable inner heat sink being generally wedge-shaped with a narrow top portion and a broader bottom portion, the rotatable inner heat sink being configured to fit within a hollow interior of an outer heat sink that has a substantially vertical inside wall, the rotatable inner heat sink having an opening in the bottom portion for transmission of light from a light source housed within the rotatable inner heat sink, the bottom portion of the rotatable inner heat sink being configured to be exposed through an opening at a bottom of the outer heat sink to enable further transmission of the light transmitted from the opening in the rotatable inner heat sink; a gimbal shaft configured to pivotally mount the rotatable inner heat sink to the inside wall of the outer heat sink; the rotatable inner heat sink having a vertical surface formed on one side between the narrow top portion and the broader bottom portion, the vertical surface being close to the inside wall of the outer heat sink, when the rotatable inner heat sink is rotated in one direction on the gimbal shaft, to direct light in a first direction, wherein the vertical surface of the rotatable inner heat sink is a first cylindrical surface portion and the offset surface of the rotatable inner heat sink is a second, substantially cylindrical surface portion; and the rotatable inner heat sink having an offset surface that is offset by an acute angle from vertical and intersects the vertical surface, the offset surface being formed on an opposite side of the rotatable inner heat sink from the one side, between the narrow top portion and the broader bottom portion, the offset surface being close to the inside wall of the outer heat sink, when the rotatable inner heat sink is rotated in an opposite direction to the one direction on the gimbal shaft, to direct light in a second direction.
2. The heat sink for a directional lighting fixture of claim 1, wherein the offset surface is offset by an angle from vertical of between 0 degrees and 35 degrees.
3. The heat sink for a directional lighting fixture of claim 1, wherein the light source housed within the rotatable inner heat sink is an LED light source.
4. The heat sink for a directional lighting fixture of claim 1, wherein the offset surface forms heat dissipating ribs.
5. The heat sink for a directional lighting fixture of claim 1, wherein the opening in the bottom of the outer heat sink is characterized by a diameter, and the broader bottom portion of the rotatable inner heat sink has a diameter that is approximately the same as the diameter of the opening.
6. The heat sink for a directional lighting fixture of claim 1, wherein the vertical surface is a smooth, continuously curved surface, and the offset surface comprises heat dissipating ribs that extend along the offset surface at the acute angle.
7. A heat sink for a directional lighting fixture, comprising: a rotatable inner heat sink being generally wedge-shaped with a narrow top portion and a broader bottom portion, the rotatable inner heat sink being configured to fit within a hollow interior of an outer heat sink that has a substantially vertical inside wall, the rotatable inner heat sink having an opening in the bottom portion for transmission of light from a light source housed within the rotatable inner heat sink, the bottom portion of the rotatable inner heat sink being configured to be exposed through an opening at a bottom of the outer heat sink to enable further transmission of the light transmitted from the opening in the rotatable inner heat sink; and a gimbal shaft configured to pivotally mount the rotatable inner heat sink to the inside wall of the outer heat sink, wherein: the rotatable inner heat sink has a vertical surface formed on one side between the narrow top portion and the broader bottom portion, the vertical surface being close to the inside wall of the outer heat sink, when the rotatable inner heat sink is rotated in one direction on the gimbal shaft, to direct light in a first direction, the rotatable inner heat sink has an offset surface that is offset by an acute angle from vertical and intersects the vertical surface, the offset surface being formed on an opposite side of the rotatable inner heat sink from the one side, between the narrow top portion and the broader bottom portion, the offset surface being close to the inside wall of the outer heat sink, when the rotatable inner heat sink is rotated in an opposite direction to the one direction on the gimbal shaft, to direct light in a second direction, and the vertical surface extends directly from the broader bottom portion of the rotatable inner heat sink on the one side, and a spherical surface portion is interposed between the broader bottom portion of the rotatable inner heat sink and the offset surface on the opposite side.
8. The heat sink for a directional lighting fixture of claim 7, wherein the vertical surface of the rotatable inner heat sink is a first cylindrical surface portion and the offset surface of the rotatable inner heat sink is a second, substantially cylindrical surface portion.
9. The heat sink for a directional lighting fixture of claim 7, wherein the vertical surface is a smooth, continuously curved surface, and the offset surface comprises heat dissipating ribs that extend along the offset surface at the acute angle.
10. The heat sink for a directional lighting fixture of claim 7, wherein the offset surface is offset by an angle from vertical of between 0 degrees and 35 degrees.
11. The heat sink for a directional lighting fixture of claim 7, wherein the light source housed within the rotatable inner heat sink is an LED light source.
12. The heat sink for a directional lighting fixture of claim 7, wherein the opening in the bottom of the outer heat sink is characterized by a diameter, and the broader bottom portion of the rotatable inner heat sink has a diameter that is approximately the same as the diameter of the opening.
Description
DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(8) Example embodiments of the invention provide an improved design of a rotatable inner heat sink for a directional or gimbal mounted LED recessed lighting fixture, which occupies a maximum available volume within an outer heat sink, and yet is capable of full directional adjustment on its gimbal supports.
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(10) The wedge-shaped rotatable inner heat sink 110 has a narrow top portion 121 and a broader bottom portion 118 and has an opening 120 in the bottom portion for transmission of light from a light source 125 housed within the rotatable inner heat sink 110. The bottom portion 118 of the wedge-shaped rotatable inner heat sink 110 is configured to be exposed through an opening 122 at a bottom of the outer heat sink 130, to enable further transmission of the light transmitted from the opening 120 in the rotatable inner heat sink 110.
(11) The first embodiment of the wedge-shaped rotatable inner heat sink 110 has the vertical flat or planar surface 112 formed on one side between the narrow top portion 121 and the broader bottom portion 118. The vertical surface 112 is substantially parallel and close to the inside wall 132 of the outer heat sink 130, when the rotatable inner heat sink 110 is rotated in one direction (shown in
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(13) In this manner, the rotatable inner heat sink 110 occupies a maximum available volume within the outer heat sink 130, and yet is still capable of directional adjustment about the axis 116, on its gimbal supports 115.
(14) The rotatable inner heat sink 110 may have an offset surface 114 that is offset by an angle from vertical that ranges from 0 degrees to 35 degrees.
(15) The light source 125 housed within the rotatable inner heat sink 110, may be an LED light source.
(16) The bottom portion 118 of the rotatable inner heat sink 110 may have a diameter that is approximately the same as the opening 122 at the bottom of the outer heat sink 130.
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(19) The second embodiment of the wedge-shaped rotatable inner heat sink 110′ fits within the hollow interior of the outer heat sink 130 of
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(30) The resulting embodiments of the wedge-shaped rotatable inner heat sink for a directional or gimbal mounted LED recessed lighting fixture, occupies a maximum available volume within the outer heat sink, and yet is still capable of directional adjustment on its gimbal supports.