HEAT SINK FOR LIGHT FIXTURE FOR INDOOR GROW APPLICATION
A light fixture for an indoor growing facility is provided. The light fixture includes a housing, a lighting module, and a heat sink. The housing defines a first portion and a second portion. The lighting module is at least partially disposed in the second portion. The heat sink overlies the lighting module and is configured to dissipate heat away from the lighting module.
1 . A light fixture for an indoor growing facility, the light fixture comprising:
a housing defining a first portion and a second portion, the second portion defining a lighting receptacle and a window disposed beneath the lighting receptacle;
a lighting module at least partially disposed in the lighting receptacle above the window and comprising a plurality of light emitting diodes that are configured to project light through the window; and
a heat sink at least partially disposed in the lighting receptacle and overlying the lighting module, the heat sink configured to dissipate heat away from the lighting module, wherein:
the second portion of the housing surrounds a perimeter of the heat sink;
the heat sink is formed of a first metal containing at least about 98% pure aluminum; and
the housing is formed of a second metal that is predominately pure aluminum but contains less pure aluminum than the first metal.
2 . The light fixture of claim 1 wherein the first metal contains at least about 99% pure aluminum.
3 . The light fixture of claim 1 wherein the second metal contains between about 50% pure aluminum and about 95% pure aluminum.
4 . The light fixture of claim 1 wherein:
the heat sink is formed via a cold forging process; and
the housing is formed via a die casting process.
5 . The light fixture of claim 1 further comprising a controller at least partially disposed within the first portion.
6 . The light fixture of claim 5 wherein the housing comprises a main frame and a cover member that overlies the main frame and is coupled together with the main frame.
7 . The light fixture of claim 6 wherein:
the main frame defines a controller receptacle;
the cover member comprises a lid portion that overlies and covers the controller receptacle; and
the controller is disposed within the controller receptacle such that the lid portion overlies the controller.
8 . The light fixture of claim 7 wherein the lid portion comprises a plurality of heat sink fins that are configured to facilitate dissipation of heat from the controller.
9 . A light fixture for an indoor growing facility, the light fixture comprising:
a housing defining a first portion and a second portion, the second portion defining a lighting receptacle and a window disposed beneath the lighting receptacle;
a lighting module at least partially disposed in the lighting receptacle above the window and comprising a plurality of light emitting diodes that are configured to project light through the window; and
a heat sink at least partially disposed in the lighting receptacle and overlying the lighting module, the heat sink configured to dissipate heat away from the lighting module, wherein:
the heat sink is formed of a first metal having a first thermal conductivity; and
the housing is formed of a second metal having a second thermal conductivity.
10 . The light fixture of claim 9 wherein:
the first metal contains at least about 98% pure aluminum; and
the second metal is predominately pure aluminum but contains less pure aluminum than the first metal.
11 . The light fixture of claim 10 wherein the first metal contains at least about 99% pure aluminum.
12 . The light fixture of claim 11 wherein the second metal contains between about 50% pure aluminum and about 95% pure aluminum.
13 . The light fixture of claim 9 wherein:
the heat sink is formed via a cold forging process; and
the housing is formed via a die casting process.
14 . The light fixture of claim 9 further comprising a controller at least partially disposed within the first portion.
15 . The light fixture of claim 14 wherein the housing comprises a main frame and a cover member that overlies the main frame and is coupled together with the main frame.
16 . The light fixture of claim 15 wherein:
the main frame defines a controller receptacle;
the cover member comprises a lid portion that overlies and covers the controller receptacle; and
the controller is disposed within the controller receptacle such that the lid portion overlies the controller.
17 . The light fixture of claim 16 wherein the lid portion comprises a plurality of heat sink fins that are configured to facilitate dissipation of heat from the controller.
18 . A method for manufacturing a light fixture for an indoor growing facility, the method comprises:
die casting a housing from a first metal, the housing comprising a first portion and a second portion, the second portion defining a lighting receptacle and a window disposed beneath the lighting receptacle;
installing a lighting module at least partially in the lighting receptacle above the window, the lighting module comprising a plurality of light emitting diodes that are configured to project light through the window;
cold forging a heat sink from a second metal; and
installing the heat sink over the lighting module such that the heat sink is thermally coupled with the lighting module to facilitate dissipation of heat therefrom.
19 . The method of claim 18 further comprising installing a thermal paste between the lighting module and the heat sink.
20 . The method of claim 19 further comprising installing a controller at least partially within the first portion such that a lid portion of the housing overlies the controller and includes a plurality of heat sink fins that are configured to facilitate dissipation of heat from the controller.