IP Library Granted Patent US 9,822,962
Granted Patent B2
US 9,822,962 · App. 14/634,652 · Granted Nov 21, 2017

Underwater modular light probe

Inventor: Bryan C. McGilvray (Jupiter, FL)
F21V31/005F21V5/04F21V13/04F21V23/009F21V29/74F21Y2115/10
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Quick Facts
Patent No.
US 9,822,962
App. No.
14/634,652
Granted
Nov 21, 2017
Kind
B2
Abstract

An underwater light probe includes a body, a heat sink, and a lens assembly. The heat sink forms at least a portion of the body and includes a longitudinally extending mounting base having a plurality of laterally facing mounting surfaces configured to mount a plurality of laterally facing light elements thereon. The lens assembly is configured to couple to the body and defines a bore configured to receive the longitudinally extending mounting base and the plurality of laterally facing light elements mounted thereon and provide a watertight seal therearound when coupled to the body.

Claims (30)

1. An underwater light probe, the light probe comprising:

a body comprising an electrical and mechanical interface concentric to the body and residing within a first bore of the body;

a heat sink forming at least a portion of the body and comprising a longitudinally extending mounting base comprising a plurality of laterally facing mounting surfaces configured to mount a plurality of laterally facing light elements thereon;

a lens assembly configured to couple to the body, wherein the lens assembly defines a second bore and a lip structure attached to the end of the second bore that continuously decreases in diameter toward the end of the second bore, wherein the lip structure defines an opening of the lens assembly, wherein the second bore is configured to receive the longitudinally extending mounting base and the plurality of laterally facing light elements mounted thereon, wherein an internal thread of the lens assembly is configured to couple to an external thread of the body so as to provide a watertight seal therearound when the lens assembly is coupled to the body.

2. The light probe of claim 1 , wherein the lens assembly comprises a cylindrical shape defining the second bore, and wherein the lens assembly further comprises a lens portion extending along the second bore substantially perpendicular to the emission of light from the laterally facing light elements.

3. The light probe of claim 1 , wherein the lens assembly is configured to be selectively coupled and uncoupled to the body.

4. The light probe of claim 3 , wherein the heat sink further comprises a heat exchange feature configured to receive heat conducted from the mounting base and transfer the heat to surrounding fluid, and wherein the heat exchange feature comprises a plurality of fins.

5. The light probe of claim 1 , wherein the laterally facing light elements comprise LEDs or LED arrays.

6. The light probe of claim 1 , wherein at least one of the LEDs or LED arrays is coupled to a reflector or lens.

7. The light probe of claim 1 , wherein the laterally facing light elements comprise LED arrays configured with separately dimmable electronics controllable by a change in a supplied drive current.

8. The light probe of claim 1 , wherein the mounting base further comprises a longitudinally facing mounting surface positioned at a distal end of the mounting base, and wherein the longitudinally facing mounting surface is configured to mount a longitudinally facing light element.

9. The light probe of claim 8 , further comprising a reflector assembly configured to couple to the distal end of the mounting base to provide directional reflection of the longitudinally facing light element, wherein the laterally facing light elements are positioned for hemispherical projection through the lens assembly, and wherein the laterally facing light elements and the longitudinally facing light element are separately addressable.

10. A modular underwater light probe comprising:

a body comprising an interface configured to couple to an implement;

a heat sink that forms at least a portion of the body and comprising a longitudinally extending mounting base comprising a plurality of laterally facing mounting surfaces configured to mount a plurality of laterally facing light elements thereon; and

a lens assembly configured to couple to the body, wherein the lens assembly defines a bore and a lip structure attached to the end of the bore that continuously decreases in diameter toward the end of the bore, wherein the lip structure defines an opening of the lens assembly, wherein the bore is configured to receive the longitudinally extending mounting base and the plurality of laterally facing light elements mounted thereon, wherein an internal thread of the lens assembly is configured to couple to an external thread of the body so as to provide a watertight seal therearound when the lens assembly is coupled to the body.

11. The modular underwater light probe of claim 10 , wherein the lens assembly is configured to be selectively coupled and uncoupled to the body.

12. The modular underwater light probe of claim 10 , wherein the heat sink further comprises a heat exchange feature configured to receive heat conducted from the mounting base and transfer the heat to surrounding fluid, and wherein the heat exchange feature comprises a plurality of fins.

13. The modular underwater light probe of claim 10 , wherein the laterally facing light elements comprise LEDs or LED arrays, and wherein at least one of the LEDs or LED arrays is coupled to a reflector or lens.

14. The modular underwater light probe of claim 10 , wherein the laterally facing light elements comprise LED arrays configured with separately dimmable electronics controllable by a change in a supplied drive current.

15. The modular underwater light probe of claim 10 , wherein the mounting base further comprises a longitudinally facing mounting surface positioned at a distal end of the mounting base, and wherein the longitudinally facing mounting surface is configured to mount a longitudinally facing light element.

16. The modular underwater light probe of claim 10 , further comprising a reflector assembly configured to couple to the distal end of the mounting base to provide directional reflection of light emitted by the longitudinally facing light element, wherein the laterally facing light elements are positioned for hemispherical projection through the lens assembly, and wherein the laterally facing light elements and the longitudinally facing light element are separately addressable.

17. A underwater lighting device system, the system comprising:

a light probe configured to be selectively coupled to one or more implements, wherein the light probe comprises,

a body comprising an electrical and mechanical interface concentric to the body and residing within a first bore of the body,

a heat sink forming at least a portion of the body and comprising a longitudinally extending mounting base comprising a plurality of laterally facing mounting surfaces configured to mount a plurality of light elements thereon, and

a lens assembly configured to couple to the body, wherein the lens assembly defines a second bore configured to receive the longitudinally extending mounting base and the plurality of light elements mounted thereon and provide a watertight seal therearound when coupled to the body.

18. The system of claim 17 , wherein the system further comprises a plurality of light element assemblies comprising different arrangements of light elements, and wherein the light probe is configured for selectable coupling of the light element assemblies at the mounting surfaces to produce different beampatterns.

19. The system of claim 17 , wherein the one or more implements comprises a controller and a user interface, wherein the light probe is configured to electrically couple to a supply of power and a controller through a connector interface when the light probe is coupled with the one or more implements.

20. The system of claim 17 , wherein the light probe further comprises a longitudinally facing mounting surface positioned at a distal end of the mounting base, wherein the longitudinally facing mounting surface is configured to mount a light element, and wherein light elements mounted at the laterally facing mounting surface and the longitudinally facing mounting surface are separately addressable.

Continuity (2)
Provisional Application 61946670 · Feb 28, 2014
Related Publication 20150247632A1 · Sep 3, 2015