Light fixture with internally-loaded multilayer stack for pressure transfer
Submersible lights including housings and a multilayer stack for pressure transfer are disclosed. A transparent pressure-bearing window, a window support structure, a circuit element populated with LEDs, and a pressure support structure may be mounted inside the housing. The support structure may be structured to bear at least some of the pressure applied to the transparent window from external pressure sources. The support structures may also be adapted to transfer thermal energy to an exterior environment such as sea water.
1. An LED underwater light, comprising:
a housing with a forward portion having an opening, the housing enclosing an inner volume;
a transparent, pressure-bearing window having an external face and an internal face, the pressure bearing window positioned across the forward portion opening; wherein the external face is positioned facing outward and the internal face is positioned facing the volume;
a water-tight seal disposed between the transparent, pressure bearing window and a surface of the housing;
an LED light assembly including an electronic circuit board and a plurality of LEDs operatively coupled to the electronic circuit board;
wherein the electronic circuit board is an element of a multilayer stack assembly enclosed in the volume, the multilayer stack assembly also including at least an LED spacer element placed between the transparent pressure bearing window and the electronic circuit board and a heat sink element, wherein the LED spacer element has one or more apertures for allowing light emitted from the LEDs to pass through to the transparent pressure bearing window and to the exterior of the housing; and
wherein the transparent pressure bearing window and the multilayer stack are positioned so that substantially all of the pressure applied to the external face of the window is transferred to and carried through the electronic circuit board and other elements of the multilayer stack assembly.
2. The LED underwater light of claim 1 , wherein the window comprises sapphire.
3. The LED underwater light of claim 1 , wherein the electronic circuit board includes a thermal compensation circuit operatively coupled to the current regulator to provide a control signal for the regulator circuit output.
4. The LED underwater light of claim 1 , wherein the electronic circuit board includes a temperature monitor circuit, operatively coupled to the current regulator circuit, to sense heat generated by the LEDs and provide an output to the thermal compensation circuit.
5. The LED underwater light of claim 1 , wherein the electronic circuit board includes a short circuit detection open load protection circuit operatively coupled to the LEDs and the current regulator.
6. The LED underwater light of claim 1 , further comprising a crash guard positioned in front of the transparent pressure-bearing window.
7. The LED underwater light of claim 6 , wherein the crash is constructed of a high impact materials comprising plastics, polymers, titanium, stainless steel, or nickel-based alloys.
8. The LED underwater light of claim 1 , wherein window support spacer element surrounds the circuit element.
9. An electronics assembly for an underwater light, comprising:
an LED light assembly for positioning behind a transparent pressure bearing window, including:
a multilayer stack assembly, comprising
an electronic circuit board;
a plurality of LEDs operatively coupled to the electronic circuit board;
an LED spacer element having one or more apertures for allowing light emitted from the LEDs therethrough and to the transparent pressure bearing window, and
a heat sink element;
wherein the electronic circuit is positioned between the transparent pressure bearing window and the LED spacer element to allow pressure applied to an external face of the transparent pressure bearing window to be substantially carried through the multilayer stack assembly.
10. The electronics assembly of claim 9 , wherein the window comprises sapphire.
11. The electronics assembly of claim 9 , wherein the electronic circuit board includes a thermal compensation circuit operatively coupled to the current regulator to provide a control signal for the regulator circuit output.
12. The electronics assembly of claim 9 , wherein the electronic circuit board includes a temperature monitor circuit, operatively coupled to the current regulator circuit, to sense heat generated by the LEDs and provide an output to the thermal compensation circuit.
13. The electronics assembly of claim 9 , wherein the electronic circuit board includes a short circuit detection open load protection circuit operatively coupled to the LEDs and the current regulator.
14. The electronics assembly of claim 9 , further comprising a crash guard positioned in front of the transparent pressure-bearing window.
15. The electronics assembly of claim 14 , wherein the crash is constructed of a high impact materials comprising plastics, polymers, titanium, stainless steel, or nickel-based alloys.
16. The electronics assembly of claim 9 , wherein window support spacer element surrounds the circuit element.