IP Library › Granted Patent US 12,535,205
Granted Patent B2
US 12,535,205 · App. 18/608,536 · Granted Jan 27, 2026

Water-resistant enclosure for light string lamps

Inventors: Jason Loomis (Decatur, GA); Nash Rittmann (Odessa, FL); Yi Xin Long (Jiangmen, CN)
Assignee: Foot Candle, LLC
F21V31/005F21S4/10F21V3/02F21Y2115/10
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Quick Facts
Patent No.
US 12,535,205
App. No.
18/608,536
Granted
Jan 27, 2026
Kind
B2
Abstract

A water-resistant enclosure having a base module, a cap module connected to the base module to define a cavity configured to receive a light emitting device, and apertures formed in at least one of the base module and cap module for wires to pass through. The base module may be deformed when affixed to the cap module, or a sealing agent may be disposed in the cavity, such that the cavity is waterproof.

Claims (23)

1 . A manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure comprising:

a base module having at least one lumen extending longitudinally;

a cap module configured to be coupled to the base module, such that an internal cavity is formed by the cap module and the base module, the internal cavity configured to at least partially receive a light-emitting device; and

a sealant element configured to be disposed in the internal cavity to create a water-resistant seal between the base module and the cap module, such that the internal cavity is substantially sealed,

wherein:

the base module further comprises a tab extending distally from the base module, the tab configured to provide a handle for the automated machine to hold the base module without contacting the sealant element and insert the base module into the cap module,

the at least one lumen is configured to provide a pathway for a plurality of insulated conductors from an outside of the light enclosure to the internal cavity to supply electrical energy to the light-emitting device, and

a portion of an interior surface of the base module and the cap module is configured to form a continuous surface when the base module is assembled to the cap module.

2 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , wherein:

the sealant element is configured to be disposed in the internal cavity in a thermodynamically solid phase, and heated to be transitioned from the thermodynamically solid phase at least partially into the thermodynamically liquid phase when heat energy is applied.

3 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , wherein the sealant element is configured to be disposed in the internal cavity in a thermodynamically liquid phase.

4 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the sealant element comprises at least two fluid components, configured to transition from the thermodynamically liquid phase to a thermodynamically solid phase in response to a chemical reaction initiated by mixing the at least two components.

5 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the cap module further comprising an annular water-sealing surface, wherein when the light-emitting device is received in the internal cavity and the cap module is coupled to the base module, the base module engages a base of the light-emitting device such that it forces the light-emitting device against the annular water-sealing surface.

6 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , wherein the sealant element is further provided about the at least one lumen such that a water-resistant seal is formed at least between the at least one lumen and the base module.

7 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , wherein coupling the base module to the cap module introduces radial compression that provides a water-resistant seal between the base module and the cap module.

8 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the base module further comprises two pieces and a hinge joining the two pieces, and the base module is configured to hingedly open and close the two pieces about the hinge.

9 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the cap module further comprising a lens configured to allow light from the light-emitting device to project through.

10 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the cap module comprising a first cap module portion, and a second cap module portion, the second cap module being at least partially optically translucent and configured to be coupled to the first cap module portion such that light emitted from the light-emitting device is visible external to the internal cavity through the second cap module portion.

11 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the cap module comprises a baffle configured to direct the sealant element towards the internal cavity when the base module is coupled to the cap module.

12 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , wherein the sealant element comprises epoxy.

13 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 1 , the base module comprises a baffle configured to direct the sealant element towards the internal cavity when the base module is assembled to the cap module, wherein the internal cavity is formed along a distal plane of the base module.

14 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 13 , wherein the internal cavity comprises a ring-shaped cavity.

15 . The manufacturing plant comprising an automated machine configured to hold a water-resistant light enclosure of claim 13 , wherein the internal cavity comprises at least one pocket well distributed along a distal plane of the base module.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2024
From: SEASONS 4, INC.
To: FOOT CANDLE, LLC
Reel/Frame 069650/0512 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2024
From: FOOT-CANDLE, LLC
To: SEASONS 4, INC.
Reel/Frame 069645/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2024
From: SEASONS 4, INC.
To: FOOT-CANDLE, LLC
Reel/Frame 069645/0111 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2024
From: LOOMIS, JASON; RITTMANN, NASH; LONG, YI XIN
To: SEASONS 4, INC.
Reel/Frame 067293/0294 →
Continuity (10)
Continuation 18312420 · May 4, 2023
Continuation 17933041 · Sep 16, 2022
Continuation In Part 17450006 · Oct 5, 2021
Continuation In Part 17301850 · Apr 15, 2021
Continuation 16829937 · Mar 25, 2020
Continuation 16659302 · Oct 21, 2019
Continuation 15721004 · Sep 29, 2017
Continuation 14602526 · Jan 22, 2015
Provisional Application 61931360 · Jan 24, 2014
Related Publication 20240230079A1 · Jul 11, 2024
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