IP Library Granted Patent US 12,452,979
Granted Patent B2
US 12,452,979 · App. 18/611,537 · Granted Oct 21, 2025

Multiple lighting mode LED lamp

Inventor: Richard B. Hurter (Castaic, CA)
Assignee: Kupa, Inc.
H05B47/13F21S9/02F21V21/32F21V23/0471F21V23/0485H05B45/10H05B47/16A45D29/00A45D2200/205F21Y2105/18F21Y2113/30F21Y2115/10
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Quick Facts
Patent No.
US 12,452,979
App. No.
18/611,537
Granted
Oct 21, 2025
Kind
B2
Abstract

The disclosed device relates to a multiple lighting mode LED lamp. The lamp has an LED assembly with a plurality of white LEDs for a first illumination source, and a plurality of UV LEDs for a second illumination source. The LED assembly is attached to the first end of a flexible support, and a base is attached to the second end of the flexible support. The lamp base incorporates an LED driver module in electrical communication with the illumination sources. A manual touch switch in the base, when touched by a user activates the white LEDs to operate the lamp in a lighting mode. A motion sensor in the form of an infrared induction sensor, is incorporated into the face of the LED assembly for detecting motion. Upon motion being detected, the UV LEDs are activated for a predetermined period of time to operate in UV light mode.

Claims (53)

1. A multiple lighting mode LED lamp comprising:

a housing comprising:

a lower face defining an outer perimeter and an opening positioned within the outer perimeter wherein a generally planar surface extends between the outer perimeter and the opening and wherein an aperture is formed in at least a portion of the generally planar surface;

an interior wall extending from the opening to form a recess within the housing;

a first illumination source comprising at least one white light LED positioned within the recess;

a second illumination source comprising at least one UV LED positioned within the recess;

a motion sensor positioned in alignment with the aperture formed in at least the portion of the generally planar surface such that a location for detecting motion is defined in front of the lower face of the housing;

an LED driver module;

a lamp base comprising;

a power source in electrical communication with the LED driver module; and

a manual switch in electrical communication with the LED driver module wherein the manual switch is positioned at a distance from the motion sensor such that a user can reach both the manual switch and the location for detecting motion from a fixed position; and

a support having first and second ends, wherein the first end of the support is coupled to the base and wherein the second end of the support is coupled to the housing;

wherein the manual switch generates a signal received by the LED driver module to activate the at least one white LED to operate the lamp in a first mode and wherein detection of motion by the motion sensor sends a signal to the LED driver module to activate the at least one UV LED to operate the lamp in a second mode.

2. The LED lamp of claim 1 wherein the support is an adjustable post.

3. The LED lamp of claim 1 , wherein the motion sensor is an infrared induction sensor.

4. The LED lamp of claim 1 wherein the manual switch is a touch sensor.

5. The LED lamp of claim 1 wherein the LED driver module adjusts the intensity of the first illumination source based on the number of times the manual switch is activated.

6. The LED lamp of claim 5 wherein the LED driver module drives the first illumination source at 30% intensity with one activation of the manual switch.

7. The LED lamp of claim 5 wherein the LED driver module drives the first illumination source at 60% intensity with two activations of the manual switch.

8. The LED lamp of claim 5 wherein the LED driver module drives the first illumination source at 100% intensity with three activations of the manual switch.

9. The LED lamp of claim 1 wherein the detection of motion by the motion sensor initiates the LED driver module to drive the second illumination source to activate the at least one UV LED for a predetermined period of time before deactivating the at least one UV LED.

10. The LED lamp of claim 9 wherein the predetermined period of time is at least fifteen seconds.

11. The LED lamp of claim 9 wherein the predetermined period of time is approximately fifteen seconds.

12. The LED lamp of claim 1 wherein the lamp base has an acetone resistant finish.

13. The LED lamp of claim 1 wherein the power source is a battery.

14. The LED lamp of claim 13 wherein the battery is a rechargeable battery.

15. The LED lamp of claim 1 wherein the first illumination source comprises a plurality of white LEDs.

16. The LED lamp of claim 1 wherein the first illumination source comprises at least nine white LEDs.

17. The LED lamp of claim 1 wherein the second illumination source comprises a plurality of UV LEDs.

18. The LED lamp of claim 1 wherein the second illumination source comprises at least three UV LEDs.

19. A multiple lighting mode LED lamp comprising:

a housing comprising;

a lower face defining an outer perimeter and an opening positioned within the outer perimeter wherein a generally planar surface extends between the outer perimeter and the opening and wherein an aperture is formed in at least a portion of the generally planar surface;

an interior wall extending from the opening to form a recess within the housing;

at least one white light LED positioned within the housing;

at least one UV LED positioned within the housing;

a motion sensor positioned in alignment with the aperture formed in at least the portion of the generally planar surface such that a location for detecting motion is defined in front of the lower face of the housing;

an LED driver module;

a battery in electrical communication with the LED driver module;

a switch in electrical communication with the LED driver module wherein the switch is positioned at a distance from the motion sensor such that a user can reach both the switch and the location for detecting motion from a fixed position;

a lamp base;

an adjustable support having first and second ends, wherein the first end of the support is coupled to the base and wherein the second end of the support is coupled to the housing;

wherein the switch generates a signal received by the LED driver module to activate the at least one white LED to operate the lamp in a first mode and wherein detection of motion by the motion sensor sends a signal to the LED driver module to activate the at least one UV LED to operate the lamp in a second mode.

20. The LED lamp of claim 19 wherein the LED driver is capable of adjusting the intensity of the first illumination source based on the number of activations of the switch.

21. The LED lamp of claim 19 , wherein the motion sensor is an infrared induction sensor.

22. The LED lamp of claim 19 wherein the detection of motion by the motion sensor initiates the LED driver module to drive the at least one UV LED for a predetermined period of time before deactivating the at least one UV LED.

23. The LED lamp of claim 19 wherein the battery is a rechargeable battery.

24. The LED lamp of claim 1 wherein a transparent plastic is positioned within the lower face surface aperture.

25. The LED lamp of claim 24 wherein the motion sensor is placed behind the transparent plastic.

26. The LED lamp of claim 25 wherein the motion sensor is capable of detecting motion through the transparent plastic.

27. The LED lamp of claim 19 wherein a transparent plastic is positioned within the lower face surface aperture.

28. The LED lamp of claim 27 wherein the motion sensor is placed behind the transparent plastic.

29. The LED lamp of claim 28 wherein the motion sensor is capable of detecting motion through the transparent plastic.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2025
From: HURTER, RICHARD B.
To: KUPA, INC.
Reel/Frame 069934/0103 →
Continuity (2)
Provisional Application 63492990 · Mar 29, 2023
Related Publication 20240334572A1 · Oct 3, 2024
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