IP Library Patent Application 18578304
Patent Application
App. No. 18/578,304

LIGHT THERAPY DEVICE

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Quick Facts
Patent No.
US None
App. No.
18/578,304
Abstract

A light therapy device and methods of use for delivering photobiomodulation “light therapy” is provided. The light therapy device includes hardware and functionality to deliver a wide variety of therapeutic programs via operating modes, wherein specific combinations of LED chips are powered to generate customized ranges of light spectra to the user. Example embodiments for “stand alone” use as well as embodiments for mounting in a building structure or furniture, for fashioning into garments and the like are disclosed.

Claims (44)

1 . A light therapy device comprising:

a case having an interior defined by at least one side and configured to mount a plurality of light emitting diode (LED) assemblies within the interior, wherein each LED assembly comprises exactly two LED chips having different emission spectra mounted on a printed circuit board and a reflector, wherein the plurality of LED assemblies are arranged in a repeating pattern of rows and columns forming an array, and

wherein the array comprises repeating pairs of two (2) LED assemblies, each pair of LED assemblies emitting exactly four (4) different LED chip emission spectra.

2 . The light therapy device of claim 1 , wherein each row of the array is arranged with an LED assembly having a combination of two different emission spectra LED chips alternating with an adjoining LED assembly with two LED chips having a different emission spectra combination.

3 . The light therapy device of claim 1 having an exactly equal number of each LED chips with the same emission spectra in the light therapy device.

4 . The light therapy device of claim 1 , wherein fifty percent (50%) of the plurality of LED assemblies comprise an LED chip having a peak intensity wavelength of about 810 nm.

5 . The light therapy device of claim 1 , wherein fifty percent (50%) of the plurality of LED assemblies comprise an LED chip having a peak intensity wavelength of about 850 nm.

6 . The light therapy device of claim 1 , wherein fifty percent (50%) of the plurality of LED assemblies comprise an LED chip having a peak intensity wavelength of about 940 nm.

7 . The light therapy device of claim 1 , further comprising a computing module having at least one software algorithm residing on a memory, wherein the at least one software algorithm causes the light therapy device to execute at least one operating mode.

8 . The light therapy device of claim 7 configured to execute the at least one operating mode in response to instructions received from a wireless remote handheld device having a user interface.

9 . (canceled)

10 . (canceled)

11 . (canceled)

12 . (canceled)

13 . A method of operating the light therapy device of claim 1 comprising a step powering “on” only one LED chip of each of the LED assemblies emitting the exactly two (2) different emission spectra while the remaining LED chip of the same LED assembly is not powered on.

14 . The method of claim 13 , wherein the light therapy device comprises a number of LED assemblies having an LED chip with a peak emission spectra of about 660 nm and an LED chip with a peak emission spectra of about 850 nm together in the same LED assembly.

15 . The method of claim 13 , wherein the light therapy device comprises a number of LED assemblies having an LED chip with a peak emission spectra of about 630 nm and an LED chip with a peak emission spectra of about 850 nm together in the same LED assembly.

16 . The method of claim 13 , wherein the light therapy device comprises a number of LED assemblies having an LED chip with a peak emission spectra of about 630 nm and an LED chip with a peak emission spectra of about 810 nm together in the same LED assembly.

17 . The method of claim 13 , wherein the light therapy device comprises a number of LED assemblies having an LED chip with a peak emission spectra of about 660 nm and an LED chip with a peak emission spectra of about 850 nm together in the same LED assembly.

18 . The method of claim 13 , wherein the light therapy device comprises a number of LED assemblies having an LED chip with a peak emission spectra of about 660 nm and an LED chip with a peak emission spectra of about 810 nm together in the same LED assembly.

19 . The method of claim 13 , wherein the light therapy device comprises:

exactly 25% of the total LED chips having a peak emission spectra of about 630 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 660 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 810 nm; and

exactly 25% of the total LED chips having a peak emission spectra of about 850 nm.

20 . The method of claim 13 , wherein the light therapy device comprises:

exactly 50% of the total LED chips having a peak emission spectra of about 630 nm; and

exactly 50% of the total LED chips having a peak emission spectra of about 660 nm.

21 . The method of claim 13 , wherein the light therapy device comprises:

exactly 50% of the total LED chips having a peak emission spectra of about 660 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 810 nm; and

exactly 25% of the total LED chips having a peak emission spectra of about 850 nm.

22 . The method of claim 13 , wherein the light therapy device comprises:

exactly 50% of the total LED chips having a peak emission spectra of about 630 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 810 nm; and

exactly 25% of the total LED chips having a peak emission spectra of about 850 nm.

23 . The method of claim 13 , wherein the light therapy device comprises:

exactly 25% of the total LED chips having a peak emission spectra of about 630 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 660 nm;

exactly 50% of the total LED chips having a peak emission spectra of about 850 nm.

24 . The method of claim 13 , wherein the light therapy device comprises:

exactly 25% of the total LED chips having a peak emission spectra of about 630 nm;

exactly 25% of the total LED chips having a peak emission spectra of about 660 nm;

exactly 50% of the total LED chips having a peak emission spectra of about 810 nm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2025
From: CHAVERRI, SCOTT
To: MITO RED LIGHT, INC.
Reel/Frame 070072/0538 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2024
From: MITO RED LIGHT, INC.
To: MRL IP HOLDINGS LLC
Reel/Frame 068707/0127 →