IP Library Patent Application 16223824
Patent Application
App. No. 16/223,824

ACTIVE COMFORT CONTROLLED BEDDING SYSTEMS

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Quick Facts
Patent No.
US None
App. No.
16/223,824
Abstract

Active comfort controlled bedding systems and processes of operating the bedding systems generally include a variable firmness control. The active comfort controlled bedding system can include a control unit in electrical communication with a signal generating layer configured to generate heat and alter a firmness property of at least one viscoelastic foam layer, wherein the amount of heat is based on a decrease of the glass transition temperature as a function of the percentage of humidity in the environment. In other embodiments, the bedding system is provided with at least one foam layer comprising a phase change material stratified in a foam structure of the at least one foam layer; and the at least one foam layer is heated to a temperature greater than a melt temperature of the paraffin wax to soften the at least one foam layer. In other embodiments, ambient humidity conditions can be changed.

Claims (39)

1 . An active comfort controlled bedding system comprising:

at least one viscoelastic foam layer having a glass transition temperature greater than 60° F. at 0% humidity, wherein the active comfort controlled bedding system is in an environment having greater than 0% humidity;

a signal generating layer underlying the at least one viscoelastic foam, the signal generating layer comprising a thermoelectric fabric, a heat transfer device, or a resistive heating element; and

a control unit in electrical communication with the signal generating layer configured to generate heat and alter a firmness property of the at least one viscoelastic foam layer, wherein the amount of heat is based on a decrease of the glass transition temperature as a function of the percentage of humidity in the environment.

2 . The active comfort controlled bedding system of claim 1 further comprising an encapsulated paraffin wax stratified in the at least one viscoelastic foam layer.

3 . The active comfort controlled bedding system of claim 1 , wherein the at least one viscoelastic foam layer having a glass transition temperature greater than 80° F. at 0% humidity.

4 . The active comfort controlled bedding system of claim 1 , wherein the at least one viscoelastic foam layer having a glass transition temperature greater than 90° F. at 0% humidity.

5 . The active comfort controlled bedding system of claim 1 further comprising at least one sensor for determining body position on the bedding system.

6 . The active comfort controlled bedding system of claim 1 , wherein the signal generating layer comprises multiple zones to alter the firmness property specific to each of the multiple zones.

7 . The active comfort bedding system of claim 1 , wherein the control unit further comprises electrical communication with a humidity sensor and a heat sensor.

8 . An active comfort controlled bedding system, comprising:

at least one foam layer comprising a phase change material stratified in a foam structure of the at least one foam layer;

a signal generating layer underlying the at least one foam layer, the signal generating layer comprising a thermoelectric fabric, a heat transfer device, or a resistive heating element; and

a control unit in electrical communication with the signal generating layer effective to heat the phase change material above a melting temperature thereof and alter a firmness property of the at least one foam layer.

9 . The active comfort controlled bedding system of claim 8 , wherein the foam layer comprises a latex foam, a polyurethane foam, or a viscoelastic foam.

10 . The active comfort controlled bedding system of claim 9 , wherein the at least one viscoelastic foam layer has a glass transition temperature greater than 60° F. at 0% humidity, and the signal generating layer is configured to generate heat and alter firmness property of the at least one viscoelastic foam layer, wherein the amount of heat is based on a decrease of the glass transition temperature as a function of the percentage of humidity in an environment of the active comfort controlled bedding system.

11 . The active comfort controlled bedding system of claim 9 , wherein the at least one viscoelastic foam layer has a glass transition temperature greater than 80° F. at 0% humidity.

12 . The active comfort controlled bedding system of claim 9 , wherein the at least one viscoelastic foam layer has a glass transition temperature greater than 90° F. at 0% humidity.

13 . A process for changing a firmness property of a foam layer in a mattress assembly, the process comprising:

providing the mattress assembly with at least one foam layer comprising a phase change material stratified in a foam structure of the at least one foam layer; and

heating the at least one foam layer to a temperature greater than a melt temperature of the phase change material to soften the at least one foam layer.

14 . The process of claim 13 , wherein heating the at least one foam layer comprises generating heat from a thermoelectric fabric underlying the at least one foam layer.

15 . The process of claim 13 , wherein heating the at least one foam layer comprises generating heat from a heat transfer device underlying the at least one foam layer.

16 . The process of claim 13 , wherein heating the at least one foam layer comprises generating heat from a layer comprising resistive heating elements underlying the at least one foam layer.

17 . The process of claim 13 , wherein the at least one foam layer comprises a viscoelastic foam layer having a first glass transition temperature greater than 60° F. at 0% humidity, and a second glass transition temperature less than the first glass transition temperature at a % humidity greater than 0, and wherein heating the viscoelastic foam layer comprises heating above the second glass transition temperature to alter the firmness property.

18 . A process for changing a firmness property of a viscoelastic foam layer in a mattress assembly, the process comprising:

providing the mattress assembly with at least one viscoelastic foam layer having a first glass transition temperature greater than 60° F. at 0% humidity, and a second glass transition temperature less than the first glass transition temperature at a % humidity greater than 0; and

heating the at least one viscoelastic foam layer comprises heating above the second glass transition temperature to alter the firmness property.

19 . The process of claim 18 further comprising a phase change material stratified in a foam structure of the at least one viscoelastic foam layer.

20 . The process of claim 18 , wherein heating the at least one viscoelastic foam layer comprises generating heat from a thermoelectric fabric underlying the at least one viscoelastic foam layer.

21 . The process of claim 18 , wherein heating the at least one viscoelastic foam layer comprises generating heat from a heat transfer device underlying the at least one viscoelastic foam layer.

22 . The process of claim 18 , wherein heating the at least one viscoelastic foam layer comprises generating heat from a layer comprising resistive heating elements underlying the at least one viscoelastic foam layer.

23 . A process for changing a firmness property of a foam layer in a mattress assembly, the process comprising:

providing the mattress assembly with at least one viscoelastic foam layer having a first glass transition temperature greater than 60° F. at 0% humidity, and a second glass transition temperature less than the first glass transition temperature at a % humidity greater than 0, and

heating the at least one viscoelastic foam layer and/or changing ambient humidity conditions about the at least one viscoelastic foam layer to alter the firmness property.

24 . The process of claim 23 , wherein changing ambient humidity conditions about the viscoelastic layer comprises increasing the ambient humidity conditions by mixing air with moisture and exposing the at least one viscoelastic foam layer with the air.

25 . The process of claim 23 , wherein changing ambient humidity conditions about the viscoelastic layer comprises decreasing the ambient humidity conditions by removing moisture from air and exposing the at least one viscoelastic foam layer with the air.

26 . The process of claim 23 , wherein the ambient humidity condition has a different humidity level relative to a sleeping surface of mattress assembly.

27 . The process of claim 23 , wherein heating comprises heating the at least one viscoelastic foam layer above the second glass transition temperature

Assignments (14)
RELEASE OF SUPER-PRIORITY SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Jun 30, 2023
From: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS ADMINISTRATIVE AGENT
To: DREAMWELL, LTD.; SERTA SIMMONS BEDDING, LLC; TUFT & NEEDLE, LLC
Reel/Frame 064185/0538 →
RELEASE OF FIRST LIEN SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Jun 30, 2023
From: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
To: DREAMWELL, LTD.; SERTA SIMMONS BEDDING, LLC; TOMORROW SLEEP LLC; TUFT & NEEDLE, LLC
Reel/Frame 064185/0378 →
RELEASE OF FIRST LIEN SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Jun 30, 2023
From: ECLIPSE BUSINESS CAPITAL LLC, AS ADMINISTRATIVE AGENT
To: DREAMWELL, LTD.; SSB MANUFACTURING COMPANY; NATIONAL BEDDING COMPANY L.L.C.; SERTA SIMMONS BEDDING, LLC; TUFT & NEEDLE, LLC; TOMORROW SLEEP LLC
Reel/Frame 064185/0236 →
NOTICE OF AGENCY RESIGNATION AND ASSIGNMENT OF SUPER-PRIORITY TERM LOAN INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Feb 6, 2023
From: UBS AG, STAMFORD BRANCH, AS THE RESIGNING ADMINISTRATIVE AGENT
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS SUCCESSOR ADMINISTRATIVE AGENT
Reel/Frame 062682/0540 →
SECURITY INTEREST Recorded Jan 31, 2023
From: DREAMWELL, LTD.; SSB MANUFACTURING; NATIONAL BEDDING; SERTA SIMMONS BEDDING, LLC; TUFT & NEEDLE, LLC; TOMORROW SLEEP LLC
To: ECLIPSE BUSINESS CAPITAL LLC
Reel/Frame 062571/0391 →
TERMINATION AND RELEASE OF ABL INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Jan 27, 2023
From: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
To: DREAMWELL, LTD.; SERTA SIMMONS BEDDING, LLC
Reel/Frame 062525/0943 →
SECURITY INTEREST Recorded Jan 27, 2023
From: DREAMWELL, LTD.; SSB MANUFACTURING; NATIONAL BEDDING; SERTA SIMMONS BEDDING, LLC; TUFT & NEEDLE, LLC; TOMORROW SLEEP LLC
To: ECLIPSE BUSINESS CAPITAL LLC
Reel/Frame 062525/0458 →
CORRECTIVE ASSIGNMENT TO CORRECT THE SECURITY AGREEMENT DOCUMENT PREVIOUSLY RECORDED AT REEL: 048792 FRAME: 0146. ASSIGNOR(S) HEREBY CONFIRMS THE FIRST LIEN SECURITY AGREEMENT . Recorded Jan 6, 2023
From: DREAMWELL, LTD.
To: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
Reel/Frame 063742/0272 →
SUPER-PRIORITY TERM LOAN INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Dec 23, 2022
From: DREAMWELL, LTD.
To: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
Reel/Frame 062212/0165 →
RELEASE OF SECOND LIEN SECURITY INTEREST IN INTELLECTUAL PROPERTY RECORDED AT R/F 052755/0373 Recorded May 10, 2022
From: GOLDMAN SACHS BANK USA, AS ADMINISTRATIVE AGENT
To: DREAMWELL, LTD.
Reel/Frame 059913/0953 →
SECOND LIEN TERM LOAM INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded May 26, 2020
From: DREAMWELL, LTD
To: GOLDMAN SACHS BANK USA
Reel/Frame 052755/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2019
From: DEFRANKS, MICHAEL S.; ANDERSON, BRIAN MARK; PAHNER, WILLIAM ANDREW; PRINCE, VICTOR RAY, JR.
To: DREAMWELL, LTD.
Reel/Frame 051229/0528 →
ABL INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Apr 4, 2019
From: DREAMWELL, LTD.
To: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
Reel/Frame 049721/0858 →
FIRST LIEN TERM LOAN INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Apr 4, 2019
From: DREAMWELL, LTD.
To: UBS AG, STAMFORD BRANCH, AS ADMINISTRATIVE AGENT
Reel/Frame 048792/0146 →