IP Library Granted Patent US 10,151,104
Granted Patent B2
US 10,151,104 · App. 15/703,322 · Granted Dec 11, 2018

Construction panels, materials, systems, and methods

Inventors: Charles R. Harrison (Acworth, GA); Lawrence Gollob (Stone Mountain, GA); Clarence A. Shelton (Atlanta, GA); Stuart Brandon Gilley (Atlanta, GA); Timothy R. Fierbaugh (Fayetteville, GA)
Assignee: Georgia-Pacific Gypsum LLC
E04B1/64B32B5/022B32B13/14B32B21/04E04B7/00E04B7/20E04C2/043E04C2/26E04D11/02E04D12/00E04D13/006E04D13/1643E04F15/18G01K13/00G06K7/10415G06K19/0717G06K19/0723H04Q9/00B32B2250/02B32B2262/101B32B2419/06B32B2607/00E04B1/003E04B7/18E04C2/46G01K7/16G01K7/34G01N27/223H04Q2209/47
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Quick Facts
Patent No.
US 10,151,104
App. No.
15/703,322
Granted
Dec 11, 2018
Kind
B2
Abstract

Construction panels and other materials, methods for their manufacture, and systems and methods for monitoring environmental conditions with such panels are provided herein. The panels include a core having a first surface and an opposed second surface, and an environmental sensor assembly associated with the panel and configured to detect an environmental condition of the panel and wirelessly communicate data on the environmental condition to a reader.

Claims (39)

1. A building panel, comprising:

a panel comprising a panel core and having a first surface and an opposed second surface; and

an environmental sensor assembly disposed wholly within the panel core or between the panel core and a facer material of the panel and configured to detect an environmental condition of the panel and wirelessly communicate data on the environmental condition to a reader,

wherein the environmental sensor assembly is self-supporting, passive, and comprises an antenna, a processing module, and a wireless communication module,

wherein the environmental condition of the panel comprises moisture.

2. The panel of claim 1 , wherein the environmental sensor assembly comprises a passive radio frequency identification sensor.

3. The panel of claim 1 , wherein:

the antenna comprises a resistor inductor capacitor tuned circuit operable to convert the environmental condition into an impedance change, and

the processing module is coupled to the antenna and is operable to translate the impedance change into a sensor code by matching antenna impedance to die impedance.

4. The panel of claim 1 , wherein:

the antenna has an antenna impedance operable to vary based on the environmental condition,

the processing module is coupled to the antenna and comprises a tuning module operable to (i) vary a reactive component impedance in order to change a system impedance comprising the antenna impedance and the reactive component impedance, and (ii) produce an impedance value representative of the reactive component impedance,

the wireless communication module is coupled to the processing module and is operable to communicate the impedance value representative of the reactive component impedance to the reader, and

the data on the environmental condition comprises the impedance value representative of the reactive component impedance.

5. The panel of claim 4 , wherein the environmental sensor assembly further comprises a memory module operable to store the impedance value representative of the reactive component impedance.

6. The panel of claim 1 , wherein the panel is selected from a gypsum panel, a fiber-reinforced gypsum panel, an isocyanurate panel, and a wood-based panel.

7. The panel of claim 1 , wherein the panel further comprises a facer material.

8. A system for detecting an environmental condition at a panel, comprising:

at least one of the building panels of claim 1 ; and

at least one reader for receiving the data wirelessly communicated from the environmental sensor assembly.

9. The system of claim 8 , further comprising a processing unit, wherein the reader is configured to communicate the data on the environmental condition to the processing unit, and the processing unit is operable to determine at least one condition status at the environmental sensor assembly from the data.

10. The system of claim 8 , wherein the at least one reader comprises a powered reader mounted at a building containing the at least one building panel.

11. The system of claim 10 , further comprising a building control system configured to receive information from the powered reader.

12. The system of claim 8 , wherein the at least one reader comprises a handheld manual reader.

13. A flooring underlayment, comprising:

a gypsum and/or concrete flooring underlayment material; and

an environmental sensor assembly disposed wholly within or on a surface of the underlayment material and configured to detect an environmental condition of the underlayment and wirelessly communicate data on the environmental condition to a reader,

wherein the environmental sensor assembly is self-supporting, passive, and comprises an antenna, a processing module, and a wireless communication module,

wherein the environmental condition of the panel comprises moisture.

14. The underlayment of claim 13 , wherein the environmental sensor assembly comprises a passive radio frequency identification sensor.

15. The underlayment of claim 13 , wherein:

the antenna comprises a resistor inductor capacitor tuned circuit operable to convert the environmental condition into an impedance change, and

the processing module is coupled to the antenna and is operable to translate the impedance change into a sensor code by matching antenna impedance to die impedance.

16. The underlayment of claim 13 , wherein:

the antenna has an antenna impedance operable to vary based on the environmental condition,

the processing module is coupled to the antenna and comprises a tuning module operable to (i) vary a reactive component impedance in order to change a system impedance comprising the antenna impedance and the reactive component impedance, and (ii) produce an impedance value representative of the reactive component impedance,

the wireless communication module is coupled to the processing module and is operable to communicate the impedance value representative of the reactive component impedance to the reader, and

the data on the environmental condition comprises the impedance value representative of the reactive component impedance.

17. The underlayment of claim 16 , wherein the environmental sensor assembly further comprises a memory module operable to store the impedance value representative of the reactive component impedance.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2018
From: HARRISON, CHARLES R.; GOLLOB, LAWRENCE; GILLEY, STUART BRANDON; FIERBAUGH, TIMOTHY R.; SHELTON, CLARENCE
To: GEORGIA-PACIFIC GYPSUM LLC
Reel/Frame 047120/0951 →
Continuity (3)
Continuation In Part 15455795 · Mar 10, 2017
Provisional Application 62306995 · Mar 11, 2016
Related Publication 20180002916A1 · Jan 4, 2018
Cited By (1)
US 12,709,896