IP Library Granted Patent US 10,051,898
Granted Patent B2
US 10,051,898 · App. 15/276,670 · Granted Aug 21, 2018

Smart soft good product, circuitry layer, and methods

Inventors: Madison Thea Maxey (New York, NY); Janett Martinez (Queens, NY); Luis Francisco Rodriguez Alcalde (Barcelona, ES); Ezgi Ucar (Istanbul, TR)
Assignee: LOOMIA Technologies, Inc.
A41D13/0051A41H43/04H05B3/347H05K1/0212H05K1/092H05K1/111H05K1/181H05K1/189A41D1/002A41D2400/12H05B2203/017H05B2203/036
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Quick Facts
Patent No.
US 10,051,898
App. No.
15/276,670
Granted
Aug 21, 2018
Kind
B2
Abstract

One variation of a method for fabricating a garment includes: applying a first mask to a first side of a fabric substrate coated with a conductive material; applying a second mask—mirrored image of the first mask—to a second side of the fabric substrate opposite the first side; applying an etchant to the fabric substrate to remove conductive material outside of the first mask; arranging a conductive interface pad of a component carrier over an electrode defined by remaining conductive material on the fabric substrate, the component carrier including a flexible substrate and a rigid electrical component mounted to the flexible substrate, the conductive interface pad extending from a terminal of the rigid electrical component across a region of the flexible substrate; mechanically fastening the component carrier to the fabric substrate to form a garment insert including an electrical circuit; and incorporating the garment insert into the garment.

Claims (65)

1. A method for fabricating a soft good product comprising:

applying a first mask to a first side of a fabric substrate coated with a conductive material, wherein, after the first mask is applied, a first portion of the first side of the fabric substrate is covered by the first mask and a second portion of the first side of the fabric substrate is not covered by the first mask;

applying a second mask to a second side of the fabric substrate opposite the first side, wherein, after the second mask is applied, a first portion of the second side of the fabric substrate is covered by the second mask and a second portion of the second side of the fabric substrate is not covered by the second mask, wherein the first portion of the first side of the fabric substrate is opposite the first portion of the second side of the fabric substrate, and wherein the second portion of the first side of the fabric substrate is opposite the second portion of the second side of the fabric substrate;

applying a chemical to the fabric substrate to remove conductive material outside of the first mask;

after applying the chemical, fastening a component carrier to the first side of the fabric substrate, wherein the component carrier comprises:

a flexible substrate,

a rigid electrical component having a terminal, wherein the rigid electrical component is mounted to the flexible substrate, and

a conductive interface pad extending from the terminal across a region of the flexible substrate;

creating a circuitry layer by assembling and forming an electrical connection between the conductive interface pad and an electrode formed of conductive material on the first side of the fabric substrate; and

incorporating the circuitry layer into a soft good.

2. The method of claim 1 , further comprising applying a non-conductive hydrophobic coating across the first side of the fabric substrate, the second side of the fabric substrate, and a side of the component carrier opposite the fabric substrate.

3. The method of claim 1 , wherein creating the circuitry layer includes applying a volume of a substance comprising a conductive particulate, a polymer, and a solvent to the first side of the fabric substrate over the electrode, the volume of the substance configured to conduct electrical current between the electrode and the conductive interface pad.

4. The method of claim 3 , wherein applying the volume of a substance comprising a conductive particulate, a polymer, and a solvent to the first side of the fabric substrate comprises tensioning a weft of the fabric substrate while a portion of a volume of the solvent volatizes.

5. The method of claim 3 , wherein creating the circuitry layer comprises stitching an electrically-insulative filament through the fabric substrate and the component carrier proximal a perimeter of the volume of the substance.

6. The method of claim 3 , wherein applying the volume of the substance to the first side of the fabric substrate comprises screen-printing the volume of the substance onto the first side of the fabric substrate.

7. The method of claim 1 , wherein incorporating the circuitry layer into the soft good comprises:

applying a heat-activated fabric adhesive across the first side of the fabric substrate;

arranging the circuitry layer a region of a soft good; and

applying a heated surface to the second side of the fabric substrate to activate the heat-activated fabric adhesive and to adhere the circuitry layer to the soft good.

8. The method of claim 1 , wherein incorporating the circuitry layer into the soft good comprises sewing the circuitry layer between an outer layer and a lining of the soft good with an electrically-insulative thread.

9. A soft good product comprising:

an outer layer comprising a textile;

a lining comprising a textile;

a circuitry layer interposed between the outer layer and the lining and comprising:

a fabric substrate having a first side and a second side, wherein the first side of the fabric substrate includes traces of an electrical circuit, wherein the traces are formed by:

applying a first mask to the first side of the fabric substrate coated with a conductive material, wherein, after the first mask is applied, a first portion of the first side of the fabric substrate is covered by the first mask and a second portion of the first side of the fabric substrate is not covered by the first mask;

applying a second mask to the second side of the fabric substrate opposite the first side of the fabric substrate, wherein, after the second mask is applied, a first portion of the second side of the fabric substrate is covered by the second mask and a second portion of the second side of the fabric substrate is not covered by the second mask, wherein the first portion of the first side of the fabric substrate is opposite the first portion of the second side of the fabric substrate, and wherein the second portion of the first side of the fabric substrate is opposite the second portion of the second side of the fabric substrate; and

applying a chemical to the fabric substrate to remove conductive material outside of the first mask; and

a component carrier comprising:

a flexible substrate,

a rigid electrical component mounted to the flexible substrate, and

a first conductive interface pad extending from a first terminal of the rigid electrical component;

wherein the first conductive interface pad is electrically coupled to at least one of the traces.

10. The soft good product of claim 9 :

wherein the fabric substrate comprises a section of textile;

wherein the section of textile includes the traces of the electrical circuit on the first side of the section of textile; and

wherein the flexible substrate comprises a flexible plastic material.

11. The soft good product of claim 10 :

wherein the outer layer and the lining cooperate to define a textile product; and

wherein the circuitry layer defines a patch extending across a region of the textile product and is sewn into the lining.

12. The soft good product of claim 9 :

wherein the rigid electrical component comprises an element of a biometric sensor; and

wherein the traces define a wireless antenna configured to broadcast a wireless signal representative of biometric data read by the biometric sensor.

13. The soft good product of claim 9 :

wherein the traces include a first electrode; and

further comprising a filament passing through the fabric substrate and the component carrier and configured to constrain the component carrier over the fabric substrate with the first conductive interface pad arranged over the first electrode.

14. The soft good product of claim 13 , further comprising a volume of a substance comprising a conductive particulate, a polymer, and a solvent interposed between the first electrode and the first conductive interface pad, wherein the volume of the substance is configured to conduct electrical current between the first electrode and the first conductive interface pad.

15. The soft good product of claim 14 , wherein the filament comprises an electrically-insulative thread sewn through the component carrier and the fabric substrate about a perimeter of the volume of the substance.

16. The soft good product of claim 9 , further comprising a hydrophobic coating applied across the first side of the fabric substrate, the second side of the fabric substrate opposite the first side, and a side of the component carrier opposite the fabric substrate.

17. A circuitry layer configured to be sewn into a soft good product, the circuitry layer comprising:

a fabric substrate having a first side and a second side, wherein the first side of the fabric substrate includes traces of an electrical circuit, wherein the traces include at least one electrode, wherein the traces are formed by:

applying a first mask to the first side of a fabric substrate coated with a conductive material, wherein, after the first mask is applied, a first portion of the first side of the fabric substrate is covered by the first mask and a second portion of the first side of the fabric substrate is not covered by the first mask;

applying a second mask to a second side of the fabric substrate opposite the first side of the fabric substrate, wherein, after the second mask is applied, a first portion of the second side of the fabric substrate is covered by the second mask and a second portion of the second side of the fabric substrate is not covered by the second mask, wherein the first portion of the first side of the fabric substrate is opposite the first portion of the second side of the fabric substrate, and wherein the second portion of the first side of the fabric substrate is opposite the second portion of the second side of the fabric substrate; and

applying a chemical to the fabric substrate to remove conductive material outside of the first mask;

a volume of a substance comprising a conductive particulate, a polymer, and a solvent applied over the electrode;

a component carrier comprising:

a flexible substrate,

an electrical component mounted to the flexible substrate, and

a conductive interface pad arranged on the substrate and extending from a terminal of the electrical component;

wherein the conductive interface pad is in contact with the volume of the substance; and

a filament passing through the fabric substrate and the component carrier and configured to constrain the fabric substrate and the component carrier against the volume of the substance.

18. The circuitry layer of claim 17 , further comprising a heat-activated fabric adhesive applied across the first side of the fabric substrate.

19. The circuitry layer of claim 18 , further comprising a heat shield sewn onto the fabric substrate opposite the electrical component.

20. The circuitry layer of claim 17 :

wherein the filament comprises an electrically-insulative thread stitched through the fabric substrate and the component carrier adjacent the volume of the substance.

Assignments (2)
CHANGE OF NAME Recorded May 23, 2018
From: CRATED, INC.
To: LOOMIA TECHNOLOGIES, INC.
Reel/Frame 046216/0611 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2017
From: MAXEY, MADISON THEA; MARTINEZ, JANETT; ALCALDE, LUIS FRANCISCO RODRIGUEZ; UCAR, EZGI
To: CRATED, INC.
Reel/Frame 041200/0305 →
Continuity (5)
Provisional Application 62232217 · Sep 24, 2015
Provisional Application 62253826 · Nov 11, 2015
Provisional Application 62263456 · Dec 4, 2015
Provisional Application 62338251 · May 18, 2016
Related Publication 20170086513A1 · Mar 30, 2017
Cited By (2)
US 12,232,548 US 12,471,642