Patent
US 10,156,726graphene-based conductive trace
FIG. 1 in the form of a see-through veil positioned between the see- through display 104 and the background environment as viewed by a wearer. A controller 108 …
FIG. 3 schematically illustrates the see-through optical component 106 having a layer of a graphene-based material 301 with a first region 302 of a greater …
FIG. 4 shows a cross-sectional view of the see-through optical component 400, where two electrical components 402 and 404 are electrically connected by a …
FIG. 5 shows a flow diagram illustrating an example method 500 of making an optical display device. Method 500 includes, at 502, forming a layer of a …
graphene-based conductive trace
FIG. 1 in the form of a see-through veil positioned between the see- through display 104 and the background environment as viewed by a wearer. A controller 108 …
FIG. 3 schematically illustrates the see-through optical component 106 having a layer of a graphene-based material 301 with a first region 302 of a greater …
FIG. 4 shows a cross-sectional view of the see-through optical component 400, where two electrical components 402 and 404 are electrically connected by a …
FIG. 5 shows a flow diagram illustrating an example method 500 of making an optical display device. Method 500 includes, at 502, forming a layer of a …
graphene-based conductive trace
FIG. 1 in the form of a see-through veil positioned between the see- through display 104 and the background environment as viewed by a wearer. A controller 108 …
FIG. 3 schematically illustrates the see-through optical component 106 having a layer of a graphene-based material 301 with a first region 302 of a greater …
FIG. 4 shows a cross-sectional view of the see-through optical component 400, where two electrical components 402 and 404 are electrically connected by a …
FIG. 5 shows a flow diagram illustrating an example method 500 of making an optical display device. Method 500 includes, at 502, forming a layer of a …
graphene-based conductive trace
FIG. 1 in the form of a see-through veil positioned between the see- through display 104 and the background environment as viewed by a wearer. A controller 108 …
FIG. 3 schematically illustrates the see-through optical component 106 having a layer of a graphene-based material 301 with a first region 302 of a greater …
FIG. 4 shows a cross-sectional view of the see-through optical component 400, where two electrical components 402 and 404 are electrically connected by a …
FIG. 5 shows a flow diagram illustrating an example method 500 of making an optical display device. Method 500 includes, at 502, forming a layer of a …