Patent
Patent
Atlas literature
Patent
Patent drawings and their descriptions. Click a drawing to enlarge it.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A touch switch (touch to turn) for being used in an electronic device, the touch switch comprises a touch interface comprising an active graphene element, contained in a housing or on a working surface of the electronic device, wherein the active graphene element comprises a graphene nanocomposite layer comprising at least one doped graphene layer disposed on a polymer layer or at least one graphene layer disposed between two polymer layers, wherein a surface of the graphene layer is in contact with a surface of only one of the two polymer layers and is electrically connected to the electronic device in such a way that touching the active graphene element causes the electronic device to turn on or off. Currently amended
The touch switch according to claim 1 further comprises a control circuit, which is electrically connected to the graphene layer disposed between the two polymer layers and is controlled by a control software. Currently amended
The touch switch according to claim 1, wherein the graphene layer disposed between the two polymer layers has a round tubular shape or belt flat shape. Currently amended
The touch switch according to claim 1, wherein the graphene layer is a two-dimensional layer having a thickness of one atom or more than one atom. Previously presented
The touch switch according to claim 1, wherein the graphene layer is a three-dimensional layer having nanotubes structure arranged in different directions. Previously presented
The touch switch according to claim 1, wherein the polymer layer is selected from the group of polymers including polyethylene terephthalate (PET), polyethylene naphthalate (TEN), polyethersulfone (PES), and polycarbonate (PC) polypropylene (PP), poly(ethylene oxide) (PE O), poly(vinyl chloride) (PVC), synthetic rubber, and most preferably polyethersulfone (PES), polycarbonate (PC). Currently amended
The touch switch according to claim 1, wherein the touch switch is a capacitive switch. Previously presented
Use of the touch switch according to claim 1 in electronic devices, especially, mobile phones including smartphones and workstations, where touch nanocomposite layer is placed on the working surface of the electronic devices, especially, in back seats and steering wheels of vehicles, or remote controls and handles of electronic equipment. Previously presented
Canceled
Embodiments described in the patent, grouped by the materials and process steps they use.
3 materials
Interface 'touch to turn' embodiment comprising a nanocomposite material of three components: a flexible active graphene nanocomposite layer (active graphene component), an optional control circuit, and optional control software. The flexible nanocomposite material is a heterogeneous material structure composed of two or more components with different properties.
Layer stacks claimed or described, ordered top of device to substrate.
touch switch (touch to turn)
Materials described outside the worked examples.
doped graphene layer
polyethylene terephthalate
Patent
Atlas literature
Patent
Patent drawings and their descriptions. Click a drawing to enlarge it.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A touch switch (touch to turn) for being used in an electronic device, the touch switch comprises a touch interface comprising an active graphene element, contained in a housing or on a working surface of the electronic device, wherein the active graphene element comprises a graphene nanocomposite layer comprising at least one doped graphene layer disposed on a polymer layer or at least one graphene layer disposed between two polymer layers, wherein a surface of the graphene layer is in contact with a surface of only one of the two polymer layers and is electrically connected to the electronic device in such a way that touching the active graphene element causes the electronic device to turn on or off. Currently amended
The touch switch according to claim 1 further comprises a control circuit, which is electrically connected to the graphene layer disposed between the two polymer layers and is controlled by a control software. Currently amended
The touch switch according to claim 1, wherein the graphene layer disposed between the two polymer layers has a round tubular shape or belt flat shape. Currently amended
The touch switch according to claim 1, wherein the graphene layer is a two-dimensional layer having a thickness of one atom or more than one atom. Previously presented
The touch switch according to claim 1, wherein the graphene layer is a three-dimensional layer having nanotubes structure arranged in different directions. Previously presented
The touch switch according to claim 1, wherein the polymer layer is selected from the group of polymers including polyethylene terephthalate (PET), polyethylene naphthalate (TEN), polyethersulfone (PES), and polycarbonate (PC) polypropylene (PP), poly(ethylene oxide) (PE O), poly(vinyl chloride) (PVC), synthetic rubber, and most preferably polyethersulfone (PES), polycarbonate (PC). Currently amended
The touch switch according to claim 1, wherein the touch switch is a capacitive switch. Previously presented
Use of the touch switch according to claim 1 in electronic devices, especially, mobile phones including smartphones and workstations, where touch nanocomposite layer is placed on the working surface of the electronic devices, especially, in back seats and steering wheels of vehicles, or remote controls and handles of electronic equipment. Previously presented
Canceled
Embodiments described in the patent, grouped by the materials and process steps they use.
3 materials
Interface 'touch to turn' embodiment comprising a nanocomposite material of three components: a flexible active graphene nanocomposite layer (active graphene component), an optional control circuit, and optional control software. The flexible nanocomposite material is a heterogeneous material structure composed of two or more components with different properties.
Layer stacks claimed or described, ordered top of device to substrate.
touch switch (touch to turn)
Materials described outside the worked examples.
doped graphene layer
polyethylene terephthalate
Patent
Atlas literature
Patent
Patent drawings and their descriptions. Click a drawing to enlarge it.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A touch switch (touch to turn) for being used in an electronic device, the touch switch comprises a touch interface comprising an active graphene element, contained in a housing or on a working surface of the electronic device, wherein the active graphene element comprises a graphene nanocomposite layer comprising at least one doped graphene layer disposed on a polymer layer or at least one graphene layer disposed between two polymer layers, wherein a surface of the graphene layer is in contact with a surface of only one of the two polymer layers and is electrically connected to the electronic device in such a way that touching the active graphene element causes the electronic device to turn on or off. Currently amended
The touch switch according to claim 1 further comprises a control circuit, which is electrically connected to the graphene layer disposed between the two polymer layers and is controlled by a control software. Currently amended
The touch switch according to claim 1, wherein the graphene layer disposed between the two polymer layers has a round tubular shape or belt flat shape. Currently amended
The touch switch according to claim 1, wherein the graphene layer is a two-dimensional layer having a thickness of one atom or more than one atom. Previously presented
The touch switch according to claim 1, wherein the graphene layer is a three-dimensional layer having nanotubes structure arranged in different directions. Previously presented
The touch switch according to claim 1, wherein the polymer layer is selected from the group of polymers including polyethylene terephthalate (PET), polyethylene naphthalate (TEN), polyethersulfone (PES), and polycarbonate (PC) polypropylene (PP), poly(ethylene oxide) (PE O), poly(vinyl chloride) (PVC), synthetic rubber, and most preferably polyethersulfone (PES), polycarbonate (PC). Currently amended
The touch switch according to claim 1, wherein the touch switch is a capacitive switch. Previously presented
Use of the touch switch according to claim 1 in electronic devices, especially, mobile phones including smartphones and workstations, where touch nanocomposite layer is placed on the working surface of the electronic devices, especially, in back seats and steering wheels of vehicles, or remote controls and handles of electronic equipment. Previously presented
Canceled
Embodiments described in the patent, grouped by the materials and process steps they use.
3 materials
Interface 'touch to turn' embodiment comprising a nanocomposite material of three components: a flexible active graphene nanocomposite layer (active graphene component), an optional control circuit, and optional control software. The flexible nanocomposite material is a heterogeneous material structure composed of two or more components with different properties.
Layer stacks claimed or described, ordered top of device to substrate.
touch switch (touch to turn)
Materials described outside the worked examples.
doped graphene layer
polyethylene terephthalate
Patent
Atlas literature
Patent
Patent drawings and their descriptions. Click a drawing to enlarge it.
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A touch switch (touch to turn) for being used in an electronic device, the touch switch comprises a touch interface comprising an active graphene element, contained in a housing or on a working surface of the electronic device, wherein the active graphene element comprises a graphene nanocomposite layer comprising at least one doped graphene layer disposed on a polymer layer or at least one graphene layer disposed between two polymer layers, wherein a surface of the graphene layer is in contact with a surface of only one of the two polymer layers and is electrically connected to the electronic device in such a way that touching the active graphene element causes the electronic device to turn on or off. Currently amended
The touch switch according to claim 1 further comprises a control circuit, which is electrically connected to the graphene layer disposed between the two polymer layers and is controlled by a control software. Currently amended
The touch switch according to claim 1, wherein the graphene layer disposed between the two polymer layers has a round tubular shape or belt flat shape. Currently amended
The touch switch according to claim 1, wherein the graphene layer is a two-dimensional layer having a thickness of one atom or more than one atom. Previously presented
The touch switch according to claim 1, wherein the graphene layer is a three-dimensional layer having nanotubes structure arranged in different directions. Previously presented
The touch switch according to claim 1, wherein the polymer layer is selected from the group of polymers including polyethylene terephthalate (PET), polyethylene naphthalate (TEN), polyethersulfone (PES), and polycarbonate (PC) polypropylene (PP), poly(ethylene oxide) (PE O), poly(vinyl chloride) (PVC), synthetic rubber, and most preferably polyethersulfone (PES), polycarbonate (PC). Currently amended
The touch switch according to claim 1, wherein the touch switch is a capacitive switch. Previously presented
Use of the touch switch according to claim 1 in electronic devices, especially, mobile phones including smartphones and workstations, where touch nanocomposite layer is placed on the working surface of the electronic devices, especially, in back seats and steering wheels of vehicles, or remote controls and handles of electronic equipment. Previously presented
Canceled
Embodiments described in the patent, grouped by the materials and process steps they use.
3 materials
Interface 'touch to turn' embodiment comprising a nanocomposite material of three components: a flexible active graphene nanocomposite layer (active graphene component), an optional control circuit, and optional control software. The flexible nanocomposite material is a heterogeneous material structure composed of two or more components with different properties.
Layer stacks claimed or described, ordered top of device to substrate.
touch switch (touch to turn)
Materials described outside the worked examples.
doped graphene layer
polyethylene terephthalate
polyethylene naphthalate
polyethersulfone
polycarbonate
polypropylene
poly(ethylene oxide)
poly(vinyl chloride)
synthetic rubber
polyethylene naphthalate
polyethersulfone
polycarbonate
polypropylene
poly(ethylene oxide)
poly(vinyl chloride)
synthetic rubber
polyethylene naphthalate
polyethersulfone
polycarbonate
polypropylene
poly(ethylene oxide)
poly(vinyl chloride)
synthetic rubber
polyethylene naphthalate
polyethersulfone
polycarbonate
polypropylene
poly(ethylene oxide)
poly(vinyl chloride)
synthetic rubber
