Electroluminescent lamp membrane switch
An combined monolithic electroluminescent lamp and membrane switch is manufactured by continuous printing. Graphic indicia is imprinted on deformable substrate. An electroluminescent lamp is imprinted on the graphic indicia layer and a membrane switch is formed on the lamp. The monolithic switch has a layer for sensing switch actuation by means including resistance change, capacitance change, or magnetic field change.
1. A monolithic membrane switch comprising:
a deformable substrate;
a first conductive layer;
a second conductive layer; and,
a layer for sensing actuation of the switch imprinted between the first and second conductive layers, where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a compound selected from the group consisting of carbon-impregnated powdered rubber, indium, indium-tin oxide, carbon powder, nano-carbon powder, and nano-silver powder, and combinations thereof.
2. The monolithic membrane switch of claim 1 , further comprising graphic indicia imprinted on a surface of the deformable substrate.
3. A monolithic membrane switch comprising:
a deformable substrate;
a first conductive layer;
a second conductive layer; and,
a layer for sensing actuation of the switch imprinted between the first and second conductive layers,
where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a ferro-electric compound.
4. A monolithic membrane switch comprising:
a deformable substrate;
a first conductive layer;
a second conductive layer; and,
a layer for sensing actuation of the switch imprinted between the first and second conductive layers where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a compound selected from the group consisting of silver-coated copper, coated iron particles, and low-carbon steel particles, and combinations thereof.
5. A combined monolithic membrane switch and electroluminescent lamp comprising:
a deformable substrate;
the deformable substrate having a front surface and a back surface;
a first conductive layer;
a second conductive layer;
a layer for sensing actuation of the switch imprinted between the first and second conductive layers; and,
an electroluminescent lamp; the electroluminescent lamp having a front surface and a back surface; the front surface of the electroluminescent lamp being imprinted on the back surface of the deformable substrate.
6. The combined monolithic membrane switch and electroluminescent lamp of claim 5 , where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a compound selected from the group consisting of carbon-impregnated powdered rubber, indium, indium-tin oxide, carbon powder, nano-carbon powder, and nano-silver powder.
7. The combined monolithic membrane switch and electroluminescent lamp of claim 5 , where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a ferro-electric compound.
8. The combined monolithic membrane switch and electroluminescent lamp of claim 5 , where the layer for sensing actuation of the switch comprises:
a base resin;
a curable polymer; and,
a compound selected from the group consisting of silver-coated copper, coated iron particles, and low-carbon steel particles.
9. The combined monolithic membrane switch and electroluminescent lamp of claim 5 , further comprising graphic indicia imprinted on a surface of the deformable substrate.
10. The combined monolithic membrane switch and electroluminescent lamp of claim 5 , where the front surface of the lamp includes an insulating layer.
11. The combined membrane switch and electroluminescent lamp of claim 5 , where the back surface of the lamp includes an insulating layer.
12. The combined membrane switch and electroluminescent lamp of claim 5 , further including graphic indicia formed on the front surface of the lamp.