Claims
- 1. An electronic article surveillance tag, comprising:
a dielectric substrate having upper and lower surfaces; and a resonant circuit having circuit components fabricated onto the upper and lower surfaces of the dielectric substrate, the resonant circuit being tuned to be detectable by a sensor; the dielectric substrate including a membrane that provides insulation between a first circuit component fabricated onto the upper surface of the dielectric substrate and a second circuit component fabricated onto the lower surface of the dielectric substrate, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 2. The electronic article surveillance tag of claim 1, wherein the resonant circuit includes a first connector fabricated onto the upper surface of the dielectric substrate that makes electrical contact with a second connector fabricated onto the lower surface of the dielectric substrate.
- 3. The electronic article surveillance tag of claim 2, wherein portions of the first connector extend through the dielectric substrate to make electrical contact with the second connector.
- 4. The electronic article surveillance tag of claim 2, wherein the dielectric substrate includes an opening therein through which the first connector makes electrical contact with the second connector.
- 5. The electronic article surveillance tag of claim 1, wherein the resonant circuit includes a capacitor, and wherein the first and second circuit components are capacitor electrodes.
- 6. The electronic article surveillance tag of claim 1, wherein the membrane is formed using an acid etch technique.
- 7. The electronic article surveillance tag of claim 6, wherein the membrane is formed by using a high-speed printing technique to apply an acid solution to the dielectric substrate.
- 8. The electronic article surveillance tag of claim 4, wherein a serigraphic printing technique is used to apply the acid solution to the dielectric substrate.
- 9. An electronic article surveillance tag, comprising:
a dielectric substrate having upper and lower surfaces; and a first electrode and an inductor fabricated onto the upper surface of the dielectric substrate and a second electrode fabricated onto lower surface of the dielectric substrate, the first and second electrodes being positioned with respect to each other to form a capacitor, the inductor and capacitor being connected together to form a resonant circuit that is tuned to be detectable by a sensor, the dielectric substrate including a membrane that provides insulation between the first and second electrodes, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 10. The electronic article surveillance tag of claim 9, wherein the resonant circuit includes a first connector fabricated onto the upper surface of the dielectric substrate that makes electrical contact with a second connector fabricated onto the lower surface of the dielectric substrate.
- 11. A method for manufacturing an electronic article surveillance tag, comprising:
applying an acid solution to a dielectric substrate having an upper surface and a lower surface; allowing the acid solution to form a membrane in the dielectric substrate; washing the acid solution off of the dielectric substrate; fabricating circuit components onto the upper surface and lower surface of the dielectric substrate, the circuit components forming a resonant circuit that is tuned to be detectable by a sensor, the membrane providing insulation between a first circuit component on the upper surface of the dielectric substrate and a second circuit component on the lower surface of the dielectric substrate, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 12. The method of claim 11, wherein the resonant circuit includes a capacitor, and wherein the first circuit component is a first capacitor electrode and the second circuit component is a second capacitor electrode.
- 13. A method for manufacturing an electronic article surveillance tag, comprising:
applying an acid solution to a dielectric substrate having an upper surface and a lower surface; allowing the acid solution to form a membrane in the dielectric substrate; washing the acid solution off of the dielectric substrate; fabricating an inductor and a first electrode onto an upper surface of the dielectric substrate; fabricating a second electrode onto a lower surface of the dielectric substrate, the first and second electrodes being positioned with respect to each other to form a capacitor, the inductor and capacitor being connected into a resonant circuit that is tuned to be detectable by a sensor, the membrane providing insulation between the first and second electrodes, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 14. The method of claim 13, further including:
fabricating first and second connectors into the resonant circuit, the first connector being fabricated onto the upper surface of the dielectric substrate and the second connector being fabricated onto the lower surface of the dielectric substrate, the first connector making electrical contact with the second connector.
- 15. An electronic article surveillance tag, comprising:
a dielectric substrate; a first circuit component layer fabricated onto the dielectric substrate; a dielectric layer fabricated on top of the first layer of circuit components; a second circuit component layer fabricated onto the dielectric layer, the first and second circuit component layers forming a resonant circuit that is tuned to be detectable by a sensor, the dielectric layer including a membrane that provides insulation between a first circuit component in the first circuit component layer and a second circuit component in the second circuit component layer, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 16. The electronic article surveillance tag of claim 15, wherein the first and second circuit components are capacitor electrodes.
- 17. The electronic article surveillance tag of claim 15, wherein the dielectric layer includes an opening therein through which a connector in the first circuit component layer makes electrical contact with a connector in the second circuit component layer.
- 18. The electronic article surveillance tag of claim 15, wherein the first circuit component layer, the dielectric layer, and the second circuit component layer are fabricated using a high-speed printing technique.
- 19. An electronic article surveillance tag, comprising:
a dielectric substrate; a first circuit component layer, including a first electrode, fabricated onto the dielectric substrate; a dielectric layer fabricated on top of the first circuit component layer; a second circuit component layer fabricated on top of the dielectric layer, the second circuit component layer including an inductor and a second electrode, the first electrode and the second electrode being positioned with respect to each other to form a capacitor, the inductor and the capacitor being connected into a resonant circuit that is tuned to be detectable by a sensor, the dielectric layer including a membrane that provides insulation between the first and second electrodes, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 20. The electronic article surveillance tag of claim 19, wherein the dielectric layer includes an opening therein through which a connector in the first circuit component layer makes electrical contact with a connector in the second circuit component layer.
- 21. The electronic article surveillance tag of claim 19, wherein the first circuit component layer, the dielectric layer, and the second circuit component layer are fabricated using a high-speed printing technique.
- 22. A method for manufacturing an electronic article surveillance tag, comprising:
fabricating a first circuit component layer onto a dielectric substrate; fabricating a dielectric layer on top of the first circuit component layer; fabricating a second circuit component layer onto the dielectric layer, the first and second circuit component layers forming a resonant circuit that is tuned to be detectable by a sensor, the dielectric layer including a membrane that provides insulation between a first circuit component in the first circuit component layer and a second circuit component in the second circuit component layer, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 23. The method of claim 22, wherein the first and second circuit components are capacitor electrodes.
- 24. The method of claim 22, wherein the step of fabricating a dielectric layer including fabricating an opening in the dielectric layer through which a connector in the first circuit component layer makes electrical contact with a connector in the second circuit component layer.
- 25. The method of claim 22, wherein the first circuit component layer, the dielectric layer, and the second circuit component layer are fabricated using a high-speed printing technique.
- 26. A method for manufacturing an electronic article surveillance tag, comprising:
fabricating a first circuit component layer onto a dielectric substrate, the first circuit component layer including a first electrode; fabricating a dielectric layer on top of the first circuit component layer; fabricating a second circuit component layer onto the dielectric layer, the second circuit component layer including an inductor and a second electrode, the first and second electrodes being positioned with respect to each other to form a capacitor, the inductor and the capacitor being connected into a resonant circuit that is tuned to be detectable by a sensor, the dielectric layer including a membrane that provides insulation between the first and second electrodes, the membrane failing when a deactivation voltage is applied across the electronic article surveillance tag, causing the resonant circuit to become detuned.
- 27. The electronic article surveillance tag of claim 26, wherein the step of fabricating a dielectric layer includes fabricating an opening in the dielectric layer through which a connector in the first circuit component layer makes electrical contact with a connector in the second circuit component layer.
- 28. The electronic article surveillance tag of claim 26, wherein the first circuit component layer, the dielectric layer, and the second circuit component layer are fabricated using a high-speed printing technique.
- 29. A fixture for deactivating an EAS tag, comprising:
a deactivation circuit including a voltage source for selectably generating a pulse voltage and a switch for selectably connecting the voltage source into the deactivation circuit, the deactivation circuit selectably generating a deactivation voltage across an EAS tag positioned in the fixture, the deactivation voltage causing a membrane positioned between two circuit components in the EAS tag to fail, the failure of the membrane causing the EAS tag to become deactivated.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/597,361, filed Jun. 19, 2000, and assigned to the assignee of the present application, the disclosure and drawings of which are hereby incorporated by reference in their entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09597361 |
Jun 2000 |
US |
Child |
10025439 |
Dec 2001 |
US |