Claims
- 1. A printed wiring board comprising a substrate wherein at least a portion of the substrate has an electrostatic charge and wherein the electrostatically charged area has a toner adhered thereto.
- 2. The printed wiring board of claim 1 wherein the substrate has at least one layer of anti-static material.
- 3. The printed wiring board of claim 1 wherein the toner is an electrically conductive material and is selected from a group consisting silver and alloys thereof.
- 4. The printed wiring board of claim 1 wherein the toner has a layer of copper adhered thereto.
- 5. The printed wiring board of claim 1 wherein the substrate has cross-linked and non-cross-linked regions.
- 6. The printed wiring board of claim 1 wherein the toner layer is between about 0.1 micron and about 100 microns thick.
- 7. The printed wiring board of claim 1 wherein the toner has a layer of copper adhered thereto, and wherein the copper layer is between about 0.1 micron and about 100 microns thick.
- 8. The printed wiring board of claim 1 wherein the substrate is selected from a group consisting of an electrically conductive material, a paper sheet, a metal foil, aluminum, anodized aluminum, ITO-coated polymeric film, steel, electrically conductive treated paper and Formica laminate materials.
- 9. The printed wiring board of claim 1 wherein the substrate has at least one layer of a photo-polymeric material.
- 10. A method for the manufacture of printed wiring board comprising the steps of:
(a) providing a substrate with at least one photo imagible layer; (b) photoimaging the photo imagible layer to create at least one photoimaged area; (c) electrostatically charging the photoimaged area; and (d) applying at least one layer of a toner material onto the electrostatically charged photoimaged area.
- 11. The method of claim 10 wherein after step (d) the toner is heated to permanently adhered the toner to the substrate.
- 12. The method of claim 10 wherein after step (d) the toner is heated to between room temperature about 125° C.
- 13. The method of claim 10 further includes the step of electroplating the dried liquid metal toner with at least one layer of copper.
- 14. The method of claim 10 wherein the toner is selected from a group consisting of silver and alloys thereof.
- 15. The method of claim 10 wherein the toner is in a liquid, paste or a powder form.
- 16. The method of claim 10 wherein the substrate is selected from a group consisting of an electrically conductive material, a paper sheet, a metal foil, aluminum, anodized aluminum, ITO-coated polymeric film, steel, electrically conductive treated paper and Formica laminate materials.
- 17. The method of claim 10 further includes the step of forming at least one cross-linked area within the photo-imagible layer.
- 18. The method of claim 10 wherein the toner is dried and cured.
- 19. The method of claim 10 wherein at least one layer of anti-static material,
- 20. A method for producing printed wiring boards or flex circuits wherein at least one electrostatic printing plate serves as a dielectric layer, comprising the steps of:
(a) the printing plate material is laminated onto a substrate; (b) the exposed surface of the printing plate is imaged through a photo-tool; (c) the printing plate is electrically charged; (d) the electrically charged printing plate is developed with a liquid toner; (e) the electrically conductive liquid toner on the printing plate is dried; and (f) the dried metal toner is sintered to form a solid structure.
- 21. The method of claim 20 wherein after step (f) the un-cross linked area of the printing plate is exposed to actinic radiation to cross link the area.
- 22. A method for producing printed wiring boards or flex circuits wherein at least one electrostatic printing plate serves as a dielectric layer, comprising the steps of:
(a) writing a bit pattern from electronic memory onto a photo-sensitive drum or a plate; (b) developing this pattern with a toner; (c) transferring the metal toner pattern onto a flexible film or a semi-rigid board; (d) drying the electrically conductive toner image; and (e) heat processing the toner image into a solid metal structure.
- 23. A manufacturing process for a printed wiring board, comprising the steps of:
(a) grounding an electrically conducting substrate; (b) coating the substrate with at least one printing plate material; (c) exposing the printing plate material to cross-link the material in the image regions; (d) sensitizing the imaged plate with an electrical charge; (e) developing the charged area with at least one silver metal toner; (f) drying and curing the toner image; and (g) exposing the toner image to actinic radiation to permanently secure the toner to the plate.
RELATED U.S. APPLICATION DATA
[0001] This application claims the benefit of U.S. Provisional Application No. 60/172,618, filed Dec. 20, 1999.
Provisional Applications (1)
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Number |
Date |
Country |
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60172618 |
Dec 1999 |
US |