Claims
- 1. A printing device comprising:
a printer configured to print upon paper; a surface-engaging member associated with the printer and configured to physically engage a paper surface, the surface-engaging member comprising a flexure material body that is supported in a cantilevered disposition proximate a piece of paper to be printed upon by the printer; a reflective member joined with the surface-engaging member; one or more light sources in operable proximity to the reflective member and configured to project light energy toward the reflective member; and a position detector mounted in operable proximity to the reflective member and configured to receive light energy that is reflected from the reflective member, the surface-engaging member being configured for displacement by the paper's surface in accordance with variations in the roughness of the surface sufficiently so that light that is reflected by the reflective member and received by the position detector can be utilized to ascertain a measure of the paper surface's roughness.
- 2. The printing device of claim 1 further comprising a control system configured to modulate one or more print parameters in accordance with the measure of the paper surface's roughness.
- 3. The printing device of claim 1 further comprising a parameter manipulator coupled with the position detector and configured to modulate one or more print parameters in accordance with the measure of the paper surface's roughness.
- 4. The printing device of claim 1, wherein the flexure material body comprises a metal flexure material body.
- 5. The printing device of claim 1, wherein the flexure material body comprises first and second ends, the body tapering between the two ends.
- 6. A method of detecting the roughness of a paper surface comprising:
engaging a paper surface with a surface-engaging member; projecting light energy towards a reflective member associated with the surface-engaging member in a manner in which the light energy is reflected by the reflective member; receiving light energy that is reflected by the reflective member; and ascertaining, from the received light energy, a roughness measurement of the paper surface's roughness.
- 7. The method of claim 6 further comprising using the roughness measurement to adjust one or more printing parameters associated with a printer that is to print upon the paper's surface.
- 8. A printing device comprising:
a printer configured to print upon paper; surface roughness detection means within the printer configured to ascertain a measure of a paper surface's roughness; and a control system coupled with the surface roughness detection means and configured to modulate one or more print parameters in accordance with the measure of the paper surface's roughness.
- 9. A printing device comprising:
a printer configured to print upon paper; a paper roughness detection mechanism associated with the printer and comprising:
a surface-engaging member configured to physically engage a paper surface; a reflective member joined with the surface-engaging member and having a footprint; one or more light sources in operable proximity to the reflective member and configured to project light energy toward the reflective member from a position outside of the footprint; and a position detector mounted in operable proximity to and outside of the footprint of the reflective member and configured to receive light energy that is reflected from the reflective member, the surface-engaging member being configured for displacement by the paper's surface in accordance with variations in the roughness of the surface sufficiently so that light that is reflected by the reflective member and received by the position detector can be utilized to ascertain a measure of the paper's roughness.
- 10. The printing device of claim 9, wherein the surface-engaging member comprises a cantilevered structure.
- 11. The printing device of claim 9, wherein the reflective member is integral with the surface-engaging member.
- 12. The printing device of claim 9, wherein the reflective member comprises a separate component that is connected to the surface-engaging member.
- 13. The printing device of claim 9, wherein the one or more light sources comprise a laser.
- 14. The printing device of claim 9, wherein the one or more light sources comprise one or more LEDs.
- 15. The printing device of claim 9, wherein the position detector comprises a photodiode.
- 16. The printing device of claim 9, wherein the surface-engaging member comprises a flexure material body.
- 17. The printing device of claim 16, wherein the flexure material body comprises a metal flexure material body.
- 18. The printing device of claim 16, wherein the flexure material body comprises a first end and a second end spaced from the first end, the body tapering between the first and second ends.
- 19. The printing device of claim 16, wherein the flexure material body comprises a tip portion that is configured to engage the paper's surface, the tip portion being integral with the material body.
- 20. The printing device of claim 16, wherein the flexure material body comprises a tip portion that is configured to engage the paper's surface, the tip portion being connected with the flexure material body.
RELATED APPLICATIONS
[0001] This is a divisional application of Ser. No. 09/640,464, filed Jul. 25, 2000, the disclosure of which is incorporated by reference herein.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09640464 |
Aug 2000 |
US |
Child |
10251391 |
Sep 2002 |
US |