Claims
- 1. Method of making a microlens array mold, comprising the steps of:(a) providing a movable substrate; (b) providing a forming element having a rotatable hardened cutting member for forming said microlens array mold in said movable substrate; (c) moving said movable substrate to a first milling position relative to said rotatable hardened cutting member; (d) milling said first milling position to form one of a plurality of microlens molds in said microlens array mold; (e) removing said rotatable hardened cutting member from said one of a plurality of microlens molds; (f) moving said movable substrate to expose another milling position, (g) moving said rotatable hardened cutting member into a milling relationship with said another milling position; (h) milling said another milling position of said movable substrate to form another one of said plurality of microlens molds in said microlens array mold; and, (i) repeating steps (f)-(h) at sequentially different milling positions on said movable substrate to form said microlens array mold having a plurality of microlens molds.
- 2. The method recited in claim 1 wherein said rotatable hardened cutting member comprises a generally contoured cutting face for forming a generally spherical shaped mold cavity in said movable substrate.
- 3. The method recited in claim 2 wherein said rotatable hardened cutting member comprises diamond.
- 4. The method recited in claim 1 wherein said movable substrate comprises materials selected from the group consisting of hardened nickel, copper, brass, nickel plating, and aluminum.
- 5. The method recited in claim 1 further including after step (d), the step of laterally moving said movable substrate to form an anamorphic shaped surface in one of said plurality of microlens molds.
- 6. A microlens array mold made by the method recited in claim 1 wherein each microlens mold in said microlens mold array has a generally spherical shaped surface.
- 7. The microlens array mold recited in claim 6 wherein said each microlens mold in said microlens mold array has a generally aspheric shaped surface.
- 8. The microlens array mold recited in claim 6 wherein said each microlens mold in said microlens mold array has a generally anamorphic shaped surface.
- 9. The microlens array mold recited in claim 6 wherein said each microlens mold in said microlens mold array has an anamorphic shaped surface having less than about a 2 mm diameter.
- 10. The microlens array mold recited in claim 7 wherein said aspheric shaped surface is less than about 2 mm in diameter.
- 11. The microlens array mold recited in claim 6 wherein said generally spherical shaped surface is less than 2 mm in diameter.
- 12. The microlens recited in claim 6 wherein said spherical shaped surface has a sag of more than 30 microns.
- 13. The microlens recited in claim 7 wherein said aspherical shaped surface has a sag of more than 30 microns.
- 14. The microlens recited in claims 8 wherein said anamorphic shaped surface has a sag of more than 30 microns.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application is related to U.S. application Ser. No. 09/702,402, filed herewith, by John Border, et al., and entitled, “Method For Making A Microlens Mold And A Microlens Mold;” U.S. application Ser. No. 09/702,362, filed herewith, by John Border, et al., and entitled, “Apparatus For Forming A Microlens Mold;” U.S. application Ser. No. 09/702,500, filed herewith, by John Border, et al., and entitled, “Apparatus For Forming A Microlens Array Mold;” U.S. application Ser. No. 09/702,951, filed herewith, by John Border, et al., and entitled, “Method Of Manufacturing A Microlens And A Microlens Array;” U.S. application Ser. No. 09/702,496, filed herewith, by John Border, et al., and entitled, “Apparatus And Method For Making A Double-sided Microlens Mold And Microlens Array Mold;” and, U.S. application Ser. No. 09/702,302, filed herewith, by John Border, et al., and entitled, “Double-Sided Microlens Array.”
US Referenced Citations (11)