1. An exposure apparatus that irradiates a pattern formed on an original plate with light emitted from an illumination system to thereby expose an image of the pattern on a substrate via a projection optical system, the exposure apparatus comprising:
a light shielding plate that is arranged on a plane conjugate to an object plane of the projection optical system in the illumination system, includes a circular-arc overlapping a circular borderline, which defines a region whereupon the image on the substrate is formed, on an inner side of an outer periphery of the substrate at an edge, and shields against light to prevent the light from entering an outer peripheral region outside the circular borderline on the substrate;
a first driving unit that rotationally drives the light shielding plate about an axis parallel to an optical axis of the illumination system;
a second driving unit that linearly drives the light shielding plate within a plane perpendicular to the optical axis;
a detecting unit that detects a light-shielding position at which light is shielded by the light shielding plate; and
a control unit that stores a light-shielding position at a reference time point and light-shielding positions before and after a replacement of the light shielding plate when the light shielding plate is replaced after the reference time point, and calculates a variation amount of the light-shielding position based on a light-shielding position detected by the detecting unit at a time point after the light shielding plate is replaced, the light-shielding position at the reference time point, and the difference between the light-shielding positions before and after the replacement of light shielding plate.
2. The exposure apparatus according to claim 1, wherein the detecting unit sets detection positions of the light-shielding positions before and after the replacement of the light shielding plate on a straight line from a rotating center of the light-shielding position toward the light-shielding position side.
3. The exposure apparatus according to claim 1, wherein, when the variation amount does not exceed a reference value which is determined as an unacceptable state, the control unit reflects the variation amount to a drive offset of the first driving unit or the second driving unit.
4. The exposure apparatus according to claim 1, wherein, when the variation amount exceeds a reference value which is determined as an unacceptable state, the control unit issues a warning.
5. The exposure apparatus according to claim 2, wherein, when the variation amount does not exceed a reference value which is determined as an unacceptable state, the control unit reflects the variation amount to a drive offset of the first driving unit or the second driving unit.
6. The exposure apparatus according to claim 2, wherein, when the variation amount exceeds a reference value which is determined as an unacceptable state, the control unit issues a warning.
7. The exposure apparatus according to claim 1, wherein, when the detecting unit detects the lightshielding position, the control unit removes the original plate from an irradiation region of the light.
8. The exposure apparatus according to claim 1, wherein, when the detecting unit detects the lightshielding position, the control unit places an original plate not having the pattern instead of the original plate.
9. A device manufacturing method for manufacturing a device, the method comprising:
exposing a substrate using an exposure apparatus that irradiates a pattern formed on an original plate with light emitted from an illumination system to thereby expose an image of the pattern on a substrate via a projection optical system and includes:
a light shielding plate that is arranged on a plane conjugate to an object plane of the projection optical system in the illumination system, includes a circular-arc overlapping a circular borderline, which defines a region whereupon the image on the substrate is formed, on an inner side of an outer periphery of the substrate at an edge, and shields against light to prevent the light from entering an outer peripheral region outside the circular borderline on the substrate;
a first driving unit that rotationally drives the light shielding plate about an axis parallel to an optical axis of the illumination system;
a second driving unit that linearly drives the light shielding plate within a plane perpendicular to the optical axis;
a detecting unit that detects a light-shielding position at which light is shielded by the light shielding plate; and
a control unit that stores a light-shielding position at a reference time point and light-shielding positions before and after replacement of the light shielding plate when the light shielding plate is replaced after the reference time point, and calculates a variation amount of the light-shielding position based on a light-shielding position detected by the detecting unit at a time point after the light shielding plate is replaced, the light-shielding position at the reference time point, and the difference between the light-shielding positions before and after the replacement of the light shielding plate.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A coating for board containing gypsum, which comprises cardboard treated to be water-repellent, characterised in that the cardboard contains a treatment agent which prevents the growth of micro-organisms
2. A coating in accordance with patent claim 1, characterised in that its treatment agent is a benzoic acid salt such as sodium benzoate or potassium benzoate.
3. A coating in accordance with patent claim 1, characterised in that its treatment agent is benzoic acid, adipic acid or citric acid.
4. A gypsum board, which comprises a board containing gypsum, and a cardboard coating treated to be water-repellent and attached to the board containing gypsum, characterised in that the cardboard coating contains a treatment agent which prevents the growth of micro-organisms.
5. A gypsum board in accordance with patent claim 4, characterised in that its treatment agent is a benzoic acid salt such as sodium benzoate or potassium benzoate.
6. A gypsum board in accordance with patent claim 4, characterised in that its treatment agent is benzoic acid, adipic acid or citric acid.
7. A method for the production of cardboard-coated gypsum board, wherein:
the cardboard, which has a first side and second side, is treated firstly on its first side with an antimicrobial agent, after which
the cardboard is treated on its first side with a polymer compound containing waxy polymers, and
the cardboard’s second side is attached as a coating to a board containing gypsum.
8. A method in accordance with patent claim 5, characterised in that the second side of the cardboard and the board containing gypsum are connected together using gypsite.